Split type traditional Chinese medicine massage cream treatment medium box

CN117815070BActive Publication Date: 2026-08-21CHANGCHUN UNIV OF CHINESE MEDICINE
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Patent Information

Application Number
CN202410149057.1
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-02-02
Publication Date
2026-08-21
Estimated Expiration
2044-02-02

AI Technical Summary

Technical Problem

[0004]现有的介质存放方式通常为放置在一个密封盒中,存放空间单一,不利于多种介质存放,将多种介质先后放入也会存在交叉感染的情况,且将盒盖打开时,盒中的介质会完全暴露从而与空气发生长时间的接触,不利于介质后续的保存

Benefits of technology

本发明所述的一种分体式中医推拿膏摩治疗介质盒,本申请采用分体放置的方式对不同类型的推拿介质进行放置,防止彼此之间交叉感染的情况,且对介质取出时采用逐量拉出的方式保证了介质为分段式露出,保证了介质用多少取多少,且将介质盒的中部进行隔断设置,使得介质盒的外半部分未使用完时介质盒的内半部分处于密封保存,提高了封存效果,利于后续的使用与保存。

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Abstract

The application relates to a split type traditional Chinese medicine massage cream treatment medium box, which comprises a base, a center column, a rotating piece, a medium box, a bottom plate and a partition piece. The application can solve the problems that the existing medium storage mode is usually placed in a sealed box, the storage space is single, it is not conducive to the storage of multiple media, cross infection may occur when multiple media are placed in succession, when the box cover is opened, the medium in the box is completely exposed to air for a long time, and the subsequent storage of the medium is not conducive, and the like.
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Description

Technical Field

[0001] This invention relates to the field of massage-related technologies, and in particular to a split-type traditional Chinese medicine massage plaster therapy medium box. Background Technology

[0002] Traditional Chinese medicine's theories of viscera and meridians form the theoretical basis of massage, which, combined with Western medicine's anatomical and pathological diagnostic methods, is used as a physical therapy to treat diseases. Massage can be categorized into health-preserving massage, exercise massage, and medical massage. Massage is economical and effective, making it popular due to its flexibility in terms of time and space and minimal side effects. The main benefits of massage include: improving the body's immunity and resistance to disease, thus promoting good health; harmonizing qi and blood, effectively preventing cardiovascular diseases; and unblocking meridians, thereby promoting blood and lymphatic circulation and coordinating the functions of various organs.

[0003] During massage, in order to reduce friction damage to the skin or to assist the effects of certain medications, some ointment can be applied to the skin of the massage area. This ointment is generally called a massage medium.

[0004] Existing media storage methods typically involve placing media in a sealed box, which provides limited storage space and is not suitable for storing multiple media. Placing multiple media in sequence can also lead to cross-contamination. Furthermore, when the box is opened, the media inside is completely exposed to the air for an extended period, which is detrimental to the subsequent preservation of the media.

[0005] Therefore, there is still room for improvement in the existing media cartridges. Summary of the Invention

[0006] The purpose of this invention is to provide a split-type TCM massage plaster therapy medium box to overcome the shortcomings of the prior art.

[0007] To achieve the above objectives, the present invention provides the following technical solution: A split-type TCM massage plaster therapy medium box includes a base with a central column installed in the middle; a rotating component, the middle part of which is rotatably mounted on the central column, the rotating component is arranged from top to bottom, and the medium box is symmetrically slidably mounted on the left and right ends of the rotating component, which unlocks from the rotating component when the medium box rotates to the front; a bottom plate, which is slidably mounted on the bottom of the medium box, and slides upward when the unlocked medium box is pulled forward and is compressed; and a partition component, which is located in the middle of the medium box, and temporarily seals the interior of the medium box.

[0008] As a preferred embodiment of the present invention, the rotating component includes a rotating frame, a locking assembly, an extrusion layer, and a sealing plate. The middle part of the rotating frame is rotatably connected to the central column. Extrusion layers are provided at the bottom of the left and right sides of the rotating frame, and the extrusion layers are extruded in conjunction with the bottom plate. Sealing plates are symmetrically installed on the upper end of the rotating frame. The locking assembly, which cooperates with the central column, is installed in the rotating frame.

[0009] As a preferred embodiment of the present invention, the locking assembly includes a movable frame, an extrusion column, and a locking element. The movable frame is slidably disposed in the built-in groove of the rotating frame. An extrusion column is installed on the inner side of the movable frame. The extrusion column is slidably disposed in the annular extrusion groove of the central column. A locking element is installed on the outer side of the movable frame.

[0010] As a preferred embodiment of the present invention, the annular extrusion groove is composed of an arc-shaped groove and an arched groove connected together. The arched groove is located directly in front of the central column, and the locking member at the initial position temporarily locks the position of the sealing plate and the medium box.

[0011] As a preferred embodiment of the present invention, the medium box includes a box body, a scraping component, and a locking component. The box body is horizontally slidably disposed on one side of the rotating frame. The scraping component is installed on the upper outer side of the box body. The scraping component is used in conjunction with the extrusion block. The extrusion block is installed in the discharge groove opened on the outer end face of the sealing plate. The box body and the rotating frame are temporarily locked together by the locking component.

[0012] As a preferred embodiment of the present invention, the coating assembly includes a housing, a movable block, a reset telescopic rod, and a coating component. The housing is installed on the upper outer side of the box body, and the movable block is horizontally slidably arranged inside the housing. A reset telescopic rod is connected between the movable block and the housing. The coating component is installed on the upper end of the movable block, and the lower end of the movable block corresponds to the position between the extrusion block and the extrusion block.

[0013] As a preferred embodiment of the present invention, the locking assembly includes a snap-fit ​​component and a connecting spring. The snap-fit ​​component is slidably disposed in an L-shaped groove opened in the rotating frame. A connecting spring is connected between the snap-fit ​​component and the L-shaped groove. Snap-fit ​​grooves are evenly opened on the lower end face of the box body. The snap-fit ​​component snaps into the snap-fit ​​grooves. The upper inclined surface of the snap-fit ​​component has a structure that gradually slopes downward from the outside to the inside.

[0014] As a preferred embodiment of the present invention, the base plate includes a push plate and an extrusion member. The extrusion member is installed at the lower end of the push plate, and a drag-reducing roller is rolled at the lower end of the extrusion member. The drag-reducing roller is used in close contact with the extrusion layer, and the extrusion layer has a structure that gradually slopes downward from the outside to the inside. A connecting block is provided at the upper outer side of the push plate.

[0015] As a preferred embodiment of the present invention, the partition includes a partition plate, a limiting component, and a limiting slide rail. The lower end of the partition plate is connected to the push plate by a pin. The middle part of the partition plate is a telescopic structure. A sliding column is provided at the upper end of the partition plate. The sliding column is slidably disposed in a groove opened in the limiting slide rail. The outer end of the groove is an open structure. The limiting component for adjusting the angle of the limiting partition plate is installed in the base plate.

[0016] As a preferred embodiment of the present invention, the limiting component includes a blocking block and a limiting block. The blocking block, which is attached to the inner side of the partition plate, is fixedly installed on the push plate. The limiting block, which is attached to the outer side of the partition plate, is slidably disposed in the through groove opened in the push plate. The limiting block and the through groove are elastically connected.

[0017] In summary, this application includes the following beneficial technical effects: The present invention discloses a split-type TCM massage plaster therapy medium box. This application adopts a split placement method to place different types of massage mediums to prevent cross-infection. When removing the medium, it is pulled out in stages to ensure that the medium is exposed in segments, ensuring that only the amount of medium is taken out. Furthermore, the middle part of the medium box is divided so that the inner half of the medium box is sealed and preserved when the outer half is not used up, which improves the sealing effect and facilitates subsequent use and storage. Attached Figure Description

[0018] Figure 1 This is a schematic diagram of the structure of the present invention; Figure 2 This is a top view of the present invention; Figure 3 This is the present invention. Figure 2 AA section view; Figure 4 This is the present invention. Figure 3 A schematic diagram of a partial structure; Figure 5 This is a schematic diagram of the structure between the central column and the annular extrusion groove of the present invention; Figure 6 This is the present invention. Figure 4 A magnified view of the area at point X; Figure 7 This is the present invention. Figure 4 A magnified view of the area at point Y. Detailed Implementation

[0019] The following is in conjunction with the appendix Figures 1-7 This application will be described in further detail.

[0020] This application discloses a split-type TCM massage plaster therapy medium box. This application adopts a split placement method to place different types of massage medium to prevent cross-infection between them. In addition, the medium is taken out in a quantity-by-quantity manner to ensure that only the amount of medium is taken out, thus ensuring the effective utilization rate of the massage medium.

[0021] Reference Figures 1-3 As shown, this embodiment discloses a split-type TCM massage plaster therapy medium box, including a base 1, a central column 2, a rotating component 3, a medium box 4, a bottom plate 5, and a partition 6. The central column 2 is installed in the middle of the base 1, and the rotating component 3 is rotatably mounted on the central column 2 in the middle. The rotating component 3 is arranged from top to bottom, and the medium box 4 is symmetrically slidably mounted on the left and right ends of the rotating component 3. When the medium box 4 rotates to the front, it unlocks from the position of the rotating component 3. The bottom plate 5 is slidably mounted on the bottom of the medium box 4. When the unlocked medium box 4 is pulled forward, the bottom plate 5 is squeezed and slides upward. The partition 6 is located in the middle of the medium box 4. The partition 6 temporarily seals the inside of the medium box 4. When the medium in the outer half of the medium box 4 is in use, the partition 6 seals and preserves the medium in the inner half of the medium box 4, reducing its sealing when not in use.

[0022] During the actual massage, the operator rotates the rotating component 3 until the medium box 4 to be used is rotated to the front (facing the operator). At this time, the position between the medium box 4 and the rotating component 3 is unlocked (the medium box 4 can be pulled out). When taking it out, the operator pulls the medium box 4 forward a short distance, exposing a small part of the medium in the medium box 4. The operator reaches in to apply and remove it. The medium box 4 is gradually pulled out according to its usage, minimizing contact between the medium box 4 and the outside world. When the medium in the medium box 4 is more than half used, the partition 6 is unlocked. At this time, the partition 6 can be adjusted to expose the inner half of the medium box 4. The operator begins to use this part. As the second half of the medium box 4 is pulled out, the base plate 5 is squeezed and slides upward, thereby helping the medium in the inner half of the medium box 4 to rise, reducing the difficulty of removal. After the medium in the medium box 4 is used up, it is returned to its original position, and the rotating component 3 is rotated again until the next medium box 4 to be used is rotated to the front.

[0023] Reference Figure 4As shown, the media box 4 is only in the unlocked state at the front. In order to ensure that the media box 4 is locked with the rotating component 3 in other directions, this application further improves the rotating component 3. Specifically, the rotating component 3 includes a rotating frame 31, a locking component 32, a pressing layer 33, and a sealing plate 34. The middle part of the rotating frame 31 is rotatably connected to the central column 2. The bottom of the left and right sides of the rotating frame 31 is provided with a pressing layer 33, which is used in a pressing fit with the bottom plate 5. The upper end of the rotating frame 31 is symmetrically equipped with sealing plates 34, which have a sealing effect on the upper end of the media box 4. The locking component 32, which is used in cooperation with the central column 2, is installed in the rotating frame 31.

[0024] Reference Figure 4 , Figure 5 As shown, the locking assembly 32 includes a movable frame 321, a pressing column 322, and a locking element 323. The movable frame 321 is slidably disposed in the built-in groove of the rotating frame 31. The pressing column 322 is installed on the inner side of the movable frame 321 and is slidably disposed in the annular pressing groove 324 of the central column 2. The locking element 323 is installed on the outer side of the movable frame 321. The annular pressing groove 324 is composed of an arc-shaped groove and an arched groove connected together. The arc-shaped groove is set at the same height, and the overall height of the arched groove gradually increases from both sides to the center. The structural design of the arc-shaped groove and the arched groove ensures that the locking element 323 is separated from the medium box 4 only when the pressing column 322 slides to the center position of the arched groove. The arched groove is located directly in front of the central column 2. The locking element 323 in the initial position temporarily locks the position of the sealing plate 34 and the medium box 4.

[0025] During actual rotation, when the media box 4 is not directly in front, the extrusion column 322 is not extruded to the top by the annular extrusion groove 324. At this time, the locking member 323 connected to the movable frame 321 still locks the media box 4 in an embedded manner. Only when the media box 4 rotates to the front does the extrusion column 322 contact the middle of the arched groove of the annular extrusion groove 324. At this time, the extrusion column 322 drives the movable frame 321 and the locking member 323 to rise to the highest position, the locking member 323 separates from the media box 4, and the position between the media box 4 and the rotating frame 31 is unlocked.

[0026] Reference Figure 4 , Figure 6 As shown, the medium box 4 includes a box body 41, a scraping assembly 42, and a locking assembly 43. The box body 41 is horizontally slidably disposed on one side of the rotating frame 31. The scraping assembly 42 is installed on the outer side of the upper end of the box body 41. The scraping assembly 42 is used in conjunction with the extrusion block 35. The extrusion block 35 is installed in the discharge groove opened on the outer end face of the sealing plate 34. The box body 41 and the rotating frame 31 are temporarily locked together by the locking assembly 43.

[0027] In actual use, as the box 41 is gradually pushed out, the locking component 43 temporarily locks the position between the box 41 and the rotating frame 31.

[0028] Reference Figure 6 As shown, in order to prevent excessive amounts of medium from being taken, this application provides a scraping assembly 42 to scrape and retain excess medium. Specifically, the scraping assembly 42 includes a housing 421, a movable block 422, a reset telescopic rod, and a scraper 423. The housing 421 is installed on the upper outer side of the box body 41. The movable block 422 is horizontally slidably arranged inside the housing 421. A reset telescopic rod is connected between the movable block 422 and the housing 421. The scraper 423 is installed on the upper end of the movable block 422, and the lower end of the movable block 422 corresponds to the position between it and the extrusion block 35.

[0029] In actual operation, after the media box 4 is pulled out, the movable block 422, under the action of the reset telescopic rod, drives the scraper 423 to extend. At this time, if the amount of media is large, the personnel can scrape the excess onto the scraper 423. When the media box 4 is pushed back into place, the movable block 422 is squeezed again by the squeezing block 35, causing the scraper 423 to be squeezed back into the housing 421. The excess media on the surface of the scraper 423 will be squeezed away again when the scraper 423 retracts into the housing 421 and fall back into the media box 4.

[0030] Reference Figure 4 As shown, the locking assembly 43 includes a snap-fit ​​component 431 and a connecting spring 432. The snap-fit ​​component 431 is slidably disposed in the L-shaped groove opened in the rotating frame 31. The connecting spring 432 connects the snap-fit ​​component 431 and the L-shaped groove. The lower end face of the box body 41 is evenly provided with snap-fit ​​grooves. The snap-fit ​​component 431 snaps into the snap-fit ​​grooves. The upper inclined surface of the snap-fit ​​component 431 has a structure that gradually slopes downward from the outside to the inside. This structure design ensures that the media box 4 can only be pulled out and cannot be pushed back. When it is necessary to push back, simply press down on the snap-fit ​​component 431 to separate the snap-fit ​​component 431 from the snap-fit ​​groove, and then push the media box 4 back.

[0031] During the actual locking process, as the media box 4 is pulled out, the position of the media box 4 is locked in stages by the engagement of the snap-fit ​​component 431 with the snap-fit ​​groove.

[0032] Reference Figure 4 As shown, the base plate 5 includes a push plate 51 and an extrusion member 52. The extrusion member 52 is installed at the lower end of the push plate 51. A drag-reducing roller is rolled at the lower end of the extrusion member 52, and the drag-reducing roller is used in close contact with the extrusion layer 33. The extrusion layer 33 has a structure that gradually slopes downward from the outside to the inside. A connecting block is provided at the upper outer side of the push plate 51. The upper end of the connecting block has a concave arc structure to avoid dead corners and facilitate the scraping out of the medium.

[0033] In actual operation, during the second half of the media box 4 being pulled out, the extrusion piece 52 is squeezed by the thickness of the extrusion layer 33 and thus rises, pushing the plate 51 to rise synchronously, thereby helping the media to rise and facilitating the removal of the media in the second half of the media box 4 by personnel.

[0034] Reference Figure 4 , Figure 7 As shown, the partition 6 includes a partition plate 61, a limiting component 62, and a limiting slide rail 63. The lower end of the partition plate 61 is connected to the push plate 51 by a pin. The middle part of the partition plate 61 is a telescopic structure. The upper end of the partition plate 61 is provided with a sliding column. The sliding column is slidably disposed in the slide groove opened in the limiting slide rail 63. The outer end of the slide groove is an open structure. The limiting component 62, which is used to limit the angle adjustment of the partition plate 61, is installed in the base plate 5.

[0035] Reference Figure 7 As shown, the limiting component 62 includes a blocking block 621 and a limiting block 622. The blocking block 621, which is attached to the inner side of the partition plate 61, is fixedly installed on the push plate 51. The blocking block 621 limits the inner direction of the partition plate 61 to prevent it from adjusting inward. The limiting block 622, which is attached to the outer side of the partition plate 61, is slidably disposed in the through groove opened in the push plate 51. The limiting block 622 and the through groove are elastically connected.

[0036] In actual operation, during the first half of the media box 4 being pulled out, the sliding column is always in the groove, and the partition plate 61 is always in a vertically closed state. During the second half of the media box 4 being pulled out, the sliding column separates from the groove, the upper position of the partition plate 61 is unlocked, and as the push plate 51 rises, the limiting block 622 descends under the action of elasticity, so that it no longer limits the lower end of the partition plate 61, and the partition plate 61 can be angled. Then the inner half of the media box 4 is exposed and used.

[0037] The foregoing has only described certain exemplary embodiments of the present invention by way of illustration. Undoubtedly, those skilled in the art can modify the described embodiments in various ways without departing from the spirit and scope of the present invention. Therefore, the foregoing drawings and descriptions are illustrative in nature and should not be construed as limiting the scope of protection of the claims of the present invention.

Claims

1. A split-type traditional Chinese medicine massage plaster therapy medium box, characterized in that, include: The base (1) has a central column (2) installed in its middle; The rotating component (3) is rotatably mounted on the central column (2). The rotating component (3) is arranged from top to bottom. The media box (4) is symmetrically slidably mounted on the left and right ends of the rotating component (3). When the media box (4) rotates to the front, it unlocks the position of the rotating component (3). The base plate (5) is slidably disposed at the bottom of the media box (4). When the media box (4) is pulled forward after being unlocked, the base plate (5) is squeezed and then slides upward. A partition (6) is provided in the middle of the medium box (4) to temporarily seal the interior of the medium box (4); The rotating component (3) includes a rotating frame (31), a locking assembly (32), a pressing layer (33), and a sealing plate (34). The middle part of the rotating frame (31) is rotatably connected to the central column (2). The bottom of the left and right sides of the rotating frame (31) is provided with a pressing layer (33). The pressing layer (33) is pressed together with the bottom plate (5). The upper end of the rotating frame (31) is symmetrically equipped with sealing plates (34). The locking assembly (32) that cooperates with the central column (2) is installed in the rotating frame (31). The medium box (4) includes a box body (41), a scraping assembly (42), and a locking assembly (43). The box body (41) is horizontally slidably disposed on one side of the rotating frame (31). The scraping assembly (42) is installed on the upper outer side of the box body (41). The scraping assembly (42) is used in conjunction with the extrusion block (35). The extrusion block (35) is installed in the discharge groove opened on the outer end face of the sealing plate (34). The box body (41) and the rotating frame (31) are temporarily locked together by the locking assembly (43). The coating assembly (42) includes a housing (421), a movable block (422), a reset telescopic rod, and a coating component (423). The housing (421) is installed on the upper outer side of the box body (41). The movable block (422) is horizontally slidably arranged inside the housing (421). A reset telescopic rod is connected between the movable block (422) and the housing (421). The coating component (423) is installed on the upper end of the movable block (422). The lower end of the movable block (422) corresponds to the position of the extrusion block (35). The base plate (5) includes a push plate (51) and an extrusion member (52). The extrusion member (52) is installed at the lower end of the push plate (51). A drag-reducing roller is rolled at the lower end of the extrusion member (52), and the drag-reducing roller is used in close contact with the extrusion layer (33). The extrusion layer (33) has a structure that gradually slopes downward from the outside to the inside. A connecting block is provided at the upper outer side of the push plate (51). The partition (6) includes a partition plate (61), a limiting component (62), and a limiting slide rail (63). The lower end of the partition plate (61) is connected to the push plate (51) by a pin. The middle part of the partition plate (61) is a telescopic structure. The upper end of the partition plate (61) is provided with a sliding column. The sliding column is slidably arranged in the slide groove opened in the limiting slide rail (63). The outer end of the slide groove is an open structure. The limiting component (62) for limiting the angle adjustment of the partition plate (61) is installed in the base plate (5).

2. The split-type traditional Chinese medicine massage plaster therapy medium box according to claim 1, characterized in that: The locking assembly (32) includes a movable frame (321), a pressing column (322), and a locking element (323). The movable frame (321) is slidably disposed in the built-in groove of the rotating frame (31). The pressing column (322) is installed on the inner side of the movable frame (321). The pressing column (322) is slidably disposed in the annular pressing groove (324) of the central column (2). The locking element (323) is installed on the outer side of the movable frame (321).

3. A split-type traditional Chinese medicine massage plaster therapy medium box according to claim 2, characterized in that: The annular extrusion groove (324) is composed of an arc groove and an arched groove connected together. The arched groove is located directly in front of the central column (2). The locking member (323) at the initial position temporarily locks the position of the sealing plate (34) and the medium box (4).

4. A split-type traditional Chinese medicine massage plaster therapy medium box according to claim 1, characterized in that: The locking assembly (43) includes a snap-fit ​​component (431) and a connecting spring (432). The snap-fit ​​component (431) is slidably disposed in the L-shaped groove opened in the rotating frame (31). The snap-fit ​​component (431) is connected to the L-shaped groove. The lower end face of the box body (41) is evenly provided with snap-fit ​​grooves. The snap-fit ​​component (431) is snapped into the snap-fit ​​grooves. The upper inclined surface of the snap-fit ​​component (431) is gradually inclined downward from the outside to the inside.

5. A split-type traditional Chinese medicine massage plaster therapy medium box according to claim 1, characterized in that: The limiting component (62) includes a blocking block (621) and a limiting block (622). The blocking block (621) which is attached to the inner side of the partition plate (61) is fixedly installed on the push plate (51). The limiting block (622) which is attached to the outer side of the partition plate (61) is slidably disposed in the through groove opened in the push plate (51). The limiting block (622) and the through groove are elastically connected.

Citation Information

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