WO2021056444A1 - 微电流v脸按摩仪及控制*** - Google Patents

微电流v脸按摩仪及控制*** Download PDF

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Publication number
WO2021056444A1
WO2021056444A1 PCT/CN2019/108640 CN2019108640W WO2021056444A1 WO 2021056444 A1 WO2021056444 A1 WO 2021056444A1 CN 2019108640 W CN2019108640 W CN 2019108640W WO 2021056444 A1 WO2021056444 A1 WO 2021056444A1
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WO
WIPO (PCT)
Prior art keywords
micro
current
host
sheet
outer shell
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PCT/CN2019/108640
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English (en)
French (fr)
Inventor
侯荣华
范钊汉
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深圳市俪典完美科技有限公司
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Application filed by 深圳市俪典完美科技有限公司 filed Critical 深圳市俪典完美科技有限公司
Priority to PCT/CN2019/108640 priority Critical patent/WO2021056444A1/zh
Publication of WO2021056444A1 publication Critical patent/WO2021056444A1/zh

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    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61NELECTROTHERAPY; MAGNETOTHERAPY; RADIATION THERAPY; ULTRASOUND THERAPY
    • A61N1/00Electrotherapy; Circuits therefor
    • A61N1/18Applying electric currents by contact electrodes
    • A61N1/32Applying electric currents by contact electrodes alternating or intermittent currents
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61NELECTROTHERAPY; MAGNETOTHERAPY; RADIATION THERAPY; ULTRASOUND THERAPY
    • A61N1/00Electrotherapy; Circuits therefor
    • A61N1/18Applying electric currents by contact electrodes
    • A61N1/32Applying electric currents by contact electrodes alternating or intermittent currents
    • A61N1/36Applying electric currents by contact electrodes alternating or intermittent currents for stimulation

Definitions

  • This application relates to the technical field of massage and beauty equipment, in particular to a micro-current V face massager and control system.
  • this application proposes a micro-current V-face massager, the micro-current V-face massager includes: a first housing, a second housing, a first host, a second host, and 4 sheet electrode plates ;
  • the first outer shell is a hanging neck type;
  • the first outer shell and the second outer shell are separately arranged;
  • the first host and the second host are both arranged on the first outer shell;
  • Two sheet-shaped electrode sheets are provided on both sides of the second outer shell;
  • the terminal wire of the first host is electrically connected to the two sheet-shaped electrode pieces on one side of the second housing body for forming a first micro-current loop;
  • the terminal wire of the second host is electrically connected with the two sheet-shaped electrode pieces on the other side of the second outer shell, and is used to form a second micro-current loop.
  • the outer shell is made of at least one of silica gel, cloth or plastic.
  • the sheet-like electrode sheet is made by stitching the conductive thread in a sheet sewing method, a sheet embroidery method, a sheet mixed weaving method, a conductive silica gel method, a conductive metal method, and a conductive printed circuit method. Form an electrical conductor.
  • the conductive thread includes at least one of carbon fiber, silver fiber, copper fiber, or nickel fiber.
  • the output waveforms of the first host and the second host are rectangular waves.
  • the first host and the second host are provided with gear adjustment buttons for adjusting the micro-current of the frequency corresponding to the gear.
  • the terminal line of the first host and the two sheet-shaped electrode sheets are conductively connected by magnetic attraction
  • the terminal line of the second host and the other two sheet-shaped electrode sheets are conductively connected by magnetic attraction
  • the material of the sheet-shaped electrode sheet includes at least one of silica gel material, film printing material, metal material, cloth sewing material, cloth embroidery material, and one-shot mixed woven material.
  • the micro current V face massager further includes a communication module for transmitting the functional data corresponding to the micro current of the first host and the second host.
  • this application also proposes a micro-current V-face massager control system.
  • the micro-current V-face massager control system includes a terminal device, a cloud platform, and at least one micro-current V-face as described in the above embodiment. Massager.
  • the above-mentioned micro-current V face massager includes: a first housing, a second housing, a first host, a second host, and 4 sheet-shaped electrode plates.
  • the first housing is a neck hanging type; the first housing Body and the second outer shell are separately arranged; the first host and the second host are both arranged on the first outer shell; both sides of the second outer shell are provided with two sheet electrodes
  • the terminal line of the first host is electrically connected to the two sheet-shaped electrode plates on one side of the second housing for forming a first micro-current loop; the terminal line of the second host is connected to the first
  • the two sheet-shaped electrode sheets on the other side of the two outer shells are electrically connected to form a second micro-current loop.
  • the micro-current V face massager uses micro-current to stimulate the face to achieve a massage effect while also achieving facial beauty and improving user experience.
  • micro-current V face massager in the present application stimulates the face by micro-current to achieve a massage effect, and can also be used with a facial mask to promote the absorption of essence, achieve facial beauty, and enhance user experience.
  • Figure 1 is a schematic diagram of the structure of a micro-current V face massager in an embodiment
  • FIG. 2 is a schematic diagram of a partial structure of the second outer shell of the micro-current V face massager in FIG. 1 from another perspective;
  • Fig. 3 is a schematic diagram of the structure of the control system of the micro-current V face massager in another embodiment.
  • a micro-current V face massager which includes a first outer housing 10, a second outer housing 20, a first host 30, and a second host 40, 4 A sheet-shaped electrode sheet 50.
  • the first outer shell 10 is of a hanging neck type.
  • the first outer shell is a neck hanging type, which is convenient for users to wear.
  • the first host and the second host are both arranged on the first outer shell, which is convenient for users to use and operate.
  • the first outer shell and the second outer shell are separately arranged.
  • the first outer housing 10 and the second outer housing 20 are arranged separately, which is convenient for users to operate and use.
  • the separate arrangement can reduce the weight of the second outer housing 20 to achieve the purpose of light use.
  • the first host and the second host are both arranged on the first outer shell.
  • the position setting of the first host and the second host are in a symbiotic relationship, and are arranged on one side of the first outer shell.
  • both the first host and the second host are set on one side of the first outer shell, and are used to work on the left face and the right face of the user, respectively, and the first host and the second host are Independent output, so as to avoid the brain nerve, tooth nerve, and optic nerve reaction generated by the current loop from the left (right) head penetrating to the right (left) head causing discomfort to the user, and the first host and the second host are
  • the symbiosis relationship exists in a set of systems that can be operated at the same time and output the same intensity at the same time; it is also possible to use smart terminal equipment to separately control the output intensity of the first host and the second host to adjust the micro current corresponding to the gear.
  • Two sheet-shaped electrode sheets 50 are provided on both sides of the second outer shell 20.
  • the two sides of the second housing body are provided with four sheet-shaped electrode sheets, and one side is provided with two sheet-shaped electrode sheets, which are used to form a current loop. On the other side, there are two sheet-shaped electrode sheets for forming another current loop. It should be noted that the two current loops are independent, and the two current loops do not interfere with each other.
  • the terminal wire of the first host is electrically connected to the two sheet-shaped electrode pieces 50 on one side of the second outer shell 20 to form a first micro-current loop.
  • the terminal line of the first host is electrically connected to the two sheet-shaped electrode plates on one side of the second housing body, thereby forming a current loop
  • the first host computer is connected to the two sheet-shaped electrodes through a single set of output terminal lines of the output circuit
  • the electrode sheets are electrically connected to form a first micro-current loop.
  • the terminal wire of the second host is electrically connected to the two sheet-shaped electrode pieces 50 on the other side of the second outer shell 20 to form a second micro-current loop.
  • the terminal line of the second host is electrically connected to the two sheet-shaped electrode plates on the other side of the second housing body, thereby forming a current loop, and the second host passes through the output terminal line of a single set of output circuit and the two plates.
  • the shaped electrode pieces are electrically connected to form a second micro-current loop.
  • the above-mentioned first micro-current loop and the second micro-current are independently separated.
  • the first host and the second host respectively pass through output circuits, that is, two sets of dual output circuits, and the output terminal lines of a set of output circuits are connected to two output circuits.
  • One chip electrode is electrically connected to form the first micro-current loop
  • the output terminal line of the other set of output circuits is electrically connected to the other two chip electrode sheets to form a second micro-current loop, thereby avoiding the current loop on the left (right)
  • the brain nerves, tooth nerves, and optic nerve reactions generated by the head penetrating to the right (left) head cause discomfort to the user and solve the risk of current passing through the head.
  • the first and second micro-current circuits are in full contact with the face through a large area of the sheet-shaped electrode sheet, so that the sheet-shaped electrode sheet can fully work on the face, and the micro-current is transmitted to the left face and the right face respectively, and passes through the EMS (Electrical Muscle Stimulation) muscle electrical stimulation technology, that is, the external current directly stimulates the motor nerves, allowing the muscles to trigger contraction movements, enhancing facial vitality and lifting sensation, achieving the dual effects of beauty and massage, and enhancing the user experience.
  • EMS Electrode Stimulation
  • the above-mentioned micro-current V face massager includes: a first housing, a second housing, a first host, a second host, and 4 sheet-shaped electrode plates; the first housing and the second housing Separately arranged; the first host and the second host are arranged on the first outer shell; both sides of the second outer shell are provided with two sheet-shaped electrode sheets; the terminals of the first host The wire is electrically connected to the two sheet-shaped electrode plates on one side of the second outer shell to form a first micro-current loop; the terminal wire of the second host is connected to the two pieces The sheet-shaped electrode pieces are electrically connected to form a second micro-current loop.
  • the micro-current V face massager can enhance facial vitality and lifting sensation, achieve the dual effects of beauty and massage, and enhance user experience.
  • the outer shell is made of at least one of silica gel, cloth or plastic.
  • the silicone material is lighter in weight, and the outer shell is made of silicone, which will not cause the ears to be buckled on the ears and cause a burden on the ears.
  • silica gel and plastic have soft characteristics, and the cloth material has air permeability, so that the outer shell is made of at least one of silica gel, cloth material or plastic, which can enhance the touch of the face and the sheet electrode.
  • the sheet-shaped electrode sheet is formed by any one of a sheet sewing method, a sheet embroidery method, a sheet mixed weaving method, a conductive silica gel method, a conductive metal method, and a conductive printed circuit method. Conductor.
  • the piece stitching method is to sew the conductive thread to the cloth material, and the required electrode shape is sewn to achieve good conductivity and one-time molding
  • the piece embroidery method is to embroider the conductive thread onto the cloth material, partially Embroider the required electrode shape to achieve good electrical conductivity and one-time molding
  • the sheet blending method is to use conductive thread mixed with ordinary yarn to knit together, and partially weave the desired electrode shape to achieve good electrical conductivity and one-time molding.
  • the purpose, and the conductive silica gel method, the conductive metal method, and the conductive printed circuit method can also achieve good conductivity and one-time molding.
  • the sheet-shaped electrode sheet is formed into a conductor by using conductive threads in any of a sheet sewing method, a sheet embroidery method, a sheet mixed weaving method, a conductive silica gel method, a conductive metal method, and a conductive printed circuit method. It can achieve good electrical conductivity and the purpose of one-time molding.
  • the conductive thread includes at least one of carbon fiber, silver fiber, copper fiber, or nickel fiber.
  • the output waveforms of the first host and the second host are rectangular waves.
  • the output waveforms of the first host and the second host are rectangular waves.
  • the output pulse voltage and current of the first host and the second host are rectangular waves, including rectangular symmetrical or rectangular asymmetrical waves.
  • the micro-currents corresponding to rectangular waves with different pulse widths are transmitted and acted on the user’s face. It can enhance the lifting sensation and remove the tingling sensation on the user’s face.
  • the first host and the second host are provided with gear adjustment buttons for adjusting the micro current of the frequency corresponding to the gear.
  • the first host and the second host are equipped with gear adjustment buttons.
  • the first host and the second host When the first host and the second host have the same gear, the first host and the second host output the same micro-current intensity at this time, which can avoid the left face Inconsistent with the size of the right face.
  • the gears of the first host and the second host can be set to different intensities.
  • the micro-current output from the first host and the second host are different in intensity, which can be used for beauty and massage at the same time to relieve chewing. Inconsistent size of the left and right faces caused by bad habits.
  • the left face or the right face can be strengthened to exercise muscles at this time to alleviate the inconsistent size of the left face and the right face.
  • the terminal line of the first host and the two sheet electrode sheets are electrically connected by magnetic attraction, and the terminal line of the second host and the other two sheet electrode sheets are conductively connected by magnetic attraction.
  • the terminal line of the first host is electrically conductively connected with the two sheet-shaped electrode plates by magnetic attraction
  • the terminal line of the second host is electrically conductively connected with the other two sheet-shaped electrode plates by magnetic attraction, and is electrically conductively connected by magnetic attraction, which is easy to disassemble and connect. It can be cleaned, and can protect the connector of the terminal line from damage, and achieve good electrical conductivity.
  • the material of the sheet-shaped electrode sheet includes at least one of a silica gel material, a film printing material, a metal material, a cloth sewing material, a cloth embroidery material, and a one-time forming mixed woven material.
  • the film material of the sheet-shaped electrode sheet includes at least one of silica gel materials, film printing materials, metal materials, cloth sewing materials, cloth embroidery materials, and one-time forming mixed materials, rather than a single Membrane materials can provide users with more choices, and users can reuse different membrane material sheet electrode sheets, reducing environmental pollution and saving user costs.
  • the micro current V face massager further includes a communication module for transmitting the functional data corresponding to the micro current of the first host and the second host.
  • the communication module communicates with the host to transmit corresponding functional data, and can also send the functional data to the user to assist the user in adjusting the massage and beauty plan according to the functional data to achieve better massage and beauty effects.
  • a micro-current V-face massager control system is provided, a terminal device 104, a cloud platform 106, and at least one micro-current V-face massager 102 as described in the above embodiment .
  • the terminal device is a smart terminal device, such as a mobile phone, a tablet computer, and so on.
  • the micro-current intensity of the micro-current massage is controlled through a wireless control technology such as a small program, APP, and a wireless remote control.
  • the micro-current V-face massager is connected to the terminal device to transmit the micro-current V-face massager's face to the terminal device.
  • the facial data of the micro-current V-face massager is transmitted to the cloud platform through the wireless communication module, and the cloud platform is used to recommend massage and beauty solutions to the terminal device according to the facial data of the micro-current V-face massager.
  • the micro-current V-face massager control system is connected to smart terminals such as mobile phones and tablet computers through Bluetooth technology, and control commands are issued through the terminal.
  • the micro-current V-face massager control system collects the analysis of oiliness and dryness of the user’s face. Data information such as sex and moisture are uploaded to the terminal database.
  • the terminal equipment reminds the user through calculations to use a degreasing or hydrating mask at this time.
  • the micro-current V face massager transmits micro-current to the mask through the sheet-shaped electrode to enhance facial vitality , So that the effective ingredients of the mask are fully absorbed by the face; then transfer micro-currents of different frequencies to produce a lifting sensation, achieving the effect of massage and beauty; finally, the data of the face is detected again, the terminal device is uploaded and the comparison result is generated, Sharing information and rankings on the platform through personal preferences.

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  • Health & Medical Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Biomedical Technology (AREA)
  • Nuclear Medicine, Radiotherapy & Molecular Imaging (AREA)
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  • Life Sciences & Earth Sciences (AREA)
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Abstract

一种微电流V脸按摩仪(102)及控制***,包括:第一外壳体(10)、第二外壳体(20)、第一主机(30)、第二主机(40)、4个片状电极片(50);第一外壳体(10)为挂脖式;第一外壳体(10)和第二外壳体(20)分离设置;第一主机(30)和第二主机(40)均设置于第一外壳体(10)上;第二外壳体(20)的两侧均设有两个片状电极片(50);第一主机(30)的端子线与第二外壳体(20)一侧的两个片状电极片(50)电连接,用于形成第一微电流回路;第二主机(40)的端子线与第二外壳体(20)另一侧的两个片状电极片(50)电连接,用于形成第二微电流回路。微电流V脸按摩仪(102)通过微电流对脸部刺激达到按摩效果的同时还能配合面膜使用,促进精华液的吸收,实现脸部美容,提升用户体验。

Description

微电流V脸按摩仪及控制*** 技术领域
本申请涉及按摩和美容设备技术领域,尤其涉及一种微电流V脸按摩仪及控制***。
背景技术
随着生活水平越来越高,人们已经对自身的健康及保养非常注重,市面上也出现很多按摩和美容产品及工具。通常,按摩使用手法按摩或器械式按摩,面部会使用精华液等护肤品进行保养。目前都是通过与按摩工具绑定的面膜达到保养的需求,但传统的面膜使用时间少则十几分钟,多则半小时以上,单一使用只能达到轻微美白、补水、祛斑等效果,其中大部分的营养成分不能被吸收而浪费掉,使用过程中亦无法达到按摩要求,而且,用户无法选择自己喜好的面膜,无疑增加了用户的成本,且在面膜使用过程中,无法实现按摩和美容的效果,导致体验感差,按摩和美容效果难易满足用户需求,并且增加了用户成本。
技术问题
现有的按摩仪大多是采用一个主机控制按摩的力度和部位等,用户对按摩仪的使用方式的选择存在一定的局限性,影响用户体验,按摩效果较差。
技术解决方案
基于此,有必要针对上述问题,提出一种能够同时提高按摩效果和美容效果的微电流V脸按摩仪和微电流V脸按摩仪控制***。
第一方面,本申请提出一种微电流V脸按摩仪,所述微电流V脸按摩仪包括:第一外壳体、第二外壳体、第一主机、第二主机、4个片状电极片;所述第一外壳体为挂脖式;
所述第一外壳体和所述第二外壳体分离设置;
所述第一主机和所述第二主机均设置于所述第一外壳体上;
所述第二外壳体的两侧均设有两个片状电极片;
所述第一主机的端子线与所述第二外壳体一侧的两个片状电极片电连接,用于形成第一微电流回路;
所述第二主机的端子线与所述第二外壳体另一侧的两个片状电极片电连接,用于形成第二微电流回路。
在其中一个实施例中,所述外壳体由硅胶、布材或塑胶中的至少一种制成。
在其中一个实施例中,所述片状电极片通过将导电线以片车缝方式、片刺绣方式、片混织方式、导电硅胶方式、导电金属方式、导电印刷电路方式中的任一种方式形成导电体。
在其中一个实施例中,所述导电线包括碳纤维、银纤维、铜纤维或镍纤维中的至少一种。
在其中一个实施例中,所述第一主机和所述第二主机的输出波形为矩形波。
在其中一个实施例中,所述第一主机和所述第二主机设置有档位调节按钮,用于调节与档位对应频率的微电流。
在其中一个实施例中,所述第一主机的端子线和两个片状电极片通过磁吸导电连接,所述第二主机的端子线和另外两个片状电极片通过磁吸导电连接。
在其中一个实施例中,所述片状电极片的材料包括硅胶材料,薄膜印刷材料,金属材料,布材车缝材料,布材刺绣材料,一次成型混织材料中的至少一种。
在其中一个实施例中,所述微电流V脸按摩仪还包括通信模块,用于传输所述第一主机和所述第二主机所述微电流对应的功能数据。
第二方面,本申请还提出了一种微电流V脸按摩仪控制***,所述微电流V脸按摩仪控制***包括终端设备、云平台、至少一个如上实施例中所述的微电流V脸按摩仪。
上述微电流V脸按摩仪包括:第一外壳体、第二外壳体、第一主机、第二主机、4个片状电极片,所述第一外壳体为挂脖式;所述第一外壳体和所述第二外壳体分离设置;所述第一主机和所述第二主机均设置于所述第一外壳体上;所述第二外壳体的两侧均设有两个片状电极片;所述第一主机的端子线与所述第二外壳体一侧的两个片状电极片电连接,用于形成第一微电流回路;所述第二主机的端子线与所述第二外壳体另一侧的两个片状电极片电连接,用于形成第二微电流回路。该微电流V脸按摩仪通过微电流对脸部刺激达到按摩效果的同时还能实现脸部美容,提升用户体验。
有益效果
本申请中的微电流V脸按摩仪通过微电流对脸部刺激达到按摩效果的同时还能配合面膜使用,促进精华液的吸收,实现脸部美容,提升用户体验。
附图说明
为了更清楚地说明一个实施例或现有技术中的技术方案,下面将对实施例或现有技术描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本申请的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
其中:
图1为一个实施例中微电流V脸按摩仪的结构示意图;
图2为图1中微电流V脸按摩仪中的第二外壳体的另一视角的部分结构示意图;
图3为另一个实施例中微电流V脸按摩仪控制***的架构示意图。
本发明的实施方式
下面将结合一个实施例中的附图,对一个实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本申请一部分实施例,而不是全部的实施例。基于本申请中的实施例,本领域普通技术人员在没有作出创造性劳动前提下所获得的所有其他实施例,都属于本申请保护的范围。
如图1和图2所示,在一个实施例中,提供了一种微电流V脸按摩仪,包括第一外壳体10、第二外壳体20、第一主机30、第二主机40、4个片状电极片50。
所述第一外壳体10为挂脖式。
其中,第一外壳体为挂脖式,便于用户佩戴。且所述第一主机和所述第二主机均设置于所述第一外壳体上,方便用户使用和操作。
所述第一外壳体和所述第二外壳体分离设置。
其中,第一外壳体10和第二外壳体20分离设置,便于用户操作和使用,通过分离设置的方式能够减轻第二外壳体20的重量,以达到轻便使用的目的。
所述第一主机和所述第二主机均设置于所述第一外壳体上。
本实施例中的第一主机的位置设置与第二主机位置设置为共生关系,设置于第一外壳体的一侧。需要说明的是,第一主机和第二主机均是设置在第一外壳体上的一侧位置上,分别用来对用户的左脸和右脸进行工作,且第一主机和第二主机是独立输出的,从而避免电流回路左边(右边)头部穿透到右边(左边)头部产生的脑部神经、牙齿神经、视觉神经反应造成对用户的不适,且第一主机和第二主机是共生关系,存在一套***内,可同时操作,同时输出同样强度;亦可以使用智能终端设备单独控制第一主机和第二主机输出强度,用于调节与档位对应频率的微电流。
所述第二外壳体20的两侧均设有两个片状电极片50。
其中,第二外壳体上的两侧设有4个片状电极片,一侧上设有两个片状电极片,用于形成一个电流回路。另一侧上设有两个片状电极片,用于形成另外一个电流回路。需要说明的是,这两个电流回路是独立的,两个电流回路互不干扰。
所述第一主机的端子线与所述第二外壳体20一侧的两个片状电极片50电连接,用于形成第一微电流回路。
其中,第一主机的端子线和第二外壳体一侧的两个片状电极片电连接,从而形成了一个电流回路,且第一主机通过单组输出电路的输出端子线和两个片状电极片电连接,形成第一微电流回路。
所述第二主机的端子线与所述第二外壳体20另一侧的两个片状电极片50电连接,用于形成第二微电流回路。
其中,第二主机的端子线和第二外壳体另一侧的两个片状电极片电连接,从而形成了一个电流回路,且第二主机通过单组输出电路的输出端子线和两个片状电极片电连接,形成第二微电流回路。
上述第一微电流回路和第二微电流是独立分开的,具体地,第一主机和第二主机上分别通过输出电路,也即双组双输出电路,一组输出电路的输出端子线与两个片状电极片电连接,形成第一微电流回路,另一组输出电路的输出端子线与另外两个片状电极片电连接,形成第二微电流回路,从而避免电流回路左边(右边)头部穿透到右边(左边)头部产生的脑部神经、牙齿神经、视觉神经反应造成对用户的不适,解决了电流穿过头部的风险。并且第一微电流回路和第二微电流回路,通过片状电极片大面积与脸部充分接触,使片状电极片充分在脸部工作,分别对左脸和右脸传递微电流,通过EMS(Electrical Muscle Stimulation)肌肉电刺激技术,即外部电流直接刺激运动神经,让肌肉引发收缩运动,增强面部活力和提拉感,达到美容和按摩的双重效果,提升用户体验。
上述微电流V脸按摩仪,包括:包括:第一外壳体、第二外壳体、第一主机、第二主机、4个片状电极片;所述第一外壳体和所述第二外壳体分离设置;所述第一主机和所述第二主机设置于所述第一外壳体上;所述第二外壳体的两侧均设有两个片状电极片;所述第一主机的端子线与所述第二外壳体一侧的两个片状电极片电连接,用于形成第一微电流回路;所述第二主机的端子线与所述第二外壳体另一侧的两个片状电极片电连接,用于形成第二微电流回路,该微电流V脸按摩仪能够增强面部活力和提拉感,达到美容和按摩的双重效果,提升用户体验。
在一个实施例中,所述外壳体由硅胶、布材或塑胶中的至少一种制成。
其中,硅胶材料重量较轻,外壳体采用硅胶制成,不会造成挂耳扣在耳朵上对耳朵造成负担。同时硅胶和塑胶具有柔软的特性,布材具有透气性,从而外壳体由硅胶、布材或塑胶中的至少一种制成,能够增强脸部与片状电极片的触感。
在一个实施例中,所述片状电极片通过将导电线以片车缝方式、片刺绣方式、片混织方式、导电硅胶方式、导电金属方式、导电印刷电路方式中的任一种方式形成导电体。
其中,片车缝方式是将导电线车缝到布材上,车缝出所需电极形状,达到良好的导电性能及一次成型的目的;片刺绣方式是将导电线刺绣到布材上,局部刺绣出所需电极形状,达到良好的导电性能及一次成型的目的;片混织方式是采用导电线混合普通纱线一起编织,局部编织出所需电极形状,达到良好的导电性能及一次成型的目的,且导电硅胶方式、导电金属方式、导电印刷电路方式也能够达到良好的导电性能及一次成型的目的。本实施例中,片状电极片通过将导电线以片车缝方式、片刺绣方式、片混织方式、导电硅胶方式、导电金属方式、导电印刷电路方式中的任一种方式形成导电体,能够达到良好的导电性能及一次成型的目的。
在一个实施例中,所述导电线包括碳纤维、银纤维、铜纤维或镍纤维中的至少一种。
在一个实施例中,所述第一主机和所述第二主机的输出波形为矩形波。
具体地,第一主机和第二主机的输出输出波形为矩形波。第一主机和第二主机的输出脉冲电压、电流,输出波形为矩形波,包括矩形对称或矩形不对称波两种情形,通过不同脉宽的矩形波对应的微电流的传递和作用在用户脸部,能够增强提拉感,并且去掉用户脸部的刺痛感。
在一个实施例中,所述第一主机和所述第二主机设置有档位调节按钮,用于调节与档位对应频率的微电流。
其中,第一主机和第二主机设置有档位调节按钮,当第一主机和第二主机的档位相同时,此时第一主机和第二主机输出的微电流强度相同,能够避免左脸和右脸大小不协调的情况。当用智能终端设备操作时,第一主机和第二主机的档位可以设置不同强度,此时第一主机和第二主机输出的微电流强度不同,可以美容和按摩的同时,缓解因咀嚼等不良习惯导致的左脸和右脸大小不协调的情况。当加强或减弱第一主机或者第二主机时,此时可以对左脸或者右脸加强肌肉锻炼,缓解左脸和右脸大小不协调的情况。
在一个实施例中,所述第一主机的端子线和两个片状电极片通过磁吸导电连接,所述第二主机的端子线和另外两个片状电极片通过磁吸导电连接。
其中,第一主机的端子线和两个片状电极片通过磁吸导电连接,第二主机的端子线和另外两个片状电极片通过磁吸导电连接,通过磁吸导电连接,易于拆卸和清理,并且能够保护端子线的接头不易破损,达到良好的导电性能。
在一个实施例中,所述片状电极片的材料包括硅胶材料,薄膜印刷材料,金属材料,布材车缝材料,布材刺绣材料,一次成型混织材料中的至少一种。
片状电极片的膜材片状电极片的膜材包括硅胶材料,薄膜印刷材料,金属材料,布材车缝材料,布材刺绣材料,一次成型混织材料中的至少一种,而不是单一膜材,能够提供给用户更多的选择,并且用户还能够重复使用不同膜材片状电极片,减少环境污染,并节省用户成本。
在一个实施例中,微电流V脸按摩仪还包括通信模块,用于传输所述第一主机和所述第二主机所述微电流对应的功能数据。
其中,通信模块与主机通信连接,用于传输对应的功能数据,还可以将该功能数据发送给用户,辅助用户根据功能数据进行按摩和美容方案调整,达到更好的按摩和美容效果。
如图3所示,在一个实施例中,提供了一种微电流V脸按摩仪控制***,终端设备104、云平台106、至少一个如上述实施例中所述的微电流V脸按摩仪102。
其中,该终端设备为智能终端设备,如手机、平板电脑等。通过小程序、APP、无线遥控器一种无线控制技术对微电流按摩的微电流强度进行控制,微电流V脸按摩仪与终端设备连接以用于向终端设备传输微电流V脸按摩仪的面部数据,通过所述无线通信模块把微电流V脸按摩仪的面部数据传输给云平台,云平台用于根据微电流V脸按摩仪的面部数据向终端设备推荐按摩和美容方案。在一具体实施例中,微电流V脸按摩仪控制***通过蓝牙技术连接手机、平板电脑等智能终端,通过终端发出控制指令,微电流V脸按摩仪控制***收集用户脸部的分析油性、干性、水分等数据信息,上传到终端数据库,终端设备通过计算提醒用户此时应使用去油或补水的面膜,微电流V脸按摩仪通过片状电极片,向面膜传递微电流,增强面部活力,从而使面膜的有效成分被脸部充分吸收;接着传递不同频率的微电流,产生提拉感,达到按摩和美容的效果;最后再次检测脸部的数据,上传终端设备并产生对比使用结果,在通过个人喜好在平台上分享信息及排名等。
以上所述实施例仅表达了本申请的几种实施方式,其描述较为具体和详细,但并不能因此而理解为对本申请专利范围的限制。应当指出的是,对于本领域的普通技术人员来说,在不脱离本申请构思的前提下,还可以做出若干变形和改进,这些都属于本申请的保护范围。因此,本申请专利的保护范围应以所附权利要求为准。

Claims (10)

  1. 一种微电流V脸按摩仪,包括第一外壳体、第二外壳体、第一主机、第二主机、4个片状电极片,其特征在于:
    所述第一外壳体为挂脖式;
    所述第一外壳体和所述第二外壳体分离设置;
    所述第一主机和所述第二主机均设置于所述第一外壳体上;
    所述第二外壳体的两侧均设有两个片状电极片;
    所述第一主机的端子线与所述第二外壳体一侧的两个片状电极片电连接,用于形成第一微电流回路;
    所述第二主机的端子线与所述第二外壳体另一侧的两个片状电极片电连接,用于形成第二微电流回路。
  2. 根据权利要求1所述的微电流V脸按摩仪,其特征在于,所述外壳体由硅胶、布材或塑胶中的至少一种制成。
  3. 根据权利要求2所述的微电流V脸按摩仪,其特征在于,所述片状电极片通过将导电线以片车缝方式、片刺绣方式、片混织方式、导电硅胶方式、导电金属方式、导电印刷电路方式中的任一种方式形成导电体。
  4. 根据权利要求3所述的微电流V脸按摩仪,其特征在于,所述导电线包括碳纤维、银纤维、铜纤维或镍纤维中的至少一种。
  5. 根据权利要求1所述的微电流V脸按摩仪,其特征在于,所述第一主机和所述第二主机的输出波形为矩形波。
  6. 根据权利要求1所述的微电流V脸按摩仪,其特征在于,所述第一主机和所述第二主机设置有档位调节按钮,用于调节与档位对应频率的微电流。
  7. 根据权利要求1所述的微电流V脸按摩仪,其特征在于,所述第一主机的端子线和两个片状电极片通过磁吸导电连接,所述第二主机的端子线和另外两个片状电极片通过磁吸导电连接。
  8. 根据权利要求1所述的微电流V脸按摩仪,其特征在于,所述片状电极片的材料包括硅胶材料,薄膜印刷材料,金属材料,布材车缝材料,布材刺绣材料,一次成型混织材料中的至少一种。
  9. 根据权利要求6所述的微电流V脸按摩仪,其特征在于,还包括通信模块,用于传输所述第一主机和所述第二主机的所述微电流对应的功能数据。
  10. 一种微电流V脸按摩仪控制***,其特征在于:所述控制***包括终端设备、云平台、至少一个如权利要求1至9任一项所述的微电流V脸按摩仪。
PCT/CN2019/108640 2019-09-27 2019-09-27 微电流v脸按摩仪及控制*** WO2021056444A1 (zh)

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CN106963617A (zh) * 2017-04-19 2017-07-21 武汉工程大学 瘦脸智能按摩器
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