WO2016039563A1 - Independent two-row ceramic structure - Google Patents

Independent two-row ceramic structure Download PDF

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Publication number
WO2016039563A1
WO2016039563A1 PCT/KR2015/009488 KR2015009488W WO2016039563A1 WO 2016039563 A1 WO2016039563 A1 WO 2016039563A1 KR 2015009488 W KR2015009488 W KR 2015009488W WO 2016039563 A1 WO2016039563 A1 WO 2016039563A1
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WO
WIPO (PCT)
Prior art keywords
main body
elevating
ceramic structure
elastic member
independent
Prior art date
Application number
PCT/KR2015/009488
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French (fr)
Korean (ko)
Inventor
송한림
백근영
최희원
박창수
박진철
Original Assignee
주식회사 세라젬
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Application filed by 주식회사 세라젬 filed Critical 주식회사 세라젬
Publication of WO2016039563A1 publication Critical patent/WO2016039563A1/en

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    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61FFILTERS IMPLANTABLE INTO BLOOD VESSELS; PROSTHESES; DEVICES PROVIDING PATENCY TO, OR PREVENTING COLLAPSING OF, TUBULAR STRUCTURES OF THE BODY, e.g. STENTS; ORTHOPAEDIC, NURSING OR CONTRACEPTIVE DEVICES; FOMENTATION; TREATMENT OR PROTECTION OF EYES OR EARS; BANDAGES, DRESSINGS OR ABSORBENT PADS; FIRST-AID KITS
    • A61F7/00Heating or cooling appliances for medical or therapeutic treatment of the human body
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61HPHYSICAL THERAPY APPARATUS, e.g. DEVICES FOR LOCATING OR STIMULATING REFLEX POINTS IN THE BODY; ARTIFICIAL RESPIRATION; MASSAGE; BATHING DEVICES FOR SPECIAL THERAPEUTIC OR HYGIENIC PURPOSES OR SPECIFIC PARTS OF THE BODY
    • A61H15/00Massage by means of rollers, balls, e.g. inflatable, chains, or roller chains
    • A61H15/02Massage by means of rollers, balls, e.g. inflatable, chains, or roller chains adapted for simultaneous treatment with light, heat or drugs
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61HPHYSICAL THERAPY APPARATUS, e.g. DEVICES FOR LOCATING OR STIMULATING REFLEX POINTS IN THE BODY; ARTIFICIAL RESPIRATION; MASSAGE; BATHING DEVICES FOR SPECIAL THERAPEUTIC OR HYGIENIC PURPOSES OR SPECIFIC PARTS OF THE BODY
    • A61H7/00Devices for suction-kneading massage; Devices for massaging the skin by rubbing or brushing not otherwise provided for

Definitions

  • the elevating plate and the elevating member on which the ceramic member is mounted can be actively responded to the user's body change by operating independently or through interaction according to the user's body shape, and the elastic member is the elevating plate or the elevating plate.
  • An independent two-row ceramic structure that can implement a soft massage function by elastically supporting the lower member, or both.
  • the prior art has a flow space formed perpendicular to the body of the movable body to move left and right along the screw rotated by the motor, and the locking step is formed at the lower end of the transfer rod is inserted and restrained in the flow space and moved up and down in the flow space when moving left and right
  • the lifting spring is provided to move the therapeutic ceramic up and down so as to pressurize the affected part while being stretched and contracted according to the bending of the human body.
  • the therapeutic ceramics are configured to pressurize the affected part with the same force while being in close contact with the user's body curvature.
  • the therapeutic ceramic is raised and lowered by the lifting spring according to the user's body shape or body change.
  • the therapeutic ceramic acts in the front and rear or left and right directions according to the user's body shape or body change. You are under load.
  • the load is also transferred to the lifting spring, and the lifting spring is caused by the bending deformation in addition to the movement in the vertical direction, there is a problem that the noise occurs.
  • the present invention has been made to solve the problems as described above, by the elevating plate and the elevating member equipped with a two-row ceramic member is operated independently or through interaction according to the user's body shape or body changes One purpose is to cope more actively with the user's body shape or body changes.
  • another object of the present invention is to implement a softer massage function by the elevating plate or the elevating member, or both are elastically supported by the elastic member.
  • the present invention is connected to the elevating member and the elastic member by the guide bar and the fixed holder to guide the load applied by the user to the static load not only to prevent the noise generated by the elastic member, but also to reduce the load on the elastic member It is another purpose to do so.
  • the mounting ribs for fixing the lower end of the elastic member are integrally formed on the elevating plate to elevate together with the elevating plate to extend the elongation of the elastic member, thereby increasing the height of the elevating member. Another object is to respond to user's body shape and body changes more efficiently.
  • another object of the present invention is to introduce various types of power transmission methods for the transfer of the ceramic structure, and to ensure the operation reliability according to each power transmission method, and to operate the ceramic structure efficiently.
  • Independent two-row ceramic structure is coupled to the main body, the elevating plate which is elevated by the drive unit, the elevating plate, the elevating member connected to the elevating plate and the elevating plate and the elevating member It is made to include a ceramic member.
  • the elevating plate or the elevating member according to the present invention characterized in that it further comprises an elastic member provided on both or elastically support.
  • the elastic member according to the present invention is provided on the elevating member, the elevating member is characterized in that it is further provided with a guide bar connected to the elastic member.
  • the mounting rib is further provided with the elastic member is fixed.
  • the mounting rib according to the invention is characterized in that it is further provided with a fixing holder for preventing the separation of the elastic member.
  • the drive unit according to the present invention is characterized in that it comprises a drive motor mounted to the main body, a rotating member coupled to the drive motor, a guide member connected to the lifting plate, and engaged with the rotating member. .
  • the transfer unit according to the present invention is characterized in that it comprises a transfer rail formed in the main body, a drive body provided in the main body moving along the transfer rail, and a drive unit for transmitting power to the drive body. .
  • the drive unit according to the present invention is formed in the longitudinal direction of the conveying rail, a threaded feed rod, a transfer medium mounted to the main body, connected to the transfer rod, and a drive motor connected to the end of the transfer rod Characterized in that the made up.
  • the drive unit according to the present invention is characterized in that it comprises a rack unit provided on the conveying rail, a pinion unit provided in the drive body, and a drive motor provided in the main body, connected to the drive body.
  • the drive unit according to the present invention is characterized in that it comprises a drive motor provided on one side of the main body, and a drive chain connected to the drive motor, mounted on the main body.
  • the independent two-row ceramic structure according to the present invention is more active in the user's body shape or body change by being operated by interacting with the user's body shape or body change by the elevating plate and the elevating member equipped with the two-row ceramic member. By coping with it, the massage function can be maximized.
  • the present invention can be enhanced by the elastic member is elastically supported by the elastic member to implement a softer massage function can give a comfortable and comfortable feeling from the user to increase the user reliability.
  • the present invention is connected to the elevating member and the elastic member by the guide bar and the fixed holder to guide the load applied by the user to the static load not only to prevent the noise generated by the elastic member, but also to reduce the load on the elastic member It is possible to improve the durability.
  • the mounting ribs for fixing the lower end of the elastic member are integrally formed on the elevating plate to elevate together with the elevating plate to extend the elongation of the elastic member, thereby increasing the height of the elevating member. Therefore, it is possible to ensure the reliability of the device by more efficiently responding to the user's body shape and body changes.
  • the present invention introduces a variety of power transmission methods for the transfer of the ceramic structure, it is possible to ensure the operation reliability according to each power transmission method it is possible to efficiently operate the operation of the ceramic structure.
  • FIG 1 and 2 are perspective views showing the independent two-row ceramic structure according to the present invention.
  • FIG. 3 is an exploded perspective view showing a stand alone two-row ceramic structure according to the present invention.
  • Figure 4 is a front view showing a stand alone two-row ceramic structure according to the present invention.
  • 5 to 7 are conceptual views illustrating various modifications of the driving unit in the transfer unit of the ceramic structure according to the present invention.
  • the independent two-row ceramic structure according to the present invention includes a main body 10, a lifting plate 20 which is lifted up and down by the driving unit 30, and a lifting plate 20. Including the elevating member 40 connected, the elastic member 50 for supporting the elevating member 40, and the ceramic member 60 mounted on the elevating plate and elevating member 20, 40 It is composed.
  • Independent two-row ceramic structure according to the present invention is installed in a heat treatment device of various forms, such as a bed type or chair type, one side of the main body 10 is provided with a transfer means (not shown), this transfer means (not shown) While moving by the ceramic member 60 is in contact with the user's body portion to perform a massage operation through the supply of heat.
  • the conveying means is not shown in the accompanying drawings, it may be composed of a combination of a sprocket and a chain, or a combination of a rail and a guide, or a combination of a rack gear and a pinion gear, and other forms of conveying. Introduction of the means is possible.
  • the main body 10 is configured in the form of a rectangular block, and a pair of first coupling parts 11 protruding upward is provided at one upper side thereof.
  • the rear end of the elevating plate 20 is hinged to the first coupling portion 11 by a coupling pin 13, and the elevating plate 20 pivots around the coupling pin 13 to move up and down. Is implemented.
  • the elevating plate 20 receives power by the driving unit 30 to rotate the first coupling part 11 of the main body 10 by an axis. It is configured to move up and down.
  • the elevating plate 20 is provided with support portions 21 on both sides, and a first corresponding coupling portion 23 coupled to the first coupling portion 11 of the main body 10 is formed at the rear end of the support portion 21.
  • the second coupling part 25 is formed at the front end of the supporting part 21 of the elevating plate 20, and the lifting member 40 is hinged to the second coupling part 25.
  • a pair of single-row conductors 61 that is, the ceramic member 60, is rotatably mounted on both surfaces of the elevating plate 20 by the first bracket 27 on both sides thereof.
  • the lifting plate 20 is the power is transmitted by the drive unit 30 so as to pivot the first coupling portion 11 and the first corresponding coupling portion 23 to the rotation center
  • the driving portion 30 is the main body 10 A driving motor (31) mounted on the), a rotating member (33) coupled to the driving motor (31), a guide member (35) connected to the lifting plate (20), and engaged with the rotating member (33). It is configured to include.
  • the drive motor 31 of the drive unit 30 is installed below the main body 10, the drive shaft is provided,
  • the rotating member 33 of the drive unit 30 is composed of a gear unit 33a which is coupled to the drive shaft of the drive motor 31 to rotate.
  • the guide member 35 of the drive unit 30 has a curved shape and is provided on the elevating plate 20, and has a corresponding gear portion 35a engaged with the gear portion 33a of the rotation member 33.
  • the driving unit 30 is operated at an appropriate number of rotations and the amount of rotation according to the user's body shape or body change, and the elevating plate 20 and the first row of ceramics 61 are the user's body shape, As the body moves up and down, efficient massage work can be realized.
  • the guide member and the rotating member of the driving unit may be replaced by a driving body such as a rack and a pinion, respectively.
  • the driving unit 30 is also possible to operate by friction using a friction pad on the part where the rotating member 33 and the guide member 35 come into contact with each other. It is also possible to apply the method.
  • a weight sensing unit (not shown) is disposed below the elevating plate 20 to sense a load applied by contacting the user's body to the first row of ceramics 61.
  • the weight sensing unit transmits the sensed load to the controller and controls the driving unit 30 by the controller to adjust the raising and lowering height of the elevating plate 20.
  • the controller controls the horizontal feed rate of the ceramic structure by the load information sensed by the weight sensing unit to obtain an optimal massage effect.
  • This is controlled to keep the horizontal conveying speed of the ceramic structure at a low speed in the section under heavy load, and various control adjustments are possible, such as maintaining the horizontal conveying speed of the ceramic structure at high speed in the section under relatively low load.
  • the weight sensing unit may introduce a load cell, or a sensor similar or similar thereto.
  • the controller accumulates the user's body information using the load information by the weight sensing unit, and the accumulated information may be used as scan information of the user's body shape.
  • the user's body characteristics, in particular, the curvature of the spine can be checked in advance, and by using this, the user can apply a massage section or acupressure point according to the user's spine to fit the user's characteristics. Customized massage work is possible.
  • the elevating member 40 according to the present invention is hinged to the elevating plate 20 to more actively respond to the user's body shape or body change through the elevating operation. It is composed.
  • the elevating member 40 is equipped with a pair of two-row ceramics 63, that is, the ceramic member 60, so as to be rotatable by the second bracket 45 on both sides, and at the rear of the elevating plate 20
  • the second mating coupling portion 41 is formed to correspond to the second coupling portion 25 and is hinged to each other.
  • a pair of mounting protrusions 43 spaced apart from each other is formed below the elevating member 40, and mounting holes 43a are formed in the mounting protrusions 43.
  • the elastic member 50 according to the present invention is disposed below the elevating member 40 to elastically support the elevating member 40, during the massage operation, the soft massage function
  • the massage operation can be implemented more efficiently.
  • the lower end of the elastic member 50 is fixed to the main body 10 and disposed below the elevating member 40, and the lower end of the elastic member 50 is integrally connected to the elevating plate 20. It is fixed by 90.
  • the mounting rib 90 is provided with a fixing portion 91 which is bent in multiple stages from the elevating plate 20 and extended forward to be positioned below the elevating member 40.
  • the fixing portion 91 is fitted with a fitting hole. 93 is formed.
  • the elastic member 50 has a lower end inserted into the fitting hole 93 of the mounting rib 90.
  • the fixing member 100 is provided to prevent the elastic member 50 from being separated from the fitting. .
  • the fixing holder 100 is provided with an annular fitting protrusion 101 protruding downward, and is inserted into the fitting hole 93 after being fitted to the fitting hole 93 of the mounting rib 90 by the lower end of the elastic member 50. By fixing the lower end of the elastic member 50 it is possible to prevent the elastic member 50 from being separated and separated from the fitting hole (93).
  • the fixing holder 100 is formed with a flange portion 103 protruding outward on the upper end of the fitting protrusion 101 is in contact with the fixing portion 91 to support the fixing holder 100.
  • the elastic member 50 moves up and down together with the lifting plate 20 by the mounting ribs 90 during the lifting operation of the lifting plate 20.
  • the lower end of the elastic member 50 may be fixed to the main body 10 without introducing the mounting rib 90.
  • the guide bar 70 is connected to the elevating member 40 so that the elevating member 40 can be prevented from being separated from the elastic member 50.
  • the guide bar 70 has an upper end inserted between the mounting protrusions 43 of the elevating member 40,
  • a corresponding mounting hole 71 is formed at the upper end of the guide bar 70 so as to correspond to the mounting hole 43a of the elevating member 40.
  • the mounting protrusion 43 is inserted into each of the mounting holes 43a. And the guide bar 70 is fixed.
  • a key groove 77 is formed in the fastening pin 73, and the key 75 is inserted into the key groove 77 to prevent the fastening pin 73 from being separated from each mounting hole 43a. .
  • the elevating member 40 is capable of turning in a predetermined range in the front and rear direction by using the fastening pin 73 as the rotation axis.
  • the guide holder 80 is elastic A sleeve 81 inserted into the upper end of the member 50 and through which the guide bar 70 penetrates, and an annular support protrusion 83 protruding outward from the upper end of the sleeve 81 to abut on the upper end of the elastic member 50. It is composed of
  • the elevating member 40 hinged to the elevating plate 20 is also elevated.
  • the elevating member 40 is hinged to the upper end to the guide bar 70 is configured to enable the pivoting operation in the front and rear direction to enable the smooth movement of the elevating member 40.
  • the load applied by the two-row conductor 63 in contact with the user's body is such that the elevating member 40 loads the static load on the elastic member 50 by the guide bar 70 and the guide holder 80. It is possible to prevent distortion and bending of the 50.
  • the elevating member 40 and the elastic member 50 are connected by the guide bar 70 and the guide holder 80 so that the load by the user is loaded in the vertical direction, that is, the static load.
  • the elastic member 50 as described above is preferably used in the form of a coil spring, such as a compression spring or a tension spring, it is also possible to use an elastic body such as rubber, elastomer (elastomer), if necessary.
  • a conveying unit 140 for conveying a main body according to the present invention is provided, which is provided with a driving body 170 provided on both sides of the main body 10, and the driving body ( It includes a drive unit 180 for transmitting power to the 170, and is formed on the main body 110 is configured to further include a transport rail 160, the drive body 170 slides.
  • the main body 10 is manufactured in the form of a substantially rectangular plate, but is not limited thereto and may be manufactured in various shapes.
  • the driving body 170 can be manufactured in the form of a roller, but can be modified in accordance with the operation method of the driving unit 180 to be described below, which will be described in more detail in the section describing the operating method of each driving unit 180. .
  • the driving unit 180 of the transfer unit 140 may be implemented by various types of driving methods.
  • FIG. 5A is a view showing before the main body 110 is mounted to the drive unit 180 in the first embodiment of the drive unit 180, Figure 5b is after the main body 110 is mounted to the drive unit 80 Figure is a diagram.
  • the power transmission method according to the first embodiment of the driving unit 180 is formed in the longitudinal direction of the conveying rail 160 as shown in FIGS. 5A and 5B, and a conveying rod 181 having a thread formed on an outer circumferential surface thereof.
  • the thread is formed on the inner side to correspond to the thread of the transfer rod 181 and is connected to the transfer rod 181, and is connected to the transfer medium 182 coupled to the main body 10 and to one end of the transfer rod 181. It consists of a drive motor 187.
  • the driving motor 187 when the driving motor 187 is rotated in one direction, the feed rod 181 is rotated, and the transfer medium 182 is moved in one direction along the feed rod 181, and the drive motor 187 is moved.
  • the transfer medium 182 When rotating in the opposite direction, the transfer medium 182 also moves in the opposite direction.
  • the main body 10 receives power by the driving motor 187, the transfer rod 181, and the transfer medium 182, thereby allowing the transfer.
  • pulley (P) is connected to the drive shaft of the drive motor 187 and the end of the transfer rod 181 to transfer the power of the drive motor 187 to the transfer rod 181, these pulleys are belts (B) It is connected by) to the power of the drive motor 187 is transmitted to the transfer rod 181 to enable the rotation of the transfer rod 181.
  • the power transmission method according to the second embodiment of the driving unit 180 includes a rack unit 183 formed on the transfer rail 160 and a pinion unit provided in the driving unit 170. 184 and a drive motor 187 provided on the main body 10 and connected to the drive body 170.
  • the driving motor 187 when the driving motor 187 is rotated in one direction, the driving body 170 also rotates in one direction. At this time, the pinion part 184 also rotates together so that the pinion part 184 moves along the rack part 183. Done.
  • the main body 10 receives power by the drive motor 187, the rack part 183, and the pinion part 184, thereby allowing the transfer.
  • Figures 7a and 7b is a plan view and a side view for explaining a third embodiment of the drive unit 180.
  • the power transmission method according to the third embodiment of the driving unit 180 may be mounted on the driving motor 187 mounted on one side of the main body 110 and on the other side of the main body 110. And a driving chain 185 connected to the driving motor 187.
  • the sprocket S is provided on the drive shaft of the drive motor 187, and the bracket 188 is rotatably connected to the other side of the main body 110, that is, the position opposite to the drive motor 187. Another sprocket S is provided.
  • the ends of the drive chain 185 are connected to the front and rear under the main body 10.
  • the main body 10 receives the power by the drive motor 187 and the drive chain 185 to enable the transfer.
  • the driving chain 185 or the sprocket S may be replaced with a driving belt 170 such as a timing belt and a corresponding gear, a belt, and a pulley.
  • the driving unit 180 it is possible to transmit power to the main body 10 in various ways.
  • various types of power transmission methods such as an actuator and an LM guide may be introduced.
  • the driving body 170 connected to the main body 10 is moved along the conveying rail 160 to guide the conveying operation of the ceramic structure.
  • the driving body 170 is preferably configured in the form of a roller.
  • the driving motor 187 is configured to rotate according to an external power source and to change the rotation direction according to a control signal.
  • the ceramic structure performs massage treatment while moving in the vertical direction or the front-rear direction along the inside of the main body 110.
  • drive unit 31 drive motor
  • support protrusion 90 mounting rib
  • flange 110 main body
  • transfer unit 160 transfer rail
  • feed roller 180 drive unit

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Abstract

The present invention relates to an independent two-row ceramic structure and more specifically comprises: a main body; ascending/descending plates, which are coupled to the main body and ascend/descend by driving units; ascending/descending members connected to the ascending/descending plates; and ceramic members mounted on the ascending/descending plates and ascending/descending members. That is, the present invention provides an independent two-row ceramic structure which can actively respond to a change in a user's body by operating respective ascending/descending plates and ascending/descending members, which have ceramic members mounted thereon, independently or interactively according to the user's body type and can implement a soft message function by allowing elastic members to elastically support the ascending/descending plates, ascending/descending members, or both.

Description

독립형 2열 도자구조체Freestanding 2-row Ceramic Structure
본 발명은 도자부재가 장착된 승하강플레이트와 승하강부재가 각각 사용자의 체형에 따라 독립적으로 또는 상호 작용을 통하여 작동됨으로써 사용자의 신체 변화에 능동적으로 대응할 수 있고, 탄성부재가 승하강플레이트 또는 승하강부재, 또는 이들 모두를 탄성 지지함으로써 소프트한 마사지 기능을 구현할 수 있는 독립형 2열 도자구조체에 관한 것이다.According to the present invention, the elevating plate and the elevating member on which the ceramic member is mounted can be actively responded to the user's body change by operating independently or through interaction according to the user's body shape, and the elastic member is the elevating plate or the elevating plate. An independent two-row ceramic structure that can implement a soft massage function by elastically supporting the lower member, or both.
종래의 온열치료기의 도자구조는 대한민국 등록특허 제10-0325894호(2002.02.14. 이하 ‘종래기술’이라 함) “자동 온열치료기의 치료도자 승하강장치”가 개시되어 있다.The ceramic structure of the conventional thermal therapy device is disclosed in Republic of Korea Patent No. 10-0325894 (2002.02.14. Hereinafter 'prior art') "therapeutic ceramic lifting device of the automatic thermal therapy device".
상기 종래기술은 모터에 의해 회전하는 스크류를 따라 좌우 이동하는 이동체의 몸체에 수직으로 형성되는 유동공간과, 상기 유동공간내에 삽입 구속되고 좌우 이동시 유동공간내에서 상하 움직이는 이송봉의 하단에 걸림턱이 형성되는 치료기이동판과, 상기 치료기이동판과 이동체 사이에 위치하고 인체의 굴곡에 따라 인장 수축되면서 사용자의 환부를 가압 찜질할 수 있도록 치료도자를 상하 움직이게 하는 승하강스프링을 마련한 후, 상기 승하강스프링에 의해 치료기이동판이 상하 움직일때 치료도자가 사용자의 신체 굴곡에 따라 밀착되면서 동일한 힘으로 환부를 가압 찜질할 수 있도록 구성되어 있다.The prior art has a flow space formed perpendicular to the body of the movable body to move left and right along the screw rotated by the motor, and the locking step is formed at the lower end of the transfer rod is inserted and restrained in the flow space and moved up and down in the flow space when moving left and right After being provided between the therapeutic device moving plate and the therapeutic device moving plate and the mobile body, the lifting spring is provided to move the therapeutic ceramic up and down so as to pressurize the affected part while being stretched and contracted according to the bending of the human body. When the therapeutic plate is moved up and down, the therapeutic ceramics are configured to pressurize the affected part with the same force while being in close contact with the user's body curvature.
상기 종래기술은 치료도자가 사용자의 체형이나, 신체의 변화에 따라 승하강스프링에 의하여 승하강하게 되는데, 이 경우 사용자의 체형이나, 신체의 변화에 따라 치료도자는 전후 방향으로 또는 좌우측방향으로 작용하는 부하를 받게 된다.In the prior art, the therapeutic ceramic is raised and lowered by the lifting spring according to the user's body shape or body change. In this case, the therapeutic ceramic acts in the front and rear or left and right directions according to the user's body shape or body change. You are under load.
이때 승하강스프링에도 부하가 전달되며, 이 부하에 의하여 승하강스프링은 연직방향으로 운동 이외에 휨 변형이 발생하게 되어 소음이 발생하는 문제가 있다.At this time, the load is also transferred to the lifting spring, and the lifting spring is caused by the bending deformation in addition to the movement in the vertical direction, there is a problem that the noise occurs.
또한 승하강스프링에 지속적인 부하가 가해지는 경우 스트레스가 누적되어 내구성이 저감되는 문제가 있다.In addition, when a continuous load is applied to the lifting spring, there is a problem that the stress is accumulated and durability is reduced.
본 발명은 상기한 바와 같은 문제점을 해결하기 위해 안출된 것으로, 2열 도자부재가 장착된 승하강플레이트와 승하강부재에 의하여 사용자의 체형이나, 신체 변화에 따라 독립적으로 또는 상호 작용을 통하여 작동됨으로써 사용자의 체형이나, 신체 변화에 보다 능동적으로 대처하고자 하는 것을 하나의 목적으로 한다.The present invention has been made to solve the problems as described above, by the elevating plate and the elevating member equipped with a two-row ceramic member is operated independently or through interaction according to the user's body shape or body changes One purpose is to cope more actively with the user's body shape or body changes.
또한 본 발명은 승하강플레이트 또는 승하강부재, 또는 이들 모두가 탄성부재에 의하여 탄성 지지됨으로써 보다 소프트한 마사지 기능을 구현하고자 하는 것을 또 하나의 목적으로 한다.In addition, another object of the present invention is to implement a softer massage function by the elevating plate or the elevating member, or both are elastically supported by the elastic member.
아울러 본 발명은 승하강부재와 탄성부재가 가이드바와 고정홀더에 의하여 연결됨으로써 사용자에 의하여 인가되는 하중을 정하중으로 유도함으로써 탄성부재에 의한 소음발생을 저지할 뿐만 아니라, 탄성부재에 가해지는 부하를 줄이고자 하는 것을 또 하나의 목적으로 한다.In addition, the present invention is connected to the elevating member and the elastic member by the guide bar and the fixed holder to guide the load applied by the user to the static load not only to prevent the noise generated by the elastic member, but also to reduce the load on the elastic member It is another purpose to do so.
나아가 본 발명은 탄성부재의 하단을 고정시키기 위한 장착리브가 승하강플레이트에 일체로 형성되어 승하강플레이트와 함께 승하강함으로써 탄성부재의 신장길이를 연장하고, 이에 의하여 승하강부재의 높이를 보다 높일 수 있어 사용자의 체형이나, 신체 변화에 보다 효율적으로 대응하고자 하는 것을 또 하나의 목적으로 한다.Furthermore, in the present invention, the mounting ribs for fixing the lower end of the elastic member are integrally formed on the elevating plate to elevate together with the elevating plate to extend the elongation of the elastic member, thereby increasing the height of the elevating member. Another object is to respond to user's body shape and body changes more efficiently.
한편 본 발명은 도자구조체의 이송을 위해 다양한 방식의 동력전달방식을 도입하고, 각 동력전달방식에 따른 작동 신뢰성을 담보할 수 있어 도자구조체의 운전을 효율적으로 운용하고자 하는 것을 또 하나의 목적으로 한다.Meanwhile, another object of the present invention is to introduce various types of power transmission methods for the transfer of the ceramic structure, and to ensure the operation reliability according to each power transmission method, and to operate the ceramic structure efficiently. .
본 발명에 따른 독립형 2열 도자구조체는 본체, 상기 본체에 결합되고, 구동부에 의하여 승하강하는 승하강플레이트, 상기 승하강플레이트에 연결되는 승하강부재 및 상기 승하강플레이트 및 상기 승하강부재에 장착되는 도자부재를 포함하여 이루어진다.Independent two-row ceramic structure according to the present invention is coupled to the main body, the elevating plate which is elevated by the drive unit, the elevating plate, the elevating member connected to the elevating plate and the elevating plate and the elevating member It is made to include a ceramic member.
본 발명에 따른 상기 승하강플레이트 또는 상기 승하강부재, 또는 이들 모두에 구비되어 탄성 지지하는 탄성부재를 더 포함하는 것을 특징으로 한다.The elevating plate or the elevating member according to the present invention, characterized in that it further comprises an elastic member provided on both or elastically support.
본 발명에 따른 상기 탄성부재는 상기 승하강부재에 구비되고, 상기 승하강부재에는 상기 탄성부재에 연결되는 가이드바가 더 구비되어 있는 것을 특징으로 한다.The elastic member according to the present invention is provided on the elevating member, the elevating member is characterized in that it is further provided with a guide bar connected to the elastic member.
본 발명에 따른 상기 탄성부재 상부에 연결되고, 상기 가이드바를 지지하기 위한 가이드홀더가 더 구비되어 있는 것을 특징으로 한다.It is connected to an upper portion of the elastic member according to the invention, characterized in that the guide holder for supporting the guide bar is further provided.
본 발명에 따른 상기 승하강플레이트에 연결되고, 상기 탄성부재가 고정되는 장착리브가 더 구비되어 있는 것을 특징으로 한다.Connected to the elevating plate according to the present invention, characterized in that the mounting rib is further provided with the elastic member is fixed.
본 발명에 따른 상기 장착리브에는 상기 탄성부재의 이탈을 방지하기 위한 고정홀더가 더 구비되어 있는 것을 특징으로 한다.The mounting rib according to the invention is characterized in that it is further provided with a fixing holder for preventing the separation of the elastic member.
본 발명에 따른 상기 구동부는 상기 본체에 장착되는 구동모터와, 상기 구동모터에 결합되는 회동부재와, 상기 승하강플레이트에 연결되고, 상기 회동부재에 맞물리는 가이드부재를 포함하여 이루어진 것을 특징으로 한다.The drive unit according to the present invention is characterized in that it comprises a drive motor mounted to the main body, a rotating member coupled to the drive motor, a guide member connected to the lifting plate, and engaged with the rotating member. .
본 발명에 따른 상기 본체를 이송하기 위한 이송부가 더 구비되는 것을 특징으로 한다.Characterized in that the transfer unit for further transporting the main body according to the invention.
본 발명에 따른 상기 이송부는 메인바디에 형성되는 이송레일과, 상기 본체에 구비되어 상기 이송레일을 따라 이동하는 구동체와, 상기 구동체에 동력을 전달하기 위한 구동부를 포함하여 이루어진 것을 특징으로 한다.The transfer unit according to the present invention is characterized in that it comprises a transfer rail formed in the main body, a drive body provided in the main body moving along the transfer rail, and a drive unit for transmitting power to the drive body. .
본 발명에 따른 상기 구동부는 상기 이송레일의 길이방향으로 형성되고, 나사산이 형성된 이송로드와, 상기 본체에 장착되고, 상기 이송로드에 연결되는 이송매개체와, 상기 이송로드 단부에 연결되는 구동모터를 포함하여 이루어진 것을 특징으로 한다.The drive unit according to the present invention is formed in the longitudinal direction of the conveying rail, a threaded feed rod, a transfer medium mounted to the main body, connected to the transfer rod, and a drive motor connected to the end of the transfer rod Characterized in that the made up.
본 발명에 따른 상기 구동부는 상기 이송레일 상에 구비되는 랙부와, 상기 구동체에 구비되는 피니언부와, 상기 본체에 구비되고, 상기 구동체에 연결되는 구동모터를 포함하여 이루어진 것을 특징으로 한다.The drive unit according to the present invention is characterized in that it comprises a rack unit provided on the conveying rail, a pinion unit provided in the drive body, and a drive motor provided in the main body, connected to the drive body.
본 발명에 따른 상기 구동부는 상기 메인바디의 일측에 구비되는 구동모터와, 상기 구동모터에 연결되고, 상기 본체에 장착되는 구동체인을 포함하여 이루어진 것을 특징으로 한다.The drive unit according to the present invention is characterized in that it comprises a drive motor provided on one side of the main body, and a drive chain connected to the drive motor, mounted on the main body.
본 발명에 따른 독립형 2열 도자구조체는 2열 도자부재가 장착된 승하강플레이트와 승하강부재에 의하여 사용자의 체형이나, 신체 변화에 상호 작용을 통하여 작동됨으로써 사용자의 체형이나, 신체 변화에 보다 능동적으로 대처함으로써 마사지 기능을 극대화시킬 수 있게 된다.The independent two-row ceramic structure according to the present invention is more active in the user's body shape or body change by being operated by interacting with the user's body shape or body change by the elevating plate and the elevating member equipped with the two-row ceramic member. By coping with it, the massage function can be maximized.
또한 본 발명은 승하강부재가 탄성부재에 의하여 탄성 지지됨으로써 보다 소프트한 마사지 기능을 구현함으로써 사용자로부터 편안하면서도 안락한 느낌을 줄 수 있어 사용자 신뢰성을 높일 수 있게 된다.In addition, the present invention can be enhanced by the elastic member is elastically supported by the elastic member to implement a softer massage function can give a comfortable and comfortable feeling from the user to increase the user reliability.
아울러 본 발명은 승하강부재와 탄성부재가 가이드바와 고정홀더에 의하여 연결됨으로써 사용자에 의하여 인가되는 하중을 정하중으로 유도함으로써 탄성부재에 의한 소음발생을 저지할 뿐만 아니라, 탄성부재에 가해지는 부하를 줄일 수 있어 내구성을 향상시킬 수 있게 된다.In addition, the present invention is connected to the elevating member and the elastic member by the guide bar and the fixed holder to guide the load applied by the user to the static load not only to prevent the noise generated by the elastic member, but also to reduce the load on the elastic member It is possible to improve the durability.
나아가 본 발명은 탄성부재의 하단을 고정시키기 위한 장착리브가 승하강플레이트에 일체로 형성되어 승하강플레이트와 함께 승하강함으로써 탄성부재의 신장길이를 연장하고, 이에 의하여 승하강부재의 높이를 보다 높일 수 있어 사용자의 체형이나, 신체 변화에 보다 효율적으로 대응함으로써 장치의 신뢰성을 보장할 수 있게 된다.Furthermore, in the present invention, the mounting ribs for fixing the lower end of the elastic member are integrally formed on the elevating plate to elevate together with the elevating plate to extend the elongation of the elastic member, thereby increasing the height of the elevating member. Therefore, it is possible to ensure the reliability of the device by more efficiently responding to the user's body shape and body changes.
한편 본 발명은 도자구조체의 이송을 위해 다양한 방식의 동력전달방식을 도입하고, 각 동력전달방식에 따른 작동 신뢰성을 담보할 수 있어 도자구조체의 운전을 효율적으로 운용할 수 있게 된다.On the other hand, the present invention introduces a variety of power transmission methods for the transfer of the ceramic structure, it is possible to ensure the operation reliability according to each power transmission method it is possible to efficiently operate the operation of the ceramic structure.
도 1 및 도 2는 본 발명에 따른 독립형 2열 도자구조체를 나타내는 사시도이다.1 and 2 are perspective views showing the independent two-row ceramic structure according to the present invention.
도 3는 본 발명에 따른 독립형 2열 도자구조체를 나타내는 분해사시도이다.3 is an exploded perspective view showing a stand alone two-row ceramic structure according to the present invention.
도 4는 본 발명에 따른 독립형 2열 도자구조체를 나타내는 정면도이다.Figure 4 is a front view showing a stand alone two-row ceramic structure according to the present invention.
도 5 내지 도 7은 본 발명에 따른 도자구조체의 이송부에서 구동부의 다양한 변형례를 나타내는 개념도이다.5 to 7 are conceptual views illustrating various modifications of the driving unit in the transfer unit of the ceramic structure according to the present invention.
이하에서는 본 발명에 따른 독립형 2열 도자구조체를 첨부된 도면을 참조하여 자세하게 기술하기로 한다.Hereinafter, the independent two-row ceramic structure according to the present invention will be described in detail with reference to the accompanying drawings.
도 1 내지 도 4에 도시된 바와 같이 본 발명에 따른 독립형 2열 도자구조체는 본체(10)와, 구동부(30)에 의하여 승하강되는 승하강플레이트(20)와, 승하강플레이트(20)에 연결되는 승하강부재(40)와, 승하강부재(40)를 지지하는 탄성부재(50)와, 승하강플레이트 및 승하강부재(20)(40)에 장착되는 도자부재(60)를 포함하여 구성된다.As shown in FIGS. 1 to 4, the independent two-row ceramic structure according to the present invention includes a main body 10, a lifting plate 20 which is lifted up and down by the driving unit 30, and a lifting plate 20. Including the elevating member 40 connected, the elastic member 50 for supporting the elevating member 40, and the ceramic member 60 mounted on the elevating plate and elevating member 20, 40 It is composed.
본 발명에 따른 독립형 2열 도자구조체는 침대형 또는 의자형 등과 같은 다양한 형태의 온열치료기 내부에서 설치되고, 본체(10) 일측에는 이송수단(미도시)이 구비되고, 이 이송수단(미도시)에 의하여 이동하면서 도자부재(60)가 사용자의 신체 일부와 접촉되어 온열 공급을 통한 마사지작업을 수행하게 된다.Independent two-row ceramic structure according to the present invention is installed in a heat treatment device of various forms, such as a bed type or chair type, one side of the main body 10 is provided with a transfer means (not shown), this transfer means (not shown) While moving by the ceramic member 60 is in contact with the user's body portion to perform a massage operation through the supply of heat.
그리고 이 이송수단은 첨부된 도면에는 도시되지 않았지만, 스프로킷과 체인의 조합으로 구성되거나, 또는 레일과 가이드 조합으로 구성되거나, 랙기어와 피니언기어의 조합 등으로 구성될 수 있고, 이외에도 다양한 형태의 이송수단의 도입이 가능하다.Although the conveying means is not shown in the accompanying drawings, it may be composed of a combination of a sprocket and a chain, or a combination of a rail and a guide, or a combination of a rack gear and a pinion gear, and other forms of conveying. Introduction of the means is possible.
우선 도 1 내지 도 4에 도시된 바와 같이 본 발명에 따른 본체(10)는 사각형의 블록 형태로 구성되고, 상부 일측에는 상방으로 돌출된 한 쌍의 제1 결합부(11)가 구비된다.First, as shown in FIGS. 1 to 4, the main body 10 according to the present invention is configured in the form of a rectangular block, and a pair of first coupling parts 11 protruding upward is provided at one upper side thereof.
이 제1 결합부(11)에는 결합핀(13)에 의하여 승하강플레이트(20)의 후단이 힌지 결합되어 이 결합핀(13)을 축으로 승하강플레이트(20)가 선회하여 승하강 동작이 구현된다.The rear end of the elevating plate 20 is hinged to the first coupling portion 11 by a coupling pin 13, and the elevating plate 20 pivots around the coupling pin 13 to move up and down. Is implemented.
다음으로 도 1 내지 도 4에 도시된 바와 같이 본 발명에 따른 승하강플레이트(20)는 구동부(30)에 의하여 동력을 전달받아 본체(10)의 제1 결합부(11)를 축으로 회동하여 승하강동작을 하도록 구성된다.Next, as shown in FIGS. 1 to 4, the elevating plate 20 according to the present invention receives power by the driving unit 30 to rotate the first coupling part 11 of the main body 10 by an axis. It is configured to move up and down.
즉 승하강플레이트(20)는 양측으로 지지부(21)가 구비되고, 지지부(21)의 후단에는 본체(10)의 제1 결합부(11)에 결합되는 제1 대응결합부(23)가 형성되고, 승하강플레이트(20)의 지지부(21) 전단에는 제2 결합부(25)가 형성되고, 이 제2 결합부(25)에는 승하강부재(40)가 힌지 결합된다.That is, the elevating plate 20 is provided with support portions 21 on both sides, and a first corresponding coupling portion 23 coupled to the first coupling portion 11 of the main body 10 is formed at the rear end of the support portion 21. The second coupling part 25 is formed at the front end of the supporting part 21 of the elevating plate 20, and the lifting member 40 is hinged to the second coupling part 25.
또한 승하강플레이트(20)의 상면에는 양측으로 제1 브래킷(27)에 의하여 한 쌍의 1열 도자(61), 즉 도자부재(60)가 회전 가능하도록 장착된다.In addition, a pair of single-row conductors 61, that is, the ceramic member 60, is rotatably mounted on both surfaces of the elevating plate 20 by the first bracket 27 on both sides thereof.
아울러 승하강플레이트(20)는 제1 결합부(11)와 제1 대응결합부(23)를 회전 중심으로 선회하도록 구동부(30)에 의하여 동력이 전달되는데, 이 구동부(30)는 본체(10)에 장착되는 구동모터(31)와, 이 구동모터(31)에 결합되는 회동부재(33)와, 승하강플레이트(20)에 연결되고, 회동부재(33)에 맞물리는 가이드부재(35)를 포함하여 구성된다.In addition, the lifting plate 20 is the power is transmitted by the drive unit 30 so as to pivot the first coupling portion 11 and the first corresponding coupling portion 23 to the rotation center, the driving portion 30 is the main body 10 A driving motor (31) mounted on the), a rotating member (33) coupled to the driving motor (31), a guide member (35) connected to the lifting plate (20), and engaged with the rotating member (33). It is configured to include.
먼저 구동부(30)의 구동모터(31)는 본체(10)의 하부에 설치되고, 구동축이 구비되며,First, the drive motor 31 of the drive unit 30 is installed below the main body 10, the drive shaft is provided,
구동부(30)의 회동부재(33)는 구동모터(31)의 구동축에 결합되어 회전하는 기어부(33a)로 구성된다.The rotating member 33 of the drive unit 30 is composed of a gear unit 33a which is coupled to the drive shaft of the drive motor 31 to rotate.
또한 구동부(30)의 가이드부재(35)는 곡선 형태로 이루어져 승하강플레이트(20)에 구비되고, 회동부재(33)의 기어부(33a)에 맞물리는 대응기어부(35a)가 구비된다.In addition, the guide member 35 of the drive unit 30 has a curved shape and is provided on the elevating plate 20, and has a corresponding gear portion 35a engaged with the gear portion 33a of the rotation member 33.
즉 구동모터(31)의 작동으로 회동부재(33)가 일방향으로 회전을 하게 되면 가이드부재(35)가 승강 또는 하강하여 승하강플레이트(20)의 승하강 동작이 구현된다.That is, when the rotation member 33 rotates in one direction by the operation of the driving motor 31, the guide member 35 is lifted or lowered to realize the lifting operation of the lifting plate 20.
따라서 마사지 작업 시, 사용자의 체형이나, 신체 변화에 따라 적절한 회전수와 회전량으로 구동부(30)가 작동하게 되고, 이때 승하강플레이트(20)와 1열 도자(61)가 사용자의 체형이나, 신체 변화에 따라 승하강함으로써 효율적인 마사지 작업을 구현할 수 있게 된다.Therefore, during the massage operation, the driving unit 30 is operated at an appropriate number of rotations and the amount of rotation according to the user's body shape or body change, and the elevating plate 20 and the first row of ceramics 61 are the user's body shape, As the body moves up and down, efficient massage work can be realized.
이 경우 구동부의 가이드부재와 회동부재는 각각 랙 및 피니언과 같은 구동체로 대체가 가능하다.In this case, the guide member and the rotating member of the driving unit may be replaced by a driving body such as a rack and a pinion, respectively.
또한 구동부(30)는 상기한 바와 같이 기어에 의한 작동방법과 달리 회동부재(33)와 가이드부재(35)가 맞닿는 부분에 마찰패드를 이용한 마찰에 의한 작동방법도 가능하고, 이외에 다양한 형태의 구동방식을 적용하는 것도 가능하다.In addition, unlike the operating method of the gear unit as described above, the driving unit 30 is also possible to operate by friction using a friction pad on the part where the rotating member 33 and the guide member 35 come into contact with each other. It is also possible to apply the method.
또한 승하강플레이트(20)의 하방에는 무게감지부(미도시)가 배치되어 있어 1열 도자(61)에 사용자의 신체가 접하여 인가되는 하중을 감지할 수 있게 된다.In addition, a weight sensing unit (not shown) is disposed below the elevating plate 20 to sense a load applied by contacting the user's body to the first row of ceramics 61.
따라서 무게감지부는 감지된 하중을 컨트롤러에 전달하고, 컨트롤러에 의하여 구동부(30)를 제어하여 승하강플레이트(20)의 승하강 높이를 조절할 수 있다.Therefore, the weight sensing unit transmits the sensed load to the controller and controls the driving unit 30 by the controller to adjust the raising and lowering height of the elevating plate 20.
아울러 무게감지부에 의하여 감지된 하중 정보에 의하여 컨트롤러는 도자구조체의 수평방향 이송속도를 제어하여 최적의 마사지 효과를 얻을 수 있다.In addition, the controller controls the horizontal feed rate of the ceramic structure by the load information sensed by the weight sensing unit to obtain an optimal massage effect.
이는 하중을 많이 받는 구간에서는 도자구조체의 수평이송속도를 저속으로 유지하도록 조절하고, 하중을 상대적으로 덜 받는 구간에서는 도자구조체의 수평이송속도를 고속으로 유지한다든지 다양한 제어 조절이 가능하다.This is controlled to keep the horizontal conveying speed of the ceramic structure at a low speed in the section under heavy load, and various control adjustments are possible, such as maintaining the horizontal conveying speed of the ceramic structure at high speed in the section under relatively low load.
이 경우 무게감지부는 로드셀이나, 이와 동등 및 유사한 형태의 감지센서의 도입이 가능하다.In this case, the weight sensing unit may introduce a load cell, or a sensor similar or similar thereto.
또한 컨트롤러에서는 무게감지부에 의한 하중 정보를 이용하여 사용자의 신체 정보를 축적하고, 이렇게 축적된 정보는 사용자 체형의 스캔 정보로도 활용이 가능하다.In addition, the controller accumulates the user's body information using the load information by the weight sensing unit, and the accumulated information may be used as scan information of the user's body shape.
이렇게 획득된 스캔 정보를 활용하여 사용자의 신체 특성, 특히 척추의 만곡 형태를 미리 확인할 수 있고, 이를 이용하여 사용자의 척추 특성에 따른 마자지 구간이나, 지압점을 사용자 특성에 맞도록 적용할 수 있어 사용자 맞춤형 마사지 작업이 가능하게 된다.By using the scan information acquired in this way, the user's body characteristics, in particular, the curvature of the spine can be checked in advance, and by using this, the user can apply a massage section or acupressure point according to the user's spine to fit the user's characteristics. Customized massage work is possible.
도 1 내지 도 4에 도시된 바와 같이 본 발명에 따른 승하강부재(40)는 승하강플레이트(20)에 힌지 결합되어 승하강 동작을 통하여 사용자의 체형이나, 신체 변화에 보다 능동적으로 대응할 수 있도록 구성된다.As shown in FIGS. 1 to 4, the elevating member 40 according to the present invention is hinged to the elevating plate 20 to more actively respond to the user's body shape or body change through the elevating operation. It is composed.
승하강부재(40)는 양측으로 제2 브래킷(45)에 의하여 회전 가능하도록 한 쌍의 2열 도자(63), 즉 도자부재(60)가 장착되고, 후방에는 승하강플레이트(20)의 제2 결합부(25)에 대응하도록 제2 대응결합부(41)가 형성되어 상호 힌지 결합된다.The elevating member 40 is equipped with a pair of two-row ceramics 63, that is, the ceramic member 60, so as to be rotatable by the second bracket 45 on both sides, and at the rear of the elevating plate 20 The second mating coupling portion 41 is formed to correspond to the second coupling portion 25 and is hinged to each other.
그리고 승하강부재(40) 하부에는 상호 이격된 한 쌍의 장착돌기(43)가 형성되고, 이 장착돌기(43)들에는 장착공(43a)이 형성된다.A pair of mounting protrusions 43 spaced apart from each other is formed below the elevating member 40, and mounting holes 43a are formed in the mounting protrusions 43.
도 1 내지 도 4에 도시된 바와 같이 본 발명에 따른 탄성부재(50)는 승하강부재(40)를 탄성 지지하기 위해 승하강부재(40)의 하방에 배치되어 마사지 작업 시, 소프트한 마사지 기능을 구현할 뿐만 아니라, 사용의 체형이나, 신체 변화에 따라 마사지 작업이 보다 효율적으로 구현될 수 있도록 한다.1 to 4, the elastic member 50 according to the present invention is disposed below the elevating member 40 to elastically support the elevating member 40, during the massage operation, the soft massage function In addition to the implementation, according to the use of the body type or body changes, the massage operation can be implemented more efficiently.
우선 이 탄성부재(50)의 하단은 본체(10)에 고정되어 승하강부재(40)의 하방에 배치되고, 탄성부재(50)의 하단은 승하강플레이트(20)에 일체로 연결되는 장착리브(90)에 의하여 고정된다.First, the lower end of the elastic member 50 is fixed to the main body 10 and disposed below the elevating member 40, and the lower end of the elastic member 50 is integrally connected to the elevating plate 20. It is fixed by 90.
이 장착리브(90)는 승하강플레이트(20)로부터 다단 절곡되어 전방으로 연장되어 승하강부재(40)의 하방에 위치하는 고정부(91)가 구비되고, 이 고정부(91)에는 끼움공(93)이 형성된다.The mounting rib 90 is provided with a fixing portion 91 which is bent in multiple stages from the elevating plate 20 and extended forward to be positioned below the elevating member 40. The fixing portion 91 is fitted with a fitting hole. 93 is formed.
따라서 탄성부재(50)는 그 하단이 장착리브(90)의 끼움공(93)에 삽입되는데, 이 경우 탄성부재(50)가 끼움으로부터 분리 이탈되는 것을 방지하기 위해 고정홀더(100)가 구비된다.Therefore, the elastic member 50 has a lower end inserted into the fitting hole 93 of the mounting rib 90. In this case, the fixing member 100 is provided to prevent the elastic member 50 from being separated from the fitting. .
이 고정홀더(100)는 하방으로 돌출된 환형의 끼움돌기(101)가 구비되어 장착리브(90)의 끼움공(93)에 탄성부재(50)의 하단 끼워진 후, 끼움공(93)에 삽입되어 탄성부재(50)의 하단을 고정시켜 탄성부재(50)가 끼움공(93)으로부터 분리 이탈되는 것을 방지할 수 있게 된다.The fixing holder 100 is provided with an annular fitting protrusion 101 protruding downward, and is inserted into the fitting hole 93 after being fitted to the fitting hole 93 of the mounting rib 90 by the lower end of the elastic member 50. By fixing the lower end of the elastic member 50 it is possible to prevent the elastic member 50 from being separated and separated from the fitting hole (93).
또한 고정홀더(100)에는 끼움돌기(101) 상단에 외측방향으로 돌출된 플랜지부(103)가 형성되어 고정부(91)에 맞닿아 고정홀더(100)를 지지하게 된다.In addition, the fixing holder 100 is formed with a flange portion 103 protruding outward on the upper end of the fitting protrusion 101 is in contact with the fixing portion 91 to support the fixing holder 100.
따라서 탄성부재(50)는 승하강플레이트(20)의 승하강 동작 시, 장착리브(90)에 의하여 승하강플레이트(20)와 함께 승하강 동작을 하게 된다.Therefore, the elastic member 50 moves up and down together with the lifting plate 20 by the mounting ribs 90 during the lifting operation of the lifting plate 20.
다만 탄성부재(50)의 고정방식은 상기한 바와 같이 장착리브(90)를 도입하지 않고, 탄성부재(50)의 하단이 본체(10)에 고정되는 것도 가능하다.However, in the fixing method of the elastic member 50, as described above, the lower end of the elastic member 50 may be fixed to the main body 10 without introducing the mounting rib 90.
나아가 승하강부재(40)에는 가이드바(70)가 연결되어 승하강부재(40)가 탄성부재(50)로부터 분리 이탈되는 것이 방지될 수 있도록 하는 것이 바람직하다.Furthermore, it is preferable that the guide bar 70 is connected to the elevating member 40 so that the elevating member 40 can be prevented from being separated from the elastic member 50.
이 가이드바(70)는 상단이 승하강부재(40)의 장착돌기(43)들 사이에 삽입되고The guide bar 70 has an upper end inserted between the mounting protrusions 43 of the elevating member 40,
가이드바(70) 상단부에는 승하강부재(40)의 장착공(43a)에 상응하도록 대응장착공(71)이 형성되어 각 장착공(43a)에 체결핀(73)을 꽂아 장착돌기(43)와 가이드바(70)를 고정시키게 된다.A corresponding mounting hole 71 is formed at the upper end of the guide bar 70 so as to correspond to the mounting hole 43a of the elevating member 40. The mounting protrusion 43 is inserted into each of the mounting holes 43a. And the guide bar 70 is fixed.
이 경우 체결핀(73)에는 키홈(77)이 형성되고, 이 키홈(77)에 키(75)를 삽입하여 체결핀(73)이 각 장착공(43a)으로부터 분리되는 것을 방지할 수 있게 된다.In this case, a key groove 77 is formed in the fastening pin 73, and the key 75 is inserted into the key groove 77 to prevent the fastening pin 73 from being separated from each mounting hole 43a. .
이때 승하강부재(40)는 체결핀(73)을 회전축으로 하여 전후방향으로 일정범위 내에서 선회동작이 가능하게 된다.At this time, the elevating member 40 is capable of turning in a predetermined range in the front and rear direction by using the fastening pin 73 as the rotation axis.
아울러 승하강부재(40)의 승하강 동작 시, 가이드바(70)를 안내하고, 가이드바(70)의 유동을 방지하기 위한 가이드홀더(80)가 구비되는데, 이 가이드홀더(80)는 탄성부재(50) 상단에 삽입되고, 가이드바(70)가 관통하는 슬리브(81)와, 이 슬리브(81) 상단에 외측방향으로 돌출되어 탄성부재(50)의 상단에 맞닿는 환형의 지지돌기(83)로 구성된다.In addition, when the elevating operation of the elevating member 40, the guide bar 70 is guided, and a guide holder 80 for preventing the flow of the guide bar 70 is provided, the guide holder 80 is elastic A sleeve 81 inserted into the upper end of the member 50 and through which the guide bar 70 penetrates, and an annular support protrusion 83 protruding outward from the upper end of the sleeve 81 to abut on the upper end of the elastic member 50. It is composed of
따라서 승하강부재(40)의 승강 동작 시, 가이드홀더(80)의 슬리브(81)에 의하여 가이드바(70)의 안정적인 승하강 동작이 유도될 뿐만 아니라, 가이드바(70)의 유동을 방지할 수 있게 되어 작동신뢰성을 보장할 수 있게 된다.Therefore, during the lifting operation of the lifting member 40, not only the stable lifting operation of the guide bar 70 is induced by the sleeve 81 of the guide holder 80, but also prevents the flow of the guide bar 70. This ensures operational reliability.
이하에서는 본 발명에 따른 도자구조체의 승하강 동작을 보다 상세히 설명하기로 한다.Hereinafter, the elevating operation of the ceramic structure according to the present invention will be described in detail.
먼저 승하강플레이트(20)가 구동부(30)에 의하여 승강하는 경우 승하강플레이트(20)에 힌지 결합된 승하강부재(40) 역시 승강을 하게 된다.First, when the elevating plate 20 is elevated by the driving unit 30, the elevating member 40 hinged to the elevating plate 20 is also elevated.
이 경우 승하강부재(40)는 가이드바(70)에 상단에 힌지 결합되어 전후방향으로 선회 동작이 가능하도록 구성되어 승하강부재(40)의 원활한 움직임을 가능하게 한다.In this case, the elevating member 40 is hinged to the upper end to the guide bar 70 is configured to enable the pivoting operation in the front and rear direction to enable the smooth movement of the elevating member 40.
또한 승하강플레이트(20)의 승강 시, 장착리브(90) 역시 승강하게 되고, 이때 탄성부재(50) 역시 승강을 하게 된다.In addition, when the lifting plate 20 is lifted, the mounting rib 90 is also lifted, and the elastic member 50 is also lifted.
이는 탄성부재(50)가 본체(10)에 고정되는 경우 보다 신장거리를 보다 증대시킬 수 있게 되어 승하강부재(40)를 보다 높이 승강시킬 수 있게 되고, 이에 의하여 2열 도자(63)는 1열 도자(61)보다 높이 상승할 수 있게 된다.It is possible to increase the extension distance more than when the elastic member 50 is fixed to the main body 10 to be able to raise and lower the elevating member 40, whereby the two-row ceramics 63 is 1 It is possible to rise higher than the heat conductor 61.
이 경우 2열 도자(63)는 사용자의 신체가 접하는 경우 탄성부재(50)에 의하여 보다 소프트한 마사지가 가능하게 되어 사용자로부터 편안하면서도 안락한 느낌을 줌으로써 마사지 기능을 극대화시킬 수 있게 된다.In this case, when the user's body is in contact with the second row ceramic 63, the softer massage is possible by the elastic member 50, thereby maximizing the massage function by giving a comfortable and comfortable feeling from the user.
나아가 2열 도자(63)가 사용자의 신체에 접하여 인가되는 하중은 승하강부재(40)가 가이드바(70)와 가이드홀더(80)에 의하여 탄성부재(50)에 정하중이 재하되도록 함으로써 탄성부재(50)의 뒤틀림이나 휨을 방지할 수 있게 된다.Furthermore, the load applied by the two-row conductor 63 in contact with the user's body is such that the elevating member 40 loads the static load on the elastic member 50 by the guide bar 70 and the guide holder 80. It is possible to prevent distortion and bending of the 50.
이는 종래에 도입되던 탄성부재의 경우에는 사용자에 의한 하중이 재하되는 경우 승하강부재가 선회 동작을 통하여 탄성부재에 하중을 전달하기 때문에 탄성부재에 정하중이 인가될 수 없었고, 이에 의하여 탄성부재로부터 소음이 발생하거나, 또는 탄성부재에 부하가 커 내구성에 문제가 있다.This is because in the case of the elastic member, which has been conventionally introduced, the static load cannot be applied to the elastic member because the elevating member transfers the load to the elastic member through the pivoting operation when the load by the user is loaded, thereby making noise from the elastic member. This occurs, or the load on the elastic member is large, there is a problem in durability.
이러한 문제를 해결하기 위해 본 발명에서는 승하강부재(40)와 탄성부재(50)가 가이드바(70)와 가이드홀더(80)에 의하여 연결되어 사용자에 의한 하중이 연직방향, 즉 정하중으로 재하될 수 있도록 하여 탄성부재(50)에 의한 소음발생을 저지할 수 있을 뿐만 아니라, 탄성부재(50)에 가해지는 부하를 줄일 수 있어 내구성을 향상시킬 수 있게 된다.In order to solve this problem, in the present invention, the elevating member 40 and the elastic member 50 are connected by the guide bar 70 and the guide holder 80 so that the load by the user is loaded in the vertical direction, that is, the static load. By making it possible to prevent the noise generated by the elastic member 50, as well as to reduce the load applied to the elastic member 50 it is possible to improve the durability.
상기한 바와 같은 탄성부재(50)는 압축스프링 또는 인장스프링 등과 같은 코일스프링 형태가 사용되는 것이 바람직하나, 필요에 따라서는 고무, 엘라스토머(elastomer) 등과 같은 탄성체를 사용하는 것도 가능하다.The elastic member 50 as described above is preferably used in the form of a coil spring, such as a compression spring or a tension spring, it is also possible to use an elastic body such as rubber, elastomer (elastomer), if necessary.
도 5 내지 도 7에 도시된 바와 같이 본 발명에 따른 본체를 이송하기 위한 이송부(140)가 구비되는데, 이 이송부는 본체(10)의 양측면에 구비되는 구동체(170)와, 이 구동체(170)에 동력을 전달하는 구동부(180)를 포함하고, 메인바디(110)에 형성되어 구동체(170)가 활주하는 이송레일(160)을 더 포함하여 구성된다.As shown in FIGS. 5 to 7, a conveying unit 140 for conveying a main body according to the present invention is provided, which is provided with a driving body 170 provided on both sides of the main body 10, and the driving body ( It includes a drive unit 180 for transmitting power to the 170, and is formed on the main body 110 is configured to further include a transport rail 160, the drive body 170 slides.
먼저 본체(10)는 대략 사각 판 형태로 제작되나, 이에 한정되지 않고, 다양한 형상으로의 변형 제작이 가능하다.First, the main body 10 is manufactured in the form of a substantially rectangular plate, but is not limited thereto and may be manufactured in various shapes.
또한 구동체(170)는 롤러 형태로 제작이 가능하나, 하기할 구동부(180)의 작동방식에 따라 변형이 가능하므로, 각 구동부(180)의 작동방식을 기술하는 부분에서 보다 자세하게 기술하기로 한다.In addition, the driving body 170 can be manufactured in the form of a roller, but can be modified in accordance with the operation method of the driving unit 180 to be described below, which will be described in more detail in the section describing the operating method of each driving unit 180. .
전술한 바와 같이 이송부(140)의 구동부(180)는 다양한 형태의 구동방식에 의한 구현이 가능하다.As described above, the driving unit 180 of the transfer unit 140 may be implemented by various types of driving methods.
따라서 이하에서는 구동부(180)의 다양한 구동방식에 의하여 구동체(170)에 동력을 전달하는 실시례들을 보다 상세하게 기술하기로 한다.Therefore, hereinafter, embodiments of transmitting power to the driving body 170 by various driving methods of the driving unit 180 will be described in more detail.
도 5a는 구동부(180)의 제1 실시례에서 구동부(180)에 메인바디(110)를 장착하기 전을 도시한 도면이고, 도 5b는 구동부(80)에 메인바디(110)를 장착한 후를 도시한 도면이다.5A is a view showing before the main body 110 is mounted to the drive unit 180 in the first embodiment of the drive unit 180, Figure 5b is after the main body 110 is mounted to the drive unit 80 Figure is a diagram.
먼저 구동부(180)의 제1 실시례에 따른 동력전달방식은 도 5a 및 도 5b에 도시된 바와 같이, 이송레일(160)의 길이방향으로 형성되고, 외주면에 나사산이 형성된 이송로드(181)와, 이송로드(181)의 나사산에 대응하도록 내측부에 나사산이 형성되어 이송로드(181)에 연결되고, 본체(10)에 결합되는 이송매개체(182)와, 이송로드(181)의 일측 단부에 연결되는 구동모터(187)로 구성된다.First, the power transmission method according to the first embodiment of the driving unit 180 is formed in the longitudinal direction of the conveying rail 160 as shown in FIGS. 5A and 5B, and a conveying rod 181 having a thread formed on an outer circumferential surface thereof. The thread is formed on the inner side to correspond to the thread of the transfer rod 181 and is connected to the transfer rod 181, and is connected to the transfer medium 182 coupled to the main body 10 and to one end of the transfer rod 181. It consists of a drive motor 187.
즉 구동모터(187)가 작동되어 일방향으로 회전하는 경우 이송로드(181)가 회전되고, 이때 이송매개체(182)는 이송로드(181)를 따라 일방향으로 이동을 하게 되며, 구동모터(187)가 반대방향을 회전하는 경우에는 이송매개체(182) 역시 반대 방향으로 이동을 하게 된다.That is, when the driving motor 187 is rotated in one direction, the feed rod 181 is rotated, and the transfer medium 182 is moved in one direction along the feed rod 181, and the drive motor 187 is moved. When rotating in the opposite direction, the transfer medium 182 also moves in the opposite direction.
따라서 본 실시례에서는 본체(10)가 구동모터(187), 이송로드(181) 및 이송매개체(182)에 의하여 동력을 전달받아 이송이 가능하게 된다.Therefore, in the present embodiment, the main body 10 receives power by the driving motor 187, the transfer rod 181, and the transfer medium 182, thereby allowing the transfer.
또한 구동모터(187)의 동력을 이송로드(181)로 전달하기 위해 구동모터(187)의 구동축과, 이송로드(181)의 단부에는 각각 풀리(P)가 연결되고, 이 풀리들은 벨트(B)에 의하여 연결되어 구동모터(187)의 동력이 이송로드(181)에 전달되어 이송로드(181)의 회전을 가능하게 한다.In addition, the pulley (P) is connected to the drive shaft of the drive motor 187 and the end of the transfer rod 181 to transfer the power of the drive motor 187 to the transfer rod 181, these pulleys are belts (B) It is connected by) to the power of the drive motor 187 is transmitted to the transfer rod 181 to enable the rotation of the transfer rod 181.
다음으로 구동부(180)의 제2 실시례에 따른 동력전달방식은 도 6에 도시된 바와 같이, 이송레일(160) 상에 형성되는 랙부(183)와, 구동체(170)에 구비되는 피니언부(184)와, 본체(10)에 구비되고, 구동체(170)에 연결되는 구동모터(187)로 구성된다.Next, as shown in FIG. 6, the power transmission method according to the second embodiment of the driving unit 180 includes a rack unit 183 formed on the transfer rail 160 and a pinion unit provided in the driving unit 170. 184 and a drive motor 187 provided on the main body 10 and connected to the drive body 170.
즉 구동모터(187)가 작동되어 일방향으로 회전하게 되면 구동체(170) 역시 일방향으로 회전을 하게 되고, 이때 피니언부(184)도 함께 회전하여 피니언부(184)가 랙부(183)를 따라 이동하게 된다.That is, when the driving motor 187 is rotated in one direction, the driving body 170 also rotates in one direction. At this time, the pinion part 184 also rotates together so that the pinion part 184 moves along the rack part 183. Done.
이와 반대로 구동체(170)가 반대 방향으로 회전되는 경우 역시 구동체(170)와 피니언부(184) 역시 반대방향으로 회전을 하게 되어 피니언부(184)는 랙부(183)를 따라 반대방향으로 이동을 하게 된다.On the contrary, when the driving body 170 is rotated in the opposite direction, the driving body 170 and the pinion part 184 also rotate in the opposite direction so that the pinion part 184 moves along the rack part 183 in the opposite direction. Will be
따라서 본 실시례에서는 본체(10)가 구동모터(187), 랙부(183) 및 피니언부(184)에 의하여 동력을 전달받아 이송이 가능하게 된다.Therefore, in the present embodiment, the main body 10 receives power by the drive motor 187, the rack part 183, and the pinion part 184, thereby allowing the transfer.
또한 구동부(180)의 제3 실시례에 따른 동력전달방식은 도 7a 및 도 7b에 도시되어 있으며, 도 7a 및 도 7b는 구동부(180)의 제3 실시례를 설명하기 위한 평면도 및 측면도이다.In addition, the power transmission method according to the third embodiment of the drive unit 180 is shown in Figures 7a and 7b, Figure 7a and 7b is a plan view and a side view for explaining a third embodiment of the drive unit 180.
도 7a 및 도 7b에 도시된 바와 같이, 구동부(180)의 제3 실시례에 따른 동력전달방식은 메인바디(110) 일측에 장착되는 구동모터(187)와, 메인바디(110) 타측에 장착되고, 구동모터(187)에 연결되는 구동체인(185)으로 구성된다.As shown in FIGS. 7A and 7B, the power transmission method according to the third embodiment of the driving unit 180 may be mounted on the driving motor 187 mounted on one side of the main body 110 and on the other side of the main body 110. And a driving chain 185 connected to the driving motor 187.
이 경우 구동모터(187)의 구동축에 스프로킷(S)이 구비되고, 메인바디(110)의 타측, 즉 구동모터(187)의 대향하는 위치에는 브래킷(188)과, 이 브래킷에 회전가능하게 연결되는 또 다른 스프로킷(S)이 구비된다.In this case, the sprocket S is provided on the drive shaft of the drive motor 187, and the bracket 188 is rotatably connected to the other side of the main body 110, that is, the position opposite to the drive motor 187. Another sprocket S is provided.
그리고 본체(10) 하부에 전후방에 구동체인(185)의 단부들이 연결된다.The ends of the drive chain 185 are connected to the front and rear under the main body 10.
즉 구동모터(187)가 작동되어 일방향으로 회전하게 되면 구동체인(185)이 회전을 하게 되고, 이때 구동체인(185)에 연결된 본체(10)가 이동을 하게 된다.That is, when the driving motor 187 is rotated in one direction, the driving chain 185 rotates, and the main body 10 connected to the driving chain 185 moves.
이와 반대로 구동모터(187)가 반대방향으로 회전하게 되면 구동체인(185) 역시 반대방향으로 회전하게 되므로 본체(10)는 반대방향으로 이동동방향이 전환된다.On the contrary, when the driving motor 187 rotates in the opposite direction, the driving chain 185 also rotates in the opposite direction, so that the main body 10 moves in the opposite direction.
따라서 본 실시례에서는 본체(10)가 구동모터(187), 구동체인(185) 의하여 동력을 전달받아 이송이 가능하게 한다.Therefore, in the present embodiment, the main body 10 receives the power by the drive motor 187 and the drive chain 185 to enable the transfer.
그리고 본 실시례에서 구동체인(185)이나, 스프로킷(S)은 타이밍 벨트와 이에 대응하는 기어나, 벨트 및 풀리 등과 같은 구동체(170)로 대체가 가능하다.In this embodiment, the driving chain 185 or the sprocket S may be replaced with a driving belt 170 such as a timing belt and a corresponding gear, a belt, and a pulley.
나아가 상기한 바와 같은 구동부(180)에 의한 실시례들 이외에 다양한 방식으로 본체(10)에 동력을 전달하는 것이 가능한데, 예컨대 액추에이터나, LM 가이드 등과 같은 다양한 형태의 동력전달방식의 도입이 가능하다.Furthermore, in addition to the embodiments of the driving unit 180 as described above, it is possible to transmit power to the main body 10 in various ways. For example, various types of power transmission methods such as an actuator and an LM guide may be introduced.
한편 상기한 바와 같은 구동부(180)의 제1 및 제3 실시례의 경우 본체(10)에 연결된 구동체(170)는 이송레일(160)을 따라 이동하여 도자구조체의 이송동작을 안내하게 된다.Meanwhile, in the first and third embodiments of the driving unit 180 as described above, the driving body 170 connected to the main body 10 is moved along the conveying rail 160 to guide the conveying operation of the ceramic structure.
이러한 안내 동작을 원활히 하기 위해 구동체(170)는 롤러 형태로 구성되는 것이 바람직하다.In order to facilitate such a guide operation, the driving body 170 is preferably configured in the form of a roller.
또한 각 실시례에서 구동모터(187)는 외부 전원에 따라 회전하고, 제어 신호에 따라 회전 방향을 변경이 가능하도록 구성된다.In addition, in each embodiment, the driving motor 187 is configured to rotate according to an external power source and to change the rotation direction according to a control signal.
아울러 구동부(180)에 따른 각 실시례에서는 전술한 바와 같이 도자구조체는 메인바디(110)의 내부를 따라 상하 방향, 또는 전후 방향으로 이동하면서 마사지 치료를 수행하게 된다.In addition, in each embodiment according to the driving unit 180, as described above, the ceramic structure performs massage treatment while moving in the vertical direction or the front-rear direction along the inside of the main body 110.
이상에서 첨부된 도면을 참조하여 본 발명인 독립형 2열 도자구조체를 설명함에 있어 특정 형상 및 방향을 위주로 설명하였으나, 본 발명은 당업자에 의하여 다양한 변형 및 변경이 가능하고, 이러한 변형 및 변경은 본 발명의 권리범위에 포함되는 것으로 해석되어야 한다.In the above description of the independent two-row ceramic structure according to the present invention with reference to the accompanying drawings, the present invention has been described based on a specific shape and direction. However, the present invention may be variously modified and changed by those skilled in the art, and such modifications and changes are possible. It should be interpreted as being included in the scope of rights.
부호의 설명Explanation of the sign
10: 본체 11: 제1 결합부10: main body 11: first coupling portion
13: 결합핀 20: 승하강플레이트13: coupling pin 20: lifting plate
21: 지지부 23: 제1 대응결합부21: support 23: first mating coupling portion
25: 제2 결합부 27: 제1 브래킷25: second coupling portion 27: first bracket
30: 구동부 31: 구동모터30: drive unit 31: drive motor
33: 회동부재 33a: 기어부33: rotating member 33a: gear portion
35: 가이드부재 35a: 대응기어부35: guide member 35a: corresponding gear portion
40: 승하강부재 41: 제2 대응결합부40: lifting member 41: second mating coupling portion
43: 장착돌기 43a: 장착공43: mounting projection 43a: mounting hole
45: 제2 브래킷 50: 탄성부재45: second bracket 50: elastic member
60: 도자부재 61: 1열 도자60: ceramic member 61: single row ceramic
63: 2열 도자 70: 가이드바63: second-row ceramics 70: guide bar
71: 대응장착공 73: 체결핀71: mounting hole 73: fastening pin
75: 키 77: 키홈75: key 77: keyway
80: 가이드홀더 81: 슬리브80: guide holder 81: sleeve
83: 지지돌기 90: 장착리브83: support protrusion 90: mounting rib
91: 고정부 93: 끼움공91: fixing part 93: fitting hole
100: 고정홀더 101: 끼움돌기100: fixed holder 101: fitting projection
103: 플랜지부 110: 메인바디103: flange 110: main body
140: 이송부 160: 이송레일140: transfer unit 160: transfer rail
170: 이송롤러 180: 구동부170: feed roller 180: drive unit
181: 이송로드 182: 구동체181: transfer rod 182: drive body
183: 랙부 184: 피니언부183: rack portion 184: pinion portion
185: 구동체인 186: 구동스프로킷185: drive chain 186: drive sprocket
187: 구동모터 188: 브래킷187: drive motor 188: bracket
190: 힌지고정부190: Hinge Government

Claims (12)

  1. 본체(10);Main body 10;
    상기 본체(10)에 결합되고, 구동부(30)에 의하여 승하강하는 승하강플레이트(20);A lifting plate 20 coupled to the main body 10 to move up and down by the driving unit 30;
    상기 승하강플레이트(20)에 연결되는 승하강부재(40); 및A lifting member 40 connected to the lifting plate 20; And
    상기 승하강플레이트(20) 및 상기 승하강부재(40)에 장착되는 도자부재(60);A ceramic member 60 mounted on the elevating plate 20 and the elevating member 40;
    를 포함하여 이루어진 독립형 2열 도자구조체. Stand-alone two-row ceramic structure consisting of.
  2. 제 1 항에 있어서,The method of claim 1,
    상기 승하강플레이트(20) 또는 상기 승하강부재(40), 또는 이들 모두에 구비되어 탄성 지지하는 탄성부재(50)를 더 포함하는 것을 특징으로 하는 독립형 2열 도자구조체.Independent two-row ceramic structure further comprises an elastic member (50) provided on the elevating plate (20) or the elevating member (40), or both.
  3. 제 2 항에 있어서,The method of claim 2,
    상기 탄성부재(50)는 상기 승하강부재(40)에 구비되고,The elastic member 50 is provided in the elevating member 40,
    상기 승하강부재(40)에는 상기 탄성부재에 연결되는 가이드바(70)가 더 구비되어 있는 것을 특징으로 하는 독립형 2열 도자구조체.The elevating member 40 has a guide bar 70 is further provided that is connected to the elastic member.
  4. 제 3 항에 있어서,The method of claim 3, wherein
    상기 탄성부재(50) 상부에 연결되고, 상기 가이드바(70)를 지지하기 위한 가이드홀더(80)가 더 구비되어 있는 것을 특징으로 하는 독립형 2열 도자구조체.Independent two-row ceramic structure is connected to the elastic member 50, characterized in that the guide holder for supporting the guide bar 70 is further provided.
  5. 제 3 항에 있어서,The method of claim 3, wherein
    상기 승하강플레이트에 연결되고, 상기 탄성부재가 고정되는 장착리브(90)가 더 구비되어 있는 것을 특징으로 하는 독립형 2열 도자구조체.Independent two-row ceramic structure is connected to the elevating plate, characterized in that the mounting rib 90 is further provided with the elastic member is fixed.
  6. 제 5 항에 있어서,The method of claim 5, wherein
    상기 장착리브(90)에는 상기 탄성부재(50)의 이탈을 방지하기 위한 고정홀더(100)가 더 구비되어 있는 것을 특징으로 하는 독립형 2열 도자구조체.Independent two-row ceramic structure is characterized in that the mounting rib 90 is further provided with a fixing holder (100) for preventing the separation of the elastic member (50).
  7. 제 1 항에 있어서, 상기 구동부(30)는The method of claim 1, wherein the drive unit 30
    상기 본체(10)에 장착되는 구동모터(31)와,A drive motor 31 mounted to the main body 10,
    상기 구동모터(31)에 결합되는 회동부재(33)와,A rotation member 33 coupled to the drive motor 31;
    상기 승하강플레이트(20)에 연결되고, 상기 회동부재(33)에 맞물리는 가이드부재(35)를 포함하여 이루어진 것을 특징으로 하는 독립형 2열 도자구조체.Independent two-row ceramic structure is characterized in that it comprises a guide member (35) connected to the lifting plate (20) and engaged with the pivot member (33).
  8. 제 1 항에 있어서,The method of claim 1,
    상기 본체를 이송하기 위한 이송부가 더 구비되는 것을 특징으로 하는 독립형 2열 도자구조체.Independent two-row ceramic structure, characterized in that the transfer unit for conveying the main body is further provided.
  9. 제 8 항에 있어서, 상기 이송부는The method of claim 8, wherein the transfer unit
    메인바디에 형성되는 이송레일과,A transfer rail formed on the main body,
    상기 본체에 구비되어 상기 이송레일을 따라 이동하는 구동체와,A driving body provided in the main body and moving along the transfer rail;
    상기 구동체에 동력을 전달하기 위한 구동부를 포함하여 이루어진 것을 특징으로 하는 독립형 2열 도자구조체.Independent two-row ceramic structure characterized in that it comprises a drive for transmitting power to the drive body.
  10. 제 9 항에 있어서, 상기 구동부는The method of claim 9, wherein the driving unit
    상기 이송레일의 길이방향으로 형성되고, 나사산이 형성된 이송로드와,A conveying rod formed in a longitudinal direction of the conveying rail and having a thread;
    상기 본체에 장착되고, 상기 이송로드에 연결되는 이송매개체와,A transfer medium mounted to the main body and connected to the transfer rod;
    상기 이송로드 단부에 연결되는 구동모터를 포함하여 이루어진 것을 특징으로 하는 온열치료장치.Thermal treatment apparatus comprising a drive motor connected to the transfer rod end.
  11. 제 9 항에 있어서, 상기 구동부는The method of claim 9, wherein the driving unit
    상기 이송레일 상에 구비되는 랙부와,A rack unit provided on the transfer rail;
    상기 구동체에 구비되는 피니언부와,A pinion part provided in the driving body;
    상기 본체에 구비되고, 상기 구동체에 연결되는 구동모터를 포함하여 이루어진 것을 특징으로 하는 온열치료장치.And a driving motor provided on the main body and connected to the driving body.
  12. 제 9 항에 있어서, 상기 구동부는The method of claim 9, wherein the driving unit
    상기 메인바디의 일측에 구비되는 구동모터와,A drive motor provided at one side of the main body;
    상기 구동모터에 연결되고, 상기 본체에 장착되는 구동체인을 포함하여 이루어진 것을 특징으로 하는 온열치료장치.And a drive chain connected to the drive motor and mounted to the main body.
PCT/KR2015/009488 2014-09-11 2015-09-09 Independent two-row ceramic structure WO2016039563A1 (en)

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KR10-2014-0120103 2014-09-11
KR20140120103 2014-09-11

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