A topical soaking device for treating palmar hyperhidrosis using a spleen-strengthening and dampness-eliminating method.

The integrated design of the external soaking and washing device solves the problem of separating the decoction container and the soaking and washing container in the existing technology, realizes efficient spin drying and low-temperature preservation of the medicine pack, improves the continuity of operation and hygiene and safety, and ensures the refrigeration effect of the medicine pack.

CN121622449BActive Publication Date: 2026-04-21CHENGDU MILITARY GENERAL HOSPITAL OF PLA
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
CHENGDU MILITARY GENERAL HOSPITAL OF PLA
Filing Date
2026-02-05
Publication Date
2026-04-21

AI Technical Summary

Technical Problem

In the existing technology, the external soaking process of treating palmar hyperhidrosis with the spleen-strengthening and dampness-eliminating method requires the separate preparation of decoction containers and soaking containers, and it is difficult to properly preserve the medicine pack that needs to be decocted a second time, resulting in inconsistent operation and poor hygiene and safety.

Method used

An external soaking and washing device was designed, which includes a constant temperature soaking and washing mechanism, a medicine pack storage mechanism, a medicine pack spin-drying mechanism, and a medicine pack lifting mechanism. By directly integrating the decoction container with the soaking and washing container, the medicine pack spin-drying mechanism is used to centrifuge and dry the medicine pack and store it at low temperature, reducing the need for additional container configuration and improving operational consistency and hygiene safety.

Benefits of technology

It achieves integrated operation of decoction and soaking processes, reduces the water content of the medicine, inhibits the risk of deterioration of the medicine pack, improves the continuity of operation and hygiene and safety, and ensures the refrigeration effect of the medicine pack through the auxiliary cooling of semiconductor cooling chip.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention relates to the field of traditional Chinese medicine treatment technology and discloses an external soaking device for treating palmar hyperhidrosis using the spleen-strengthening and dampness-eliminating method. The device includes a constant-temperature soaking mechanism comprising a support frame and a constant-temperature basin. The constant-temperature basin is fixedly connected to the bottom of the support frame. A medicine pack storage mechanism is provided at the top of the constant-temperature soaking mechanism, and a medicine pack spin-drying mechanism and a medicine pack lifting mechanism are provided inside the medicine pack storage mechanism. This external soaking device for treating palmar hyperhidrosis using the spleen-strengthening and dampness-eliminating method allows for direct integration of the decoction container and the soaking container through the constant-temperature soaking mechanism, reducing the need for additional containers. The medicine pack is centrifuged and dried through the medicine pack spin-drying mechanism to reduce its moisture content, and then stored at low temperature using the medicine pack storage mechanism. This effectively suppresses the risk of spoilage of medicine packs requiring secondary decoction and improves operational consistency and hygiene safety.
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Description

Technical Field

[0001] This invention relates to the field of traditional Chinese medicine treatment technology, specifically to an external soaking and washing device for treating palmar hyperhidrosis using the spleen-strengthening and dampness-eliminating method. Background Technology

[0002] Strengthening the spleen and removing dampness is a traditional Chinese medicine healthcare method for treating dampness that impairs the spleen. It aims to improve symptoms such as abdominal distension, loose stools, and loss of appetite caused by dampness by regulating the function of the spleen and stomach. The spleen is responsible for transportation and transformation. Dampness is divided into external dampness and internal dampness. External dampness is often caused by the hot and humid climate in summer, which can lead to symptoms such as headache and fatigue in the limbs. Internal dampness is caused by spleen and stomach weakness or dietary imbalance, and manifests as symptoms such as bitter taste in the mouth, greasy tongue coating, or loose stools.

[0003] In the process of treating palmar hyperhidrosis with external soaking using the spleen-strengthening and dampness-eliminating method, it is usually necessary to first decoct the Chinese medicine into a soup using a decoction equipment, and then soak the hands. This process not only requires separate decoction containers and soaking containers, but also makes it difficult to properly preserve the medicine packets that need to be decocted a second time. Summary of the Invention

[0004] To address the shortcomings of existing technologies, this invention provides an external soaking and washing device for treating palmar hyperhidrosis using a spleen-strengthening and dampness-eliminating method, thus solving the problems mentioned in the background.

[0005] This invention provides the following technical solution: an external soaking and washing device for treating palmar hyperhidrosis using a spleen-strengthening and dampness-eliminating method, comprising a constant-temperature soaking and washing mechanism, the constant-temperature soaking and washing mechanism including a support frame and a constant-temperature basin, the constant-temperature basin being fixedly connected to the bottom of the support frame, a medicine pack storage mechanism being provided at the top of the constant-temperature soaking and washing mechanism, a medicine pack spin-drying mechanism being provided inside the medicine pack storage mechanism, and a medicine pack lifting mechanism being provided inside the medicine pack spin-drying mechanism, the medicine pack storage mechanism including an extension cylinder, an air guide flap, and a semiconductor cooling chip, the extension cylinder being fixedly inserted into the top of the support frame, the air guide flap being movably disposed above the extension cylinder, and the semiconductor cooling chip being fixedly installed inside the air guide flap, the medicine pack spin-drying mechanism including a rotating drum, a motor base, a spin-drying motor, a driving wheel, and a driven wheel. The system comprises a ring, a timing belt, a lifting connecting ring, and a seepage frame. The rotating drum is movably disposed inside the extension drum. The motor base is installed inside the extension drum. The spin-drying motor is fixedly installed inside the motor base. The driving wheel is fixedly installed at the output end of the spin-drying motor. The driven wheel ring is fixedly sleeved on the surface of the rotating drum. The timing belt is installed between the driven wheel ring and the driving wheel. The lifting connecting ring is slidably connected inside the rotating drum. The seepage frame is fixedly connected to the bottom of the lifting connecting ring. The medicine pack lifting mechanism includes an outer inner ring block, which is fixedly sleeved on the surface of the lifting connecting ring. The constant temperature soaking mechanism also includes a soaking port and a temperature sensor. The soaking port is opened through the surface of the support frame, and the temperature sensor is fixedly installed at the bottom of the support frame.

[0006] Preferably, the medicine pack storage mechanism further includes a ventilation connecting plate, a ventilation hole, an electromagnetic lock, an air duct, an air inlet box, an exhaust fan, an air inlet grille, a bottom sealing connecting plate, and a first sliding seal ring. The ventilation connecting plate and the bottom sealing connecting plate are both fixedly connected inside the extension cylinder, and both the ventilation connecting plate and the bottom sealing connecting plate are rotatably connected to the rotating cylinder via bearings. The ventilation hole is opened through the surface of the ventilation connecting plate. The electromagnetic lock is fixedly installed on the surface of the ventilation connecting plate. The air duct is fixedly installed at the bottom of the ventilation connecting plate. The air inlet box is integrally disposed on the surface of the air duct. The exhaust fan is fixedly installed inside the air inlet box. The air inlet grille is fixedly connected between the air inlet box and the extension cylinder. The first sliding seal ring is fixedly connected to the inner wall of the bottom sealing connecting plate, and the surface of the first sliding seal ring is slidably connected to the surface of the rotating cylinder. The top of the bottom sealing connecting plate is fixedly connected to the bottom of the motor base.

[0007] Preferably, the medicine pack storage mechanism further includes a heat sink, a lock, and a one-way sealing film. The heat sink is fixedly connected to the surface of the semiconductor cooling chip, the lock is integrally set on the surface of the air guide flap, and the one-way sealing film is fixedly connected to the inner bottom wall of the air guide flap.

[0008] Preferably, the medicine pack spin-drying mechanism further includes a support ring, a sliding guide hole, and a second sliding seal ring. The support ring is fixedly connected to the top of the rotating drum, the sliding guide hole is opened through the surface of the rotating drum, and the second sliding seal ring is fixedly connected to the inner wall at the bottom of the rotating drum, and the surface of the second sliding seal ring is slidably connected to the surface of the seepage frame.

[0009] Preferably, the medicine pack drying mechanism further includes a support pulley, which is rotatably connected to the surface of the motor base via a bearing, and the surface of the support pulley is rollingly connected to the surface of the timing belt.

[0010] Preferably, the medicine pack spin-drying mechanism further includes an upper elastic rubber membrane, a lower elastic rubber membrane, a water-permeable waist hole, and a water-permeable plate. The upper elastic rubber membrane is fixedly connected between the support ring and the lifting connecting ring, the lower elastic rubber membrane is fixedly connected between the lifting connecting ring and the rotating cylinder, the water-permeable waist hole is opened through the surface of the water-permeable frame, and the water-permeable plate is fixedly connected to the inner wall at the bottom of the water-permeable frame.

[0011] Preferably, the medicine pack lifting mechanism further includes an external sliding column, an external ring rail, a lifting rotating ring, and a sliding guide hole. The external ring rail is movably sleeved on the surface of the rotating cylinder. The external sliding column is fixedly connected between the external ring rail and the external inner ring block. The lifting rotating ring is rotatably connected to the inside of the external ring rail through a bearing. The sliding guide hole is opened through the surface of the lifting rotating ring.

[0012] Preferably, the medicine pack lifting mechanism further includes a connecting seat, an electromagnet, a guide column, an armature block, and a return spring. The electromagnet is fixedly connected to the surface of the bottom connecting plate through the connecting seat. The guide column is fixedly inserted into the top of the connecting seat, and the surface of the guide column is slidably connected to the inner wall of the guide hole. The armature block is fixedly connected to the surface of the lifting ring, and the return spring is movably sleeved on the surface of the guide column.

[0013] Preferably, the constant temperature soaking mechanism further includes a light-transmitting plate, a sealing cap, a retaining strip, and an exhaust hole. The light-transmitting plate is fixedly connected to the inner wall of the support frame, the sealing cap is snapped into the inside of the soaking opening, the retaining strip is integrally set on the surface of the sealing cap, and the exhaust hole is opened through the surface of the sealing cap.

[0014] Preferably, the constant temperature soaking mechanism further includes a drain outlet, a sealing plug, a heating plate, and a heat-conducting partition. The drain outlet is opened through the middle of the constant temperature basin, the sealing plug is movably disposed inside the drain outlet, the heating plate is fixedly installed on the inner wall of the constant temperature basin, and the heat-conducting partition is fixedly connected to the surface of the heating plate.

[0015] Compared with the prior art, the present invention has the following beneficial effects:

[0016] This external soaking device for treating palmar hyperhidrosis using the spleen-strengthening and dampness-eliminating method incorporates a medicine pack storage mechanism, a medicine pack drying mechanism, a medicine pack lifting mechanism, and a constant-temperature soaking mechanism. During use, the constant-temperature soaking mechanism directly connects and integrates the decoction container and the soaking container, reducing the need for additional containers. The medicine pack drying mechanism centrifuges and dries the medicine pack to reduce its moisture content, and the medicine pack storage mechanism implements low-temperature preservation, thereby effectively suppressing the risk of spoilage of the medicine pack that requires secondary decoction and improving operational consistency and hygiene safety.

[0017] This external soaking and washing device for treating palmar hyperhidrosis using the spleen-strengthening and dampness-eliminating method, through its extension tube, air guide flip cover, semiconductor cooling chip, ventilation connecting plate, ventilation hole, electromagnetic lock, air guide duct, air inlet box, exhaust fan, air inlet grille, bottom sealing connecting plate, first sliding seal ring, heat dissipation plate, lock head, and one-way sealing film, can accelerate the flow of cold air by generating airflow through the exhaust fan during use, and simultaneously achieve cooling through the semiconductor cooling chip, ensuring that the device can achieve auxiliary cooling and refrigeration of medicine packs.

[0018] This external soaking device for treating palmar hyperhidrosis using the spleen-strengthening and dampness-eliminating method, through its components including a rotating drum, motor base, spin-drying motor, driving wheel, driven wheel ring, synchronous belt, lifting connecting ring, seepage frame, support ring, sliding guide waist hole, second sliding seal ring, support pulley, upper elastic rubber membrane, lower elastic rubber membrane, seepage waist hole, and seepage plate, can ensure the medicine pack is submerged during decoction by lowering the seepage frame, and can achieve refrigeration of the medicine pack by raising the seepage frame during storage. Furthermore, it can reduce the moisture content of the medicine pack by centrifugal rotation driven by the spin-drying motor before refrigeration.

[0019] This external soaking device for treating palmar hyperhidrosis using the spleen-strengthening and dampness-eliminating method, through its external inner ring block, external sliding column, external ring rail, lifting rotating ring, sliding guide hole, connecting seat, electromagnet, guide sliding column, armature block, and return spring, ensures the smooth raising and lowering of the seepage frame during use through the attraction and release of the electromagnet, and ensures the smooth rotation and spin-drying of the drum through the cooperation between the external ring rail and the lifting rotating ring.

[0020] This external soaking and washing device for treating palmar hyperhidrosis using the spleen-strengthening and dampness-eliminating method, through its set support frame, soaking and washing port, temperature sensor, constant temperature basin, light-transmitting plate, sealing cover, locking strip, vent hole, drain outlet, sealing plug, electric heating plate and heat-conducting partition, can combine the decoction container, soaking and washing container and the medicine pack refrigeration container during use, and ensure a constant temperature during soaking and washing. Attached Figure Description

[0021] Figure 1 This is a schematic diagram of the structure of the present invention;

[0022] Figure 2 This is a cross-sectional view of the present invention;

[0023] Figure 3 This is a schematic diagram of the internal exploded structure of the constant temperature soaking and washing mechanism of the present invention;

[0024] Figure 4 This is a schematic diagram of the structure at the location of the medicine pack storage mechanism of the present invention;

[0025] Figure 5 This is an internal sectional view of the medicine pack storage mechanism of the present invention;

[0026] Figure 6 This is a schematic diagram of the structure at the air inlet box location of the present invention;

[0027] Figure 7 This is a cross-sectional view of the location of the medicine pack drying mechanism of the present invention;

[0028] Figure 8 This is a schematic diagram of the medicine pack spin-drying mechanism of the present invention;

[0029] Figure 9 This is a schematic diagram of the structure at the location of the medicine pack lifting mechanism of the present invention.

[0030] In the picture:

[0031] 101. Extension cylinder; 102. Air guide flip cover; 103. Semiconductor cooling chip; 104. Ventilation connecting plate; 105. Ventilation hole; 106. Electromagnetic lock; 107. Air guide duct; 108. Air inlet box; 109. Exhaust fan; 110. Air inlet grille; 111. Bottom sealing connecting plate; 112. First sliding seal ring; 113. Heat sink plate; 114. Lock head; 115. One-way sealing membrane; 201. Rotary drum; 202. Motor base; 203. Spin-drying motor; 204. Drive wheel; 205. Driven wheel ring; 206. Synchronous belt; 207. Lifting connecting ring; 208. Water seepage frame; 209. Support ring; 210. Sliding guide waist hole; 211. Second sliding seal ring; 212 213. Support pulley; 214. Upper elastic rubber diaphragm; 215. Lower elastic rubber diaphragm; 216. Water seepage hole; 217. Water seepage plate; 308. External inner ring block; 309. External sliding column; 3000. External ring rail; 301. Lifting rotating ring; 302. Sliding guide hole; 303. Connecting seat; 304. Electromagnet; 305. Guide sliding column; 306. Armature block; 317. Return spring; 408. Support frame; 409. Soaking port; 4000. Temperature sensor; 4001. Constant temperature basin; 401. Light-transmitting plate; 402. Sealing cover; 403. Locking protrusion; 404. Vent hole; 405. Drain outlet; 416. Sealing plug; 417. Heating plate; 418. Heat-conducting partition. Detailed Implementation

[0032] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0033] Please see Figures 1-9A topical soaking device for treating palmar hyperhidrosis using a spleen-strengthening and dampness-eliminating method includes a constant-temperature soaking mechanism. The constant-temperature soaking mechanism comprises a support frame 401 and a constant-temperature basin 404, with the basin 404 fixedly connected to the bottom of the support frame 401. A medicine pack storage mechanism is located at the top of the constant-temperature soaking mechanism, and a medicine pack spin-drying mechanism and a medicine pack lifting mechanism are located inside the medicine pack storage mechanism. The medicine pack storage mechanism includes an extension cylinder 101, an air-guiding flip cover 102, and a semiconductor cooling chip 103. The extension cylinder 101 is fixedly inserted into the top of the support frame 401. The air guide flap 102 is movably disposed above the extension cylinder 101. The semiconductor cooling chip 103 is fixedly installed inside the air guide flap 102. The medicine bag spin-drying mechanism includes a rotating drum 201, a motor base 202, a spin-drying motor 203, a drive wheel 204, a driven wheel ring 205, a synchronous belt 206, a lifting connecting ring 207, and a water seepage frame 208. The rotating drum 201 is movably disposed inside the extension cylinder 101. The motor base 202 is installed inside the extension cylinder 101. The spin-drying motor 203 is fixedly installed inside the motor base 202. The drive wheel 204 is fixedly installed inside the extension cylinder 101. A driven pulley ring 205 is fixedly fitted onto the surface of the rotating drum 201, and a synchronous belt 206 is installed between the driven pulley ring 205 and the driving pulley 204. A lifting connecting ring 207 is slidably connected inside the rotating drum 201, and a seepage frame 208 is fixedly connected to the bottom of the lifting connecting ring 207. The medicine bag lifting mechanism includes an outer inner ring block 301, which is fixedly fitted onto the surface of the lifting connecting ring 207. The constant temperature soaking mechanism also includes a soaking port 402 and a temperature sensor 403, with the soaking port 402 penetrating through... A temperature sensor 403 is fixedly installed at the bottom of the support frame 401 on the surface of the support frame 401. Through the set medicine bag storage mechanism, medicine bag drying mechanism, medicine bag lifting mechanism and constant temperature soaking mechanism, the decoction container and the soaking container can be directly connected and integrated through the constant temperature soaking mechanism during use, reducing the need for additional container configuration. The medicine bag is centrifuged and dried by the medicine bag drying mechanism to reduce the moisture content. Then, the medicine bag storage mechanism is used to implement low temperature preservation, thereby effectively suppressing the risk of deterioration of medicine bags that need to be decocted a second time and improving the continuity of operation and hygiene safety.

[0034] The medicine pack storage mechanism also includes a ventilation connecting plate 104, a ventilation hole 105, an electromagnetic lock 106, an air duct 107, an air inlet box 108, an exhaust fan 109, an air inlet grille 110, a bottom sealing connecting plate 111, and a first sliding seal ring 112. The ventilation connecting plate 104 and the bottom sealing connecting plate 111 are both fixedly connected inside the extension cylinder 101, and both are rotatably connected to the rotating cylinder 201 via bearings. The ventilation hole 105 is formed through the surface of the ventilation connecting plate 104, and the electromagnetic lock 106 is fixedly installed on... The ventilation connecting plate 104 is surface-mounted, the air duct 107 is fixedly installed at the bottom of the ventilation connecting plate 104, the air inlet box 108 is integrally set on the surface of the air duct 107, the exhaust fan 109 is fixedly installed inside the air inlet box 108, the air inlet grille 110 is fixedly connected between the air inlet box 108 and the extension cylinder 101, the first sliding seal ring 112 is fixedly connected to the inner wall of the bottom sealing connecting plate 111, and the surface of the first sliding seal ring 112 is slidably connected to the surface of the rotating cylinder 201, and the top of the bottom sealing connecting plate 111 is fixedly connected to the bottom of the motor base 202.

[0035] The medicine pack storage mechanism also includes a heat sink 113, a lock 114, and a one-way sealing film 115. The heat sink 113 is fixedly connected to the surface of the semiconductor cooling chip 103. The lock 114 is integrally set on the surface of the air guide cover 102. The one-way sealing film 115 is fixedly connected to the inner bottom wall of the air guide cover 102. Through the provided extension cylinder 101, air guide cover 102, semiconductor cooling chip 103, ventilation connecting plate 104, ventilation hole 105, electromagnetic lock 106, air guide duct 107, air inlet box 108, exhaust fan 109, air inlet grille 110, bottom sealing connecting plate 111, first sliding seal ring 112, heat sink 113, lock 114, and one-way sealing film 115, the exhaust fan 109 can generate airflow to accelerate the flow of cold air during use, and the semiconductor cooling chip 103 can achieve cooling, ensuring that the device achieves auxiliary cooling and medicine pack refrigeration.

[0036] The medicine bag drying mechanism also includes a support ring 209, a sliding guide hole 210, and a second sliding seal ring 211. The support ring 209 is fixedly connected to the top of the rotating drum 201, the sliding guide hole 210 is opened through the surface of the rotating drum 201, and the second sliding seal ring 211 is fixedly connected to the inner wall at the bottom of the rotating drum 201, and the surface of the second sliding seal ring 211 is slidably connected to the surface of the seepage frame 208.

[0037] The medicine bag drying mechanism also includes a support pulley 212, which is rotatably connected to the surface of the motor base 202 via a bearing, and the surface of the support pulley 212 is in rolling connection with the surface of the synchronous belt 206.

[0038] The medicine bag spin-drying mechanism includes an upper elastic rubber membrane 213, a lower elastic rubber membrane 214, a water-permeable waist hole 215, and a water-permeable plate 216. The upper elastic rubber membrane 213 is fixedly connected between the support ring 209 and the lifting connecting ring 207. The lower elastic rubber membrane 214 is fixedly connected between the lifting connecting ring 207 and the rotating drum 201. The water-permeable waist hole 215 is opened through the surface of the water-permeable frame 208. The water-permeable plate 216 is fixedly connected to the inner wall of the bottom of the water-permeable frame 208. The mechanism is connected via the rotating drum 201, motor base 202, spin-drying motor 203, and main... The drive wheel 204, driven wheel ring 205, synchronous belt 206, lifting connecting ring 207, water seepage frame 208, support ring 209, sliding guide waist hole 210, second sliding seal ring 211, support belt wheel 212, upper elastic rubber membrane 213, lower elastic rubber membrane 214, water seepage waist hole 215, and water seepage plate 216 can ensure that the medicine bag is submerged when it is about to be decocted by lowering the water seepage frame 208, and can achieve the storage and refrigeration of the medicine bag by raising the water seepage frame 208 during storage. Before refrigeration, the medicine bag can be centrifugally rotated by the spin dryer motor 203 to reduce the moisture content.

[0039] The medicine pack lifting mechanism also includes an external sliding column 302, an external ring rail 303, a lifting rotating ring 304, and a sliding guide hole 305. The external ring rail 303 is movably sleeved on the surface of the rotating cylinder 201. The external sliding column 302 is fixedly connected between the external ring rail 303 and the external inner ring block 301. The lifting rotating ring 304 is rotatably connected to the inside of the external ring rail 303 through a bearing. The sliding guide hole 305 is opened through the surface of the lifting rotating ring 304.

[0040] The medicine pack lifting mechanism also includes a connecting seat 306, an electromagnet 307, a guide column 308, an armature block 309, and a return spring 310. The electromagnet 307 is fixedly connected to the surface of the bottom connecting plate 111 via the connecting seat 306. The guide column 308 is fixedly inserted into the top of the connecting seat 306, and the surface of the guide column 308 is slidably connected to the inner wall of the guide hole 305. The armature block 309 is fixedly connected to the surface of the lifting ring 304, and the return spring 310 is movably sleeved on the guide column. The surface of column 308, through the external inner ring block 301, external sliding column 302, external ring rail 303, lifting rotating ring 304, sliding guide hole 305, connecting seat 306, electromagnet 307, guide sliding column 308, armature block 309 and return spring 310, can ensure the smooth lifting and lowering of the seepage frame 208 by the attraction and release of electromagnet 307 during use, and ensure the smooth rotation and spin-drying of drum 201 by the cooperation between external ring rail 303 and lifting rotating ring 304.

[0041] The constant temperature soaking and washing mechanism also includes a light-transmitting plate 405, a sealing cover 406, a retaining strip 407, and an exhaust hole 408. The light-transmitting plate 405 is fixedly connected to the inner wall of the support frame 401. The sealing cover 406 is snapped into the inside of the soaking and washing port 402. The retaining strip 407 is integrally set on the surface of the sealing cover 406. The exhaust hole 408 is opened through the surface of the sealing cover 406.

[0042] The constant temperature soaking and washing mechanism also includes a drain outlet 409, a sealing plug 410, a heating plate 411, and a heat-conducting partition 412. The drain outlet 409 is opened through the middle of the constant temperature basin 404. The sealing plug 410 is movably disposed inside the drain outlet 409. The heating plate 411 is fixedly installed on the inner wall of the constant temperature basin 404. The heat-conducting partition 412 is fixedly connected to the surface of the heating plate 411. Through the provided support frame 401, soaking and washing port 402, temperature sensor 403, constant temperature basin 404, light-transmitting plate 405, sealing cover 406, locking strip 407, vent 408, drain outlet 409, sealing plug 410, heating plate 411, and heat-conducting partition 412, the decoction container, soaking and washing container, and medicine pack refrigeration container can be combined during use, and the constant temperature can be maintained during soaking and washing.

[0043] Working principle:

[0044] In use, open the air guide cover 102, place the medicine bag inside the seepage frame 208, then energize the electromagnet 307. After the electromagnet 307 is energized, it attracts the armature block 309, causing the armature block 309 to drive the lifting rotating ring 304 to descend. This causes the outer ring rail 303 to drive the outer inner ring block 301 and the lifting connecting ring 207 to descend through the outer sliding column 302, so that the seepage frame 208 and the medicine bag extend out from inside the rotating cylinder 201. Then, inject an appropriate amount of clean water into the device through the support ring 209. Then close the air guide cover 102 and activate the electromagnetic lock 106 to lock the air guide cover 102.

[0045] Then, the heating plate 411 is powered on, and the heating plate 411 heats the water and ensures that the water temperature is high and constant through the feedback of the temperature sensor 403, so as to decoct the medicine packet. After the decoction is completed, the set temperature of the temperature sensor 403 is lowered to ensure that the heating plate 411 keeps the medicine liquid at a low temperature.

[0046] Simultaneously, the soaking port 402 is opened, the semiconductor cooling chip 103 is powered on, and the exhaust fan 109 is started. After the exhaust fan 109 is started, it draws in external cold air through the air inlet grille 110, and then pumps it out of the ventilation hole 105 through the air inlet box 108 and the air guide duct 107. Then, it passes under the one-way sealing film 115 at the bottom of the air guide cover 102 and enters the interior of the air guide cover 102. The airflow inside the air guide cover 102 is cooled by the semiconductor cooling chip 103. Then, the low-temperature airflow flows downward through the water seepage waist hole 215 to accelerate the cooling of the medicine. Then, the airflow carrying heat is discharged from the soaking port 402 until the medicine reaches the appropriate temperature. After that, the semiconductor cooling chip 103 and the exhaust fan 109 are turned off, and then the soaking is performed.

[0047] After soaking and rinsing, open the sealing plug 410 to drain the medicine solution, close the soaking and rinsing port 402, and then start the exhaust fan 109 and the spin-drying motor 203. The exhaust fan 109, once started, blows air again to accelerate the dehydration of the medicine pack. The spin-drying motor 203, once started, drives the synchronous belt 206 via the drive wheel 204, which in turn drives the driven wheel ring 205 to rotate. The rotation of the driven wheel ring 205 drives the rotating drum 201 to rotate, which in turn drives the internal seepage frame 208 and the medicine pack to rotate centrifugally, thus enabling the medicine pack to be rapidly centrifuged and dehydrated. After the dehydration is complete, the spin-drying motor 203 is turned off, and then the electromagnet 307 is turned off. The return spring 310 pushes the armature block 309 to spring back to its original position, thereby causing the seepage frame 208 and the medicine pack to retract into the rotating drum 201. Then, the soaking port 402 is opened to rinse the inside of the constant temperature basin 404. After the dehydration is completed, the soaking port 402 and the sealing plug 410 are closed. Then, the semiconductor cooling chip 103 is energized. The semiconductor cooling chip 103 maintains a low temperature environment inside the device through the feedback of the temperature sensor 403, thereby ensuring the storage of the medicine pack.

[0048] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A topical soaking device for treating palmar hyperhidrosis using a spleen-strengthening and dampness-eliminating method, comprising a constant-temperature soaking mechanism, wherein the constant-temperature soaking mechanism includes a support frame (401) and a constant-temperature basin (404), wherein the constant-temperature basin (404) is fixedly connected to the bottom of the support frame (401), characterized in that, The top of the constant temperature soaking and washing mechanism is provided with a medicine pack storage mechanism, the inside of the medicine pack storage mechanism is provided with a medicine pack spin-drying mechanism, and the inside of the medicine pack spin-drying mechanism is provided with a medicine pack lifting mechanism. The medicine pack storage mechanism includes an extension cylinder (101), an air guide flap (102), and a semiconductor cooling chip (103). The extension cylinder (101) is fixedly inserted into the top of the support frame (401). The air guide flap (102) is movably disposed above the extension cylinder (101). The semiconductor cooling chip (103) is fixedly installed inside the air guide flap (102). The medicine pack spin-drying mechanism includes a rotating drum (201), a motor base (202), a spin-drying motor (203), a drive wheel (204), a driven wheel ring (205), a synchronous belt (206), a lifting connecting ring (207), and a water seepage frame (208). The rotating drum (201) is movably disposed inside the extension cylinder (101). The motor base (202) is installed inside the extension cylinder (101). The spin-drying motor (203) is fixedly installed on the motor base (202). Inside, the drive wheel (204) is fixedly installed at the output end of the spin-drying motor (203), the driven wheel ring (205) is fixedly sleeved on the surface of the drum (201), the synchronous belt (206) is installed between the driven wheel ring (205) and the drive wheel (204), the lifting connecting ring (207) is slidably connected inside the drum (201), the seepage frame (208) is fixedly connected to the bottom of the lifting connecting ring (207), the medicine pack lifting mechanism includes an outer inner ring block (301), the outer inner ring block (301) is fixedly sleeved on the surface of the lifting connecting ring (207), the constant temperature soaking mechanism also includes a soaking port (402) and a temperature sensor (403), the soaking port (402) is opened through the surface of the support frame (401), and the temperature sensor (403) is fixedly installed at the bottom of the support frame (401); The medicine pack lifting mechanism also includes an external sliding column (302), an external ring rail (303), a lifting rotating ring (304), and a sliding guide hole (305). The external ring rail (303) is movably sleeved on the surface of the rotating cylinder (201). The external sliding column (302) is fixedly connected between the external ring rail (303) and the external inner ring block (301). The lifting rotating ring (304) is rotatably connected to the inside of the external ring rail (303) through a bearing. The sliding guide hole (305) is opened through the surface of the lifting rotating ring (304).

2. The external soaking and washing device for treating palmar hyperhidrosis using the spleen-strengthening and dampness-eliminating method according to claim 1, characterized in that, The medicine pack storage mechanism also includes a ventilation connecting plate (104), a ventilation hole (105), an electromagnetic lock (106), an air duct (107), an air inlet box (108), an exhaust fan (109), an air inlet grille (110), a bottom sealing connecting plate (111), and a first sliding seal ring (112). The ventilation connecting plate (104) and the bottom sealing connecting plate (111) are both fixedly connected inside the extension cylinder (101), and the ventilation connecting plate (104) and the bottom sealing connecting plate (111) are rotatably connected to the rotating cylinder (201) through bearings. The ventilation hole (105) is opened through the surface of the ventilation connecting plate (104), and the electromagnetic lock (106) is fixedly installed on the surface of the extension cylinder (201). The ventilation connecting plate (104) is on the surface, the air guide duct (107) is fixedly installed at the bottom of the ventilation connecting plate (104), the air inlet box (108) is integrally set on the surface of the air guide duct (107), the exhaust fan (109) is fixedly installed inside the air inlet box (108), the air inlet grille (110) is fixedly connected between the air inlet box (108) and the extension cylinder (101), the first sliding seal ring (112) is fixedly connected to the inner wall of the bottom sealing connecting plate (111), and the surface of the first sliding seal ring (112) is slidably connected to the surface of the rotating cylinder (201), and the top of the bottom sealing connecting plate (111) is fixedly connected to the bottom of the motor base (202).

3. The external soaking and washing device for treating palmar hyperhidrosis using the spleen-strengthening and dampness-eliminating method according to claim 2, characterized in that, The medicine pack storage mechanism also includes a heat sink (113), a lock (114), and a one-way sealing film (115). The heat sink (113) is fixedly connected to the surface of the semiconductor cooling chip (103). The lock (114) is integrally set on the surface of the air guide cover (102). The one-way sealing film (115) is fixedly connected to the inner bottom wall of the air guide cover (102).

4. The external soaking and washing device for treating palmar hyperhidrosis using the spleen-strengthening and dampness-eliminating method according to claim 1, characterized in that, The medicine pack spin-drying mechanism also includes a support ring (209), a sliding guide waist hole (210), and a second sliding seal ring (211). The support ring (209) is fixedly connected to the top of the rotating drum (201). The sliding guide waist hole (210) is opened through the surface of the rotating drum (201). The second sliding seal ring (211) is fixedly connected to the inner wall at the bottom of the rotating drum (201), and the surface of the second sliding seal ring (211) is slidably connected to the surface of the seepage frame (208).

5. The external soaking and washing device for treating palmar hyperhidrosis using the spleen-strengthening and dampness-eliminating method according to claim 4, characterized in that, The medicine pack drying mechanism also includes a support pulley (212), which is rotatably connected to the surface of the motor base (202) via a bearing, and the surface of the support pulley (212) is rollingly connected to the surface of the synchronous belt (206).

6. The external soaking and washing device for treating palmar hyperhidrosis using the spleen-strengthening and dampness-eliminating method according to claim 5, characterized in that, The medicine pack drying mechanism also includes an upper elastic rubber membrane (213), a lower elastic rubber membrane (214), a water-permeable waist hole (215), and a water-permeable plate (216). The upper elastic rubber membrane (213) is fixedly connected between the support ring (209) and the lifting connecting ring (207). The lower elastic rubber membrane (214) is fixedly connected between the lifting connecting ring (207) and the rotating cylinder (201). The water-permeable waist hole (215) is opened through the surface of the water-permeable frame (208). The water-permeable plate (216) is fixedly connected to the inner wall of the bottom of the water-permeable frame (208).

7. The external soaking and washing device for treating palmar hyperhidrosis using the spleen-strengthening and dampness-eliminating method according to claim 1, characterized in that, The medicine pack lifting mechanism also includes a connecting seat (306), an electromagnet (307), a guide column (308), an armature block (309), and a return spring (310). The electromagnet (307) is fixedly connected to the surface of the bottom connecting plate (111) through the connecting seat (306). The guide column (308) is fixedly inserted into the top of the connecting seat (306), and the surface of the guide column (308) is slidably connected to the inner wall of the guide hole (305). The armature block (309) is fixedly connected to the surface of the lifting ring (304), and the return spring (310) is movably sleeved on the surface of the guide column (308).

8. The external soaking and washing device for treating palmar hyperhidrosis using the spleen-strengthening and dampness-eliminating method according to claim 1, characterized in that, The constant temperature soaking mechanism also includes a light-transmitting plate (405), a sealing cover (406), a retaining strip (407), and an exhaust hole (408). The light-transmitting plate (405) is fixedly connected to the inner wall of the support frame (401). The sealing cover (406) is snapped into the inside of the soaking opening (402). The retaining strip (407) is integrally set on the surface of the sealing cover (406). The exhaust hole (408) is opened through the surface of the sealing cover (406).

9. The external soaking and washing device for treating palmar hyperhidrosis using the spleen-strengthening and dampness-eliminating method according to claim 8, characterized in that, The constant temperature soaking mechanism also includes a drain outlet (409), a sealing plug (410), an electric heating plate (411), and a heat-conducting partition (412). The drain outlet (409) is opened through the middle of the constant temperature basin (404). The sealing plug (410) is movably disposed inside the drain outlet (409). The electric heating plate (411) is fixedly installed on the inner wall of the constant temperature basin (404). The heat-conducting partition (412) is fixedly connected to the surface of the electric heating plate (411).

Citation Information

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