Traditional Chinese medicine ironing instrument
By heating the herbal pack with a heating layer and using an airbag massage mechanism, the problems of insufficient pressure and hand discomfort in traditional Chinese medicine hot compresses are solved, achieving stable drug penetration and comfortable operation, thus improving the effect and experience of traditional Chinese medicine hot compresses.
Patent Information
- Application Number
- CN202511742331.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-25
- Publication Date
- 2026-01-23
AI Technical Summary
Existing Chinese herbal ironing devices have insufficient pressure, making it difficult for drug molecules to effectively penetrate the skin barrier. Handheld operation causes users' palms to sweat, and the temperature of the herbal pack drops, affecting the treatment effect.
It uses a heating layer to heat the medicine pack, combined with airbag massage and ventilation mechanisms, to provide a stable temperature and a comfortable operating experience.
It achieves stable penetration of drug molecules, avoids sweaty palms, and improves the lasting effect and user experience of ironing.
Smart Images

Figure CN121370580A_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of traditional Chinese medicine hot compress technology, and in particular to a traditional Chinese medicine hot compress device. Background Technology
[0002] With the promotion of traditional Chinese medicine (TCM) techniques, many TCM techniques are now applied in clinical practice and have received widespread praise from patients. Herbal hot compress therapy is one such technique. It involves heating Chinese herbs and placing them in a herbal bag, which is then used to apply heat to specific areas or acupoints on the body, moving or rotating the bag as needed. This therapy utilizes the properties of the herbs and the warmth to allow the medicine to penetrate the meridians and blood vessels through the skin's pores, thereby achieving effects such as warming the meridians and promoting blood circulation, relieving pain, and reducing swelling.
[0003] Patent CN209662192U discloses a traditional Chinese medicine hot iron, which has the advantages of simple structure, convenient use, easy manufacturing, and good hot ironing treatment effect.
[0004] However, the aforementioned existing technologies have the following technical defects: First, the pressure source of this ordinary mobile ironing is limited, relying only on the weight of the medicine pack and the downward pressure from the hand. Not only is the pressure value low, but it is also impossible to maintain a continuous effect. This characteristic makes it difficult for drug molecules to effectively penetrate the skin barrier, ultimately resulting in low drug absorption efficiency of the device.
[0005] Second, the device needs to be operated by hand, and the user needs to hold and move the device continuously during the ironing process. The prolonged holding and movement can easily cause the user's palms to sweat, which will affect the user experience.
[0006] Third, the device lacks a medicine pack heating function, and the medicine pack itself can only release heat for a short time. As the usage time increases, the temperature of the medicine pack will gradually decrease. When it drops to a certain threshold, it will not only weaken the warming effect of ironing, but also further affect the activity and penetration efficiency of the drug molecules, ultimately resulting in a significant reduction in the overall effect and failing to meet the need for continuous and stable ironing.
[0007] Therefore, there is still room for improvement in existing irons to overcome the aforementioned technical shortcomings. Summary of the Invention
[0008] To address the aforementioned problems, this application provides a traditional Chinese medicine ironing device, employing the following technical solution: The ironing mechanism includes a main layer with a heating layer inside. A middle layer is magnetically connected to the lower side of the main layer, with a temperature sensor inside the middle layer. A medicine pack is attached to the lower side of the middle layer via Velcro. A set of finger cots is located on the upper side of the main layer.
[0009] The main layer is equipped with a massage mechanism, which includes a group of airbags located on the upper side of the heating layer and evenly distributed. The input ends of the airbags are all equipped with multi-port tubes extending to the outside of the main layer.
[0010] It is also equipped with a ventilation mechanism, which includes a heat insulation plate located inside the main layer and above all the airbags. The heat insulation plate is equipped with multiple evenly distributed horizontal pipes. A set of air outlets extending to the upper side of the main layer are installed on the side of the horizontal pipes near the upper cover layer. One end of the horizontal pipes extends to the outside of the main layer and is connected to a diversion pipe.
[0011] It also includes control mechanisms and gas injection mechanisms.
[0012] Preferably, the control mechanism includes a housing, a controller is disposed on the top surface inside the housing, and a touch screen is embedded in the upper side of the housing.
[0013] Preferably, a power supply is installed on the ground inside the outer casing, a partition is installed between the inner walls of the outer casing above the power supply, a heating wire is provided inside the heating layer, and a power cord is connected between the output end of the power supply and the heating wire.
[0014] Preferably, two sets of fixing rings are symmetrically installed on the upper edge of the main layer. Each set of two fixing rings is equipped with an elastic band. One of the elastic bands in the same set has a Velcro hook side on both sides of its end, and the other elastic band has a Velcro hook side on both sides of its end.
[0015] Preferably, the air injection mechanism includes a cylindrical air cylinder and an air pump mounted on the upper side of the partition plate. The output end of the air pump is rotatably mounted with a shaft tube extending into the air cylinder. A motor connected to the shaft tube is mounted on the upper side of the partition plate and on one side of the shaft tube via gears.
[0016] Preferably, the shaft tube and the air cylinder are at the same center. The end of the shaft tube inside the air cylinder is fitted with a turntable that is in close contact with the inner wall of the air cylinder and is slidably connected to it. A through hole is opened on the side of the shaft tube near the turntable. The gas input into the shaft tube by the air pump is discharged into the air cylinder through the through hole.
[0017] Preferably, the side of the turntable has an arc-shaped opening and an arc-shaped groove with the same center, and the side of the air cylinder has a connecting pipe connected to the multi-port pipe installed on one side of the arc-shaped opening. The width of the arc-shaped opening and the arc-shaped groove is the same as the diameter of the connecting pipe.
[0018] Preferably, an intermediate plate is installed between the inner walls of the air cylinder and the through hole side, an air pipe extending to the outer side of the intermediate plate is installed on the bottom surface of the arc-shaped groove, and a connecting pipe connected to the diverter pipe is installed on the air cylinder near the outer side of the intermediate plate.
[0019] Preferably, a set of evenly distributed silicone heads is installed on the upper side of the main layer between two adjacent sets of multi-channel tubes, and an upper cover layer covering all finger sleeves is installed on the upper side of the main layer.
[0020] In summary, this application includes at least one of the following beneficial technical effects: 1. The ironing mechanism of this application supports the direct adhesion of cold medicine packs to the middle layer. After the medicine pack is quickly heated by the heating layer, the ironing operation can be carried out. The heating layer can continuously maintain a stable temperature of the medicine pack, avoiding the reduction of drug molecule activity and penetration efficiency due to temperature drop, and is suitable for long-term ironing needs. At the same time, the user can fix the mechanism by inserting their fingers into the finger cots, and the silicone head provides support for the palm, effectively increasing the skin gap between the upper side of the main layer and the palm.
[0021] II. The air injection mechanism of this application can realize two massage modes: one is to slowly inflate and deflate the airbag of the massage mechanism, and to squeeze and massage the skin through the expansion and contraction of the airbag; the other is to quickly inflate and deflate the airbag, so that the airbag does not undergo large deformation, but instead performs high-speed and small expansion and contraction movements to form vibration massage. The two modes alternately act on the skin of the hot-pressed area, which can enhance the activity of skin cells and help the drug to be better absorbed.
[0022] Third, the gas discharged from the airbag can be delivered to the horizontal tube and discharged through various air outlets, significantly enhancing the air circulation between the palm and the main layer, preventing sweaty palms from the root cause, and further optimizing the user experience of the device. Attached Figure Description
[0023] The present application will be further described below with reference to the accompanying drawings and embodiments.
[0024] Figure 1 This is a schematic diagram of the structure of Embodiment 1 of this application.
[0025] Figure 2 This is a schematic diagram of the internal structure of this application.
[0026] Figure 3 This is a schematic diagram of the magnetic clasp assembly structure of this application.
[0027] Figure 4 This is a schematic diagram of the structure of the Velcro component of this application.
[0028] Figure 5 This is a schematic diagram of the elastic band assembly structure of this application.
[0029] Figure 6 This is a schematic diagram of the structure of Embodiment 2 of this application.
[0030] Figure 7 This is a schematic diagram of the massage mechanism structure described in this application.
[0031] Figure 8 This is a schematic diagram of the internal structure of the outer shell of this application.
[0032] Figure 9 This is a schematic diagram of the gas injection mechanism structure of this application.
[0033] Figure 10 This is a schematic diagram of the turntable structure of this application.
[0034] Figure 11 This is a schematic diagram of the main structure of this application.
[0035] Figure 12 This is a schematic diagram of the ventilation mechanism structure of this application.
[0036] In the diagram: 1. Ironing mechanism; 101. Main layer; 102. Heating layer; 103. Middle layer; 104. Temperature sensor; 105. Herbal pack; 106. Finger cot; 107. Top cover layer; 108. Female fastener; 109. Female fastener; 110. Velcro loop side 1; 111. Velcro hook side 1; 2. Control mechanism; 201. Outer shell; 202. Controller; 203. Power supply; 204. Partition; 205. Power cord; 3. Massage mechanism; 301. Airbag; 302. Multi-port tube; 303. Connecting tube 1; 4. Air injection mechanism; 401, air cylinder; 402, air pump; 403, shaft tube; 404, arc-shaped opening; 405, through hole; 406, intermediate plate; 407, arc-shaped groove; 408, air pipe; 409, motor; 410, gear one; 411, gear two; 412, turntable; 5, ventilation mechanism; 501, heat insulation plate; 502, horizontal pipe; 503, air outlet; 504, diverter pipe; 505, connecting pipe two; 6, fixing ring; 7, elastic band; 8, hook and loop fastener two; 9, hook and loop fastener two; 10, silicone head. Detailed Implementation
[0037] The following combination Figure 1 - Figure 12 The embodiments of this application will be described in detail.
[0038] This application discloses a traditional Chinese medicine hot compress device. The hot compress mechanism supports the direct adhesion of cold medicine packs to the middle layer. After the medicine pack is quickly heated by the heating layer, the hot compress operation can be carried out. The heating layer can continuously maintain a stable temperature of the medicine pack, avoiding the reduction of drug molecule activity and penetration efficiency due to temperature drop, and is suitable for long-term hot compress needs. At the same time, the user can fix the mechanism by inserting their fingers into the finger cots. The silicone head provides support for the palm, effectively increasing the skin gap between the upper side of the main layer and the palm.
[0039] Example 1: like Figure 1 and Figure 2 As shown, the ironing mechanism 1 includes an ironing mechanism for ironing the human body. The ironing mechanism 1 includes a main layer 101, a heating layer 102 is provided in the main layer 101, and a heating wire is provided in the heating layer 102. When the heating wire is energized, electrical energy can be converted into heat energy and heat is emitted.
[0040] like Figure 2 and Figure 3 As shown, a middle layer 103 is provided on the lower side of the main layer 101. A set of female buckles 109 are installed in a rectangular shape on the lower side of the main layer 101. The lower side of the female buckles 109 has a magnetically attached male buckle 108 that is compatible with it and fixedly connected to the middle layer 103. The middle layer 103 is magnetically attached to the four female buckles 109 of the main layer 101 through the four male buckles 108, thereby connecting and fixing the middle layer 103 and the main layer 101. At the same time, the magnetic connection between the two can also be easily separated.
[0041] like Figure 2 As shown, a temperature sensor 104 is installed in the middle layer 103, and a medicine pack 105 is installed on the lower side of the middle layer 103. The medicine pack 105 is attached to the abdominal skin that needs to be treated. Then, the heating wire in the heating layer 102 heats up and heats the medicine pack 105, and the medicine pack 105 is moved on the surface of the abdominal skin to allow the skin to absorb the medicine effect of the medicine pack 105. At the same time, the temperature of the medicine pack 105 is monitored by the temperature sensor 104.
[0042] Users can also select different medicinal packs 105 according to the area to be ironed, so as to iron multiple parts of the body.
[0043] like Figure 4 As shown, a hook and loop fastener 111 is installed at the center of the lower side of the intermediate layer 103, and a loop and loop fastener 110 is installed on the upper side of the medicine pack 105 and attached to the hook and loop fastener 111. The medicine pack 105 is attached to the intermediate layer 103 by the cooperation of the loop and loop fastener 110 and the hook and loop fastener 111. After the medicine pack 105 has been used many times and the medicine has lost its effect, it can be torn off and the loop and loop fastener 110 of the new medicine pack 105 can be attached to the hook and loop fastener 111 of the intermediate layer 103.
[0044] like Figure 5 As shown, a set of finger sleeves 106 are provided on the upper side of the main layer 101, and an upper cover layer 107 is installed on the upper side of the main layer 101 to cover all the finger sleeves 106. When in use, the user puts his / her hand into the upper cover layer 107 and puts five fingers into the five finger sleeves 106, which can fix the ironing mechanism 1 on the user's hand. After the ironing mechanism 1 is attached to the skin, the user can perform the ironing operation by moving the ironing mechanism 1 back and forth with his / her hand.
[0045] like Figure 1 and Figure 2 As shown, it also includes a control mechanism 2 for controlling the ironing mechanism 1. The control mechanism 2 includes a housing 201. A power supply 203 is installed on the ground inside the housing 201. A partition 204 is installed between the inner walls of the housing 201 above the power supply 203. A power cord 205 is connected between the output end of the power supply 203 and the heating wire. The partition 204 protects the power supply 203, and the power supply 203 supplies power to the heating wire through the power cord 205.
[0046] like Figure 2 As shown, a controller 202 is installed on the top inner surface of the outer casing 201, and a touch screen is embedded in the upper side of the outer casing 201. The user can use the touch screen in conjunction with the controller 202 to control whether the power supply 203 supplies power to the heating wire. At the same time, the user can also use the controller 202 to set the maximum temperature and ironing time. Then the power supply 203 supplies power to the heating wire to perform the ironing operation. During the ironing process, the user can also use the touch screen in conjunction with the controller 202 to adjust the ironing temperature. After the set ironing time is reached, the controller 202 controls the power supply 203 to stop supplying power to the heating wire. Alternatively, if the temperature sensor 104 detects that the medicine pack 105 has reached the set maximum value, the controller 202 will also control the power supply 203 to stop supplying power to the heating wire.
[0047] It should be noted that the female buckle 109 is electrically connected to the end of the power cord 205, and the male buckle 108 is electrically connected to the temperature sensor 104. After the male buckle 108 and the female buckle 109 are magnetically attracted, the power supply 203 can also supply power to the temperature sensor 104 through the partition 204 and the male buckle 108 and the female buckle 109.
[0048] like Figure 5 As shown, two sets of fixing rings 6 are symmetrically installed on the upper edge of the main layer 101. Each set of two fixing rings 6 is equipped with an elastic band 7. One of the elastic bands 7 in the same set has a Velcro loop side 8 on both sides of its end, and the other elastic band 7 has a Velcro hook side 9 on both sides of its end. The medicine pack 105 is attached to the skin that needs to be ironed. Then, the two elastic bands 7 in the same set are wrapped around the user's body. The Velcro loop side 8 on the end of one elastic band 7 is then attached to the Velcro hook side 9 of the other elastic band 7. The above operation is repeated on the other set of elastic bands 7 to fix the ironing mechanism 1 to the body for ironing.
[0049] In summary, the hook and loop side 110 of the medicine pack 105 is attached to the hook and loop side 111 of the middle layer 103. Then, the user inserts five fingers into the five finger cots 106 to fix the ironing mechanism 1 to their hand. The medicine pack 105 is then placed on the skin to be ironed. The ironing time and maximum ironing temperature are set via the touch screen controller 202. Then, the power supply 203 powers the heating wire, which converts electrical energy into heat energy to heat the medicine pack 105. At the same time, the user moves the medicine pack 105 on the skin surface with their hand, allowing the skin to absorb the medicinal effects of the medicine pack 105, thus achieving the ironing effect.
[0050] Multiple ironing mechanisms 1 can also be set up, and the same number of power cords 205 as the ironing mechanisms 1 can be installed at the output end of the power supply 203. The power cords 205 are connected to each ironing mechanism 1 respectively. In this way, the host unit 2 can control multiple ironing mechanisms 1 to achieve "multi-channel output". Users can control multiple ironing mechanisms 1 to perform ironing operations on multiple parts of the body at the same time through one host unit 2.
[0051] Example 2: like Figure 6 and Figure 7 As shown, a massage mechanism 3 is provided inside the main layer 101. The massage mechanism 3 includes a group of airbags 301 located on the upper side of the heating layer 102 and evenly distributed. The input ends of the airbags 301 are all equipped with multi-channel tubes 302 extending to the outside of the main layer 101. After the gas enters the multi-channel tubes 302, it enters each airbag 301 evenly. After the airbags 301 are inflated, their volume increases, and they squeeze the medicine pack 105. At the same time, they act on the user's skin, thereby playing a squeezing and massaging role during the ironing process.
[0052] like Figure 11 and Figure 12 As shown, a ventilation mechanism 5 is also provided. The ventilation mechanism 5 includes a heat insulation plate 501 located inside the main layer 101 and above all the airbags 301. The heat insulation plate 501 limits the upper part of the airbags 301 to prevent them from expanding upwards, and also serves as a heat insulation function.
[0053] like Figure 12 As shown, the heat insulation plate 501 is provided with multiple evenly distributed horizontal pipes 502. A set of air outlets 503 extending to the upper side of the main layer 101 are installed on the side of the horizontal pipes 502 near the upper cover layer 107. One end of the horizontal pipes 502 extends to the outside of the main layer 101 and is connected to a diversion pipe 504. A set of evenly distributed silicone heads 10 are installed on the upper side of the main layer 101 between two adjacent sets of multi-channel pipes 302. When a finger is inserted into the finger sleeve 106, the silicone head 10 first supports the skin of the palm, increasing the gap between the upper side of the main layer 101 and the skin of the palm.
[0054] After the gas enters the distribution pipe 504, it is evenly distributed into each horizontal pipe 502, and then sprayed from each air outlet 503 into the gap between the palm of the hand and the main layer 101, increasing the air circulation around the palm of the hand and preventing sweating.
[0055] like Figure 8 and Figure 9 As shown, the control mechanism 2 is equipped with an air injection mechanism 4, which is used to inject air into the airbag 301.
[0056] like Figure 8 and Figure 9As shown, the gas injection mechanism 4 includes a cylindrical air cylinder 401 and an air pump 402 installed on the upper side of the partition 204. The output end of the air pump 402 is rotatably mounted with a shaft tube 403 extending into the air cylinder 401. A vent hole is opened on the side of the main layer 101 on one side of the air pump 402. The running air pump 402 sends gas into the shaft tube 403 through its output end.
[0057] like Figure 8 As shown, a motor 409 is installed on the upper side of the partition 204 and on one side of the shaft tube 403. A gear 410 is installed on the drive end of the motor 409, and a gear 411 that meshes with the gear 410 is installed on the side of the shaft tube 403. The running motor 409 drives the shaft tube 403 to rotate through the gear 410 and the gear 411.
[0058] like Figure 8 and Figure 9 As shown, the shaft tube 403 and the air cylinder 401 are at the same center. The end of the shaft tube 403 inside the air cylinder 401 is fitted with a turntable 412 that is slidably connected to the inner wall of the air cylinder 401. A through hole 405 is provided on the side of the shaft tube 403 near the turntable 412. The rotating shaft tube 403 can drive the turntable 412 to rotate in the same direction. The gas input by the air pump 402 into the shaft tube 403 is discharged into the air cylinder 401 through the through hole 405.
[0059] like Figure 9 and Figure 10 As shown, the side of the turntable 412 is provided with an arc-shaped opening 404 and an arc-shaped groove 407 with the same center. The side of the air cylinder 401 is provided with a connecting pipe 303 connected to the multi-port pipe 302. The width of the arc-shaped opening 404 and the arc-shaped groove 407 is the same as the diameter of the connecting pipe 303. When the rotating turntable 412 connects the arc-shaped opening 404 with the connecting pipe 303, the gas discharged from the through hole 405 enters the connecting pipe 303 through the arc-shaped opening 404, and then enters the airbag 301 through the multi-port pipe 302, inflating the airbag 301.
[0060] like Figure 9 As shown, an intermediate plate 406 is installed on one side of the through hole 405 between the inner walls of the air cylinder 401. An air pipe 408 extending to the outer side of the intermediate plate 406 is installed on the bottom surface of the arc groove 407. A connecting pipe 2 505 connected to the diversion pipe 504 is installed on the air cylinder 401 near the outer side of the intermediate plate 406. When the rotating turntable 412 drives the arc groove 407 to connect with the connecting pipe 1 303, the air bag 301 itself compresses the gas inside through the connecting pipe 1 303 back into the arc groove 407 through elastic contraction. Then, it is pressed into the connecting pipe 2 505 through the air pipe 408. The connecting pipe 2 505 delivers the gas to the diversion pipe 504 and then into each horizontal pipe 502.
[0061] An opening (not shown) with the same width as the arc-shaped opening 404 is provided on the side of the air cylinder 401 on the side of the connecting pipe 303. When the connecting pipe 303 is connected to the arc-shaped groove 407, the arc-shaped opening 404 is connected to the opening. In this way, the gas ejected from the through hole 405 can be discharged from the arc-shaped opening 404 and the opening, which plays a role in venting.
[0062] In summary, when massage is required during ironing, the controller 202 first controls the motor 409 to drive the shaft tube 403 to rotate slowly, simultaneously driving the turntable 412 to rotate slowly. At the same time, the air pump 402 injects air into the air cylinder 401 through the through hole 405. When the arc-shaped opening 404 connects to the connecting pipe 303, the gas enters the connecting pipe 303 through the arc-shaped opening 404, and then enters the airbag 301 through the multi-port pipe 302, inflating the airbag 301. The rotating turntable 412 then massages the arc-shaped groove 401. 7. Connected to the first connecting tube 303, the airbag 301 compresses the gas through the first connecting tube 303 into the arc-shaped groove 407 by its own elastic contraction. The expansion and contraction of the airbag 301 exerts a squeezing and massaging effect on the skin. At the same time, the gas is compressed into the second connecting tube 505 through the air tube 408. The second connecting tube 505 delivers the gas to the diversion tube 504 and then into each horizontal tube 502. The gas is then sprayed from each air outlet 503 into the gap between the palm of the hand and the main layer 101, increasing the air circulation around the palm of the hand and preventing sweating.
[0063] After a certain period of squeezing and massaging, the user controls the motor 409 to drive the shaft tube 403 to rotate rapidly via the controller 202. This results in a short connection time between the arc-shaped opening 404 and the connecting tube 303, thus injecting less gas into the airbag 301. At the same time, the turntable 412 rotates quickly, resulting in short inflation and deflation times and short intervals for the airbag 301. At this time, the airbag 301 no longer undergoes large-scale expansion and contraction, but instead performs high-speed, minute expansion and contraction movements. This high-frequency, micro-amplitude movement is transmitted to the skin, creating a vibration effect and thus providing a vibration massage.
[0064] The airbag 301 is made of medical-grade silicone with high elasticity and long fatigue resistance. At the same time, the surface of the airbag 301 is coated with a flexible silicone-based heat insulation coating to prevent the heat generated by the heating wire from heating the gas inside the airbag 301.
[0065] This application also discloses a method for using a traditional Chinese medicine hot compress device, the steps of which are as follows: S1. Preparation: Before use, put the ironing mechanism 1 on your hand. Specifically, stick the Velcro loop side 110 of the medicine pack 105 to the Velcro hook side 111 of the middle layer 103 to fix the medicine pack 105 to the middle layer 103. Then, insert the user's five fingers into the five finger sleeves 106 to fix the ironing mechanism 1 on the hand. Attach the medicine pack 105 to the skin that needs to be ironed. Then, wrap the two elastic bands 7 of the same group around the user's body. Then, stick the Velcro loop side 8 of one elastic band 7 to the Velcro hook side 9 of the other elastic band 7. Repeat the above operation on the other group of elastic bands 7 to fix the ironing mechanism 1 to the body.
[0066] S2. Ironing is performed. The ironing mechanism 1 is controlled by the control mechanism 2 to iron the human skin. Specifically, the medicine pack 105 is attached to the skin that needs to be ironed. The ironing time and maximum ironing temperature are set by the controller 202 through the touch screen. Then, the power supply 203 can power the heating wire. The running heating wire converts electrical energy into heat energy to heat the medicine pack 105. At the same time, the user moves the medicine pack 105 on the skin surface with his / her hand to allow the skin to absorb the medicine effect of the medicine pack 105 and achieve the ironing effect.
[0067] S3. Compression Massage: The air injection mechanism 4, in conjunction with the massage mechanism 3, performs compression massage on the skin during the ironing process. Specifically, the controller 202 controls the motor 409 to drive the shaft tube 403 to rotate slowly, which in turn drives the turntable 412 to rotate slowly. At the same time, the air pump 402 injects air into the air cylinder 401 through the through hole 405. When the arc-shaped opening 404 is connected to the connecting pipe 303, the gas enters the connecting pipe 303 through the arc-shaped opening 404, and then enters the airbag 301 through the multi-port pipe 302, inflating the airbag 301. The rotating turntable 412 then connects the arc-shaped groove 407 to the connecting pipe 303. The airbag 301 contracts due to its own elasticity, forcing the gas through the connecting pipe 303 into the arc-shaped groove 407. This expansion and contraction action of the airbag 301 provides a compression massage effect on the skin.
[0068] S4. Enhanced heat dissipation: The air injection mechanism 4, in conjunction with the ventilation mechanism 5, helps to dissipate heat from the palm of the hand. Specifically, when the finger is placed inside the finger sleeve 106, the silicone head 10 first supports the skin of the palm, increasing the gap between the upper side of the main layer 101 and the skin of the palm. Then, when the airbag 301 contracts, the gas is forced through the air tube 408 into the connecting tube 2 505. The connecting tube 2 505 delivers the gas to the diversion tube 504 and then into each horizontal tube 502. The gas is then sprayed from each air outlet 503 into the gap between the palm of the hand and the main layer 101, increasing air circulation around the palm of the hand and preventing sweating.
[0069] It will be apparent to those skilled in the art that this application is not limited to the details of the exemplary embodiments described above, and that this application can be implemented in other specific forms without departing from the spirit or essential characteristics of this application. Therefore, the embodiments should be considered in all respects as exemplary and not restrictive.
[0070] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style is merely for clarity. Those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.
Claims
1. A traditional Chinese ironing instrument, characterized in that: it comprises an ironing mechanism (1) for ironing the human body, the ironing mechanism (1) comprises a main layer (101), a heating layer (102) is arranged in the main layer (101), a middle layer (103) is magnetically connected to the lower side of the main layer (101), a temperature sensor (104) is arranged in the middle layer (103), a medicine bag (105) is connected to the lower side of the middle layer (103) through magic tape, and a group of finger sleeves (106) are arranged on the upper side of the main layer (101); a massage mechanism (3) is arranged in the main layer (101), the massage mechanism (3) comprises a group of air bags (301) which are evenly distributed on the upper side of the heating layer (102), and the input ends of the air bags (301) are jointly provided with a multi-way pipe (302) extending to the outside of the main layer (101); a ventilation mechanism (5) is further arranged, the ventilation mechanism (5) comprises a heat insulation plate (501) arranged in the main layer (101) and located above all the air bags (301), a plurality of evenly distributed horizontal pipes (502) are arranged in the heat insulation plate (501), a group of air outlets (503) extending to the upper side of the main layer (101) are arranged on the side of the horizontal pipes (502) close to an upper cover layer (107), and one end of the horizontal pipes (502) extends to the outside of the main layer (101) and is jointly provided with a shunt pipe (504); and the ironing instrument further comprises a control mechanism (2) and a gas injection mechanism (4). The control mechanism (2) comprises a shell (201), a controller (202) is arranged on the inner top surface of the shell (201), and a touch screen is inlaid on the upper side of the shell (201). A power supply (203) is arranged on the ground in the shell (201), a partition plate (204) is arranged between the inner walls of the shell (201) and above the power supply (203), a heating wire is arranged in the heating layer (102), and a power line (205) is connected between the output end of the power supply (203) and the heating wire. Two groups of fixing rings (6) are symmetrically arranged on the upper side edges of the main layer (101), two fixing rings (6) in each group are provided with elastic bands (7), the end of one elastic band (7) in the same group is provided with magic tape fluff surfaces (8) on both sides, and the end of the other elastic band (7) is provided with magic tape hook surfaces (9) on both sides. The gas injection mechanism (4) comprises a cylindrical air cylinder (401) and a gas sending pump (402) arranged on the upper side of the partition plate (204), a shaft pipe (403) extending into the air cylinder (401) is rotatably arranged at the output end of the gas sending pump (402), a motor (409) is arranged on the upper side of the partition plate (204) and on one side of the shaft pipe (403) and connected with a gear thereof, the shaft pipe (403) and the air cylinder (401) have the same center, a rotating disc (412) is arranged at the end of the shaft pipe (403) in the air cylinder (401) and slidably connected with the inner wall of the air cylinder (401), a through hole (405) is formed in the side of the shaft pipe (403) close to the rotating disc (412), and the gas sent by the gas sending pump (402) into the shaft pipe (403) is discharged into the air cylinder (401) through the through hole (405).
2. The Chinese medicine scalding and ironing instrument according to claim 1, characterized in that: 3. The TCM ironing instrument according to claim 2, characterized in that: 4. The TCM ironing instrument according to claim 3, characterized in that: 5. The TCM ironing instrument according to claim 4, characterized in that: 6. The TCM ironing instrument according to claim 5, characterized in that: 7. The TCM ironing instrument according to claim 6, characterized in that: The side of the rotating disc (412) is provided with an arc-shaped opening (404) and an arc-shaped slot (407) with the same center in sequence, and the side of the air cylinder (401) is provided with a connecting pipe I (303) communicated with the multi-way pipe (302) on the side of the arc-shaped opening (404).
8. The Chinese medicine scalding and ironing instrument according to claim 7, characterized in that: The inner wall of the air cylinder (401) is provided with an intermediate plate (406) on the side of the through hole (405), and the inner bottom of the arc-shaped slot (407) is provided with an air pipe (408) extending to the outer side of the intermediate plate (406), and the air cylinder (401) is provided with a connecting pipe II (505) communicated with the shunt pipe (504) on the outer side of the intermediate plate (406).
9. The TCM ironing instrument according to claim 8, characterized in that: A group of evenly distributed silica gel heads (10) are installed on the upper side of the main layer (101) between the two adjacent groups of multi-way pipes (302), and the upper cover layer (107) covering all the finger sleeves (106) is installed on the upper side of the main layer (101).
Citation Information
Patent Citations
Traditional Chinese medicine ironing device
CN209662192U