Fumigation container and basin bottom fumigation cold compress instrument
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- LIANPENG TECHNOLOGY (WUHAN) CO LTD
- Filing Date
- 2026-06-26
- Publication Date
- 2026-08-04
AI Technical Summary
[0002]目前临床及家用盆底康复理疗设备多以单一熏蒸、热水坐浴、热喷淋功能为主,产品技术方案仅聚焦热疗理疗,缺乏合规集成化冷敷、冷淋治疗模块
(1)本发明突破传统熏蒸、冲洗、坐浴理疗技术基础上首次实现柔性充盈囊干性冷敷/热敷与局部定位冲洗功能,填补现有设备无一体化冷疗的临床空白;
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Figure CN122499019A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to medical devices, and more specifically to a fumigation container and a basin-bottom fumigation and cold compress device. Background Technology
[0002] Currently, most clinical and home-use pelvic floor rehabilitation and physiotherapy equipment mainly focuses on single functions such as fumigation, hot water sitz baths, and hot sprays. The product technology solutions only focus on heat therapy and lack compliant integrated cold compress and cold shower treatment modules. In the early postoperative period of pelvic floor surgery, low-temperature cold compresses are needed to reduce swelling and pain and constrict pelvic floor blood vessels. In the postpartum and recovery period, warm fumigation is needed to promote blood circulation and repair. Existing equipment cannot achieve compatibility of cold and heat therapy in a single device. Clinically, it is necessary to use external cold therapy products such as ice packs and cold compress patches. This is not only cumbersome to operate, but traditional patch-type cold compresses are also wet compresses, which can easily soak the wound and breed bacteria, posing a risk of cross-infection and wound infection. At the same time, the shape of conventional cold compresses is fixed and cannot conform to the physiological curvature of the pelvic floor, resulting in uneven cold therapy coverage and poor temperature control accuracy, which limits the physiotherapy experience and clinical efficacy.
[0003] On the other hand, existing fumigation sitz bath equipment generally adopts the heating method of directly immersing heating rods in medicinal liquid / water. Long-term use is very easy to form scale and scale buildup on the surface of heating components. This not only reduces heating efficiency and causes inaccurate temperature control, but also easily leads to component corrosion and frequent failures. The equipment has poor stability and high maintenance costs, making it difficult to meet the long-term, high-frequency clinical use needs of hospitals.
[0004] In addition, existing traditional equipment mostly operates on fixed programs, which cannot flexibly select and customize cold and heat therapy modes according to different symptoms and different stages of postoperative recovery. The treatment mode is rigid and has weak clinical adaptability, making it impossible to truly achieve precise rehabilitation treatment for pelvic floor diseases throughout the entire cycle and in different stages. Summary of the Invention
[0005] This invention proposes a fumigation container and a pelvic floor fumigation and cold compress device. The flexible filling bladder in the fumigation container expands in volume and takes on a three-dimensional shape after being filled with water, precisely conforming to the physiological curvature of the pelvic floor to achieve cold / hot compress effects. Simultaneously, it integrates pelvic floor fumigation and heat therapy, affected area rinsing, and cold compress analgesia functions into a single device, breaking the industry limitation of traditional devices offering only heat therapy. It allows for free switching between warm fumigation and repair and low-temperature cold compress analgesia modes according to the patient's recovery stage, perfectly adapting to the full-cycle physiotherapy needs of postoperative pelvic floor swelling reduction and pain relief, and postpartum blood circulation improvement and repair, thus solving the core pain point of the lack of integrated hot and cold physiotherapy devices in clinical practice.
[0006] The technical solution of this invention is implemented as follows:
[0007] In one aspect, the present invention provides a fumigation container, including a flexible filling bladder 11, the flexible filling bladder being recessed in the middle of the fumigation container 1, the flexible filling bladder 11 being connected to an adapter 12, the adapter 12 being installed through the fumigation container 1 and respectively connected to the inlet and outlet of a cold water tank / hot water tank via pipelines.
[0008] Preferably, a rinsing nozzle 13 is also fixedly installed in the middle recess of the fumigation container 1, penetrating the bottom of the fumigation container 1.
[0009] Preferably, the flushing nozzle 13 is connected to one port of the solenoid four-way valve via a pipeline, and the other three ports of the solenoid valve are respectively connected to the cold water tank, the hot water tank and the air pump.
[0010] Preferably, the flexible filling bladder 11 has a first hollow hole 14 at its center that extends through the bottom and top, and the flushing nozzle 13 is directly below the first hollow hole 14.
[0011] Preferably, a medicine spray nozzle 15 is fixedly installed in the middle recess of the fumigation container 1, located on the front side of the flexible filling bladder 11 and penetrating the bottom of the fumigation container 1. The medicine spray nozzle 15 is connected to the medicine storage tank through a pipeline.
[0012] Preferably, a heating component 16 is provided in the middle recess of the fumigation container 1, located on the front side of the flexible filling bladder 11.
[0013] Preferably, a drain connector 17 is fixedly installed through the middle recess of the fumigation container 1 at the bottom of the fumigation container 1, and the drain connector 17 is connected to the drain tank through a pipeline.
[0014] In another aspect, the present invention provides a pelvic floor fumigation and cold compress device, including the aforementioned fumigation container, which is mounted on the main frame 6.
[0015] Preferably, a partition 2 is fixedly installed on the top of the main unit base. The partition 2 is in the shape of a recess that fits to place the fumigation container. A quick connector 3 is fixed inside the partition 2. One end of the quick connector 3 is respectively connected to the adapter 12, the rinsing nozzle 13, the medicine nozzle 15 and the drain connector 17, and the other end passes through the partition 2 to connect to the corresponding pipeline.
[0016] Preferably, the heating assembly 16 includes an electromagnetic heating plate 161 fixed to the bottom of the partition 2 and a metal plate 162 fixed in the middle recess of the fumigation container 1. The electromagnetic heating plate 161 is powered on to electromagnetically heat the metal plate 162.
[0017] Preferably, the bottom surface of the metal plate 162 is fixed to the middle recess of the fumigation container 1 at intervals by the support tube 163.
[0018] Preferably, the metal plate 162 has a second hollow hole 164 at its center, penetrating the bottom and top, and the medicine spray nozzle 15 is located directly below the second hollow hole 164; the electromagnetic heating plate 161 has a third hollow hole 165 at its center, penetrating the bottom and top, and the bottom end of the quick connector 3 passes through the third hollow hole 165 and connects to the pipeline.
[0019] Preferably, the fumigation container protective partition 18 is also included. The bottom surface of the fumigation container protective partition 18 is fixed with a first insertion tube 181 and a second insertion tube 182 respectively. The bottom ends of the first insertion tube 181 and the second insertion tube 182 are respectively inserted through the first hollow hole 14 and the second hollow hole 164, and the rinsing nozzle 13 and the medicine spray nozzle 15 are respectively located inside the first insertion tube 181 and the second insertion tube 182. The top surface of the fumigation container protective partition 18 is provided with a rinsing hole 183 and a medicine discharge hole 184 that are connected and correspond to the positions of the first insertion tube 181 and the second insertion tube 182.
[0020] Preferably, the bottom surface of the protective partition 18 of the fumigation container is fixed with conduits 185 on both sides of the second insertion tube 182, and the metal plate 162 is provided with support holes 186 on both sides, the support holes 186 corresponding to and communicating with the support tube 163; a support column 187 is fixed inside the support tube 163 in the fumigation container 1, and the bottom end of the conduit 185 is inserted into the support tube 163 after passing through the support hole 186 and sleeved on the support column 187.
[0021] Preferably, the top surface of the protective partition 18 of the fumigation container is a raised frustum structure 188 corresponding to the position of the first insertion tube 181, and the top surface of the frustum structure 188 is a recessed structure 189, with the rinsing hole 183 located within the recessed structure 189.
[0022] Preferably, the protective partition 18 of the fumigation container is provided with a plurality of mesh holes 1810.
[0023] Preferably, it also includes a magnetic stirring assembly 19, which includes a drive motor 191 fixed in the mounting groove of the partition 2, a magnet 192 fixed at the output end of the drive motor 191, and the magnet 192 being flush with the upper surface of the partition 2; a magnetic rotor 194 is placed in the placement groove 193 in the middle recess of the fumigation container 1, and a stirring blade 195 is installed on the top of the magnetic rotor 194.
[0024] Preferably, a protective cover 196 is fixed to the middle recess of the fumigation container 1, the stirring blade 195 is located inside the protective cover 196, and the protective cover 196 is provided with a plurality of through holes 197.
[0025] Preferably, the outer wall of the protective cover 196 is connected to a branch pipe 198, and the outlet of the branch pipe 198 is located below the first hollow hole 14.
[0026] Preferably, a non-contact liquid level sensor 4 is installed on the side wall of the partition 2.
[0027] Preferably, an infrared temperature sensor 5 is fixed to the bottom surface of the partition 2.
[0028] The significance and effects of this invention are as follows: (1) This invention breaks through the traditional fumigation, rinsing and sitz bath physiotherapy techniques and realizes for the first time the functions of dry cold compress / hot compress and local positioning rinsing of flexible filling sac, filling the clinical gap of existing equipment without integrated cold therapy; (2) The thermal heating component adopts an innovative split electromagnetic non-contact heating design, which embeds the heated metal plate inside the fumigation container. Only an electromagnetic heating plate is set at the main unit end, abandoning the traditional direct immersion heating method of the medicine solution, thus avoiding the common industry problems of scaling, corrosion, temperature control drift and unstable equipment operation of the heating tube from the root. (3) The equipment supports the individual use of any single mode of fumigation, low-temperature cold shower, or dry cold / hot compress of the pelvic floor according to clinical diagnosis and treatment guidelines, different pelvic floor diseases and different recovery stages after surgery / postpartum, or can freely combine multiple modes for joint treatment. (4) The matching detachable consumable fumigation container + fumigation container protective partition, flexible filling bladder, non-contact magnetic drug liquid stirring, and multi-sensor real-time monitoring and control can not only achieve precise contact with the curved surface of the pelvic floor for dry cold compresses and avoid the risk of infection from wound immersion, but also meet the needs of hospital infection control and home full-cycle rehabilitation physiotherapy, greatly improving clinical adaptability and equipment lifespan. Attached Figure Description
[0029] To more clearly illustrate the technical solutions in the embodiments of the present invention or 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 only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0030] Figure 1 This is a schematic diagram of the structure of the pelvic floor fumigation and cold compress device of the present invention.
[0031] Figure 2 This is a schematic diagram of the structure of the present invention without a fumigation container.
[0032] Figure 3 A first-person view structural diagram of the fumigation container and the partition being installed together.
[0033] Figure 4 A second-view structural diagram showing the installation of the fumigation container and the partition.
[0034] Figure 5This is a schematic diagram of the structure of the fumigation container after omitting the flexible filling bladder.
[0035] Figure 6 This is a schematic diagram of the structure of the fumigation container after omitting the flexible filling bladder and metal plate.
[0036] Figure 7 This is a schematic diagram of the partition structure.
[0037] Figure 8 A cross-sectional schematic diagram showing the installation of the fumigation container and the partition.
[0038] Figure 9 for Figure 8 Enlarged view of point A in the middle.
[0039] Figure 10 This is a schematic diagram of the protective partition of the fumigation container.
[0040] Figure 11 This is a schematic diagram of the structure of the basin bottom fumigation and cold compress device of the present invention when used with the protective partition of the fumigation container. Detailed Implementation
[0041] The technical solution of the present invention will be clearly and completely described below with reference to the embodiments of the present invention. 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 of ordinary skill in the art without creative effort are within the scope of protection of the present invention.
[0042] like Figure 1-11 As shown, a fumigation container includes a flexible filling bladder 11. The flexible filling bladder is located in a recessed part in the middle of the fumigation container 1. The fumigation container 1 has a recessed middle and a flanged top edge for support. The flexible filling bladder 11 is provided in the recessed middle part. The flexible filling bladder 11 is a deformable, waterproof, soft material, such as medical silicone, rubber, or medical polyether TPU. The flexible filling bladder 11 is connected to an adapter 12. The adapter 12 is installed through the fumigation container 1 and is connected to a cold / heat medium source through pipelines. The cold / heat medium source includes, but is not limited to, a cold water / air tank and a hot / air water tank. It should be noted that the pipelines in the solution can be equipped with pumps and / or solenoid valves as needed. The cold / hot water tank and the hot / air water tank use existing refrigeration / heating technology to prepare the cold / heat medium. The specific cold / heat temperature range is selected according to the actual situation. One or more adapters 12 can be selected according to actual needs, which can be used to connect the inlet and outlet of the cold / heat source. Preferably, there are two, one as the inlet and one as the outlet. The flexible filling bladder 11 is initially deflated. After being filled with water, it expands in volume and takes on a three-dimensional shape, which can precisely conform to the physiological curvature of the pelvic floor, achieving dry cold / hot compresses on the pelvic floor without liquid wetting the wound, avoiding the risk of infection, and greatly improving the uniformity and comfort of cold / hot compresses.
[0043] A flushing nozzle 13 is fixedly installed in the recessed part of the fumigation container 1, penetrating the bottom of the container. The flushing nozzle 13 is connected to one port of a solenoid four-way valve via a pipeline. The other side of the solenoid valve is connected to a cold water tank, a hot water tank, and an air pump. The flexible filling bladder 11 has a first hollow hole 14 penetrating the bottom and top at its center, and the flushing nozzle 13 is positioned directly below the first hollow hole 14. When a person sits on the fumigation container, the first hollow hole 14 is aligned with the anus. By switching the different conduction states of the solenoid valve, the pump is activated to spray room temperature or warm water for precise cleaning of the anus.
[0044] A medicinal liquid nozzle 15 is fixedly installed in the middle recess of the fumigation container 1, located in front of the flexible filling bladder 11 and extending through the bottom of the fumigation container 1. The medicinal liquid nozzle 15 is connected to the medicine storage tank through a pipeline. A heating component 16 is also provided in the middle recess of the fumigation container 1, located in front of the flexible filling bladder 11. When the pump is started, the prepared medicinal liquid in the medicine storage tank is pumped into the medicinal liquid nozzle 15 and sprayed out, accumulating in the fumigation container 1. The heating component is then activated to heat the medicinal liquid in the container, stimulating the volatilization of the traditional Chinese medicine liquid and achieving the purpose of effective fumigation therapy.
[0045] A drain connector 17 is fixedly installed through the middle recess of the fumigation container 1 at the bottom of the fumigation container 1. It can be understood that the drain connector 17 is installed in the drain port at the bottom of the fumigation container. The drain connector 17 is connected to the drain tank through a pipeline. A valve can also be installed in the pipeline to open and close the drain to determine whether to drain.
[0046] The fumigation container of this invention features a front-to-back partitioned layout with a dedicated fumigation liquid heating area in the front zone and a dedicated anal spray sitz bath area in the rear zone. The structural layout precisely adapts to the physiological structure of the human pelvic floor and perianal region. The complete treatment process is as follows: First, the pelvic floor and perianal region undergo drug penetration therapy through front-zone heating and fumigation. After fumigation, the rear flushing nozzle is activated to precisely clean the perianal wound with warm water, while the sprayed water gradually accumulates liquid in the fumigation container. The front heating component continuously maintains a constant temperature for the water in the entire fumigation container, ensuring stable fumigation temperature and achieving an integrated and continuous treatment process of fumigation followed by cold / hot rinsing and hot / cold compresses. After completion, the electromagnetic four-way valve is switched to switch cold water to the flushing nozzle for rinsing, and then the air pump is switched to dry the perianal region. Generally, the flexible filling bladder 11 performs dry cold / hot compresses in conjunction with the above processes, or it can be performed independently depending on the actual situation, requiring only the flexible filling bladder 11 to be filled with water. Example of refined temperature control by zone: fumigation 50-55℃, hot water rinse 39-42℃, cold spray 5-10℃, dry cold compress 0-5℃, which can be achieved simply by controlling the water supply temperature; of course, the temperature can also be controlled according to the actual situation.
[0047] A pelvic floor fumigation and cold compress device includes the fumigation container described above, which is mounted on the main frame 6. It is understood that the controller, display, water tank, pump and other components are also mounted on the main frame 6.
[0048] The fumigation container can be directly fixed to the main frame 6 as a whole, which will not be described in detail here.
[0049] Alternatively, a detachable installation can be adopted. In this case, the fumigation container and the flexible filling bladder can both be disposable. A partition 2 is fixedly installed at the top of the main unit base. The partition 2 is recessed to accommodate the fumigation container. A quick-connect connector 3 is fixed inside the partition 2. One end of the quick-connect connector 3 is respectively connected to the adapter connector 12, the rinsing nozzle 13, the liquid spray nozzle 15, and the drain connector 17. The other end passes through the partition 2 and connects to the corresponding pipeline. Here, the nozzle, adapter, and quick-connect connector are based on the existing plug-in installation structure design, which will not be described in detail. Through the above design, the main unit frame 6 serves as a fixed device. When needed, the fumigation container, as a consumable, is directly plugged in and aligned with the nozzle, adapter, and quick-connect connector. The fumigation container is supported and limited by the partition 2 without affecting normal use. After use, the fumigation container can be directly disassembled and removed for individual replacement, effectively avoiding cross-infection, meeting medical device hygiene standards, and suitable for use in hospitals, home rehabilitation, and other scenarios.
[0050] Depending on the application, the flexible inflation bag can also be used as a disposable consumable. The flexible inflation bag can be directly disassembled and pulled out, and can be replaced individually, effectively avoiding cross-infection. It meets the hygiene standards for medical devices and is suitable for use in multiple scenarios such as hospitals and home rehabilitation.
[0051] Based on this, instead of existing conventional heating rods and other heating components, the heating component 16 in this embodiment includes an electromagnetic heating plate 161 fixed to the bottom of the partition 2 and a metal plate 162 fixed in the middle recess of the fumigation container 1. The electromagnetic heating plate 161 is powered on to electromagnetically heat the metal plate 162, realizing long-distance non-contact heating. The heated metal plate is integrated inside the consumable fumigation container, and the main unit does not come into contact with the medicine, completely eliminating the problems of heating scale and equipment instability. At the same time, the split structure of non-contact electromagnetic heating at the main unit frame end and the heated body built into the consumable fumigation container avoids direct heating of the medicine and the generation of scale.
[0052] The protective partition 18 of the fumigation container covers the metal plate 162, specifically:
[0053] The bottom surface of the metal plate 162 is fixed to the middle recess of the fumigation container 1 at intervals by the support tube 163. The center of the metal plate 162 is provided with a second hollow hole 164 penetrating the bottom and top. The liquid spray nozzle 15 is directly below the second hollow hole 164. The center of the electromagnetic heating plate 161 is provided with a third hollow hole 165 penetrating the bottom and top. The bottom end of the quick connector 3 passes through the third hollow hole 165 and connects to the pipeline. The bottom surface of the fumigation container protective partition 18 is fixed with a first insertion tube 181 and a second insertion tube 182 respectively. The bottom ends of the first insertion tube 181 and the second insertion tube 182 are respectively inserted into the first hollow hole 14 and the second hollow hole 164. The rinsing nozzle 13 and the liquid spray nozzle are also connected. 15 are respectively located inside the first insertion tube 181 and the second insertion tube 182; the top surface of the fumigation container protective partition 18 is provided with a flushing hole 183 and a drug discharge hole 184 that are connected and correspond to the positions of the first insertion tube 181 and the second insertion tube 182; the bottom surface of the fumigation container protective partition 18 is fixed with guide tubes 185 on both sides of the second insertion tube 182, and the metal plate 162 is provided with support holes 186 on both sides, the support holes 186 being connected to and corresponding to the support tube 163; a support column 187 is fixed inside the fumigation container 1 inside the support tube 163, the bottom end of the guide tube 185 passes through the support hole 186 and is inserted into the support tube 163 and sleeved on the support column 187, and the fumigation container protective partition 18 is provided with a plurality of mesh holes 1810.
[0054] Based on this structural design, the fumigation container protective partition 18 is fitted onto the positions of the rinsing nozzle 13 and the medicine spray nozzle 15 via the first insertion tube 181 and the second insertion tube 182, while the fixed guide tubes 185 on both sides are inserted to provide limiting support, preventing the fumigation container protective partition 18 from moving or shaking, effectively limiting the fumigation container protective partition 18. On the one hand, the first insertion tube 181 and the second insertion tube 182 fitted onto the rinsing nozzle 13 and the medicine spray nozzle 15 do not affect the normal use of the nozzles for spraying; on the other hand, it allows the fumigation container protective partition 18 to isolate the metal plate 162 during sitz baths, preventing the bottom of the basin from directly contacting the heated metal plate and avoiding burns.
[0055] The top surface of the fumigation container protective partition 18 is a raised frustum structure 188 corresponding to the position of the first insertion tube 181. The top surface of the frustum structure 188 is a recessed structure 189 that fits the perianal area of the human body and provides support. The flushing hole 183 is located in the recessed structure 189, which allows the medicine to be sprayed out after the fumigation container protective partition 18 is installed without affecting normal use.
[0056] The flexible filling bladder 11 can be directly connected to the quick connector 3 via the adapter 12 and used as a consumable. It is understood that, according to actual needs, there should be a certain length of flexible hose connection between the adapter 12 and the flexible filling bladder 11 so that the flexible filling bladder 11 can be placed on top of the fumigation container protective partition 18 or below the fumigation container protective partition 18.
[0057] As a preferred embodiment of the present invention, a magnetic stirring assembly 19 is also included. The magnetic stirring assembly 19 includes a drive motor 191 fixed in the mounting groove of the partition 2. A magnet 192 is fixed at the output end of the drive motor 191, and the magnet 192 is flush with the upper surface of the partition 2. A magnetic rotor 194 is placed in the placement groove 193 in the middle recess of the fumigation container 1, and a stirring blade 195 is installed on the top of the magnetic rotor 194. After the drive motor 191 is started, it drives the magnet 192 to rotate. Since the magnet 192 is flush with the upper surface of the partition 2, it does not affect the normal installation and placement of the fumigation container 1. When the magnet 192 rotates, the magnetic rotor 194 forms a magnetic rotor drive structure due to the repulsion and attraction between the polarities on both sides of the magnetic rotor 194 and the polarities on both sides of the magnet 192. The magnetic rotor 194 is placed in the placement groove 193 and rotates synchronously. The magnetic rotor 194 is higher than the placement groove 193, so as to realize the rotation of the stirring blade 195 to disturb the liquid in the fumigation container 1.
[0058] It is known that a protective cover 196 is fixed in the middle recess of the fumigation container 1. The stirring blade 195 is inside the protective cover 196, which can play a protective role. The protective cover 196 is provided with several through holes 197, so that the rotation of the stirring blade 195 can pass through the protective cover 196 to disturb the liquid in the entire fumigation container, so as to achieve the purpose of uniform temperature and medicine.
[0059] As a preferred embodiment of the present invention, the outer wall of the protective cover 195 is connected to a branch pipe 198, the outlet of which is located below the first hollow hole 14. As a complementary design, a notch is provided on the corresponding side of the bottom of the first insertion tube 181, and the branch pipe 198 is approximately L-shaped, so that after the first insertion tube 181 is inserted into the first hollow hole 14, the branch pipe 198 can also extend into the first insertion tube 181 through the notch. In this way, when the protective cover 195 is disturbed, the vapor generated by the medicine can also enter the first insertion tube 181 through the branch pipe 198 designed on the top side of the protective cover, and then be discharged from the flushing hole 183, which also has a fumigation effect on the perianal area.
[0060] A non-contact liquid level sensor 4 is installed on the side wall of the partition 2, and an infrared temperature sensor 5 is fixed on the bottom surface of the partition 2. These devices can detect the liquid level and temperature inside the fumigation container 1 and adjust accordingly. The non-contact liquid level sensor 4 and the infrared temperature sensor 5 are commercially available standard products. In this invention, the control of various components such as pumps, valves, and sensors is achieved through a controller. These are all conventional technologies, and their principles and structures will not be described in detail.
[0061] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.
Claims
1. A fumigation container, characterized in that, Includes a flexible filling bladder (11), which is located in the middle recess of the fumigation container (1). The flexible filling bladder (11) is connected to an adapter (12), which is installed through the fumigation container (1) and connected to a hot or cold medium source via pipelines.
2. The fumigation container as described in claim 1, characterized in that, A rinsing nozzle (13) is also fixedly installed in the middle recess of the fumigation container (1) through the bottom of the fumigation container (1).
3. The fumigation container as described in claim 2, characterized in that, The flushing nozzle (13) is connected to one side of the solenoid four-way valve through a pipeline, and the other three ports of the solenoid valve are respectively connected to the cold water tank, the hot water tank and the air pump.
4. The fumigation container as described in claim 2, characterized in that, The flexible filling bladder (11) has a first hollow hole (14) at its center that extends through the bottom and top, and the flushing nozzle (13) is directly below the first hollow hole (14).
5. The fumigation container as described in claim 1, characterized in that, The fumigation container (1) has a medicine spray nozzle (15) fixedly installed in the middle recessed part, in front of the flexible filling bag (11) and penetrating the bottom of the fumigation container (1). The medicine spray nozzle (15) is connected to the medicine storage tank through a pipeline.
6. The fumigation container as described in claim 4, characterized in that, The fumigation container (1) is further provided with a heating component (16) located in front of the flexible filling bladder (11) in the middle recess.
7. The fumigation container as described in claim 1, characterized in that, The middle recess of the fumigation container (1) passes through the bottom of the fumigation container (1) and a drain connector (17) is fixedly installed. The drain connector (17) is connected to the drain tank through a pipeline.
8. A basin bottom fumigation and cold compress device, characterized in that, Includes the fumigation container as described in any one of claims 1-7, wherein the fumigation container is mounted on the main frame (6).
9. The pelvic floor fumigation and cold compress device as described in claim 8, characterized in that, The top of the main unit is fixedly installed with a partition (2). The partition (2) is in the shape of a recess that fits to place the fumigation container. A quick connector (3) is fixed inside the partition (2). One end of the quick connector (3) is respectively connected to the adapter (12), the rinsing nozzle (13), the medicine nozzle (15), and the drain connector (17). The other end passes through the partition (2) and connects to the corresponding pipeline.
10. The pelvic floor fumigation and cold compress device as described in claim 9, characterized in that, The heating assembly (16) includes an electromagnetic heating plate (161) fixed to the bottom of the partition (2) and a metal plate (162) fixed in the middle recess of the fumigation container (1). The electromagnetic heating plate (161) is powered on to electromagnetically heat the metal plate (162).
11. The pelvic floor fumigation and cold compress device as described in claim 10, characterized in that, The bottom surface of the metal plate (162) is fixed to the middle recess of the fumigation container (1) at intervals by the support tube (163).
12. The pelvic floor fumigation and cold compress device as described in claim 10, characterized in that, The metal plate (162) has a second hollow hole (164) at its center that penetrates the bottom and top, and the liquid spray nozzle (15) is located directly below the second hollow hole (164); the electromagnetic heating plate (161) has a third hollow hole (165) at its center that penetrates the bottom and top, and the bottom end of the quick connector (3) passes through the third hollow hole (165) and connects to the pipeline.
13. The pelvic floor fumigation and cold compress device as described in claim 12, characterized in that, It also includes a fumigation container protective partition (18), on the bottom surface of which a first insertion tube (181) and a second insertion tube (182) are fixed respectively. The bottom ends of the first insertion tube (181) and the second insertion tube (182) are inserted through the first hollow hole (14) and the second hollow hole (164) respectively, and the flushing nozzle (13) and the liquid spray nozzle (15) are located in the first insertion tube (181) and the second insertion tube (182) respectively. The top surface of the fumigation container protective partition (18) is provided with a flushing hole (183) and a discharge hole (184) that are connected to and correspond to the positions of the first insertion tube (181) and the second insertion tube (182).
14. The pelvic floor fumigation and cold compress device as described in claim 13, characterized in that, The bottom surface of the protective partition (18) of the fumigation container is fixed with conduits (185) on both sides of the second insertion tube (182). The metal plate (162) has support holes (186) on both sides, and the support holes (186) are connected to the support tube (163). A support column (187) is fixed inside the support tube (163) of the fumigation container (1). After the conduit (185) passes through the support hole (186), its bottom end is inserted into the support tube (163) and sleeved on the support column (187).
15. The pelvic floor fumigation and cold compress device as described in claim 13, characterized in that, The top surface of the protective partition (18) of the fumigation container is a raised frustum structure (188) corresponding to the position of the first insertion tube (181). The top surface of the frustum structure (188) is a recessed structure (189), and the flushing hole (183) is located in the recessed structure (189).
16. The pelvic floor fumigation and cold compress device as described in claim 13, characterized in that, The protective partition (18) of the fumigation container is provided with several mesh holes (1810).
17. The pelvic floor fumigation and cold compress device as described in claim 9, characterized in that, It also includes a magnetic stirring assembly (19), which includes a drive motor (191) fixed in the mounting groove of the partition (2), and a magnet (192) fixed at the output end of the drive motor (191). The magnet (192) is flush with the upper surface of the partition (2). A magnetic rotor (194) is placed in the placement groove (193) in the middle recess of the fumigation container (1), and a stirring blade (195) is installed on the top of the magnetic rotor (194).
18. The pelvic floor fumigation and cold compress device as described in claim 17, characterized in that, The fumigation container (1) has a protective cover (196) fixed in the middle recessed part, the stirring blade (195) is inside the protective cover (196), and the protective cover (196) has several through holes (197).
19. The pelvic floor fumigation and cold compress device as described in claim 18, characterized in that, The outer wall of the protective cover (196) is connected to a branch pipe (198), and the outlet of the branch pipe (198) is located below the first hollow hole (14).
20. The pelvic floor fumigation and cold compress device as described in claim 9, characterized in that, A non-contact liquid level sensor (4) is installed on the side wall of the partition (2).
21. The pelvic floor fumigation and cold compress device as described in claim 9, characterized in that, An infrared temperature sensor (5) is fixed to the bottom surface of the partition (2).