High-frequency internal diathermanous energy cabin

By introducing an automatic dirt cleaning system driven by an adjusting motor and a servo motor into the inner heat-transmitting energy cabin, the problem of the lying board being difficult to move and stains caused by friction is solved, achieving convenient use and cleaning effect.

CN223416411UActive Publication Date: 2025-10-10SHANDONG YIRENKANG HEALTH TECH CO LTD
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Patent Information

Application Number
CN202422643030.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-31
Publication Date
2025-10-10
Estimated Expiration
2034-10-31

AI Technical Summary

Technical Problem

The lying board of the existing internal heat-transmitting energy cabin is inconvenient to move and rubs against the surface of the equipment during operation, resulting in stains, which affects the neat appearance and operating efficiency.

Method used

A high-frequency internal heat-transmitting energy cabin was designed. The adjusting motor drives the adjusting rod and the fixed plate to move. Combined with the synergistic effect of the scraper plate, the push ring and the servo motor, the automatic cleaning function of the lying plate is realized to avoid friction between the lying plate and the equipment surface.

Benefits of technology

The convenient movement and automatic cleaning of the lying plate are realized, which improves the convenience of use and neat appearance of the equipment and avoids the obstruction of operation by dust and stains.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a high-frequency internal diathermanous energy cabin, which relates to the technical field of health care equipment and comprises an energy cabin body, a control panel is fixedly connected to the outer wall of the top end of the energy cabin body, a bearing frame is fixedly connected to the bottom of the right side of the energy cabin body, and a connecting plate is fixedly connected to the top of the bearing frame at the inner bottom of the energy cabin body. The energy cabin is reasonable in design structure, the adjusting motor drives the adjusting rod to rotate, the adjusting rod drives the fixing plate to move, the fixing plate drives the lying plate to move to the position below the energy cabin body, the lying plate drives the dirt scraping plate on the right side to move while moving, and the dirt scraping plate drives the pushing ring to make contact with the contact plate. The pushing ring rotates by a certain angle under the action of the contact plate, the pushing ring drives the dirt scraping plates to be away from the connecting plate, the lying plate drives the dirt scraping plate on the left side to move, the dirt scraping plate on the left side makes contact with the surface of the connecting plate under the action of the adjusting plate, the lying plate drives the dirt scraping plate on the left side to clean the surface of the connecting plate on the left side, and the beneficial effect of facilitating dirt cleaning is achieved.
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Description

Technical Field

[0001] The utility model relates to the technical field of health care equipment, in particular to a high-frequency internal heat-transmitting energy cabin. Background Art

[0002] The so-called heat therapy is a way of health care or treatment by heating up the body partially or completely. The core technical principle of the 360 ​​internal heat-transmitting energy cabin is to use pulsed electromagnetic field circular energy field internal heat-transmitting technology to act on the human body 25 cm deep, instantly allowing every cell in the human body to receive energy, generate heat from the inside out, accelerate the circulation of qi and blood throughout the body, force the cold and damp toxins in the body out of the body, and discharge them through sweat, while quickly opening up the meridians, relieving pain and inflammation, softening and dispersing nodules, promoting blood circulation and removing blood stasis, raising body temperature, and enhancing vitality.

[0003] Internal heat-diathermy energy chambers require users to lie flat on the device. Existing devices have a resting plate that is difficult to move, making entry extremely inconvenient. Furthermore, the plate rubs against the device surface during operation, and over time, dust mixed with air can stain the device surface, affecting its appearance and hindering operation. To address this, we offer a high-frequency internal heat-diathermy energy chamber to address these issues. Utility Model Content

[0004] 1) Technical problems solved

[0005] The purpose of the utility model is to make up for the deficiencies of the prior art and to provide a high-frequency internal heat-transmitting energy cabin.

[0006] 2) Technical solution

[0007] To achieve the above-mentioned purpose, the present invention provides the following technical solutions: a high-frequency internal heat-transmitting energy cabin, comprising an energy cabin body, wherein the top outer wall of the energy cabin body is fixedly connected to a control panel, the right bottom of the energy cabin body is fixedly connected to a carrier, the top of the carrier is located at the inner bottom of the energy cabin body and is fixedly connected to a connecting plate, the front and rear sides of the inner bottom wall of the connecting plate are fixedly connected to guide blocks, the outer surface of the guide block is located at the right side of the top of the connecting plate and is slidably connected to a lying plate, the center position of the bottom of the lying plate is fixedly connected to the connecting plate, the bottom end of the connecting plate is internally rotatably connected to an adjusting rod, and the right side of the adjusting rod is located inside the carrier and is fixed. The cam is provided with a plurality of movable lids, and the movable lids are provided with a plurality of movable lids, and the movable lids are provided with a plurality of movable lids.

[0008] Furthermore, the energy cabin body is arranged in an "n" shape, and the connecting plate extends to the left side of the energy cabin body.

[0009] Furthermore, the bottom wall of the lying plate is provided with a guide groove engaged with the outer wall of the guide block, and the front and rear end side walls of the lying plate are slidably connected with the inner wall of the connecting plate.

[0010] Furthermore, an adjustment chamber is provided inside the support frame and is slidably connected to the connecting plate. The outer wall of the adjustment rod is provided with a thread inside the adjustment chamber. An installation groove is provided inside the right side of the support frame and is engaged with the adjustment motor.

[0011] Furthermore, the side wall of the scraper plate and the side wall of the connecting plate form a sliding connection, the inner wall of the block engages with the outer wall of the push ring, the bottom of the block is set at an inclined angle, the outer wall of the push ring forms a sliding connection with the top wall of the contact plate by setting a protrusion, and a friction ring is provided at the rotating connection between the inner wall of the push ring and the two ends of the scraper plate.

[0012] Furthermore, a limiting groove is provided inside the connecting plate above the servo motor, the side wall of the movable plate engages with the top of the servo motor through the tooth groove, and the bottom of the movable plate forms a sliding connection with the inner wall of the limiting groove.

[0013] Furthermore, the movable plate is arranged in an "L" shape, an adjustment groove is provided inside the connecting plate to form a sliding connection with the movable plate, and the bottom wall of the adjustment plate is engaged with the contact wheel by setting teeth.

[0014] 3) Beneficial effects:

[0015] Compared with the existing technology, this high-frequency internal heat-diathermy energy chamber has the following beneficial effects:

[0016] 1. The utility model drives the adjusting rod to rotate by adjusting the motor, and the adjusting rod drives the fixed plate to move, and the fixed plate drives the lying plate to move toward the bottom of the energy cabin body. When the lying plate moves, the lying plate drives the scraping plate on the right to move, and the scraping plate drives the pushing ring to contact the contact plate. The pushing ring rotates a certain angle under the action of the contact plate, and the pushing ring drives the scraping plate away from the connecting plate. The lying plate drives the scraping plate on the left to move, and the scraping plate on the left contacts the surface of the connecting plate under the action of the adjusting plate, and the lying plate drives the scraping plate on the left to clean the surface of the connecting plate on the left, which solves the problem that the lying plate will generate friction with the surface of the equipment when the equipment is running, and the dust in the mixed air will cause stains on the surface of the equipment, affecting the neatness of the appearance and hindering the operation, and has the advantage of easy cleaning.

[0017] 2. When the scraper plate on the left side of the utility model drives the push ring to move to the leftmost side of the connecting plate, the push ring is reset under the action of the stop block. At this time, the scraper plate on the right side of the lying plate drives the contact wheel to engage with the adjusting plate, and the adjusting plate drives the contact wheel to rotate. The contact wheel drives the scraper plate to contact the top wall on the right side of the connecting plate, and the servo motor drives the adjusting plate away from the contact wheel through the moving plate, which solves the problem that the lying plate of the existing device is inconvenient to move, causing extreme inconvenience to the user every time it enters, and has the advantage of being easy to use. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 This is the positive triaxial drawing of the utility model;

[0019] Figure 2 This is a schematic diagram of the stopper of the utility model;

[0020] Figure 3 This is a schematic diagram of the lying board of the utility model;

[0021] Figure 4 This is a schematic diagram of the mobile trough of the utility model;

[0022] Figure 5 This is a schematic diagram of the push ring of the utility model.

[0023] In the figure: 1. Energy cabin body; 2. Control panel; 3. Carrying frame; 4. Connecting plate; 5. Guide block; 6. Lying plate; 7. Fixed plate; 8. Adjusting rod; 9. Adjusting motor; 10. Scraper plate; 11. Contact wheel; 12. Moving groove; 13. Contact plate; 14. Push ring; 15. Servo motor; 16. Moving plate; 17. Adjusting plate; 18. Stop block. DETAILED DESCRIPTION

[0024] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0025] like Figure 1-5 As shown, the utility model provides a technical solution: a high-frequency internal heat-transmitting energy cabin, comprising an energy cabin body 1, the energy cabin body 1 is arranged in an "n" shape, the top outer wall of the energy cabin body 1 is fixedly connected to a control panel 2, the right bottom of the energy cabin body 1 is fixedly connected to a carrier frame 3, the top of the carrier frame 3 is located at the inner bottom of the energy cabin body 1 and is fixedly connected to a connecting plate 4, the connecting plate 4 extends to the left side of the energy cabin body 1, and the front and rear sides of the inner bottom wall of the connecting plate 4 are fixedly connected to guide blocks 5, the outer surface of the guide block 5 is located on the right side of the top of the connecting plate 4 and is slidably connected to a lying plate 6, the bottom wall of the lying plate 6 is provided with a guide groove that engages with the outer wall of the guide block 5, and the front and rear end side walls of the lying plate 6 are slidably connected to the inner wall of the connecting plate 4.

[0026] A fixed plate 7 is fixedly connected to the center position of the bottom of the lying board 6, and an adjusting rod 8 is rotatably connected to the bottom end of the fixed plate 7. An adjusting chamber is provided inside the supporting frame 3 to form a sliding connection with the fixed plate 7. The outer wall of the adjusting rod 8 is located inside the adjusting chamber and is provided with a thread. The right side of the adjusting rod 8 is located inside the supporting frame 3 and is fixedly connected to an adjusting motor 9. An installation groove that engages with the adjusting motor 9 is provided inside the right side of the supporting frame 3. The user lies on the lying board 6, and the adjusting motor 9 drives the adjusting rod 8 to rotate, and the adjusting rod 8 drives the fixed plate 7 to move, and the fixed plate 7 drives the lying board 6 to move to the bottom of the energy cabin body 1.

[0027] The left and right sides of the lying plate 6 are rotatably connected to the scraping plates 10, and the front and rear ends of the scraping plates 10 are located inside the side walls of the connecting plate 4 and are fixedly connected to contact wheels 11. The side walls of the connecting plate 4 are provided with a movable groove 12 at the position of the contact wheel 11, and the movable groove 12 is fixedly connected to the end away from the guide block 5. The inner wall of the stopper 18 is engaged with the outer wall of the push ring 14, and the bottom of the stopper 18 is set at an inclined angle. The setting of the bottom of the stopper 18 facilitates the reset of the guide push ring 14.

[0028] The bottom wall of the movable groove 12 is fixedly connected with a contact plate 13, and a push ring 14 is sleeved above the contact plate 13 between the scraping plate 10 and the contact wheel 11. The side wall of the scraping plate 10 is slidably connected with the side wall of the connecting plate 4. The outer wall of the push ring 14 is slidably connected with the top wall of the contact plate 13 by setting a protrusion. The inner wall of the push ring 14 is provided with a friction ring at the rotating connection between the two ends of the scraping plate 10. The setting of the friction ring is convenient for limiting the scraping plate 10 to prevent the scraping plate 10 from moving without the help of external force. The lying plate 6 rotates, and at the same time as the lying plate 6 moves, the lying plate 6 drives the scraping plate 10 on the right to move, and the scraping plate 10 drives the pushing ring 14 to contact with the contact plate 13. The pushing ring 14 rotates a certain angle under the action of the contact plate 13, and the pushing ring 14 drives the scraping plate 10 away from the connecting plate 4. The lying plate 6 drives the scraping plate 10 on the left to move, and the scraping plate 10 on the left contacts the surface of the connecting plate 4 under the action of the adjusting plate 17, and the lying plate 6 drives the scraping plate 10 on the left to clean the surface of the connecting plate 4 on the left. The connecting plate 4 is internally provided with a servo motor 15 on both sides of the guide block 5, and a movable plate 16 is engaged on both sides of the top of the servo motor 15. A limiting groove is provided inside the connecting plate 4 above the servo motor 15, and the side wall of the movable plate 16 is engaged with the top of the servo motor 15 by providing a tooth groove. The bottom of the movable plate 16 is connected to the inner wall of the limiting groove in a sliding manner. The movable plate 16 is arranged in an "L" shape. An adjustment groove is provided inside the connecting plate 4 to form a sliding connection with the movable plate 16. The top of the movable plate 16 is located away from the servo motor 15. An adjustment plate 17 is fixedly connected above the groove 12. The bottom wall of the adjustment plate 17 is engaged with the contact wheel 11 by setting teeth. When the scraper plate 10 on the left drives the push ring 14 to move to the leftmost side of the connecting plate 4, the push ring 14 is reset under the action of the stop block 18. At this time, the scraper plate 10 on the right side of the lying plate 6 drives the contact wheel 11 to engage with the adjustment plate 17, and the adjustment plate 17 drives the contact wheel 11 to rotate. The contact wheel 11 drives the scraper plate 10 to contact the top wall on the right side of the connecting plate 4, and the servo motor 15 drives the adjustment plate 17 away from the contact wheel 11 through the moving plate 16.

[0029] Working principle: When the high-frequency internal heat-transmitting energy cabin is in use, the user lies on the reclining board 6, the adjusting motor 9 drives the adjusting rod 8 to rotate, the adjusting rod 8 drives the fixing plate 7 to move, the fixing plate 7 drives the reclining board 6 to move to the bottom of the energy cabin body 1, and while the reclining board 6 moves, the reclining board 6 drives the right side scraping plate 10 to move, the scraping plate 10 drives the pushing ring 14 to contact the contact plate 13, the pushing ring 14 rotates a certain angle under the action of the contact plate 13, the pushing ring 14 drives the scraping plate 10 away from the connecting plate 4, the reclining board 6 drives the left side scraping plate 10 to move, the left side scraping plate 10 Under the action of the adjusting plate 17, it contacts the surface of the connecting plate 4, and the lying plate 6 drives the scraper plate 10 on the left to clean the surface of the connecting plate 4 on the left. When the scraper plate 10 on the left drives the push ring 14 to move to the leftmost side of the connecting plate 4, the push ring 14 is reset under the action of the stop block 18. At this time, the scraper plate 10 on the right side of the lying plate 6 drives the contact wheel 11 to engage with the adjusting plate 17, and the adjusting plate 17 drives the contact wheel 11 to rotate. The contact wheel 11 drives the scraper plate 10 to contact the top wall on the right side of the connecting plate 4, and the servo motor 15 drives the adjusting plate 17 away from the contact wheel 11 through the moving plate 16.

Claims

1. A high-frequency internal heat-transmitting energy chamber, comprising an energy chamber body (1), characterized in that: The top outer wall of the energy cabin body (1) is fixedly connected with a control panel (2), the right bottom of the energy cabin body (1) is fixedly connected with a carrier (3), the top of the carrier (3) is located at the bottom of the energy cabin body (1) and is fixedly connected with a connecting plate (4), the front and rear sides of the inner bottom wall of the connecting plate (4) are fixedly connected with guide blocks (5), the outer surface of the guide block (5) is located at the right side of the top of the connecting plate (4) and is slidably connected with a lying plate (6), the center position of the bottom of the lying plate (6) is fixedly connected with a fixed plate (7), the bottom end of the fixed plate (7) is rotatably connected with an adjusting rod (8), the right side of the adjusting rod (8) is located inside the carrier (3) and is fixedly connected with an adjusting motor (9), the left and right sides of the lying plate (6) are rotatably connected with scraping plates (10), the front and rear sides of the scraping plates (10) are fixedly connected with the adjusting rod (8), and the front and rear sides of the scraping plates (10) are fixedly connected with the adjusting rod (8). The end of the connecting plate (4) is fixedly connected to a contact wheel (11) inside the side wall of the connecting plate (4), a movable groove (12) is opened inside the side wall of the connecting plate (4) at the position of the contact wheel (11), a stopper (18) is fixedly connected to the end of the movable groove (12) away from the guide block (5), a contact plate (13) is fixedly connected to the bottom wall of the movable groove (12), a pushing ring (14) is sleeved above the contact plate (13) between the scraping plate (10) and the contact wheel (11), a servo motor (15) is embedded on both sides of the guide block (5) inside the connecting plate (4), a movable plate (16) is meshed on both sides of the top of the servo motor (15), and an adjustment plate (17) is fixedly connected to the top of the movable plate (16) away from the servo motor (15) above the movable groove (12).

2. The high-frequency internal diathermy energy chamber according to claim 1, characterized in that: The energy cabin body (1) is arranged in an "n" shape, and the connecting plate (4) extends to the left side of the energy cabin body (1).

3. The high-frequency internal diathermy energy chamber according to claim 1, characterized in that: The bottom wall of the lying plate (6) is provided with a guide groove engaged with the outer wall of the guide block (5), and the front and rear end side walls of the lying plate (6) are slidably connected with the inner wall of the connecting plate (4).

4. The high-frequency internal diathermy energy chamber according to claim 1, characterized in that: An adjustment chamber is provided inside the carrier (3) and is slidably connected to the fixed plate (7). The outer wall of the adjustment rod (8) is provided with a thread at a position inside the adjustment chamber. A mounting groove is provided inside the right side of the carrier (3) and is engaged with the adjustment motor (9).

5. The high-frequency internal diathermy energy chamber according to claim 1, characterized in that: The side wall of the scraper (10) is slidably connected to the side wall of the connecting plate (4); the inner wall of the stopper (18) is engaged with the outer wall of the push ring (14); the bottom of the stopper (18) is arranged at an inclined angle; the outer wall of the push ring (14) is slidably connected to the top wall of the contact plate (13) by arranging a protrusion; and friction rings are arranged at the rotational connection between the inner wall of the push ring (14) and the two ends of the scraper (10).

6. The high-frequency internal diathermy energy chamber according to claim 1, characterized in that: A limiting groove is provided inside the connecting plate (4) above the servo motor (15); the side wall of the movable plate (16) engages with the top of the servo motor (15) through the tooth groove provided; and the bottom of the movable plate (16) forms a sliding connection with the inner wall of the limiting groove.

7. The high-frequency internal diathermy energy chamber according to claim 1, characterized in that: The movable plate (16) is arranged in an L-shape, an adjusting groove is provided inside the connecting plate (4) and is slidably connected to the movable plate (16), and the bottom wall of the adjusting plate (17) is meshed with the contact wheel (11) by providing teeth.