WO2020145580A1 - Method and apparatus for detecting chemical components - Google Patents

Method and apparatus for detecting chemical components Download PDF

Info

Publication number
WO2020145580A1
WO2020145580A1 PCT/KR2020/000117 KR2020000117W WO2020145580A1 WO 2020145580 A1 WO2020145580 A1 WO 2020145580A1 KR 2020000117 W KR2020000117 W KR 2020000117W WO 2020145580 A1 WO2020145580 A1 WO 2020145580A1
Authority
WO
WIPO (PCT)
Prior art keywords
component
chemical
substance
value
information
Prior art date
Application number
PCT/KR2020/000117
Other languages
French (fr)
Korean (ko)
Inventor
박창식
Original Assignee
주식회사 인시스
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 주식회사 인시스 filed Critical 주식회사 인시스
Publication of WO2020145580A1 publication Critical patent/WO2020145580A1/en

Links

Images

Classifications

    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N21/00Investigating or analysing materials by the use of optical means, i.e. using sub-millimetre waves, infrared, visible or ultraviolet light
    • G01N21/17Systems in which incident light is modified in accordance with the properties of the material investigated
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N21/00Investigating or analysing materials by the use of optical means, i.e. using sub-millimetre waves, infrared, visible or ultraviolet light
    • G01N21/17Systems in which incident light is modified in accordance with the properties of the material investigated
    • G01N2021/1765Method using an image detector and processing of image signal

Definitions

  • the present embodiment relates to a method and apparatus for detecting chemical components.
  • Fluorescent whitening agent is a dye that is added to make paper or fibers appear whiter, and is a substance harmful to the human body.
  • a fluorescent whitening agent may enter into the body and cause enteritis or stomach pain.
  • contact dermatitis occurs when a fluorescent brightener comes into contact with the skin, or atopic deteriorates in patients with atopy.
  • parabens and formaldehyde which are carcinogens added together with fluorescent brighteners in the manufacture of toilet paper, are also known to cause inflammation and respiratory toxicity.
  • This embodiment irradiates light with a test substance, acquires chemical composition information corresponding to a substance constituting the test substance from an image of a test substance irradiated with a plurality of acquired light, and how much the chemical composition is based on the chemical composition information.
  • An object of the present invention is to provide a method and an apparatus for detecting chemical components to confirm whether the concentration, performance, etc. of chemical components are applied.
  • a test substance composed of a general substance or a chemical substance;
  • a test substance mounting and coating unit which mounts the test substance at a predetermined angle and applies additional chemical components on the test substance;
  • the test material is irradiated with a plurality of light (light), the plurality of light is irradiated to obtain an image of the test substance, and the plurality of light is irradiated from the test substance image to the material constituting the test substance in general
  • a chemical component detection system characterized by comprising a chemical component inspection device for obtaining the component information, chemical component information, and discriminating the substance compositional component information based on the general component information and the chemical component information.
  • the process of applying a test substance made of a general substance or a chemical substance at a predetermined angle, and applying an additional chemical component on the test substance Irradiating a plurality of light with the test material; Obtaining a test substance image irradiated with the plurality of lights; Obtaining general component information and chemical component information corresponding to substances constituting the test substance from the test substance images irradiated with the plurality of lights; It provides a method for detecting a chemical composition comprising a; and the process of determining the substance composition information based on the general component information, the chemical component information.
  • FIG. 1 is a block diagram schematically showing a chemical composition detection system according to the present embodiment.
  • FIG. 2 is a block diagram schematically showing a chemical component detection device according to the present embodiment.
  • FIG. 3 is a flow chart for explaining the chemical component detection method according to the present embodiment.
  • 4A, 4B, and 4C are exemplary views showing a process of detecting a fluorescent reaction component according to the present embodiment.
  • 5A, 5B, and 5C are exemplary views showing a process of detecting a sunscreen component according to the present embodiment.
  • component information acquisition unit 240 substance composition component determination unit
  • FIG. 1 is a block diagram schematically showing a chemical composition detection system according to the present embodiment.
  • the chemical component detection system 100 includes a test substance 110, a test substance mounting and coating unit 120, and a chemical component inspection device 130.
  • Components included in the chemical component detection system 100 are not limited thereto.
  • the chemical component detection system 100 structurally shields an external light source to block an external light source entering the interior.
  • the chemical component inspection device 130 in the chemical component detection system 100 irradiates a light source having a specific wavelength with the test substance 110 and then photographs the test substance 110 with a camera.
  • Specific wavelengths include ultraviolet (UV), visible light, infrared (IR), and the like.
  • the chemical component detection system 100 blocks an external light incident to the inside by shielding an external light source, irradiates a specific wavelength therein with the test substance 110, and then tests the test substance 110 with a camera in the chemical component inspection device 130.
  • specific wavelengths include ultraviolet (UV), visible light, infrared (IR), and the like.
  • the test material 110 is made of a general material or a chemical material.
  • the chemical composition inspection device 130 corresponds to the fluorescent whitening agent in an ultraviolet environment.
  • the reaction accuracy value to be expressed can be numerically or imaged.
  • the chemical composition inspection device 130 may numerically or image the reaction degree value corresponding to the sunscreen in the ultraviolet environment.
  • the chemical composition inspection device 130 may numerically or image the infrared absorption in the infrared environment and the reaction degree value corresponding to the reaction ink.
  • the test material mounting and coating unit 120 mounts the test material at a predetermined angle, and applies additional chemical components (dark film, sample) on the test material 110.
  • the chemical composition inspecting device 130 determines the fluorescent material component applied on the test material 110
  • the test material mounting and applying unit 120 can compare and observe a single object or a plurality of objects. It is equipped with a cradle.
  • the test material mounting and coating unit 120 adjusts the length and height of the holder so that the chemical composition inspection device 130 can compare a plurality of objects or observe a single object.
  • the chemical component inspection device 130 checks how much chemical substances such as fluorescent substances and sunscreens, which are chemical components applied to the test substance 110, or how much the concentration, blocking performance, etc. of the chemical substances are. .
  • the chemical component inspection device 130 images the difference (light source difference) that occurs after comparing the image corresponding to the fluorescent brightener, the image corresponding to the sunscreen, the image corresponding to the infrared ink, and the image obtained from visible light. Visualize with.
  • the chemical composition inspection device 130 automatically performs a series of processes of photographing and analyzing the material of the sample or the object of the test material 110.
  • the test material is mounted and the coating unit 120 applies a dark film and a sample to the test material 110.
  • the chemical component inspection device 130 may determine a chemical component according to the selection of an observer (user) among a plurality of chemical components. In other words, the chemical composition inspection device 130 may select one of the sunscreen and the fluorescent material applied to the test material 110 according to the user's input.
  • the chemical component inspection device 130 may determine the chemical components of both the sunscreen and the fluorescent material, but may select either the sunscreen or the fluorescent material at the same time as the user's selection or simultaneously.
  • the chemical component inspection device 130 determines the sunscreen component applied on the test material 110, it is assumed that the same sample (sunscreen) is applied to the same reference area on the test material 110.
  • the chemical component inspection device 130 is assumed to have a uniform thickness of the sunscreen component applied on the test material 110.
  • the application unit 120 applies the sunscreen component to the test material
  • the amount and thickness of the sample applied on the reference area may be measured and transmitted to the chemical composition inspection device 130.
  • the chemical composition inspection device 130 determines the material composition component information corresponding to the sunscreen component based on the amount and thickness of the sample (sunscreen) applied on the reference area received from the test material mounting and application unit 120.
  • the chemical composition inspection device 130 calculates the transmittance of the light source irradiated with the test material 110 based on the amount and thickness of the sample (sunscreen) applied on the reference area received from the test material mounting and application unit 120 Digitize. In other words, the chemical composition inspection device 130 may irradiate the test material 110 with the amount of light according to the transmittance of the light source irradiated with the test material 110 coated with sunscreen. The chemical composition inspection device 130 quantifies the degree of inclusion of the fluorescent material added or applied in the test material 110.
  • FIG. 2 is a block diagram schematically showing a chemical component detection device according to the present embodiment.
  • the chemical composition inspection device 130 includes a light source unit 210, an image acquisition unit 220, a component information acquisition unit 230, a substance composition component determination unit 240, an image visualization unit 250, and a communication unit 260.
  • the components included in the chemical composition inspection device 130 are not necessarily limited thereto.
  • the light source unit 210 irradiates a plurality of light with a test material.
  • the light source unit 210 irradiates light of at least one of visible light, infrared ray, and ultraviolet ray to the test material 110 while the external light source is shielded.
  • the image acquisition unit 220 acquires a test substance image irradiated with a plurality of lights.
  • the image acquisition unit 220 acquires a test substance image irradiated with at least one of visible light, infrared ray, and ultraviolet ray.
  • the component information acquiring unit 230 acquires general component information and chemical component information corresponding to substances constituting the test substance 110 from a plurality of lighted test substance images.
  • the component information acquiring unit 230 acquires a general substance component as general component information from a test substance image irradiated with visible light.
  • the component information acquiring unit 230 acquires fluorescent components and ultraviolet blocking components (ultraviolet rays reacting components) as chemical component information from a test substance image irradiated with ultraviolet rays.
  • the component information acquiring unit 230 acquires infrared reaction components as chemical component information from a test substance image irradiated with infrared rays.
  • the substance composition component discrimination unit 240 determines substance composition component information based on general component information and chemical component information.
  • the substance composition determining unit 240 numerically outputs a result of comparing a general component corresponding to a substance constituting a test substance with a fluorescent component and a UV blocking component from a test substance image irradiated with a plurality of lights.
  • the substance composition determination unit 240 determines the application range of the chemical components, the concentration information of the chemical components, and the blocking performance information of the chemical components based on the general component information and the chemical component information, and then uses the substance composition component information. To create.
  • the substance composition determining unit 240 generates a general substance value by digitizing (or imaging) the value of the general substance component in response to visible light.
  • the substance composition determining unit 240 generates a fluorescence component value by digitizing (or imaging) the value of the fluorescence component reacting with ultraviolet rays.
  • the substance composition determining unit 240 generates substance composition component information including information on the application range of the fluorescent component and the concentration of the fluorescent component based on the difference generated by comparing the general substance value and the fluorescent component value.
  • the substance composition determining unit 240 generates a general substance value by digitizing (or imaging) the value of the general substance component in response to visible light.
  • the substance composition determining unit 240 generates a UV blocking value by digitizing (or imaging) the value of the UV blocking component reacting with UV light.
  • the substance composition determining unit 240 is a substance including the application range of the UV blocking component, the concentration information of the UV blocking component, and the blocking performance information of the UV blocking component based on the difference generated by comparing the general substance value with the UV blocking value. Create component information.
  • the substance composition determining unit 240 generates a general substance value by digitizing (or imaging) the value of the general substance component in response to visible light.
  • the substance composition determining unit 240 generates an infrared reaction value by numerically (or imaging) the value of the infrared reaction component reacting to infrared light.
  • the substance composition determining unit 240 generates substance composition component information including information on the application range of the infrared reaction component and the concentration of the infrared reaction component based on the difference generated by comparing the general substance value and the infrared reaction value.
  • the substance composition determining unit 240 is a test substance based on the amount and thickness of the sample applied on the reference area for the test substance 110 received from the application unit 120 through the communication unit 260 through the test substance.
  • the transmittance of the light source irradiated with (110) is calculated and numerically output.
  • the image visualization unit 250 visualizes the substance compositional component information as an image.
  • the image visualization unit 250 visualizes and outputs a difference between a general substance value and a fluorescence component value as an image.
  • the image visualization unit 250 visualizes and outputs a difference between a general substance value and a UV blocking value as an image.
  • the image visualization unit 250 visualizes and outputs a difference between a general substance value and an infrared reaction value as an image.
  • the communication unit 260 interlocks with the terminal 270 to select at least one component information among a fluorescent component, a UV blocking component, and an infrared reaction component by a user input.
  • the communication unit 260 transmits and receives data in cooperation with the terminal 270 using wired/wireless communication or short-range communication.
  • the terminal 270 refers to an electronic device that communicates with the communication unit 260 in the chemical composition inspection device 130 via a network according to a user's key operation.
  • the terminal 270 includes a memory for storing a program or protocol for communicating with the chemical composition inspection device 130 via a network, a microprocessor for executing a corresponding program, and calculating and controlling the program.
  • the terminal 270 includes a smart phone, a tablet, a laptop, a personal computer (PC), a personal digital assistant (PDA), and a portable multimedia player (PMP). Player), a wireless communication terminal (Wireless Communication Terminal), a media player, or the like.
  • the terminal 270 is a communication device such as a communication modem for performing communication with various devices or a wired or wireless network, a memory for storing chemical component detection applications and data, a microprocessor for calculating and controlling chemical component detection applications. It means an electronic device having a.
  • FIG. 3 is a flow chart for explaining the chemical component detection method according to the present embodiment.
  • the test material mounting and coating unit 120 mounts the test material at a predetermined angle, and applies additional chemical components (dark film, sample) on the test material 110 (S310).
  • step S310 the test material is mounted and the application unit 120 fixes a single object or a plurality of two or more objects to the provided cradle.
  • the test material mounting and coating unit 120 adjusts the length and height of the holder so that the chemical composition inspection device 130 can compare a plurality of objects or observe a single object.
  • the chemical composition inspection device 130 irradiates a plurality of light with a test material (S320).
  • the chemical composition inspecting device 130 irradiates at least one of visible light, infrared light, and ultraviolet light with the test material 110 while shielding the external light source. .
  • the chemical component inspection device 130 interlocks with the terminal 270 to select at least one component information of a fluorescent component, a UV blocking component, and an infrared reaction component by a user input.
  • the chemical component inspection device 130 transmits and receives data in connection with the terminal 270 using wired/wireless communication or short-range communication.
  • the chemical composition inspection device 130 acquires an image of a test substance irradiated with a plurality of lights (S330). In step S330, the chemical composition inspecting device 130 acquires a test substance image irradiated with at least one of visible light, infrared light, and ultraviolet light.
  • the chemical composition inspecting device 130 acquires general component information and chemical component information corresponding to the substances constituting the test substance 110 from the test substance images irradiated with a plurality of lights (S340).
  • the chemical component inspection device 130 obtains the general substance component from the test substance image irradiated with visible light as general component information.
  • the chemical composition inspecting device 130 obtains fluorescence components and UV blocking components (ultraviolet rays reacting components) as chemical component information from the test substance image irradiated with ultraviolet rays.
  • the chemical component inspection device 130 acquires infrared reaction components as chemical component information from the test substance image irradiated with infrared rays.
  • the chemical component inspection device 130 determines the substance composition component information based on the general component information and the chemical component information (S350). In step S350, the chemical composition inspection device 130 determines the composition of the substance by determining the application range of chemical components, concentration information of chemical components, and blocking performance information of chemical components based on the general component information and the chemical component information. It is created with ingredient information.
  • the chemical component inspection device 130 generates a general substance value by digitizing (or imaging) the value of the general substance component in response to visible light.
  • the chemical component inspection device 130 generates a fluorescence component value by digitizing (or imaging) the value of the fluorescence component reacting with ultraviolet rays.
  • the chemical component inspection device 130 generates substance composition component information including information on the application range of the fluorescent component and the concentration of the fluorescent component based on the difference generated by comparing the general substance value and the fluorescent component value.
  • the chemical component inspection device 130 generates a general substance value by digitizing (or imaging) the value of the general substance component in response to visible light.
  • the substance composition determining unit 240 generates a UV blocking value by digitizing (or imaging) the value of the UV blocking component reacting with UV light.
  • the chemical composition inspection device 130 is based on the difference generated by comparing the general material value and the UV blocking value, and the composition of the material includes the application range of the UV blocking component, the concentration information of the UV blocking component, and the blocking performance information of the UV blocking component. Create ingredient information.
  • the chemical component inspection device 130 generates a general substance value by digitizing (or imaging) the value of the general substance component in response to visible light.
  • the chemical component inspection device 130 generates an infrared reaction value by digitizing (or imaging) the value of the infrared reaction component reacting with infrared light.
  • the chemical component inspection device 130 generates substance composition component information including information on the application range of the infrared reaction component and concentration information of the infrared reaction component based on the difference generated by comparing the general substance value and the infrared reaction value.
  • the chemical composition inspection device 130 visualizes the substance composition information as an image (S360).
  • step S360 the chemical component inspection device 130 visualizes and outputs a difference between the general substance value and the fluorescence component value as an image.
  • the chemical component inspection device 130 visualizes and outputs a difference between a general substance value and a UV blocking value as an image.
  • the chemical component inspection device 130 visualizes and outputs a difference between a general substance value and an infrared reaction value as an image.
  • the chemical composition inspection device 130 interlocks with the terminal 270 so that the visualized image can be confirmed in the terminal 270.
  • FIG. 3 describes that steps S310 to S360 are sequentially executed, the present invention is not limited thereto. In other words, since the steps described in FIG. 3 may be changed and executed or one or more steps may be executed in parallel, FIG. 3 is not limited to a time series sequence.
  • the chemical component detection method according to the present embodiment described in FIG. 3 may be implemented as a program and recorded in a computer-readable recording medium.
  • the program for implementing the chemical component detection method according to the present embodiment is recorded, and the computer-readable recording medium includes all types of recording devices in which data readable by a computer system is stored.
  • 4A, 4B, and 4C are exemplary views showing a process of detecting a fluorescent reaction component according to the present embodiment.
  • the user selects'fluorescence observation' using a chemical composition detection application installed in the terminal 270.
  • the terminal 270 transmits a fluorescent substance observation request signal to the chemical component inspection apparatus 130, and receives and displays a fluorescent substance observation image from the chemical component inspection apparatus 130.
  • the chemical component inspection device 130 receives a request signal for fluorescence observation from the terminal 270, it irradiates ultraviolet rays to the test substance 110 mounted on the test substance mounting and coating unit 120.
  • the chemical composition inspection device 130 may perform a'test Irradiate ultraviolet light with tissue A and test tissue B.
  • the chemical component inspection device 130 generates a fluorescence component value by digitizing (or imaging) the values of the fluorescence components for the'test tissue A'and the'test tissue B'in response to ultraviolet rays. .
  • the chemical component inspection device 130 quantifies the value of the fluorescence component for'Test Rest A'that responds to ultraviolet rays as '3383' and outputs it together with the image.
  • the chemical component inspection device 130 quantifies the value of the fluorescence component for'Test Rest B'that responds to ultraviolet rays as '5125' and outputs it together with the image.
  • the chemical composition inspection device 130 compares the numerical value (3383) for'test pause A'and the numeric value (5125) for'test pause B'.
  • the chemical composition inspection device 130 confirms that the test tissue [A] has a lower fluorescence reaction component than the test tissue [B]. The chemical composition inspection device 130 confirms that the test tissue [B] has a higher fluorescence reaction component than the test tissue [A].
  • the chemical composition inspection device 130 irradiates visible light with'test rest A'and'test rest B', and then quantifies (or images) the value of the general material component reacting with the visible light to generate a general material value.
  • the chemical component inspection device 130 includes information on the application range of the fluorescent component and the concentration of the fluorescent component based on the difference generated by comparing the general substance values and the fluorescent component values for the'test tissue A'and the'test tissue B'. Create substance composition ingredient information.
  • 5A, 5B, and 5C are exemplary views showing a process of detecting a sunscreen component according to the present embodiment.
  • the user selects “sunscreen observation” using a chemical composition detection application installed in the terminal 270.
  • the terminal 270 transmits a sunscreen observation request signal to the chemical composition inspection device 130 and receives and displays the sunscreen observation image from the chemical composition inspection device 130.
  • the chemical component inspection device 130 receives the sunscreen observation request signal from the terminal 270, it irradiates ultraviolet rays to the test material 110 mounted on the test material mounting and coating unit 120.
  • the chemical composition inspection device 130 Is irradiated with ultraviolet rays with'Sun Cream A','Sun Cream B', and'Sun Cream C'applied to the test material 110.
  • the chemical component inspection device 130 quantifies (or images) the value of the sunscreen components for each of the'sunscreen A', the'sunscreen B', and the'sunscreen C'in response to ultraviolet rays (or imaging). Create a number.
  • the chemical component inspection device 130 images and outputs a value of the sunscreen component for'sun cream A'responding to ultraviolet rays.
  • the chemical component inspection device 130 images and outputs a value of the sun blocking component for'sun cream B'reacting with ultraviolet rays.
  • the chemical component inspection device 130 images and outputs a value of the UV blocking component for'Sun Cream C'reacting with UV rays.
  • the chemical component inspection device 130 displays the value of'sun cream A'responding to ultraviolet light, the value of'sun cream B'responding to ultraviolet light, and the value of'sun cream C'responding to ultraviolet light. Compare with each other.
  • the chemical component inspection device 130 confirms that the test sunscreen [A] has a relatively lower sunscreen concentration than the test sunscreens [B] and [C].
  • the chemical composition inspection device 130 confirms that the test sunscreen [B] has a relatively higher sunscreen concentration than the test sunscreen [A].
  • the chemical component inspection device 130 confirms that the test sunscreen [C] has a relatively higher sunscreen concentration than the test sunscreens [A] and [B].
  • the chemical component inspection device 130 irradiates visible light with'Sun Cream A','Sun Cream B', and'Sun Cream C', respectively, and then quantifies (or images) the value of the general material component reacting with the visible light. Create a number.
  • the chemical component inspection device 130 is based on the difference generated by comparing the general substance values and the fluorescence component values for'Sun Cream A','Sun Cream B', and'Sun Cream C', and the concentration of the fluorescence component is applied. Create substance composition information including information.

Landscapes

  • Physics & Mathematics (AREA)
  • Health & Medical Sciences (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Chemical & Material Sciences (AREA)
  • Analytical Chemistry (AREA)
  • Biochemistry (AREA)
  • General Health & Medical Sciences (AREA)
  • General Physics & Mathematics (AREA)
  • Immunology (AREA)
  • Pathology (AREA)
  • Investigating, Analyzing Materials By Fluorescence Or Luminescence (AREA)

Abstract

A method and an apparatus for detecting chemical components are disclosed. The present embodiment provides a method and an apparatus for detecting chemical components, the method and the apparatus being for irradiating a test material with light, acquiring, from an acquired image of the test material having been irradiated with a plurality of lights, chemical component information that corresponds to a material constituting the test material, and identifying, on the basis of the chemical component information, how many chemical components are coated, and the concentration, performance and the like of the chemical components.

Description

화학성분 검출 방법 및 장치Method and device for chemical composition detection
본 실시예는 화학성분 검출 방법 및 장치에 관한 것이다. The present embodiment relates to a method and apparatus for detecting chemical components.
이하에 기술되는 내용은 단순히 본 실시예와 관련되는 배경 정보만을 제공할 뿐 종래기술을 구성하는 것이 아니다.The contents described below merely provide background information related to the present embodiment, and do not constitute a prior art.
일상생활에 유용한 물질(예컨대, 화장지)의 경우, 제조 과정에서 형광증백제가 첨가된다. 형광증백제란 종이나 섬유를 더욱 희게 보이기 위해 첨가하는 염료로서 인체에 유해한 물질이다.In the case of substances useful for daily life (for example, toilet paper), a fluorescent brightener is added during the manufacturing process. Fluorescent whitening agent is a dye that is added to make paper or fibers appear whiter, and is a substance harmful to the human body.
다시 말해, 새하얀 천연펄프의 화장지를 만들기 위해서는 많은 양의 나무를 베어야 하는데, 연간 막대한 화장지 사용량은 나무를 베어내는 것만으로 충족시키기 어렵다. 따라서, 스크래치난 불량 우유곽이나 만들고 남은 자투리 원지나 재활용된 우유곽을 사용하여 화장지를 만드는 데, 화장지의 주원료가 재생펄프이기 때문에 재생펄프를 하얗게 표백하기 위해서 형광증백제를 넣는다.In other words, in order to make toilet paper made of pure white pulp, a large amount of wood has to be cut, but the annual amount of toilet paper is difficult to meet simply by cutting the trees. Therefore, to make toilet paper using scratched or poorly made milk contours or leftover cut paper or recycled milk contours, a fluorescent whitening agent is added to bleach the recycled pulp because the main raw material of the toilet paper is recycled pulp.
전술한 형광물질이 들어간 화장지로 입을 닦으면 몸속으로 형광증백제가 들어가 장염이나 복통의 소화기 질환을 일으킬 수 있다. 또한, 임상보고에 따르면 형광증백제가 피부에 닿았을 때 접촉성 피부염이 발생하거나, 아토피 환자의 경우 아토피가 악화 된다는 발표가 있다. 또한, 화장지 제조시 형광증백제와 함께 첨가되는 발암물질인 파라벤과 포름알데히드 역시, 염증을 유발하고 호흡기 독성을 유발하는 물질로 알려져 있다.If you wipe your mouth with toilet paper containing the above-mentioned fluorescent substance, a fluorescent whitening agent may enter into the body and cause enteritis or stomach pain. In addition, according to clinical reports, it has been announced that contact dermatitis occurs when a fluorescent brightener comes into contact with the skin, or atopic deteriorates in patients with atopy. In addition, parabens and formaldehyde, which are carcinogens added together with fluorescent brighteners in the manufacture of toilet paper, are also known to cause inflammation and respiratory toxicity.
따라서, 손쉽게 일상생활에 유용하게 사용하는 물질을 이루는 성분의 화학성분이 어느 정보인지를 확인할 수 있는 기술을 필요로 한다.Therefore, there is a need for a technology capable of confirming which information is a chemical component of a component constituting a substance that is useful for daily life.
본 실시예는 시험물질로 광을 조사하고, 획득한 복수의 광이 조사된 시험물질 이미지로부터 시험물질을 이루고 있는 물질에 대응하는 화학성분 정보를 획득하고, 화학성분 정보를 근거로 화학성분이 얼마나 도포되어 있는지 화학성분의 농도, 성능 등이 어느 정도인지를 확인하기 위한 화학성분 검출 방법 및 장치를 제공하는 데 목적이 있다.This embodiment irradiates light with a test substance, acquires chemical composition information corresponding to a substance constituting the test substance from an image of a test substance irradiated with a plurality of acquired light, and how much the chemical composition is based on the chemical composition information. An object of the present invention is to provide a method and an apparatus for detecting chemical components to confirm whether the concentration, performance, etc. of chemical components are applied.
본 실시예의 일 측면에 의하면, 일반물질 또는 화학물질로 이루어지는 시험물질; 상기 시험물질을 기 설정된 각도로 거치하며, 상기 시험물질 상에 추가적인 화학성분을 도포하는 시험물질 거치 및 도포부; 상기 시험물질로 복수의 광(光)을 조사하고, 상기 복수의 광이 조사된 시험물질 이미지를 획득하고, 상기 복수의 광이 조사된 시험물질 이미지로부터 상기 시험물질을 이루고 있는 물질에 대응하는 일반성분 정보, 화학성분 정보를 획득하고, 상기 일반성분 정보, 상기 화학성분 정보를 근거로 물질구성 성분정보를 판별하는 화학성분 검사장치를 포함하는 것을 특징으로 하는 화학성분 검출 시스템을 제공한다.According to an aspect of the present embodiment, a test substance composed of a general substance or a chemical substance; A test substance mounting and coating unit which mounts the test substance at a predetermined angle and applies additional chemical components on the test substance; The test material is irradiated with a plurality of light (light), the plurality of light is irradiated to obtain an image of the test substance, and the plurality of light is irradiated from the test substance image to the material constituting the test substance in general It provides a chemical component detection system characterized by comprising a chemical component inspection device for obtaining the component information, chemical component information, and discriminating the substance compositional component information based on the general component information and the chemical component information.
본 실시예의 다른 측면에 의하면, 일반물질 또는 화학물질로 이루어지는 시험물질을 기 설정된 각도로 거치하며, 상기 시험물질 상에 추가적인 화학성분을 도포하는 과정; 상기 시험물질로 복수의 광(光)을 조사하는 과정; 상기 복수의 광이 조사된 시험물질 이미지를 획득하는 과정; 상기 복수의 광이 조사된 시험물질 이미지로부터 상기 시험물질을 이루고 있는 물질에 대응하는 일반성분 정보, 화학성분 정보를 획득하는 과정; 및 상기 일반성분 정보, 상기 화학성분 정보를 근거로 물질구성 성분정보를 판별하는 과정;을 포함하는 것을 특징으로 하는 화학성분 검출 방법을 제공한다.According to another aspect of this embodiment, the process of applying a test substance made of a general substance or a chemical substance at a predetermined angle, and applying an additional chemical component on the test substance; Irradiating a plurality of light with the test material; Obtaining a test substance image irradiated with the plurality of lights; Obtaining general component information and chemical component information corresponding to substances constituting the test substance from the test substance images irradiated with the plurality of lights; It provides a method for detecting a chemical composition comprising a; and the process of determining the substance composition information based on the general component information, the chemical component information.
이상에서 설명한 바와 같이 본 실시예에 의하면, 시험물질로 광을 조사하고, 획득한 복수의 광이 조사된 시험물질 이미지로부터 시험물질을 이루고 있는 물질에 대응하는 화학성분 정보를 획득하고, 화학성분 정보를 근거로 화학성분이 얼마나 도포되어 있는지 화학성분의 농도, 성능 등이 어느 정도인지를 확인할 수 있는 효과가 있다.As described above, according to the present embodiment, light is irradiated with a test substance, and chemical composition information corresponding to a substance constituting the test substance is obtained from the image of the test substance irradiated with the obtained plurality of light, and chemical composition information is obtained. Based on the, there is an effect that can confirm how much the chemical composition is applied, and how much the concentration, performance, etc. of the chemical composition are.
도 1은 본 실시예에 따른 화학성분 검출 시스템을 개략적으로 나타낸 블럭 구성도이다.1 is a block diagram schematically showing a chemical composition detection system according to the present embodiment.
도 2는 본 실시예에 따른 화학성분 검출 장치를 개략적으로 나타낸 블럭 구성도이다.2 is a block diagram schematically showing a chemical component detection device according to the present embodiment.
도 3은 본 실시예에 따른 화학성분 검출 방법을 설명하기 위한 순서도이다.3 is a flow chart for explaining the chemical component detection method according to the present embodiment.
도 4a, 4b, 4c는 본 실시예에 따른 형광 반응 성분을 검출하는 과정을 나타낸 예시도이다.4A, 4B, and 4C are exemplary views showing a process of detecting a fluorescent reaction component according to the present embodiment.
도 5a, 5b, 5c는 본 실시예에 따른 자외선 차단 성분을 검출하는 과정을 나타낸 예시도이다.5A, 5B, and 5C are exemplary views showing a process of detecting a sunscreen component according to the present embodiment.
<도면의 주요부분의 부호의 설명><Explanation of the sign of the main part of the drawing>
110: 시험물질 110: test substance
120: 시험물질 거치 및 도포부120: test material mounting and coating unit
130: 화학성분 검사장치130: chemical composition inspection device
210: 광원부 220: 영상 획득부210: light source unit 220: image acquisition unit
230: 성분정보 획득부 240: 물질구성 성분 판별부230: component information acquisition unit 240: substance composition component determination unit
250: 이미지 가시화부 260: 통신부250: image visualization unit 260: communication unit
270: 단말기270: terminal
이하, 본 실시예를 첨부된 도면을 참조하여 상세하게 설명한다.Hereinafter, this embodiment will be described in detail with reference to the accompanying drawings.
도 1은 본 실시예에 따른 화학성분 검출 시스템을 개략적으로 나타낸 블럭 구성도이다.1 is a block diagram schematically showing a chemical composition detection system according to the present embodiment.
본 실시예에 따른 화학성분 검출 시스템(100)은 시험물질(110), 시험물질 거치 및 도포부(120) 및 화학성분 검사장치(130)를 포함한다. 화학성분 검출 시스템(100)에 포함된 구성요소는 반드시 이에 한정되는 것은 아니다.The chemical component detection system 100 according to the present embodiment includes a test substance 110, a test substance mounting and coating unit 120, and a chemical component inspection device 130. Components included in the chemical component detection system 100 are not limited thereto.
본 실시예에 따른 화학성분 검출 시스템(100)은 구조적으로 외부 광원 차폐하여 내부로 들어오는 외부 광원을 차단한다.The chemical component detection system 100 according to the present embodiment structurally shields an external light source to block an external light source entering the interior.
화학성분 검출 시스템(100) 내의 화학성분 검사장치(130)는 시험물질(110)로 특정 파장을 갖는 광원을 조사한 후 시험물질(110)을 카메라로 촬영한다. 특정 파장은 자외선(UV), 가시광(Visible Light), 적외선(IR) 등을 포함한다.The chemical component inspection device 130 in the chemical component detection system 100 irradiates a light source having a specific wavelength with the test substance 110 and then photographs the test substance 110 with a camera. Specific wavelengths include ultraviolet (UV), visible light, infrared (IR), and the like.
화학성분 검출 시스템(100)은 외부 광원을 차폐하여 내부로 입사되는 외부광을 차단하고, 내부의 특정 파장을 시험물질(110)로 조사한 후 화학성분 검사장치(130) 내의 카메라로 시험물질(110)을 관찰한다. 여기서, 특정 파장은 자외선(UV), 가시광(Visible Light), 적외선(IR) 등을 포함한다.The chemical component detection system 100 blocks an external light incident to the inside by shielding an external light source, irradiates a specific wavelength therein with the test substance 110, and then tests the test substance 110 with a camera in the chemical component inspection device 130. ). Here, specific wavelengths include ultraviolet (UV), visible light, infrared (IR), and the like.
시험물질(110)은 일반물질 또는 화학물질로 이루어진다. 예컨대, 시험물질(110) 내에 형광증백제가 첨가되어 있거나 시험물질(110) 위에 형광증백제가 첨가된 물질을 도포하는 경우, 화학성분 검사장치(130)는 자외선 환경에서의 형광증백제에 대응하는 반응정도값을 수치화 또는 이미지화할 수 있다.The test material 110 is made of a general material or a chemical material. For example, when a fluorescent whitening agent is added to the test material 110 or when a material added with the fluorescent whitening agent is applied on the test material 110, the chemical composition inspection device 130 corresponds to the fluorescent whitening agent in an ultraviolet environment. The reaction accuracy value to be expressed can be numerically or imaged.
시험물질(110) 위에 선크림을 도포한 경우, 화학성분 검사장치(130)는 자외선 환경에서의 선크림에 대응하는 반응정도값을 수치 또는 이미지화할 수 있다. 시험물질(110) 위에 적외선 흡수, 반응 잉크를 도포한 경우, 화학성분 검사장치(130)는 적외선 환경에서의 적외선 흡수, 반응 잉크에 대응하는 반응 정도값을 수치 또는 이미지화할 수 있다. When the sunscreen is applied on the test material 110, the chemical composition inspection device 130 may numerically or image the reaction degree value corresponding to the sunscreen in the ultraviolet environment. When infrared absorption and reaction ink are applied on the test material 110, the chemical composition inspection device 130 may numerically or image the infrared absorption in the infrared environment and the reaction degree value corresponding to the reaction ink.
시험물질 거치 및 도포부(120)는 시험물질을 기 설정된 각도로 거치하며, 시험물질(110) 상에 추가적인 화학성분(암막, 시료)을 도포한다. 화학성분 검사장치(130)가 시험물질(110) 상에 도포된 형광물질 성분을 판별할 때, 시험물질 거치 및 도포부(120)는 단일 대상물 또는 두 개 이상의 복수의 대상물을 비교 관찰할 수 있도록 하는 거치대를 구비한다. 시험물질 거치 및 도포부(120)는 화학성분 검사장치(130)가 복수의 대상물을 비교 관찰하거나 단일 대상물을 관찰할 수 있도록 거치대의 길이 및 높이를 조절한다.The test material mounting and coating unit 120 mounts the test material at a predetermined angle, and applies additional chemical components (dark film, sample) on the test material 110. When the chemical composition inspecting device 130 determines the fluorescent material component applied on the test material 110, the test material mounting and applying unit 120 can compare and observe a single object or a plurality of objects. It is equipped with a cradle. The test material mounting and coating unit 120 adjusts the length and height of the holder so that the chemical composition inspection device 130 can compare a plurality of objects or observe a single object.
화학성분 검사장치(130)는 시험물질(110)에 도포된 화학성분인 형광물질, 자외선차단제 등의 화학 물질이 얼마나 도포되어 있는지 또는 상기 화학물질의 농도, 차단성능 등이 어느 정도인지를 확인한다.The chemical component inspection device 130 checks how much chemical substances such as fluorescent substances and sunscreens, which are chemical components applied to the test substance 110, or how much the concentration, blocking performance, etc. of the chemical substances are. .
화학성분 검사장치(130)는 형광증백제에 대응하는 이미지, 선크림에 대응하는 이미지, 적외선 잉크에 대응하는 이미지 각각과 가시광선에서 획득한 이미지와 비교한 후 발생하는 차이(광원의 차이)를 이미지로 가시화한다.The chemical component inspection device 130 images the difference (light source difference) that occurs after comparing the image corresponding to the fluorescent brightener, the image corresponding to the sunscreen, the image corresponding to the infrared ink, and the image obtained from visible light. Visualize with.
화학성분 검사장치(130)는 시험물질(110)의 시료 또는 대상물의 재질을 촬영 및 분석의 일련의 과정을 자동으로 수행한다. 시험물질 거치 및 도포부(120)는 암막, 시료를 시험물질(110)에 도포한다.The chemical composition inspection device 130 automatically performs a series of processes of photographing and analyzing the material of the sample or the object of the test material 110. The test material is mounted and the coating unit 120 applies a dark film and a sample to the test material 110.
화학성분 검사장치(130)는 복수의 화학성분 중 관찰자(사용자)의 선택에 따른 화학성분을 판별할 수 있다. 다시 말해, 화학성분 검사장치(130)는 사용자의 입력에 따라 시험물질(110)에 도포된 선크림과 형광물질 중 어느 하나를 선택할 수 있다.The chemical component inspection device 130 may determine a chemical component according to the selection of an observer (user) among a plurality of chemical components. In other words, the chemical composition inspection device 130 may select one of the sunscreen and the fluorescent material applied to the test material 110 according to the user's input.
화학성분 검사장치(130)는 선크림과 형광물질 두 가지 모두의 화학성분을 판별할 수 있으나 사용자의 선택에 따라 선크림과 형광물질 중 어느 하나를 선택하거나 동시에 판별할 수 있다.The chemical component inspection device 130 may determine the chemical components of both the sunscreen and the fluorescent material, but may select either the sunscreen or the fluorescent material at the same time as the user's selection or simultaneously.
화학성분 검사장치(130)는 시험물질(110) 상에 도포된 선크림 성분을 판별할 때, 시험물질(110) 상에 동일한 기준 면적에 동일한 시료(선크림)가 도포된 것으로 가정한다. 화학성분 검사장치(130)는 시험물질(110) 상에 도포된 선크림 성분의 두께가 균일한 것으로 가정한다.When the chemical component inspection device 130 determines the sunscreen component applied on the test material 110, it is assumed that the same sample (sunscreen) is applied to the same reference area on the test material 110. The chemical component inspection device 130 is assumed to have a uniform thickness of the sunscreen component applied on the test material 110.
시험물질 거치 및 도포부(120)는 시험물질에 선크림 성분을 도포할 때, 기준 면적 상에 도포한 시료의 양과 두께를 측정하여 화학성분 검사장치(130)로 전송할 수 있다.When the test material is mounted and the application unit 120 applies the sunscreen component to the test material, the amount and thickness of the sample applied on the reference area may be measured and transmitted to the chemical composition inspection device 130.
화학성분 검사장치(130)는 시험물질 거치 및 도포부(120)로부터 수신된 기준 면적 상에 도포한 시료(선크림)의 양과 두께를 기반으로 선크림 성분에 대응하는 물질구성 성분정보를 판별한다.The chemical composition inspection device 130 determines the material composition component information corresponding to the sunscreen component based on the amount and thickness of the sample (sunscreen) applied on the reference area received from the test material mounting and application unit 120.
화학성분 검사장치(130)는 시험물질 거치 및 도포부(120)로부터 수신된 기준 면적 상에 도포한 시료(선크림)의 양과 두께를 기반으로 시험물질(110)로 조사하는 광원의 투과도를 계산하여 수치화한다. 다시 말해, 화학성분 검사장치(130)는 선크림이 도포된 시험물질(110)로 조사하는 광원의 투과도에 따라 광량을 시험물질(110)로 조사할 수 있다. 화학성분 검사장치(130)는 시험물질(110) 내에 첨가되거나 도포된 형광물질 포함 정도를 수치화한다.The chemical composition inspection device 130 calculates the transmittance of the light source irradiated with the test material 110 based on the amount and thickness of the sample (sunscreen) applied on the reference area received from the test material mounting and application unit 120 Digitize. In other words, the chemical composition inspection device 130 may irradiate the test material 110 with the amount of light according to the transmittance of the light source irradiated with the test material 110 coated with sunscreen. The chemical composition inspection device 130 quantifies the degree of inclusion of the fluorescent material added or applied in the test material 110.
도 2는 본 실시예에 따른 화학성분 검출 장치를 개략적으로 나타낸 블럭 구성도이다.2 is a block diagram schematically showing a chemical component detection device according to the present embodiment.
본 실시예에 따른 화학성분 검사장치(130)는 광원부(210), 영상 획득부(220), 성분정보 획득부(230), 물질구성 성분 판별부(240), 이미지 가시화부(250), 통신부(260)를 포함한다. 화학성분 검사장치(130)에 포함된 구성요소는 반드시 이에 한정되는 것은 아니다.The chemical composition inspection device 130 according to the present embodiment includes a light source unit 210, an image acquisition unit 220, a component information acquisition unit 230, a substance composition component determination unit 240, an image visualization unit 250, and a communication unit 260. The components included in the chemical composition inspection device 130 are not necessarily limited thereto.
광원부(210)는 시험물질로 복수의 광(光)을 조사한다. 광원부(210)는 외부 광원을 차폐한 상태에서 시험물질(110)로 가시광(Visible light), 적외선(Infrared Ray) 및 자외선(Ultraviolet Ray) 중 적어도 하나 이상의 광을 조사한다.The light source unit 210 irradiates a plurality of light with a test material. The light source unit 210 irradiates light of at least one of visible light, infrared ray, and ultraviolet ray to the test material 110 while the external light source is shielded.
영상 획득부(220)는 복수의 광이 조사된 시험물질 이미지를 획득한다. 영상 획득부(220)는 가시광(Visible light), 적외선(Infrared Ray) 및 자외선(Ultraviolet Ray) 중 적어도 하나 이상의 광을 조사된 시험물질 이미지를 획득한다.The image acquisition unit 220 acquires a test substance image irradiated with a plurality of lights. The image acquisition unit 220 acquires a test substance image irradiated with at least one of visible light, infrared ray, and ultraviolet ray.
성분정보 획득부(230)는 복수의 광이 조사된 시험물질 이미지로부터 시험물질(110)을 이루고 있는 물질에 대응하는 일반성분 정보, 화학성분 정보를 획득한다.The component information acquiring unit 230 acquires general component information and chemical component information corresponding to substances constituting the test substance 110 from a plurality of lighted test substance images.
성분정보 획득부(230)는 가시광이 조사된 시험물질 이미지로부터 일반물질 성분을 일반성분 정보로 획득한다. 성분정보 획득부(230)는 자외선이 조사된 시험물질 이미지로부터 형광성분, 자외선차단성분(자외선반응성분)을 화학성분 정보로 획득한다. 성분정보 획득부(230)는 적외선이 조사된 시험물질 이미지로부터 적외선반응성분을 화학성분 정보로 획득한다.The component information acquiring unit 230 acquires a general substance component as general component information from a test substance image irradiated with visible light. The component information acquiring unit 230 acquires fluorescent components and ultraviolet blocking components (ultraviolet rays reacting components) as chemical component information from a test substance image irradiated with ultraviolet rays. The component information acquiring unit 230 acquires infrared reaction components as chemical component information from a test substance image irradiated with infrared rays.
물질구성 성분 판별부(240)는 일반성분 정보, 화학성분 정보를 근거로 물질구성 성분정보를 판별한다. 물질구성 성분 판별부(240)는 복수의 광이 조사된 시험물질 이미지로부터 시험물질을 이루고 있는 물질에 대응하는 일반성분을 형광성분, 자외선차단성분 각각 과 비교한 결과를 수치화하여 출력한다.The substance composition component discrimination unit 240 determines substance composition component information based on general component information and chemical component information. The substance composition determining unit 240 numerically outputs a result of comparing a general component corresponding to a substance constituting a test substance with a fluorescent component and a UV blocking component from a test substance image irradiated with a plurality of lights.
물질구성 성분 판별부(240)는 일반성분 정보, 화학성분 정보를 근거로 일반성분과 구분되는 화학성분의 도포 범위, 화학성분의 농도 정보, 화학성분의 차단성능 정보를 판별하여 물질구성 성분정보로 생성한다.The substance composition determination unit 240 determines the application range of the chemical components, the concentration information of the chemical components, and the blocking performance information of the chemical components based on the general component information and the chemical component information, and then uses the substance composition component information. To create.
물질구성 성분 판별부(240)는 일반물질 성분이 가시광선에 반응하는 값을 수치화(또는 이미지화)하여 일반물질 수치를 생성한다. 물질구성 성분 판별부(240)는 형광성분이 자외선에 반응하는 값을 수치화(또는 이미지화)하여 형광성분 수치를 생성한다. 물질구성 성분 판별부(240)는 일반물질 수치와 형광성분 수치를 비교하여 발생하는 차이를 기반으로 형광성분의 도포 범위, 형광성분의 농도 정보를 포함하는 물질구성 성분정보를 생성한다.The substance composition determining unit 240 generates a general substance value by digitizing (or imaging) the value of the general substance component in response to visible light. The substance composition determining unit 240 generates a fluorescence component value by digitizing (or imaging) the value of the fluorescence component reacting with ultraviolet rays. The substance composition determining unit 240 generates substance composition component information including information on the application range of the fluorescent component and the concentration of the fluorescent component based on the difference generated by comparing the general substance value and the fluorescent component value.
물질구성 성분 판별부(240)는 일반물질 성분이 가시광선에 반응하는 값을 수치화(또는 이미지화)하여 일반물질 수치를 생성한다. 물질구성 성분 판별부(240)는 자외선차단성분이 자외선에 반응하는 값을 수치화(또는 이미지화 )하여 자외선차단 수치를 생성한다. 물질구성 성분 판별부(240)는 일반물질 수치와 자외선차단 수치를 비교하여 발생하는 차이를 기반으로 자외선차단성분의 도포 범위, 자외선차단성분의 농도 정보, 자외선차단성분의 차단성능 정보를 포함하는 물질구성 성분정보를 생성한다.The substance composition determining unit 240 generates a general substance value by digitizing (or imaging) the value of the general substance component in response to visible light. The substance composition determining unit 240 generates a UV blocking value by digitizing (or imaging) the value of the UV blocking component reacting with UV light. The substance composition determining unit 240 is a substance including the application range of the UV blocking component, the concentration information of the UV blocking component, and the blocking performance information of the UV blocking component based on the difference generated by comparing the general substance value with the UV blocking value. Create component information.
물질구성 성분 판별부(240)는 일반물질 성분이 가시광선에 반응하는 값을 수치화(또는 이미지화)하여 일반물질 수치를 생성한다. 물질구성 성분 판별부(240)는 적외선반응성분이 적외선에 반응하는 값을 수치화(또는 이미지화)하여 적외선반응 수치를 생성한다. 물질구성 성분 판별부(240)는 일반물질 수치와 적외선반응 수치를 비교하여 발생하는 차이를 기반으로 적외선반응성분의 도포 범위, 적외선반응성분의 농도 정보를 포함하는 물질구성 성분정보를 생성한다.The substance composition determining unit 240 generates a general substance value by digitizing (or imaging) the value of the general substance component in response to visible light. The substance composition determining unit 240 generates an infrared reaction value by numerically (or imaging) the value of the infrared reaction component reacting to infrared light. The substance composition determining unit 240 generates substance composition component information including information on the application range of the infrared reaction component and the concentration of the infrared reaction component based on the difference generated by comparing the general substance value and the infrared reaction value.
물질구성 성분 판별부(240)는 통신부(260)를 경유하여 시험물질 거치 및 도포부(120)로부터 수신된 시험물질(110)에 대한 기준 면적 상에 도포한 시료의 양과 두께를 기반으로 시험물질(110)로 조사하는 광원의 투과도를 계산하여 수치화하여 출력한다.The substance composition determining unit 240 is a test substance based on the amount and thickness of the sample applied on the reference area for the test substance 110 received from the application unit 120 through the communication unit 260 through the test substance. The transmittance of the light source irradiated with (110) is calculated and numerically output.
이미지 가시화부(250)는 물질구성 성분정보를 이미지로 가시화한다.The image visualization unit 250 visualizes the substance compositional component information as an image.
이미지 가시화부(250)는 일반물질 수치와 형광성분 수치 간의 차이를 이미지로 가시화하여 출력한다. 이미지 가시화부(250)는 일반물질 수치와 자외선차단 수치 간의 차이를 이미지로 가시화하여 출력한다. 이미지 가시화부(250)는 일반물질 수치와 적외선반응 수치 간의 차이를 이미지로 가시화하여 출력한다.The image visualization unit 250 visualizes and outputs a difference between a general substance value and a fluorescence component value as an image. The image visualization unit 250 visualizes and outputs a difference between a general substance value and a UV blocking value as an image. The image visualization unit 250 visualizes and outputs a difference between a general substance value and an infrared reaction value as an image.
통신부(260)는 단말기(270)와 연동하여 사용자의 입력에 의해서 형광성분, 자외선차단성분, 적외선반응성분 중 적어도 하나 이상의 성분 정보를 선택할 수 있도록 한다. 통신부(260)는 유무선통신 또는 근거리통신을 이용하여 단말기(270)와 연동하여 데이터를 송수신한다. The communication unit 260 interlocks with the terminal 270 to select at least one component information among a fluorescent component, a UV blocking component, and an infrared reaction component by a user input. The communication unit 260 transmits and receives data in cooperation with the terminal 270 using wired/wireless communication or short-range communication.
단말기(270)는 사용자의 키 조작에 따라 네트워크를 경유하여 화학성분 검사장치(130) 내의 통신부(260)와 통신을 수행하는 전자 기기를 의미한다. The terminal 270 refers to an electronic device that communicates with the communication unit 260 in the chemical composition inspection device 130 via a network according to a user's key operation.
단말기(270)는 네트워크를 경유하여 화학성분 검사장치(130)와 통신하기 위한 프로그램 또는 프로토콜을 저장하기 위한 메모리, 해당 프로그램을 실행하여 연산 및 제어하기 위한 마이크로프로세서 등을 구비한다. 단말기(270)는 스마트폰(Smart Phone), 태블릿(Tablet), 랩톱(Laptop), 개인용 컴퓨터(PC: Personal Computer), 개인 휴대 단말기(PDA: Personal Digital Assistant), 휴대형 멀티미디어 플레이어(PMP: Portable Multimedia Player), 무선 통신 단말기(Wireless Communication Terminal), 미디어 플레이어 등과 같은 전자 기기일 수 있다. The terminal 270 includes a memory for storing a program or protocol for communicating with the chemical composition inspection device 130 via a network, a microprocessor for executing a corresponding program, and calculating and controlling the program. The terminal 270 includes a smart phone, a tablet, a laptop, a personal computer (PC), a personal digital assistant (PDA), and a portable multimedia player (PMP). Player), a wireless communication terminal (Wireless Communication Terminal), a media player, or the like.
단말기(270)는 각종 기기 또는 유무선 네트워크와 통신을 수행하기 위한 통신 모뎀 등의 통신 장치, 화학성분 검출 애플리케이션과 데이터를 저장하기 위한 메모리, 화학성분 검출 애플리케이션을 실행하여 연산 및 제어하기 위한 마이크로프로세서 등을 구비하는 전자디바이스를 의미한다.The terminal 270 is a communication device such as a communication modem for performing communication with various devices or a wired or wireless network, a memory for storing chemical component detection applications and data, a microprocessor for calculating and controlling chemical component detection applications. It means an electronic device having a.
도 3은 본 실시예에 따른 화학성분 검출 방법을 설명하기 위한 순서도이다.3 is a flow chart for explaining the chemical component detection method according to the present embodiment.
시험물질 거치 및 도포부(120)는 시험물질을 기 설정된 각도로 거치하며, 시험물질(110) 상에 추가적인 화학성분(암막, 시료)을 도포한다(S310). 단계 S310에서, 시험물질 거치 및 도포부(120)는 구비된 거치대에 단일 대상물 또는 두 개 이상의 복수의 대상물을 고정시킨다. 시험물질 거치 및 도포부(120)는 화학성분 검사장치(130)가 복수의 대상물을 비교 관찰하거나 단일 대상물을 관찰할 수 있도록 거치대의 길이 및 높이를 조절한다.The test material mounting and coating unit 120 mounts the test material at a predetermined angle, and applies additional chemical components (dark film, sample) on the test material 110 (S310). In step S310, the test material is mounted and the application unit 120 fixes a single object or a plurality of two or more objects to the provided cradle. The test material mounting and coating unit 120 adjusts the length and height of the holder so that the chemical composition inspection device 130 can compare a plurality of objects or observe a single object.
화학성분 검사장치(130)는 시험물질로 복수의 광(光)을 조사한다(S320). 단계 S320에서, 화학성분 검사장치(130)는 외부 광원을 차폐한 상태에서 시험물질(110)로 가시광(Visible light), 적외선(Infrared Ray) 및 자외선(Ultraviolet Ray) 중 적어도 하나 이상의 광을 조사한다.The chemical composition inspection device 130 irradiates a plurality of light with a test material (S320). In step S320, the chemical composition inspecting device 130 irradiates at least one of visible light, infrared light, and ultraviolet light with the test material 110 while shielding the external light source. .
화학성분 검사장치(130)는 단말기(270)와 연동하여 사용자의 입력에 의해서 형광성분, 자외선차단성분, 적외선반응성분 중 적어도 하나 이상의 성분 정보를 선택할 수 있도록 한다. 화학성분 검사장치(130)는 유무선통신 또는 근거리통신을 이용하여 단말기(270)와 연동하여 데이터를 송수신한다. The chemical component inspection device 130 interlocks with the terminal 270 to select at least one component information of a fluorescent component, a UV blocking component, and an infrared reaction component by a user input. The chemical component inspection device 130 transmits and receives data in connection with the terminal 270 using wired/wireless communication or short-range communication.
화학성분 검사장치(130)는 복수의 광이 조사된 시험물질 이미지를 획득한다(S330). 단계 S330에서, 화학성분 검사장치(130)는 가시광(Visible light), 적외선(Infrared Ray) 및 자외선(Ultraviolet Ray) 중 적어도 하나 이상의 광을 조사된 시험물질 이미지를 획득한다.The chemical composition inspection device 130 acquires an image of a test substance irradiated with a plurality of lights (S330). In step S330, the chemical composition inspecting device 130 acquires a test substance image irradiated with at least one of visible light, infrared light, and ultraviolet light.
화학성분 검사장치(130)는 복수의 광이 조사된 시험물질 이미지로부터 시험물질(110)을 이루고 있는 물질에 대응하는 일반성분 정보, 화학성분 정보를 획득한다(S340).The chemical composition inspecting device 130 acquires general component information and chemical component information corresponding to the substances constituting the test substance 110 from the test substance images irradiated with a plurality of lights (S340).
단계 S340에서, 화학성분 검사장치(130)는 가시광이 조사된 시험물질 이미지로부터 일반물질 성분을 일반성분 정보로 획득한다. 화학성분 검사장치(130)는 자외선이 조사된 시험물질 이미지로부터 형광성분, 자외선차단성분(자외선반응성분)을 화학성분 정보로 획득한다. 화학성분 검사장치(130)는 적외선이 조사된 시험물질 이미지로부터 적외선반응성분을 화학성분 정보로 획득한다.In step S340, the chemical component inspection device 130 obtains the general substance component from the test substance image irradiated with visible light as general component information. The chemical composition inspecting device 130 obtains fluorescence components and UV blocking components (ultraviolet rays reacting components) as chemical component information from the test substance image irradiated with ultraviolet rays. The chemical component inspection device 130 acquires infrared reaction components as chemical component information from the test substance image irradiated with infrared rays.
화학성분 검사장치(130)는 일반성분 정보, 화학성분 정보를 근거로 물질구성 성분정보를 판별한다(S350). 단계 S350에서, 화학성분 검사장치(130)는 일반성분 정보, 화학성분 정보를 근거로 일반성분과 구분되는 화학성분의 도포 범위, 화학성분의 농도 정보, 화학성분의 차단성능 정보를 판별하여 물질구성 성분정보로 생성한다.The chemical component inspection device 130 determines the substance composition component information based on the general component information and the chemical component information (S350). In step S350, the chemical composition inspection device 130 determines the composition of the substance by determining the application range of chemical components, concentration information of chemical components, and blocking performance information of chemical components based on the general component information and the chemical component information. It is created with ingredient information.
다시 말해, 화학성분 검사장치(130)는 일반물질 성분이 가시광선에 반응하는 값을 수치화(또는 이미지화)하여 일반물질 수치를 생성한다. 화학성분 검사장치(130)는 형광성분이 자외선에 반응하는 값을 수치화(또는 이미지화)하여 형광성분 수치를 생성한다. 화학성분 검사장치(130)는 일반물질 수치와 형광성분 수치를 비교하여 발생하는 차이를 기반으로 형광성분의 도포 범위, 형광성분의 농도 정보를 포함하는 물질구성 성분정보를 생성한다.In other words, the chemical component inspection device 130 generates a general substance value by digitizing (or imaging) the value of the general substance component in response to visible light. The chemical component inspection device 130 generates a fluorescence component value by digitizing (or imaging) the value of the fluorescence component reacting with ultraviolet rays. The chemical component inspection device 130 generates substance composition component information including information on the application range of the fluorescent component and the concentration of the fluorescent component based on the difference generated by comparing the general substance value and the fluorescent component value.
화학성분 검사장치(130)는 일반물질 성분이 가시광선에 반응하는 값을 수치화(또는 이미지화)하여 일반물질 수치를 생성한다. 물질구성 성분 판별부(240)는 자외선차단성분이 자외선에 반응하는 값을 수치화(또는 이미지화 )하여 자외선차단 수치를 생성한다. 화학성분 검사장치(130)는 일반물질 수치와 자외선차단 수치를 비교하여 발생하는 차이를 기반으로 자외선차단성분의 도포 범위, 자외선차단성분의 농도 정보, 자외선차단성분의 차단성능 정보를 포함하는 물질구성 성분정보를 생성한다.The chemical component inspection device 130 generates a general substance value by digitizing (or imaging) the value of the general substance component in response to visible light. The substance composition determining unit 240 generates a UV blocking value by digitizing (or imaging) the value of the UV blocking component reacting with UV light. The chemical composition inspection device 130 is based on the difference generated by comparing the general material value and the UV blocking value, and the composition of the material includes the application range of the UV blocking component, the concentration information of the UV blocking component, and the blocking performance information of the UV blocking component. Create ingredient information.
화학성분 검사장치(130)는 일반물질 성분이 가시광선에 반응하는 값을 수치화(또는 이미지화)하여 일반물질 수치를 생성한다. 화학성분 검사장치(130)는 적외선반응성분이 적외선에 반응하는 값을 수치화(또는 이미지화)하여 적외선반응 수치를 생성한다. 화학성분 검사장치(130)는 일반물질 수치와 적외선반응 수치를 비교하여 발생하는 차이를 기반으로 적외선반응성분의 도포 범위, 적외선반응성분의 농도 정보를 포함하는 물질구성 성분정보를 생성한다.The chemical component inspection device 130 generates a general substance value by digitizing (or imaging) the value of the general substance component in response to visible light. The chemical component inspection device 130 generates an infrared reaction value by digitizing (or imaging) the value of the infrared reaction component reacting with infrared light. The chemical component inspection device 130 generates substance composition component information including information on the application range of the infrared reaction component and concentration information of the infrared reaction component based on the difference generated by comparing the general substance value and the infrared reaction value.
화학성분 검사장치(130)는 물질구성 성분정보를 이미지로 가시화한다(S360). 단계 S360에서, 화학성분 검사장치(130)는 일반물질 수치와 형광성분 수치 간의 차이를 이미지로 가시화하여 출력한다. 화학성분 검사장치(130)는 일반물질 수치와 자외선차단 수치 간의 차이를 이미지로 가시화하여 출력한다. 화학성분 검사장치(130)는 일반물질 수치와 적외선반응 수치 간의 차이를 이미지로 가시화하여 출력한다.The chemical composition inspection device 130 visualizes the substance composition information as an image (S360). In step S360, the chemical component inspection device 130 visualizes and outputs a difference between the general substance value and the fluorescence component value as an image. The chemical component inspection device 130 visualizes and outputs a difference between a general substance value and a UV blocking value as an image. The chemical component inspection device 130 visualizes and outputs a difference between a general substance value and an infrared reaction value as an image.
화학성분 검사장치(130)는 단말기(270)와 연동하여 가시화된 이미지를 단말기(270)에서 확인할 수 있도록 한다.The chemical composition inspection device 130 interlocks with the terminal 270 so that the visualized image can be confirmed in the terminal 270.
도 3에서는 단계 S310 내지 단계 S360을 순차적으로 실행하는 것으로 기재하고 있으나, 반드시 이에 한정되는 것은 아니다. 다시 말해, 도 3에 기재된 단계를 변경하여 실행하거나 하나 이상의 단계를 병렬적으로 실행하는 것으로 적용 가능할 것이므로, 도 3은 시계열적인 순서로 한정되는 것은 아니다.Although FIG. 3 describes that steps S310 to S360 are sequentially executed, the present invention is not limited thereto. In other words, since the steps described in FIG. 3 may be changed and executed or one or more steps may be executed in parallel, FIG. 3 is not limited to a time series sequence.
전술한 바와 같이, 도 3에 기재된 본 실시예에 따른 화학성분 검출 방법은 프로그램으로 구현되고 컴퓨터로 읽을 수 있는 기록매체에 기록될 수 있다. 본 실시예에 따른 화학성분 검출 방법을 구현하기 위한 프로그램이 기록되고 컴퓨터가 읽을 수 있는 기록매체는 컴퓨터 시스템에 의하여 읽혀질 수 있는 데이터가 저장되는 모든 종류의 기록장치를 포함한다.As described above, the chemical component detection method according to the present embodiment described in FIG. 3 may be implemented as a program and recorded in a computer-readable recording medium. The program for implementing the chemical component detection method according to the present embodiment is recorded, and the computer-readable recording medium includes all types of recording devices in which data readable by a computer system is stored.
도 4a, 4b, 4c는 본 실시예에 따른 형광 반응 성분을 검출하는 과정을 나타낸 예시도이다.4A, 4B, and 4C are exemplary views showing a process of detecting a fluorescent reaction component according to the present embodiment.
도 4a에 도시된 바와 같이, 사용자는 단말기(270)에 설치된 화학성분 검출 애플리케이션을 이용하여 ‘형광물질관찰’을 선택한다. 단말기(270)는 화학성분 검사장치(130)로 형광물질관찰 요청신호를 전송하고, 화학성분 검사장치(130)로부터 형광물질관찰 이미지를 수신하여 디스플레이한다. 화학성분 검사장치(130)는 단말기(270)로부터 형광물질관찰 요청신호를 수신하면 시험물질 거치 및 도포부(120)에 거치된 시험물질(110)로 자외선을 조사한다.As shown in FIG. 4A, the user selects'fluorescence observation' using a chemical composition detection application installed in the terminal 270. The terminal 270 transmits a fluorescent substance observation request signal to the chemical component inspection apparatus 130, and receives and displays a fluorescent substance observation image from the chemical component inspection apparatus 130. When the chemical component inspection device 130 receives a request signal for fluorescence observation from the terminal 270, it irradiates ultraviolet rays to the test substance 110 mounted on the test substance mounting and coating unit 120.
도 4b에 도시된 바와 같이, 시험물질 거치 및 도포부(120)에 거치된 시험물질(110)이 ‘테스트 휴지A’와 ‘테스트 휴지B’인 경우, 화학성분 검사장치(130)는 ‘테스트 휴지A’와 ‘테스트 휴지B’로 자외선을 조사한다.As shown in FIG. 4B, when the test material 110 mounted on the test material mounting and coating unit 120 is a'test tissue A'and a'test tissue B', the chemical composition inspection device 130 may perform a'test Irradiate ultraviolet light with tissue A and test tissue B.
도 4c에 도시된 바와 같이, 화학성분 검사장치(130)는 ‘테스트 휴지A’와 ‘테스트 휴지B’에 대한 형광성분이 자외선에 반응하는 값을 수치화(또는 이미지화)하여 형광성분 수치를 생성한다.As shown in FIG. 4C, the chemical component inspection device 130 generates a fluorescence component value by digitizing (or imaging) the values of the fluorescence components for the'test tissue A'and the'test tissue B'in response to ultraviolet rays. .
화학성분 검사장치(130)는 ‘테스트 휴지A’에 대한 형광성분이 자외선에 반응하는 값을 '3383'으로 수치화하여 이미지와 함께 출력한다. 화학성분 검사장치(130)는 ‘테스트 휴지B’에 대한 형광성분이 자외선에 반응하는 값을 '5125'으로 수치화하여 이미지와 함께 출력한다. The chemical component inspection device 130 quantifies the value of the fluorescence component for'Test Rest A'that responds to ultraviolet rays as '3383' and outputs it together with the image. The chemical component inspection device 130 quantifies the value of the fluorescence component for'Test Rest B'that responds to ultraviolet rays as '5125' and outputs it together with the image.
화학성분 검사장치(130)는 ‘테스트 휴지A’에 대한 수치화 값(3383)과 ‘테스트 휴지B’에 대한 수치화 값(5125)를 비교한다. The chemical composition inspection device 130 compares the numerical value (3383) for'test pause A'and the numeric value (5125) for'test pause B'.
화학성분 검사장치(130)는 테스트 휴지 [A]가 테스트 휴지 [B] 보다 형광반응성분이 낮음은 것으로 확인한다. 화학성분 검사장치(130)는 테스트 휴지 [B]는 테스트 휴지 [A] 보다 형광반응성분이 더 높음 것으로 확인한다. The chemical composition inspection device 130 confirms that the test tissue [A] has a lower fluorescence reaction component than the test tissue [B]. The chemical composition inspection device 130 confirms that the test tissue [B] has a higher fluorescence reaction component than the test tissue [A].
이후, 화학성분 검사장치(130)는 ‘테스트 휴지A’와 ‘테스트 휴지B’로 가시광선을 조사한 후 일반물질 성분이 가시광선에 반응하는 값을 수치화(또는 이미지화)하여 일반물질 수치를 생성한다. 화학성분 검사장치(130)는 ‘테스트 휴지A’와 ‘테스트 휴지B’에 대한 일반물질 수치와 형광성분 수치를 비교하여 발생하는 차이를 기반으로 형광성분의 도포범위, 형광성분의 농도 정보를 포함하는 물질구성 성분정보를 생성한다.Subsequently, the chemical composition inspection device 130 irradiates visible light with'test rest A'and'test rest B', and then quantifies (or images) the value of the general material component reacting with the visible light to generate a general material value. . The chemical component inspection device 130 includes information on the application range of the fluorescent component and the concentration of the fluorescent component based on the difference generated by comparing the general substance values and the fluorescent component values for the'test tissue A'and the'test tissue B'. Create substance composition ingredient information.
도 5a, 5b, 5c는 본 실시예에 따른 자외선 차단 성분을 검출하는 과정을 나타낸 예시도이다.5A, 5B, and 5C are exemplary views showing a process of detecting a sunscreen component according to the present embodiment.
도 5a에 도시된 바와 같이, 사용자는 단말기(270)에 설치된 화학성분 검출 애플리케이션을 이용하여 ‘선크림관찰’을 선택한다. 단말기(270)는 화학성분 검사장치(130)로 선크림관찰 요청신호를 전송하고, 화학성분 검사장치(130)로부터 선크림관찰 이미지를 수신하여 디스플레이한다. 화학성분 검사장치(130)는 단말기(270)로부터 선크림관찰 요청신호를 수신하면 시험물질 거치 및 도포부(120)에 거치된 시험물질(110)로 자외선을 조사한다.As shown in FIG. 5A, the user selects “sunscreen observation” using a chemical composition detection application installed in the terminal 270. The terminal 270 transmits a sunscreen observation request signal to the chemical composition inspection device 130 and receives and displays the sunscreen observation image from the chemical composition inspection device 130. When the chemical component inspection device 130 receives the sunscreen observation request signal from the terminal 270, it irradiates ultraviolet rays to the test material 110 mounted on the test material mounting and coating unit 120.
도 5b에 도시된 바와 같이, 시험물질 거치 및 도포부(120)에 거치된 시험물질(110)이 ‘선크림A’, ‘선크림B’, ‘선크림C’인 경우, 화학성분 검사장치(130)는 시험물질(110)에 도포된 ‘선크림A’, ‘선크림B’, ‘선크림C’로 자외선을 조사한다.As shown in FIG. 5B, when the test substance 110 mounted on the test substance mounting and coating unit 120 is'Sun Cream A','Sun Cream B', or'Sun Cream C', the chemical composition inspection device 130 Is irradiated with ultraviolet rays with'Sun Cream A','Sun Cream B', and'Sun Cream C'applied to the test material 110.
도 5c에 도시된 바와 같이, 화학성분 검사장치(130)는 ‘선크림A’, ‘선크림B’, ‘선크림C’ 각각에 대한 선크림 성분이 자외선에 반응하는 값을 수치화(또는 이미지화)하여 형광성분 수치를 생성한다.As shown in FIG. 5C, the chemical component inspection device 130 quantifies (or images) the value of the sunscreen components for each of the'sunscreen A', the'sunscreen B', and the'sunscreen C'in response to ultraviolet rays (or imaging). Create a number.
화학성분 검사장치(130)는 ‘선크림A’에 대한 자외선차단성분이 자외선에 반응하는 값을 이미지화하여 출력한다. 화학성분 검사장치(130)는 ‘선크림B’에 대한 자외선차단성분이 자외선에 반응하는 값을 이미지화하여 출력한다. 화학성분 검사장치(130)는 ‘선크림C’에 대한 자외선차단성분이 자외선에 반응하는 값을 이미지화하여 출력한다. The chemical component inspection device 130 images and outputs a value of the sunscreen component for'sun cream A'responding to ultraviolet rays. The chemical component inspection device 130 images and outputs a value of the sun blocking component for'sun cream B'reacting with ultraviolet rays. The chemical component inspection device 130 images and outputs a value of the UV blocking component for'Sun Cream C'reacting with UV rays.
화학성분 검사장치(130)는 ‘선크림A’가 자외선에 반응하는 값을 이미지화값, ‘선크림B’가 자외선에 반응하는 값을 이미지화값, ‘선크림C’가 자외선에 반응하는 값을 이미지화값을 서로 비교한다. The chemical component inspection device 130 displays the value of'sun cream A'responding to ultraviolet light, the value of'sun cream B'responding to ultraviolet light, and the value of'sun cream C'responding to ultraviolet light. Compare with each other.
화학성분 검사장치(130)는 테스트 선크림 [A]가 테스트 선크림 [B],[C]보다 상대적으로 선크림 농도가 낮은 것으로 확인한다. 화학성분 검사장치(130)는 테스트 선크림 [B]가 테스트 선크림 [A]보다 상대적으로 선크림 농도가 좋은 것으로 확인한다. 화학성분 검사장치(130)는 테스트 선크림 [C]가 테스트 선크림 [A], [B]보다 상대적으로 선크림 농도가 높은 것으로 확인한다. The chemical component inspection device 130 confirms that the test sunscreen [A] has a relatively lower sunscreen concentration than the test sunscreens [B] and [C]. The chemical composition inspection device 130 confirms that the test sunscreen [B] has a relatively higher sunscreen concentration than the test sunscreen [A]. The chemical component inspection device 130 confirms that the test sunscreen [C] has a relatively higher sunscreen concentration than the test sunscreens [A] and [B].
이후, 화학성분 검사장치(130)는 ‘선크림A’, ‘선크림B’, ‘선크림C’ 각각으로 가시광선을 조사한 후 일반물질 성분이 가시광선에 반응하는 값을 수치화(또는 이미지화)하여 일반물질 수치를 생성한다. 화학성분 검사장치(130)는 ‘선크림A’, ‘선크림B’, ‘선크림C’에 대한 일반물질 수치와 형광성분 수치를 비교하여 발생하는 차이를 기반으로 형광성분의 도포범위, 형광성분의 농도 정보를 포함하는 물질구성 성분정보를 생성한다.Subsequently, the chemical component inspection device 130 irradiates visible light with'Sun Cream A','Sun Cream B', and'Sun Cream C', respectively, and then quantifies (or images) the value of the general material component reacting with the visible light. Create a number. The chemical component inspection device 130 is based on the difference generated by comparing the general substance values and the fluorescence component values for'Sun Cream A','Sun Cream B', and'Sun Cream C', and the concentration of the fluorescence component is applied. Create substance composition information including information.
이상의 설명은 본 실시예의 기술 사상을 예시적으로 설명한 것에 불과한 것으로서, 본 실시예가 속하는 기술 분야에서 통상의 지식을 가진 자라면 본 실시예의 본질적인 특성에서 벗어나지 않는 범위에서 다양한 수정 및 변형이 가능할 것이다. 따라서, 본 실시예들은 본 실시예의 기술 사상을 한정하기 위한 것이 아니라 설명하기 위한 것이고, 이러한 실시예에 의하여 본 실시예의 기술 사상의 범위가 한정되는 것은 아니다. 본 실시예의 보호 범위는 아래의 청구범위에 의하여 해석되어야 하며, 그와 동등한 범위 내에 있는 모든 기술 사상은 본 실시예의 권리범위에 포함되는 것으로 해석되어야 할 것이다.The above description is merely illustrative of the technical idea of the present embodiment, and those skilled in the art to which this embodiment belongs may be capable of various modifications and variations without departing from the essential characteristics of the present embodiment. Therefore, the present embodiments are not intended to limit the technical spirit of the present embodiment, but to explain, and the scope of the technical spirit of the present embodiment is not limited by these embodiments. The protection scope of the present embodiment should be interpreted by the claims below, and all technical spirits within the equivalent range should be interpreted as being included in the scope of the present embodiment.

Claims (15)

  1. 일반물질 또는 화학물질로 이루어지는 시험물질;Test substances consisting of general substances or chemical substances;
    상기 시험물질을 기 설정된 각도로 거치하며, 상기 시험물질 상에 추가적인 화학성분을 도포하는 시험물질 거치 및 도포부;A test substance mounting and coating unit which mounts the test substance at a predetermined angle and applies additional chemical components on the test substance;
    상기 시험물질로 서로 다른 특정 파장을 갖는 복수의 광(光)을 조사하고, 자외선 환경에서 형광증백제에 대응하는 반응정도값과 적외선 환경에서 적외선 흡수, 반응 잉크에 대응하는 반응정도값을 수치화하여, 상기 복수의 광이 조사된 시험물질 이미지를 획득하고, 상기 복수의 광이 조사된 시험물질 이미지로부터 상기 시험물질을 이루고 있는 물질에 대응하는 일반성분 정보, 화학성분 정보를 획득하고, 상기 일반성분 정보, 상기 화학성분 정보를 근거로 물질구성 성분정보를 판별하는 화학성분 검사장치를 포함하는 화학성분 검출 시스템.By irradiating a plurality of light having different specific wavelengths with the test substance, the reaction accuracy values corresponding to the fluorescent brightener in the ultraviolet environment, the infrared absorption values in the infrared environment, and the reaction accuracy values corresponding to the reaction ink are numerically quantified. , Obtaining a test substance image irradiated with the plurality of light, obtaining general component information and chemical component information corresponding to a substance constituting the test substance from the test substance image irradiated with the plurality of light, and obtaining the general component A chemical composition detection system comprising a chemical composition inspection device for discriminating substance composition information based on information and the chemical composition information.
  2. 제1항에 있어서,According to claim 1,
    상기 화학성분 검사장치는,The chemical composition inspection device,
    상기 시험물질 거치 및 도포부로부터 수신된 정보를 기반으로 상기 시험물질로 조사하는 광원의 투과도를 계산하여 수치화하고, 상기 광원의 투과도에 따라 결정된 광량을 상기 물질로 조사하는 것을 특징으로 하는 화학성분 검출 시스템.Based on the information received from the test substance mounting and coating unit, the transmittance of the light source irradiated with the test substance is calculated and quantified, and the chemical component detection characterized by irradiating the light amount determined according to the transmittance of the light source with the substance system.
  3. 제1항에 있어서,According to claim 1,
    상기 화학성분 검사장치는,The chemical composition inspection device,
    외부 광원을 차폐한 상태에서 상기 시험물질로 가시광(Visible light), 적외선(Infrared Ray) 및 자외선(Ultraviolet Ray) 중 적어도 하나 이상의 광을 조사하여 시험물질 이미지를 획득하고,Obtain a test substance image by irradiating at least one of visible light, infrared ray, and ultraviolet ray with the test substance while shielding an external light source,
    상기 일반성분 정보, 상기 화학성분 정보를 근거로 상기 일반성분과 구분되는 상기 화학성분의 도포 범위, 상기 화학성분의 농도 정보, 상기 화학성분의 차단성능 정보를 판별하여 상기 물질구성 성분정보로 생성하는 것을 특징으로 하는 화학성분 검출 시스템.Based on the general component information and the chemical component information, the application range of the chemical component to be distinguished from the general component, the concentration information of the chemical component, and the blocking performance information of the chemical component are determined to generate the substance composition component information Chemical component detection system characterized in that.
  4. 제3항에 있어서,According to claim 3,
    상기 화학성분 검사장치는,The chemical composition inspection device,
    상기 가시광이 조사된 시험물질 이미지로부터 일반물질 성분을 상기 일반성분 정보로 획득하고, 상기 자외선이 조사된 시험물질 이미지로부터 형광성분, 자외선차단성분을 상기 화학성분 정보로 획득한 후 상기 적외선이 조사된 시험물질 이미지로부터 적외선반응성분을 상기 화학성분 정보로 획득하는 것을 특징으로 하는 화학성분 검출 시스템.After obtaining a general substance component from the test substance image irradiated with the visible light as the general component information, and obtaining a fluorescent component and a sunscreen component from the test substance image irradiated with the ultraviolet ray as the chemical component information, the infrared ray is irradiated. A chemical component detection system, characterized in that the infrared reaction component is obtained from the test substance image as the chemical component information.
  5. 제4항에 있어서,According to claim 4,
    상기 화학성분 검사장치는,The chemical composition inspection device,
    상기 일반물질 성분이 상기 가시광에 반응하는 값을 수치화 또는 이미지화하여 일반물질 수치를 생성하고, 상기 형광성분이 상기 자외선에 반응하는 값을 수치화 또는 이미지화하여 형광성분 수치를 생성한 후 상기 일반물질 수치와 상기 형광성분 수치를 비교하여 발생하는 차이를 기반으로 상기 형광성분의 도포 범위, 상기 형광성분의 농도 정보를 포함하는 상기 물질구성 성분정보를 생성하는 것을 특징으로 하는 화학성분 검출 시스템.The value of the general substance component reacts to the visible light is digitized or imaged to generate a general substance value, and the value of the fluorescent component reacts to the ultraviolet ray is quantified or imaged to generate a fluorescence component value and then the general substance value is A chemical component detection system, characterized in that the substance composition component information including the application range of the fluorescent component and the concentration information of the fluorescent component is generated based on the difference generated by comparing the fluorescent component values.
  6. 제5항에 있어서,The method of claim 5,
    상기 화학성분 검사장치는,The chemical composition inspection device,
    상기 일반물질 수치와 상기 형광성분 수치 간의 차이를 이미지로 가시화하여 출력하는 것을 특징으로 하는 화학성분 검출 시스템.A chemical component detection system characterized in that the difference between the general substance value and the fluorescent component value is visualized and output.
  7. 제4항에 있어서,According to claim 4,
    상기 화학성분 검사장치는,The chemical composition inspection device,
    상기 일반물질 성분이 상기 가시광에 반응하는 값을 수치화 또는 이미지화하여 일반물질 수치를 생성하고, 상기 자외선차단성분이 자외선에 반응하는 값을 수치화 또는 이미지화하여 자외선차단 수치를 생성한 후 상기 일반물질 수치와 상기 자외선차단 수치를 비교하여 발생하는 차이를 기반으로 상기 자외선차단성분의 도포 범위, 상기 자외선차단성분의 농도 정보, 상기 자외선차단성분의 차단성능 정보를 포함하는 상기 물질구성 성분정보를 생성하는 것을 특징으로 하는 화학성분 검출 시스템.The value of the general substance component reacts to the visible light is digitized or imaged to generate a general substance value, and the value of the ultraviolet ray blocking component reacts to ultraviolet rays is quantified or imaged to generate a sunscreen value and then the value of the general substance is Based on the difference generated by comparing the UV blocking value, the material composition component information including the application range of the UV blocking component, concentration information of the UV blocking component, and blocking performance information of the UV blocking component is generated. Chemical composition detection system.
  8. 제7항에 있어서,The method of claim 7,
    상기 화학성분 검사장치는,The chemical composition inspection device,
    상기 일반물질 수치와 상기 자외선차단 수치 간의 차이를 이미지로 가시화하여 출력하는 것을 특징으로 하는 화학성분 검출 시스템.A chemical component detection system characterized in that the difference between the general substance value and the UV blocking value is visualized and output as an image.
  9. 제4항에 있어서,According to claim 4,
    상기 화학성분 검사장치는,The chemical composition inspection device,
    상기 일반물질 성분이 상기 가시광에 반응하는 값을 수치화 또는 이미지화하여 일반물질 수치를 생성하고, 상기 적외선반응성분이 상기 적외선에 반응하는 값을 수치화 또는 이미지화하여 적외선반응 수치를 생성한 후 상기 일반물질 수치와 상기 적외선반응 수치를 비교하여 발생하는 차이를 기반으로 상기 적외선반응성분의 도포 범위, 상기 적외선반응성분의 농도 정보를 포함하는 상기 물질구성 성분정보를 생성하는 것을 특징으로 하는 화학성분 검출 시스템.The value of the general substance component reacts to the visible light is digitized or imaged to generate a general substance value, and the value of the infrared reaction component reacts to the infrared ray is quantified or imaged to generate an infrared reaction value and then the general substance value is generated. And a chemical composition detection system characterized by generating the composition information of the substance including the range of application of the infrared reaction component and concentration information of the infrared reaction component based on the difference generated by comparing the infrared reaction values.
  10. 제9항에 있어서,The method of claim 9,
    상기 화학성분 검사장치는,The chemical composition inspection device,
    상기 일반물질 수치와 상기 적외선반응 수치 간의 차이를 이미지로 가시화하여 출력하는 것을 특징으로 하는 화학성분 검출 시스템.A chemical component detection system characterized in that the difference between the general substance value and the infrared reaction value is visualized and output as an image.
  11. 제1항에 있어서,According to claim 1,
    상기 화학성분 검사장치는,The chemical composition inspection device,
    사용자의 입력에 의해서 형광성분, 자외선차단성분, 적외선반응성분 중 적어도 하나 이상의 성분 정보를 선택할 수 있도록 하는 인터페이스를 포함하는 것을 특징으로 하는 화학성분 검출 시스템.A chemical component detection system comprising an interface for selecting at least one component information of a fluorescent component, a UV blocking component, and an infrared reaction component by a user input.
  12. 제1항에 있어서,According to claim 1,
    상기 시험물질 거치 및 도포부는,The test material mounting and coating unit,
    상기 시험물질 상에 화학성분을 도포할 때, 상기 시험물질의 동일한 기준 면적에 동일한 화학성분의 도포 두께를 균일하도록 제어하는 것을 특징으로 하는 화학성분 검출 시스템. When applying a chemical component on the test substance, the chemical component detection system characterized in that to control the coating thickness of the same chemical component to the same reference area of the test substance to be uniform.
  13. 제1항에 있어서,According to claim 1,
    상기 화학성분 검사장치는,The chemical composition inspection device,
    복수의 상기 시험물질에 대해 상기 복수의 광이 조사된 시험물질 이미지를 각각 획득하며, 상기 복수의 광이 조사된 시험물질 이미지로부터 상기 시험물질을 이루고 있는 물질에 대응하는 일반성분을 형광성분, 자외선차단성분과 각각 비교한 판별 결과를 수치화하여 출력하는 것을 특징으로 하는 화학성분 검출 시스템.For the plurality of test substances, images of the test substances irradiated with the plurality of light are respectively obtained, and a general component corresponding to the material constituting the test substance from the image of the test substance irradiated with the plurality of light is a fluorescent component and ultraviolet light. A chemical component detection system characterized by numerically outputting a discrimination result compared to each of the blocking components.
  14. 제1항에 있어서,According to claim 1,
    상기 시험물질 거치 및 도포부는 상기 시험물질에 자외선차단성분을 도포할 때, 기준 면적 상에 도포한 시료의 양과 두께를 측정하여 상기 화학성분 검사장치로 전송하며, 상기 화학성분 검사장치는 상기 기준 면적 상에 도포한 시료의 양과 두께를 기반으로 상기 시험물질로 조사하는 광원의 투과도를 계산하여 수치화하는 것을 특징으로 하는 화학성분 검출 시스템When the test material is mounted and the coating unit applies the UV blocking component to the test material, the amount and thickness of the sample applied on the reference area are measured and transmitted to the chemical composition inspection device, and the chemical composition inspection device is the reference area Chemical component detection system characterized by calculating and quantifying the transmittance of the light source irradiated with the test substance based on the amount and thickness of the sample applied on the image
  15. 일반물질 또는 화학물질로 이루어지는 시험물질을 기 설정된 각도로 거치하며, 상기 시험물질 상에 추가적인 화학성분을 도포하는 과정;A process of applying a test substance made of a general substance or a chemical substance at a predetermined angle, and applying additional chemical components on the test substance;
    상기 시험물질로 서로 다른 특정 파장을 갖는 복수의 광(光)을 조사하는 과정; Irradiating a plurality of light having different specific wavelengths with the test material;
    자외선 환경에서 형광증백제에 대응하는 반응정도값과 적외선 환경에서 적외선 흡수, 반응 잉크에 대응하는 반응정도값을 수치화하여, 상기 복수의 광이 조사된 시험물질 이미지를 획득하는 과정; Obtaining a test substance image irradiated with the plurality of light by numerically quantifying a reaction degree value corresponding to a fluorescent brightener in an ultraviolet environment and an infrared absorption value in a infrared environment and a reaction degree value corresponding to a reaction ink;
    상기 복수의 광이 조사된 시험물질 이미지로부터 상기 시험물질을 이루고 있는 물질에 대응하는 일반성분 정보, 화학성분 정보를 획득하는 과정; 및Obtaining general component information and chemical component information corresponding to substances constituting the test substance from the test substance images irradiated with the plurality of lights; And
    상기 일반성분 정보, 상기 화학성분 정보를 근거로 물질구성 성분정보를 판별하는 과정;을 포함하고,Including the general component information, the process of determining the substance composition component information based on the chemical component information; includes,
    상기 화학성분을 도포하는 과정에서 상기 시험물질에 자외선차단성분을 도포할 때, 기준 면적 상에 도포한 시료의 양과 두께를 측정하여 화학성분 검사장치로 전송하며, When the UV blocking component is applied to the test substance in the process of applying the chemical component, the amount and thickness of the sample applied on the reference area are measured and transmitted to the chemical component inspection device,
    상기 화학성분 검사장치는 상기 기준 면적 상에 도포한 시료의 양과 두께를 기반으로 상기 시험물질로 조사하는 광원의 투과도를 계산하여 수치화하는 것을 특징으로 하는 화학성분 검출 방법.The chemical component inspection device is a chemical component detection method characterized in that by calculating the transmittance of the light source irradiated with the test substance based on the amount and thickness of the sample applied on the reference area.
PCT/KR2020/000117 2019-01-08 2020-01-03 Method and apparatus for detecting chemical components WO2020145580A1 (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
KR1020190002277A KR101984045B1 (en) 2019-01-08 2019-01-08 Method and Apparatus for Detecting Chemical Composition
KR10-2019-0002277 2019-01-08

Publications (1)

Publication Number Publication Date
WO2020145580A1 true WO2020145580A1 (en) 2020-07-16

Family

ID=67951677

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/KR2020/000117 WO2020145580A1 (en) 2019-01-08 2020-01-03 Method and apparatus for detecting chemical components

Country Status (2)

Country Link
KR (1) KR101984045B1 (en)
WO (1) WO2020145580A1 (en)

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR101984045B1 (en) * 2019-01-08 2019-09-03 주식회사 인시스 Method and Apparatus for Detecting Chemical Composition

Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR20080062796A (en) * 2006-12-29 2008-07-03 노틸러스효성 주식회사 Method and apparatus for discriminating paper medium having ultra-violet reaction material
US20130226470A1 (en) * 2010-12-16 2013-08-29 Sumitomo Rubber Industries, Ltd. Deterioration analysis method
KR20150036207A (en) * 2012-06-28 2015-04-07 퀵 엘엘씨 MOBILE SMART DEVICE INFRARED LIGHT MEASURING APPARATUS, πMETHOD, AND SYSTEM FOR ANALYZING SUBSTANCES
KR20160129170A (en) * 2015-04-29 2016-11-09 코스맥스 주식회사 Evaluation method for cleansing effect by fluorescence analysis
KR101743125B1 (en) * 2017-02-27 2017-06-02 주식회사 쉘파스페이스 System for measuring an image-based component using light emitting apparatus having variable wavelengths and a method thereof, and a method of crop cultivating using the same
KR101984045B1 (en) * 2019-01-08 2019-09-03 주식회사 인시스 Method and Apparatus for Detecting Chemical Composition

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR20080062796A (en) * 2006-12-29 2008-07-03 노틸러스효성 주식회사 Method and apparatus for discriminating paper medium having ultra-violet reaction material
US20130226470A1 (en) * 2010-12-16 2013-08-29 Sumitomo Rubber Industries, Ltd. Deterioration analysis method
KR20150036207A (en) * 2012-06-28 2015-04-07 퀵 엘엘씨 MOBILE SMART DEVICE INFRARED LIGHT MEASURING APPARATUS, πMETHOD, AND SYSTEM FOR ANALYZING SUBSTANCES
KR20160129170A (en) * 2015-04-29 2016-11-09 코스맥스 주식회사 Evaluation method for cleansing effect by fluorescence analysis
KR101743125B1 (en) * 2017-02-27 2017-06-02 주식회사 쉘파스페이스 System for measuring an image-based component using light emitting apparatus having variable wavelengths and a method thereof, and a method of crop cultivating using the same
KR101984045B1 (en) * 2019-01-08 2019-09-03 주식회사 인시스 Method and Apparatus for Detecting Chemical Composition

Also Published As

Publication number Publication date
KR101984045B1 (en) 2019-09-03

Similar Documents

Publication Publication Date Title
WO2016006727A1 (en) Cognitive function test device and method
WO2019107666A1 (en) Urine test strip comprising timer, and method for detecting and analyzing urine test strip
WO2020145580A1 (en) Method and apparatus for detecting chemical components
WO2016043397A1 (en) Glass defect detection method and apparatus using hyperspectral imaging technique
WO2020226473A1 (en) Additional tooth information providing method and apparatus therefor
WO2016159726A1 (en) Device for automatically sensing lesion location from medical image and method therefor
Wang et al. Automated classification of dual channel dental imaging of auto-fluorescence and white lightby convolutional neural networks
WO2018164551A1 (en) Device and method for analyzing water sample
WO2021066484A1 (en) Device and method for performing urinalysis
WO2019112090A1 (en) Composite imaging device for structural/functional images of tooth
WO2017135710A1 (en) Surface measurement apparatus and surface measurement method using multiple light sources
WO2019045282A1 (en) Universal reading device for rapid kits having different standards
WO2017204452A1 (en) Optical film defect detecting system and optical film defect detecting method
WO2022211402A1 (en) Atherosclerotic plaque tissue analysis method and device using multi-modal fusion image
EP0684476A1 (en) Titration simulation system and method
WO2018062595A1 (en) High-resolution implementation method of cell image stitching
WO2017150836A1 (en) Image generation system and method for real-time laryngeal videostroboscopy, high speed videolaryngoscopy, and plane scan digital kymography
KR101301931B1 (en) Method of Supporting the Differentiation of Corneocytes
WO2022108249A1 (en) Method, apparatus, and program for generating training data, and method for detecting foreign substance using same
WO2022203295A1 (en) Diagnosis system using fluorescence information and acidity information and diagnosis method using same
WO2020017755A1 (en) Apparatus and method for measuring surface of electronic device
JPH01250836A (en) Device and method for analyzing skin surface color tone
WO2023282612A1 (en) Ai device for automatically reading test results of plurality of diagnostic kits, and method therefor
WO2019088723A1 (en) Speckle inspection device and speckle amplification device
WO2021215898A1 (en) Electronic length measurement device

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 20738479

Country of ref document: EP

Kind code of ref document: A1

NENP Non-entry into the national phase

Ref country code: DE

122 Ep: pct application non-entry in european phase

Ref document number: 20738479

Country of ref document: EP

Kind code of ref document: A1