A traditional Chinese medicine hot compress device for the abdomen
By using a wearable wraparound structure and intelligent control of the abdominal herbal hot compress device, the problems of rapid heat loss and uncontrollable temperature in existing devices are solved. This achieves efficient penetration of herbal ingredients and stability and comfort of abdominal hot compress, thereby enhancing the efficacy of the herbal medicine.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- ZHEJIANG UNIV
- Filing Date
- 2026-04-13
- Publication Date
- 2026-07-31
AI Technical Summary
Existing abdominal herbal hot compress devices suffer from problems such as rapid heat loss, uncontrollable temperature, local overheating and skin burns, and large temperature fluctuations leading to low penetration efficiency of effective Chinese medicine components. Furthermore, existing devices have limitations in the application scenarios of herbal hot compress.
It adopts a wearable wrap-around structure, combined with an array of heating elements and a heat insulation plate to achieve constant temperature heating. It fits the human abdomen through a flexible binding plate and uses protrusions to stimulate acupoints. Combined with airbags and detachable heat packs, it achieves uniform steam diffusion and simulates human kneading motions. An integrated control module enables intelligent control of temperature, steam, and air pressure.
It achieves efficient penetration of Chinese medicine ingredients, improves the stability and comfort of abdominal heat application, avoids local overheating, improves heat energy utilization, and fully exerts the efficacy of Chinese medicine.
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Figure CN122005196B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of traditional Chinese medicine physiotherapy equipment technology, specifically to an abdominal herbal hot compress device. Background Technology
[0002] In the clinical application of Traditional Chinese Medicine (TCM), abdominal hot compresses are a commonly used external treatment method to improve uterine coldness, pelvic blood stasis, and enhance endometrial receptivity. Currently, abdominal TCM hot compresses are mainly divided into two methods: hot compresses with TCM ointments and hot compresses with steamed TCM herbal packs. In practice, both methods generally suffer from poor efficacy. For example, existing solutions that use graphite heating pads or similar structures to heat TCM ointments mostly involve planar, overall heating, which easily leads to heat loss. Furthermore, the heating pads lack heat insulation and protection structures, which can easily cause localized overheating and skin burns, or large temperature fluctuations leading to low penetration efficiency of the effective components of the TCM. In the traditional Chinese medicine herbal poultice method, the herbal poultice needs to be steamed and heated before being manually applied to the abdomen. This method suffers from uncontrollable heating temperature, rapid cooling, and the need for repeated heating. For example, the existing patent technology KR1020240041465A discloses a massage method using a herbal poultice containing herbs. This massage method includes the following steps: mixing the herbs to make a hot compress bag; using the hot compress bag to massage the abdomen while lying down; using the hot compress bag to massage the lower body while lying down; using the hot compress bag to massage the upper body while lying down; and using the hot compress bag to massage the lower body while lying down. While methods like massage rely on manual labor and have room for improvement in achieving continuous constant-temperature heat therapy, wearable intelligent control devices for heat therapy already exist, such as the patented technology ES1311006U. This patent discloses a portable device for treating primary dysmenorrhea, which includes a programmable logic controller (PLC) connected to and controlling a heat therapy system, a transcutaneous electrical nerve stimulation (TENS) system, and a massage therapy system. Similarly, the PLC includes wireless communication and data transmission devices connected to the control unit. However, this device has limitations in the application scenarios of traditional Chinese medicine heat therapy. Summary of the Invention
[0003] The purpose of this invention is to provide an abdominal herbal hot compress device, which adopts a wearable wrap-around structure and controllable constant temperature heating, thereby achieving temperature regulation of the hot compress, efficient penetration of herbal ingredients, and uniform pressure on the abdomen, thus improving the stability and comfort of the abdominal hot compress.
[0004] To solve the above-mentioned technical problems, the present invention specifically provides the following technical solution: an abdominal herbal hot compress device, including an abdominal binding base, a flexible binding plate extending from the side of the abdominal binding base, a binding strap on the flexible binding plate, a sandwich layer inside the flexible binding plate, heating pads arranged in a sequential array inside the sandwich layer, and a concave strip-shaped first groove on the same side of both flexible binding plates, with protrusions arranged at intervals inside the first groove.
[0005] This invention employs an abdominal binding base, a flexible binding plate, and straps to create a wearable structure. The heating and temperature control of the herbal ointment utilizes an array of heating elements to ensure even heat distribution and continuous, stable output, preventing localized overheating or insufficient temperature. Furthermore, the first groove on the flexible binding plate features a strip-shaped concave structure, which helps the flexible binding plate conform to the natural curve of the abdomen, reducing heat diffusion and improving the heat utilization rate of the heating elements. Simultaneously, the first groove provides an embedded space for the herbal ointment, allowing it to be applied precisely to the target area, preventing compression, displacement, or detachment, and ensuring the continuous efficacy of the medicine on the abdomen. In addition, protrusions are spaced outwards within the first groove to provide targeted support and moderate stimulation to abdominal acupoints. Combined with the uniform heat conduction of the heating elements, this enhances local microcirculation and drug absorption efficiency.
[0006] According to one embodiment of the present invention, a heat insulation plate is further provided within the interlayer of the flexible binding plate. The heating element and the heat insulation plate, as well as the heating element and the inner wall of the flexible binding plate, are fixedly connected by an adhesive layer. The heat insulation plate is located on the side of the heating element away from the abdomen, which prevents the heating element from losing heat to the outside and reduces ineffective heat loss. This helps to direct more heat energy to the abdomen, improving the efficiency of heat application and the penetration effect of traditional Chinese medicine ingredients. The adhesive layer is used to connect the heating element with the heat insulation plate and the flexible binding plate.
[0007] According to one embodiment of the present invention, a flat-head screw is detachably connected to the protrusion. The position of the flat-head screw relative to the protrusion is adjustable, allowing acupoints to be stimulated via the flat-head screw. In use, the herbal ointment is applied to the flexible binding plate, causing a portion of the herbal ointment to be embedded into the first groove.
[0008] According to one embodiment of the present invention, a control box is provided on one side of the abdominal binding base, a control panel is provided outside the control box, and a control module connected to the control panel is provided inside. The control module is electrically connected to the heating element. When in use, commands are input through the control panel, and the control module adjusts the heating power, temperature range and working time of the heating element in real time.
[0009] According to one embodiment of the present invention, the control box further includes a steam generator and a storage battery, and the control module is electrically connected to the steam generator and the storage battery respectively. The storage battery is used for power supply, and the control module is used for controlling the steam generator, heating element, etc.
[0010] According to one embodiment of the present invention, the side of the abdominal binding base has an airbag that can contact or separate from the control box. A steam generator is connected to multiple first connectors on the chassis via connecting pipes; that is, the chassis is provided with multiple first connectors communicating with the output port of the steam generator. The first connectors have a leak-proof function. The airbag can be connected to one of the first connectors communicating with the output port of the steam generator via the first pipes. The control panel can control the amount of gas input into the airbag. By providing an airbag that can contact or separate from the control box on the side of the abdominal binding base, the airbag forms a uniform and flexible support after inflation. This improves the fit between the abdominal binding base and the flexible binding plate and the abdomen. After inflation, the airbag expands uniformly and flexibly outward, generating a continuous and gentle radial thrust on the abdominal binding base and the flexible binding plate, pushing the entire abdominal binding base and flexible binding plate towards the abdomen, helping to fill the gap between the abdomen and the device, and ensuring even distribution of heat pressure. Furthermore, the airbag's inflation volume can be adjusted according to different body types to provide appropriate and continuous pressure. Additionally, the airbag can cushion the pressure caused by the rigid structure.
[0011] According to one embodiment of the present invention, a detachable hot compress pack is provided on the abdominal binding base. The hot compress pack includes a pack body with at least one opening and closing port. The pack body is provided with a second connector communicating with a steam generator. The steam generator is connected to a first connector outside the casing via a pipeline. The first connector is connected to the second connector via a second pipeline. The hot compress pack can be quickly disassembled and replaced, thus meeting the needs of alternating use of different traditional Chinese medicine formulas. The opening and closing port is used for filling and removing medicine packs. After the first connector and the second connector are connected via pipelines, steam is delivered to the inside of the hot compress pack to provide continuous traditional Chinese medicine hot compress care.
[0012] According to one embodiment of the present invention, the hot compress pack is provided with a steam input component connected to the second connector. The steam input component is composed of a swinging component, a distribution plate, and an outlet hood connected in sequence. Multiple steam input components are provided inside the hot compress pack, and they are interconnected through pipelines. The steam is driven by the swinging component to form a dynamic disturbance, then evenly dispersed by the distribution plate, and finally output through the outlet hood. This avoids direct steam flow causing localized high temperatures, achieving uniform steam distribution inside the hot compress pack. Furthermore, the interconnection of multiple steam input components expands the steam coverage area, eliminates dead zones in the hot compress, and ensures uniform heating of the internal herbal pack, thereby improving the volatilization and penetration efficiency of the effective components of the herbal medicine. The swinging diffusion of steam also helps reduce the probability of steam condensation and water accumulation. In addition, when the swinging component is working, it drives the distribution plate and the outlet hood to continuously swing back and forth, directly creating a continuous shaking motion on the herbal pack inside the hot compress pack. This simulates the kneading action performed by a person holding the hot compress pack, allowing the herbs inside the herbal pack to continuously loosen and reposition, resulting in more even heating.
[0013] According to one embodiment of the present invention, the outer side of the pack has a limiting band, both ends of which are connected to the outer surface of the pack, and the two ends are spaced apart. This can confine the heat pack to the target position on the abdominal binding base, preventing the heat pack from flipping or falling off during the heat application process.
[0014] According to one embodiment of the present invention, flexible binding plates are extended from two opposite sides of the binding base. By adopting a symmetrical structural scheme in which flexible binding plates are extended from two opposite sides of the binding base, the flexible binding plates on both sides can form a wrap-around wearing structure.
[0015] Compared with the prior art, the beneficial effects of the present invention are as follows: The present invention adopts a flexible binding plate with symmetrical extension on both sides to form a wrap-around wearable structure, which, together with an array of heating elements and a heat insulation plate, achieves uniform and directional heating, reduces heat loss and avoids local overheating. The protrusion and adjustable flat-head screws achieve targeted stimulation of abdominal acupoints, improving the penetration of traditional Chinese medicine and local microcirculation. The control box integrates a control module, a steam generator and a battery to achieve integrated intelligent control of temperature, steam and air pressure. In addition, the detachable hot compress pack of the present invention, together with the steam input component consisting of an internal swinging component, a diverter plate and an outlet cover, can achieve uniform steam diffusion and simulate the effect of manual rolling and kneading, making the traditional Chinese medicine pack more evenly heated and fully exerting its medicinal effects. Attached Figure Description
[0016] To more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are merely exemplary, and those skilled in the art can derive other embodiments based on the provided drawings without creative effort.
[0017] Figure 1 This is a schematic diagram of a traditional Chinese medicine hot compress device for the abdomen according to the present invention; Figure 2 This is a schematic diagram of the flexible binding plate solution of the present invention; Figure 3 This is a schematic diagram of the internal component scheme of the flexible binding plate of the present invention; Figure 4 This is a schematic diagram of the control box scheme of the present invention; Figure 5 This is a schematic diagram of the internal structure of the control box of the present invention; Figure 6 This is a schematic diagram of a second embodiment of the abdominal herbal hot compress device of the present invention; Figure 7 This is a schematic diagram of the hot compress pack solution of the present invention; Figure 8 This is a schematic diagram of the internal structure of the heat pack of the present invention; Figure 9 This is a schematic diagram showing the disassembled steam input component of the present invention; Figure 10 This is a schematic diagram of the swing component of the present invention; Figure 11 This is a schematic diagram of the internal structure of the swing component of the present invention; Figure 12 This is a first-view schematic diagram of the distribution plate of the present invention; Figure 13 This is a schematic diagram of the flow divider plate of the present invention from a second perspective; Figure 14 This is a third-view schematic diagram of the distribution plate of the present invention.
[0018] Explanation of reference numerals in the attached drawings: 10. Control box; 11. Control panel; 12. First pipeline; 13. Baffle plate; 14. First connector; 15. Chassis; 16. Control module; 17. Steam generator; 18. Battery; 19. Second pipeline; 20. Airbag; 30. Abdominal binding base; 31. Flexible binding plate; 311. Heat insulation plate; 312. Adhesive layer; 313. Heating element; 32. Binding strap; 33. First groove; 34. Protrusion; 35. Flat-head screw; 40. Heating pack; 41. Pack body; 42. 43. Opening / closing port; 44. Second connector; 50. Limiting band; 51. Steam input component; 51. Swinging component; 511. Connector; 512. Spring; 513. Housing; 514. Motor; 515. Rotating rod; 516. Cavity; 517. Counterweight; 52. Diverter plate; 521. Circular disc; 522. Guide strip; 523. Connecting base; 524. Air hole; 525. Gas collection shell; 526. Third connector; 53. Outlet hood; 531. Cover body; 532. Strip hole; 533. Connecting ring. Detailed Implementation
[0019] 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.
[0020] The concepts involved in this application will first be described with reference to the accompanying drawings. It should be noted that the following descriptions of various concepts are only for the purpose of making the content of this application easier to understand and do not constitute a limitation on the scope of protection of this application; furthermore, the embodiments and features in the embodiments of this application can be combined with each other unless otherwise specified. This application will now be described in detail with reference to the accompanying drawings and embodiments.
[0021] Example 1: As shown in the attached figure Figure 1 -Appendix Figure 9 As shown, an abdominal herbal hot compress device includes an abdominal binding base 30, a flexible binding plate 31 extending from the side of the abdominal binding base 30, a binding strap 32 on the flexible binding plate 31, a sandwich layer inside the flexible binding plate 31, heating elements 313 arranged in a sequential array inside the sandwich layer, and a concave strip-shaped first groove 33 on the same side of both flexible binding plates 31, with protrusions 34 arranged at intervals and protruding outwards inside the first groove 33.
[0022] This invention employs an abdominal binding base 30, a flexible binding plate 31, and a binding strap 32 to form a structure that is easy to wear. The heating and temperature control of the herbal ointment utilizes an array of heating elements 313 to ensure uniform heat distribution and continuous, stable output, avoiding localized overheating or insufficient temperature. Furthermore, the first groove 33 on the flexible binding plate 31 has a strip-shaped concave structure, which helps the flexible binding plate 31 conform to the natural curve of the human abdomen, reducing heat diffusion and improving the heat energy utilization rate of the heating elements 313. Simultaneously, the first groove 33 provides an embedded space for the herbal ointment, allowing it to be applied precisely to the target area, preventing squeezing, displacement, or detachment, and ensuring the continuous effect of the medicine on the abdomen. In addition, protrusions 34 are spaced outwards within the first groove 33 to provide targeted support and moderate stimulation to abdominal acupoints. Combined with the uniform heat conduction of the heating elements 313, this enhances local microcirculation and drug absorption efficiency.
[0023] A heat insulation plate 311 is also provided inside the interlayer of the flexible binding plate 31. The heating element 313 and the heat insulation plate 311, as well as the heating element 313 and the inner wall of the flexible binding plate 31, are fixedly connected by an adhesive layer 312. The heat insulation plate 311 is located on the side of the heating element 313 away from the human abdomen, so that the heat insulation plate 311 can block the heating element 313 from losing heat to the outside and reduce ineffective heat loss. This helps to direct more heat energy to the human abdomen, improve the efficiency of heat application and the penetration effect of traditional Chinese medicine ingredients. The adhesive layer 312 is used to connect the heating element 313 with the heat insulation plate 311 and the flexible binding plate 31.
[0024] A flat-head screw 35 is detachably connected to the protrusion 34. The position of the flat-head screw 35 relative to the protrusion 34 is adjustable, and the acupoints can be stimulated by the flat-head screw. In use, the Chinese herbal ointment is applied to the flexible binding plate 31, so that part of the Chinese herbal ointment is embedded in the first groove 33.
[0025] A control box 10 is provided on one side of the abdominal binding base 30. A control panel 11 is provided outside the control box 10, and a control module 16 connected to the control panel 11 is provided inside. The control module 16 is electrically connected to the heating element 313. When in use, commands are input through the control panel 11, and the control module 16 adjusts the heating power, temperature range and working time of the heating element 313 in real time.
[0026] The control box 10 also houses a steam generator 17 and a storage battery 18. The control module 16 is electrically connected to the steam generator 17 and the storage battery 18. The storage battery 18 is used for power supply, and the control module 16 is used for controlling the steam generator 17, the heating element 313, etc.
[0027] See appendix Figure 1 Or attached Figure 6 As shown, the side of the abdominal binding base 30 has an airbag 20 that can be in contact with or separated from the control box 10. The steam generator 17 is connected to multiple first connectors 14 on the housing 15 via connecting pipes. That is, the housing 15 is provided with multiple first connectors 14 that communicate with the output port of the steam generator 17. The first connectors 14 have a leak-proof function. The airbag 20 can be connected to one of the first connectors 14 that communicate with the output port of the steam generator 17 via the first pipe 12. The control panel 11 can control the amount of gas input into the airbag 20. By setting an airbag 20 on the side of the abdominal binding base 30 that can contact or separate from the control box 10, the airbag 20 forms a uniform and flexible support after inflation. This can improve the fit between the abdominal binding base 30 and the flexible binding plate 31 and the human abdomen. After inflation, the airbag 20 will expand outwards evenly and flexibly, which can generate a continuous and gentle radial thrust on the abdominal binding base 30 and the flexible binding plate 31, pushing the abdominal binding base 30 and the flexible binding plate 31 towards the human abdomen and helping to fill the gap between the abdomen and the device, so that the heat pressure is evenly distributed. Furthermore, the airbag 20 can adjust the inflation volume according to different body shapes to provide appropriate and continuous pressure. In addition, the airbag can buffer the pressure caused by the rigid structure.
[0028] See appendix Figure 6 As shown, a detachable hot compress pack 40 is provided on the abdominal binding base 30. The hot compress pack 40 includes a pack body 41, which has at least one opening 42. The pack body 41 is provided with a second connector 43 that communicates with a steam generator 17. The steam generator 17 is connected to a first connector 14 outside the casing 15 via a pipeline. The first connector 14 is connected to the second connector 43 via a second pipeline 19. The hot compress pack 40 can be quickly disassembled and replaced, which can meet the needs of alternating use of different Chinese medicine prescriptions. The opening 42 is used for filling and removing the medicine pack. After the first connector 14 and the second connector 43 are connected by a pipeline, steam is delivered to the inside of the hot compress pack 40 to provide continuous Chinese medicine hot compress care.
[0029] See appendix Figure 8 -Appendix Figure 9As shown, the heat pack 40 has a steam input component 50 that communicates with the second connector 43. The steam input component 50 is composed of a swing member 51, a diverter plate 52, and an outlet shroud 53 connected in sequence. There are multiple steam input components 50 inside the heat pack 40, which are interconnected by pipelines. The steam is driven by the oscillating component 51 to form a dynamic disturbance, and then evenly dispersed by the distribution plate 52 before being output through the outlet hood 53. This avoids direct steam rush and local high temperature, achieving uniform steam distribution inside the heat pack 40. Furthermore, multiple sets of steam input components 50 are interconnected, which can expand the steam coverage area, eliminate heat application dead zones, and ensure that the internal Chinese medicine pack is heated evenly, thereby improving the volatilization and penetration efficiency of the effective ingredients of the Chinese medicine. The oscillating diffusion of steam also helps to reduce the probability of steam condensation and water accumulation. In addition, when the oscillating component 51 is working, it drives the distribution plate 52 and the outlet hood 53 to continuously oscillate, directly creating a continuous shaking of the Chinese medicine pack inside the heat pack 40. This can simulate the kneading action of a person holding the heat pack, allowing the Chinese medicine inside the pack to continuously loosen and reposition, and be heated more evenly.
[0030] See appendix Figure 7 As shown, the outer side of the pack 41 has a limiting band 44, both ends of which are connected to the outer surface of the pack 41, with a gap between the two ends. This can limit the heat pack 40 to the target position of the abdominal binding base 30, preventing the heat pack 40 from flipping or falling off during the heat application process.
[0031] See appendix Figure 1 As shown, flexible binding plates 31 extend from two opposite sides of the binding base 30. By adopting a symmetrical structure with flexible binding plates 31 extending from two opposite sides of the binding base 30, the flexible binding plates 31 on both sides can form a wraparound wearing structure.
[0032] Example 2: This embodiment, based on the solution in Embodiment 1, further provides the following solution, see appendix. Figure 4 As shown, the control box 10 includes a chassis 15, and a removable baffle 13 is provided on one side of the chassis 15. That is, the chassis 15 has an opening on one side that allows access to its interior. The removable baffle 13 is provided at the opening. The baffle 13 can be connected to the chassis 15 by threaded connection, magnetic connection, or even Velcro fastening. The steam generator 17 is provided with a pipeline interface for replenishing water inside it. After removing the baffle 13, the water replenishment pipeline interface of the steam generator 17 can be connected to replenish water inside it.
[0033] Example 3: This embodiment is based on the solution in Embodiment 1 and further provides the following solution. See Appendix for details. Figure 10 Appendix Figure 11As shown, the swinging component 51 includes a housing 513, within which a motor 514 is housed. The output rod of the motor 514 is externally located outside the housing 513, and the end of the output rod is connected to a connector 511 externally located outside the housing 513. The connector 511 has a rotating structure and is threaded. An annular cavity 516 is provided inside the connector 511, through which the output rod of the motor 514 passes. A counterweight 517 is provided on one side of the output rod of the motor 514 within the cavity 516. The rotating body structure has a cutting line in the middle, that is, after the thread is processed, it is cut along its axis to make it into two layers for processing the internal structure, such as the cavity, and threaded holes are processed so that the connector 511 can be reassembled into the rotating body structure form by threaded fasteners. A spring 512 is sleeved on the output rod of the motor 514 between the connector 511 and the housing 513. The connector 511 has an annular groove to accommodate part of the spring 512. The motor 514 drives the diverter 52 to swing through the rotating rod 515 to achieve uniform steam diffusion.
[0034] This invention uses the inner casing 513 of the swinging component 51 to enclose and protect the motor 514, preventing steam and water vapor from entering. The output rod of the motor 514 passes through the annular cavity 516 of the connector 511 and is equipped with a counterweight 517. The counterweight 517 rotates with the output rod to generate an eccentric driving force, which drives the connector 511 and the rotating rod 515 to produce a continuous swinging motion. The spring 512 is limited between the casing 513 and the annular groove of the connector 511, providing an elastic reaction force during the swinging process to counteract the radial impact force generated by the eccentric rotation, reduce rigid collisions and operating noise, and maintain a stable and uniform swinging trajectory. The rotating rod 515 transmits the stable swinging motion to the distribution plate 52, so that the steam entering the heat pack 40 is continuously disturbed and dispersed, avoiding the steam from concentrating and rushing directly, and realizing the uniform distribution of steam in the heat pack 40.
[0035] It should be noted that the connector 511 of the present invention adopts a structure of split processing along the axis and then thread locking assembly, which can directly complete the forming of the annular cavity 516 and the internal assembly of the counterweight 517, reducing the processing difficulty of the complex internal cavity and ensuring the assembly accuracy. The connection method between the external thread of the connector 511 and the diverter plate 52 can prevent the two from loosening or shaking under continuous swing conditions.
[0036] In this embodiment, see Appendix Figure 12 Appendix Figure 13As shown, the diverter plate 52 includes a circular disc body 521. One side of the circular disc body 521 has a connecting base 523 with a frustum structure at its center. The connecting base 523 has a threaded hole in the middle that is threaded to the connector 511. The diverter plate 52 outside the connecting base 523 is surrounded by air holes 524. The diverter plate 52 outside the air holes 524 is surrounded by arc-shaped guide strips 522.
[0037] The incoming steam can be evenly distributed and discharged through the air holes 524 arranged around the outside of the connecting base 523. Furthermore, the arc-shaped guide strip 522 on the outside of the air holes 524 can guide and disturb the outflowing steam, change the direct path of the steam, and make the steam spread outward along the arc trajectory. The arc-shaped bending structure can further disperse the steam bundle, so that the steam is evenly distributed in the heat pack 40, and will not cause single-point direct impact on the Chinese medicine pack, ensuring that the Chinese medicine pack is heated evenly as a whole.
[0038] See appendix Figure 14 As shown, the side of the distributor plate 52 facing away from the connecting base 523 has a gas collecting shell 525 communicating with its upper air hole 524. A third connector 526 communicating with its interior is provided on the side of the gas collecting shell 525. The number of third connectors 526 is not limited to the attached... Figure 14 The number shown can be multiple. The third connector 526 is used to connect to the second connector 43 on the pipe casing 41, or to connect adjacent swing members 51 to the third connector 526 on adjacent distribution plates 52 via pipes. In this way, the externally input steam is concentrated and directed to each air hole 524. The third connector 526 provided on the side of the air collecting shell 525 connects to the second connector 43 on the casing 41 to realize steam access. It can also be connected to the third connector 526 of adjacent distribution plates 52 via pipes, so that multiple distribution plates 52 form a series steam passage, realizing the synchronous supply of steam to multiple points in the heat pack 40.
[0039] See appendix Figure 9 As shown, the outlet cover 53 includes a connecting ring 533 with a circular structure. The inner ring of the connecting ring 533 and the outer ring of the circular disc 521 are connected by an interference fit or by a rubber ring or other structural form to strengthen the connection between the two and prevent steam from leaking from the fit gap. A cover 531 is provided on one side of the connecting ring 533. The cover 531 is surrounded by ventilation holes and strip-shaped holes 532, which can further disperse and slow down the steam evenly discharged by the distribution disc 52, and prevent the steam from directly impacting the Chinese medicine pack. The steam is evenly output into the heat pack 40 through the strip-shaped holes 532 and ventilation holes and comes into contact with the Chinese medicine pack in the heat pack 40 to form a Chinese medicine airflow for heat application to the user or to the abdomen. The heat pack 40 is made of breathable material.
[0040] Example 4: Based on the solution of Embodiment 1, this embodiment further provides the following solution: In this embodiment, the airbag 20 has a manually openable and closeable vent, which allows for direct manual release of the gas inside the airbag 20 without relying on the control panel 11 and the control module 16, thereby achieving rapid adjustment and immediate depressurization of the airbag 20 pressure.
[0041] It should also be noted that the terms "center," "upper," "lower," "left," "right," "vertical," "horizontal," "inner," and "outer," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, and are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation on this application. Unless otherwise expressly specified and limited, the terms "installed," "connected," "linked," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication between two elements. For those skilled in the art, the specific meaning of the above terms in this application can be understood according to the specific circumstances.
[0042] The embodiments and / or implementation methods described above are merely preferred embodiments and / or implementation methods for implementing the technology of the present invention, and are not intended to limit the implementation methods of the technology of the present invention in any way. Any person skilled in the art can make some modifications or alterations to other equivalent embodiments without departing from the scope of the technical means disclosed in the content of the present invention, but they should still be regarded as the technology or embodiments that are substantially the same as the present invention.
[0043] This document uses specific examples to illustrate the principles and implementation methods of this application. The descriptions of the above embodiments are only for the purpose of helping to understand the methods and core ideas of this application. The above descriptions are only preferred embodiments of this application. It should be noted that due to the limitations of written expression, while there are objectively infinite specific structures, those skilled in the art can make several improvements, modifications, or changes without departing from the principles of this application, and can also combine the above technical features in an appropriate manner. These improvements, modifications, changes, or combinations, or the direct application of the inventive concept and technical solution to other situations without modification, should all be considered within the scope of protection of this application.
Claims
1. A traditional Chinese medicine hot compress device for abdomen, comprising a waist wrapping base body (30), a flexible wrapping plate (31) is arranged on the side of the waist wrapping base body (30), and a waist band (32) is arranged on the flexible wrapping plate (31), characterized in that, The flexible binding plate (31) has an inner layer, and the inner layer has heating elements (313) arranged in a sequential array. Both flexible binding plates (31) have a concave strip-shaped first groove (33) on the same side, and the first groove (33) has protrusions (34) arranged at intervals and protruding outwards. A control box (10) is provided on one side of the abdominal binding base (30), and a steam generator (17) is also provided inside the control box (10); a detachable hot compress pack (40) is provided on the abdominal binding base (30), the hot compress pack (40) includes a pack body (41), the pack body (41) has at least one opening (42), and the pack body (41) is provided with a second connector (43) that communicates with the steam generator (17); The side of the abdominal binding base (30) has an airbag (20) that can be in contact with or separated from the control box (10). The hot compress pack (40) is provided with a steam input component (50) that communicates with the second connector (43). The steam input component (50) is composed of a swing component (51), a diverter plate (52) and an outlet cover (53) connected in sequence. The swing component (51) includes a housing (513). The housing (513) contains a motor (514). The output rod of the motor (514) is located outside the housing (513). The end of the output rod of the motor (514) is connected to a connector (511) located outside the housing (513). The connector (511) has an annular cavity (516) inside. The output rod of the motor (514) passes through the cavity (516). A counterweight (517) is provided on one side of the output rod of the motor (514) inside the cavity (516). A spring (512) is fitted on the output rod of the motor (514) between the connector (511) and the housing (513), and the connector (511) is provided with an annular groove to accommodate part of the spring (512); The diverter plate (52) includes a circular disc body (521). One side of the circular disc body (521) has a frustum-shaped connecting base (523) at its center. The connecting base (523) has a threaded hole in the middle that is threaded to the connector (511). The diverter plate (52) outside the connecting base (523) is surrounded by air holes (524). The diverter plate (52) outside the air holes (524) is surrounded by arc-shaped guide strips (522).
2. The abdominal herbal hot compress device according to claim 1, characterized in that, The flexible binding plate (31) is further provided with a heat insulation plate (311) in the interlayer. The heating element (313) and the heat insulation plate (311) are fixedly connected by an adhesive layer (312) and the heating element (313) and the inner wall of the flexible binding plate (31).
3. The abdominal herbal hot compress device according to claim 1, characterized in that, A flathead screw (35) is detachably connected to the protrusion (34).
4. The abdominal herbal hot compress device according to claim 1, characterized in that, The control box (10) is equipped with a control panel (11) on the outside and a control module (16) connected to the control panel (11) inside. The control module (16) is electrically connected to the heating element (313).
5. The abdominal herbal hot compress device according to claim 4, characterized in that, The control box (10) is also equipped with a storage battery (18), and the control module (16) is electrically connected to the steam generator (17) and the storage battery (18).
6. The abdominal herbal hot compress device according to claim 1, characterized in that, The outer side of the package (41) has a limiting band (44), both ends of which are connected to the outer surface of the package (41), and the two ends are spaced apart.
7. The abdominal herbal hot compress device according to claim 1, characterized in that, Flexible binding plates (31) are provided on the two opposite sides of the binding substrate (30).