Hot wet application medicine bag heating device, hot compress bandage and hot compress device
By incorporating a perforated shell and zeolite storage within the water chamber of the steamer, along with a removable steamer drawer and vent, the problem of boiling over when heating medicine packets in a microwave oven is solved, reducing the risk of burns and extending the steamer's lifespan, while also improving heating efficiency and safety.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- BEIJING JISHUITAN HOSPITAL
- Filing Date
- 2024-12-31
- Publication Date
- 2026-04-14
AI Technical Summary
When heating medicine packets in a microwave oven, the water is prone to boiling violently, which can lead to scalding and shorten the lifespan of the steamer.
A perforated shell is installed in the water chamber of the steamer to store zeolite. The perforated shell restricts the displacement of the zeolite, preventing the water flow from causing the zeolite to rub against the steamer. Combined with the detachable steamer drawer design and vent holes, the steam pressure is controlled to avoid bumping.
It significantly reduces the risk of burns to users, extends the lifespan of the steamer, improves heating efficiency and safety, and enhances the user experience.
Smart Images

Figure CN224112862U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of medical assistive device technology, and more specifically, to a hot compress medicine pack heating device, a hot compress bandage, and a hot compress device. Background Technology
[0002] Hot compress packs, as an ancient and effective treatment method, have been widely used in the field of traditional Chinese medicine rehabilitation. With the advancement of modern technology, the heating methods for hot compress packs have also been significantly improved, evolving from traditional combinations with household appliances such as steamers to more advanced heating methods, such as using common and convenient microwave devices or electric stoves as heat sources. Among these, microwave heating of packs has significant advantages. Users heat the packs using a microwave oven, and the packs absorb microwaves, directly raising their temperature to achieve the desired heating effect. This method features rapid heating, uniform heating, and no lag effect. The packs can reach a very high temperature in a very short time, which is generally 10 to 100 times faster than conventional heating methods.
[0003] Therefore, theoretically, heating medicine packets in a microwave oven has certain advantages over heating them with an external heat source in terms of heating time and extraction of active ingredients. However, directly microwaving the medicine packets may cause the herbs inside to burn. Therefore, when microwaving the medicine packets, they need to be placed in a steamer with a little water to increase the humidity. The steamer and medicine packets are then placed together in the microwave oven for heating. However, existing steamers have certain problems.
[0004] When heating water in a microwave oven, the water in the steamer doesn't move, but its temperature rises, potentially exceeding the boiling point of 100°C. At this point, even slight stirring or the addition of coffee powder or tea leaves will cause numerous small bubbles to emerge and coalesce, resulting in a violent boiling—a phenomenon known as "bumping." Bumping refers to the sudden and intense boiling of a liquid during heating. This can cause the temperature inside the steamer to rise rapidly, and water, along with its bubbles, may overflow, increasing the risk of burns. Utility Model Content
[0005] The purpose of this application is to provide a heating device for a hot compress medicine pack, a hot compress bandage, and a hot compress device, wherein the heating device for the hot compress medicine pack can prevent boiling over and reduce the risk of burns.
[0006] To achieve the above objectives, in a first aspect, embodiments of this application provide a heating device for a hot compress medicine pack, comprising a steamer and a steaming tray. The steamer has a water chamber, within which a perforated shell is provided, capable of storing zeolite; the steaming tray is detachably installed in the steamer, and has a hot medicine chamber for storing the medicine pack; a steam vent is provided on the side of the steaming tray near the steamer, through which steam generated by heating the water in the water chamber enters the hot medicine chamber of the steaming tray.
[0007] The hot compress medicine pack heating device provided in this application effectively avoids the phenomenon of violent boiling of water during the heating process by setting a hollow shell in the water chamber and storing zeolite, thereby significantly reducing the risk of users being scalded during use. This design not only ensures user safety but also improves the user experience. The hollow shell not only restricts the displacement of the zeolite and prevents friction caused by the water flow moving the zeolite, but also extends the service life of the steamer and reduces the user's maintenance costs.
[0008] In one embodiment, the steamer includes a cage body and a lid. The cage body has a steam vent at one end near the steamer, and a medicine dispensing port at the other end of the cage body away from the steamer. The cage body is installed in the water chamber of the steamer, and the steam vent is located on the cage body. The lid is installed at the medicine dispensing port of the cage body, and the lid is capable of sealing the medicine dispensing port.
[0009] In one embodiment, the cover is provided with an exhaust vent.
[0010] In one embodiment, the perforated housing includes a bottom shell and a top shell. The bottom shell is disposed on the inner wall of the water chamber and is used to store zeolite. The bottom shell has a feed port through which zeolite can be added to the bottom shell. The top shell is detachably installed at the feed port of the bottom shell and is used to seal the feed port. The inner wall of the bottom shell and / or the inner wall of the top shell has a perforated structure.
[0011] In one embodiment, the bottom shell is provided with a first connecting part, and the cover shell is provided with a second connecting part that cooperates with the first connecting part. The first connecting part and the second connecting part cooperate to connect the cover shell and the bottom shell.
[0012] In one embodiment, a lever is provided on the outer peripheral surface of the cover.
[0013] Secondly, embodiments of this application also provide a heat therapy bandage, including an installation part and a fixing part. A limiting net is installed on the installation part; the fixing part is fixedly connected to the installation part, and the fixing part is used to fix the installation part to the human body.
[0014] In one embodiment, the mounting portion has a spray port near the limiting net, and the position of the spray port matches the position of the limiting net.
[0015] In one embodiment, the limiting net is detachably connected to the mounting part.
[0016] Thirdly, embodiments of this application also provide a hot compress device, including a hot compress medicine pack heating device as described in any of the above embodiments and a hot compress bandage as described in any of the above embodiments; the steamer of the hot compress medicine pack heating device and the mounting part of the hot compress bandage are detachably connected.
[0017] Other features and advantages of this application will be described in detail in the following detailed description section. Attached Figure Description
[0018] To more clearly illustrate the technical solutions of the embodiments of this application, the accompanying drawings used in the embodiments will be briefly introduced below. It should be understood that the following drawings only show some embodiments of this application and should not be regarded as a limitation of the scope. For those skilled in the art, other related drawings can be obtained based on these drawings without creative effort.
[0019] Figure 1 This is a schematic diagram of the structure of one embodiment of a heating device for a hot compress medicine pack provided in this application.
[0020] Figure 2 An exploded view from two perspectives of one embodiment of a heating device for a hot compress medicine pack provided in this application.
[0021] Figure 3 A partial cross-sectional view from two perspectives of one embodiment of a heating device for a hot compress medicine pack provided in this application;
[0022] Figure 4 An exploded view from a two-view perspective of another embodiment of a hot compress medicine pack heating device provided in this application;
[0023] Figure 5 A three-view structural schematic diagram of one embodiment of a heat therapy bandage provided in this application;
[0024] Figure 6A three-view structural schematic diagram of another embodiment of a heat therapy bandage provided in this application;
[0025] Figure 7 A three-view assembly process diagram of another embodiment of a heat therapy bandage provided in this application;
[0026] Figure 8 A three-view schematic diagram illustrating the usage process of another embodiment of a heat therapy bandage provided in this application;
[0027] Figure 9 This is a four-view schematic diagram illustrating the usage process of one embodiment of a heat therapy device provided in this application.
[0028] icon:
[0029] 100-Heating device for hot compress medicine pack;
[0030] 110-Steamer; 111-Water chamber; 112-Perforated shell; 113-Bottom shell; 114-Lid shell; 115-Protrusion; 116-Slot; 117-Block; 118-Feeding port;
[0031] 120-Steamer drawer; 121-Cage body; 122-Lid; 123-Exhaust vent; 124-Heating chamber; 125-Steam vent; 126-Medicine dispensing port;
[0032] 200-Heat compress bandage; 210-Installation part; 212-Medication application port; 220-Fixing part; 230-Limiting net. Detailed Implementation
[0033] To make the objectives, technical solutions, and advantages of the embodiments of this application clearer, the technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. The components of the embodiments of this application described and shown in the accompanying drawings can generally be arranged and designed in various different configurations.
[0034] In the description of this application, it should be noted that the terms "inner" and "outer," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, or the orientation or positional relationship commonly used when the product is in use. They are used only for the convenience of describing this application and for 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. Therefore, they should not be construed as limitations on this application. Furthermore, the terms "first," "second," etc., are used only to distinguish descriptions and should not be construed as indicating or implying relative importance.
[0035] In the description of this application, it should also be noted that, unless otherwise expressly specified and limited, the terms "setup" and "connection" 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 direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this application based on the specific circumstances.
[0036] This application provides a hot compress medicine pack heating device 100, a hot compress bandage 200, and a hot compress device. The hot compress medicine pack heating device 100 is used to heat the medicine pack. When heating the medicine pack using this device, the water can be prevented from boiling over, reducing the risk of burns. The hot compress bandage 200 can fix the heated medicine pack to the area to be treated on the body. Of course, in order to reduce the risk of burns during the movement of the medicine pack, the structure of the hot compress medicine pack heating device 100 with the heated medicine pack can also be installed on the hot compress bandage 200 to form a hot compress device. In the hot compress device, the heated medicine pack is still within part of the structure of the hot compress medicine pack heating device 100.
[0037] In a first aspect, embodiments of this application provide a heating device 100 for a hot compress medicine pack, such as... Figure 1 As shown, the heating device 100 for the hot compress medicine pack includes a steamer 110 and a steamer 120.
[0038] like Figure 2 and Figure 3 As shown, the steamer 110 has a water chamber 111, and a perforated shell 112 is provided inside the water chamber 111. The perforated shell 112 can store boiling stones. After the boiling stones are installed in the perforated shell 112, the water in the water chamber 111 can be prevented from boiling violently.
[0039] When water boils, water at different temperatures will generate turbulence. The flowing water will move the zeolite, causing the zeolite to rub against the steamer 110, which will reduce the service life of the steamer 110. The hollow shell 112 provided in this application can constrain the displacement of the zeolite, prevent the water flow from moving the zeolite, and thus avoid the zeolite rubbing against the steamer 110, thereby improving the durability of the steamer 110.
[0040] For example, the hollow shell 112 contains artificial zeolite to prevent water from boiling violently during microwave heating, thus avoiding safety hazards.
[0041] like Figure 3 As shown, the steamer 120 is detachably installed in the steamer 110. For example, the steamer 120 is detachably installed on the steamer 110 by means of snaps, clips, etc.
[0042] like Figure 2 and Figure 3As shown, the steamer 120 has a hot medicine chamber 124 for storing medicine packets.
[0043] like Figure 2 and Figure 3 As shown, a steam vent 125 is provided on the side end face of the steamer 120 near the steam pot 110. The steam generated by heating the water in the water chamber 111 enters the hot medicine chamber 124 of the steamer 120 through the steam vent 125. The medicine pack in the hot medicine chamber 124 receives the heat and water vapor from the steam.
[0044] For example, the steamer 120 is provided with a handle to facilitate the user to move the steamer 120.
[0045] The heating device 100 for hot compress medicine packs provided in the embodiments of this application can be heated by a microwave oven, which has high heating efficiency and good heating effect and drug extraction effect on medicinal materials.
[0046] The steamer 110 and steamer 120 of the hot compress medicine pack heating device 100 are made of non-metallic materials, such as plastic, ceramics, etc.
[0047] Microwave heating via microwave oven directly penetrates the non-metallic steamer 110 and steamer 120. The water and medicine pack in the steamer 110 absorb microwaves and are directly heated to achieve the heating effect. It has the characteristics of fast heating speed, uniform heating and no lag effect. The medicine pack and water can be heated to a very high temperature in a very short time, which is generally 10 to 100 times faster than conventional heating methods.
[0048] Therefore, theoretically, heating medicine packets in a microwave oven has certain advantages over heating them with an external heat source in terms of heating time and extraction of active ingredients. However, there is a crucial safety concern when using a microwave oven to heat medicine packets: Traditionally, water boils because heat is transferred from bottom to top, raising the temperature at the bottom. This heat creates adhesion points on the inner surface of the water chamber 111, causing small bubbles to rise and eventually boil. When water is heated in a microwave oven, the water doesn't move, but its temperature rises, potentially exceeding the boiling point of 100°C. At this point, even slight stirring or the addition of coffee powder or tea leaves can cause a large number of small bubbles to rise and coalesce, resulting in violent boiling. In other words, "the cleaner the container and the cleaner the water when using a microwave oven, the more likely it is to experience violent boiling."
[0049] Therefore, the hot compress medicine pack heating device provided in the embodiments of this application can effectively reduce the possibility of boiling over by setting the hollow shell 112, which is an important measure to improve safety.
[0050] The hot compress medicine pack heating device 100 provided in the embodiments of this application effectively avoids the phenomenon of violent boiling of water during the heating process by setting a hollow shell 112 in the water chamber 111 and storing zeolite, thereby significantly reducing the risk of users being scalded during use. This design not only ensures user safety but also improves the user experience. The hollow shell 112 not only restricts the displacement of the zeolite and prevents the friction caused by the water flow moving the zeolite to the steamer 110, but also extends the service life of the steamer 110 and reduces the user's maintenance costs.
[0051] like Figures 2 to 4 As shown, in one embodiment, the steamer 120 includes a cage body 121 and a lid body 122.
[0052] A steam vent 125 is provided on the end of the cage 121 near the steamer 110, and a medicine dispensing port 126 is provided on the end face of the cage 121 away from the steamer 110.
[0053] The cage body 121 is installed in the water chamber 111 of the steamer 110, and the steam vent 125 is provided on the cage body 121.
[0054] A cover 122 is installed at the medicine dispensing port 126 of the cage 121. The cover 122 can seal the medicine dispensing port 126, allowing heat to be retained as much as possible in the hot medicine chamber 124, improving heat utilization and heating efficiency. Removing the cover 122 opens the sampling port, facilitating the removal of the medicine pack. Exemplarily, the cover 122 is snapped onto the medicine dispensing port 126. In another embodiment, the cover 122 is snapped onto the medicine dispensing port 126 of the cage 121.
[0055] The steam vent 125 on the cage 121 allows steam to enter the cage 121 from the water chamber 111 of the steamer 110, heating the medicine pack. Simultaneously, the lid 122 seals the medicine outlet 126 on the cage 121, forming a relatively enclosed hot medicine chamber 124. This design helps reduce heat loss, allowing heat to be retained as much as possible in the hot medicine chamber 124, thereby improving heat utilization and heating efficiency. This means the medicine pack can reach the required temperature in a shorter time, saving energy and time.
[0056] When the medicine packet needs to be removed, the user simply removes the cover 122 to open the dispensing port 126, allowing for easy removal of the medicine packet. This design not only improves ease of use but also avoids the risk of burns when retrieving the medicine packet, as the user can perform the operation without direct contact with the high-temperature cage 121 or the medicine packet.
[0057] like Figures 2 to 4As shown, in one embodiment, the cover 122 is provided with an exhaust vent 123. The exhaust vent 123 enables the hot medicine chamber 124 to communicate with the outside air, so that the hot medicine chamber 124 and the outside air pressure are balanced, while retaining heat in the hot medicine chamber 124 as much as possible.
[0058] For example, two vent holes 123 are provided on the cover 122. However, in another embodiment, three vent holes 123 are provided on the cover 122. In yet another embodiment, four vent holes 123 are provided on the cover 122. In yet another embodiment, five vent holes 123 are provided on the cover 122. Of course, the number of vent holes 123 can also be other, such as six, seven, eight, or nine.
[0059] The vent 123 allows the hot powder chamber 124 to communicate with the outside air, thereby maintaining the pressure balance inside and outside the chamber. During the heating process, as steam is generated and accumulates, the pressure inside the hot powder chamber 124 may gradually increase. Without the vent 123 to balance the pressure, problems such as deformation of the steamer 120 and failure of the seal may occur.
[0060] While the vent 123 allows airflow, its design also considers heat retention. Through the appropriate selection of the vent diameter and location, the vent 123 can minimize heat loss while maintaining air pressure balance. This helps improve heating efficiency and ensures that the medicine pack is adequately heated.
[0061] Pressure balancing also prevents safety hazards caused by excessive pressure during heating. For example, if the pressure inside the heating chamber 124 is too high, it may cause the steamer 120 or the steam pot 110 to explode or leak, causing injury to the user. The vent 123 effectively reduces this risk.
[0062] The design of the vent 123 also takes into account the user experience. During the heating process, as steam is generated and accumulates, a certain pressure may form inside the hot medicine chamber 124. Without the vent 123 to balance the pressure, the user may experience difficulty or discomfort when opening the cover 122 to retrieve the medicine. The vent 123 makes it easier and more convenient for the user to retrieve the medicine.
[0063] The presence of the vent 123 also helps to enhance the structural stability of the steamer 120. During heating, as steam is generated and accumulates, the pressure inside the heat chamber 124 may gradually increase. Without the vent 123 to balance the pressure, the steamer 120 may deform or be damaged due to excessive pressure. The vent 123 effectively reduces this risk, thereby extending the service life of the steamer 120.
[0064] like Figure 3 As shown, in one embodiment, the hollow housing 112 includes a bottom housing 113 and a top housing 114.
[0065] like Figure 3 and Figure 4 As shown, a bottom shell 113 is disposed on the inner wall of the water chamber 111. Exemplarily, the bottom shell 113 is disposed on the bottom wall of the water chamber 111. In another embodiment, the bottom shell 113 is disposed on the side wall of the water chamber 111. In yet another embodiment, the bottom shell 113 connects the side wall and the bottom wall of the water chamber 111.
[0066] The bottom shell 113 is used to store zeolite. The bottom shell 113 has a feed port 118 through which zeolite can be added to the bottom shell 113.
[0067] The cover 114 is detachably installed at the feed port 118 of the bottom shell 113, and the cover 114 is used to block the feed port 118.
[0068] The inner wall of the bottom shell 113 is a perforated structure, while the inner wall of the cover shell 114 is a solid shell wall. However, in another embodiment, the inner wall of the cover shell 114 is a perforated structure, while the inner wall of the bottom shell 113 is a solid shell wall. For example... Figure 3 As shown, in another embodiment, the inner wall of the bottom shell 113 and the inner wall of the cover shell 114 are hollow structures.
[0069] The inner wall of the bottom shell 113 and / or the inner wall of the cover shell 114 are hollow structures, which can increase the contact area between zeolite and water and increase the flow of water in the hollow shell 112.
[0070] like Figure 3 and Figure 4 As shown, in one embodiment, a first connecting part is provided on the bottom shell 113, and a second connecting part is provided on the cover shell 114 to cooperate with the first connecting part. The first connecting part and the second connecting part cooperate to connect the cover shell 114 and the bottom shell 113.
[0071] For example, such as Figure 3 and Figure 4 As shown, the first connecting part is a protrusion 115, and the second connecting part is a slot 116. The slot 116 has an L-shaped through-slot structure. The protrusion 115 can engage with the slot 116 to connect the cover 114 and the bottom shell 113.
[0072] In another embodiment, the first connecting part is a slot 116 and the second connecting part is a protrusion 115. The slot 116 is an L-shaped through groove structure, and the protrusion 115 can engage with the slot 116 to connect the cover 114 and the bottom shell 113.
[0073] The cooperation between the first and second connecting parts, such as the engagement of protrusion 115 and slot 116, makes the connection between the cover 114 and the bottom shell 113 quick and easy. This design achieves a secure connection without the need for complex fasteners or tools. When maintenance or replacement of zeolite is required, the user can easily remove the cover 114 without complex disassembly of the entire mechanical structure. This greatly reduces maintenance costs and time.
[0074] The engaging fit between the protrusion 115 and the slot 116, especially the L-shaped through-slot structure of the slot 116, provides excellent stability. This design effectively prevents the cover 114 from accidentally falling off during use, ensuring the stable operation of the mechanical structure.
[0075] like Figures 2 to 4 As shown, in one embodiment, a lever 117 is provided on the outer peripheral surface of the cover 114. The lever 117 facilitates the user to rotate and hold the cover 114.
[0076] For example, the lever 117 is fixedly mounted on the cover 114 by means of adhesive, welding, snap-fit, bolt connection or integral molding.
[0077] For example, at least two levers 117 are arranged equidistantly around the cover 114. Figure 4 As shown, four levers 117 are evenly spaced on the cover 114.
[0078] The design of lever 117 makes it easier for users to turn cover 114, especially when it is necessary to open or close cover 114. This design reduces the difficulty and effort required for user operation.
[0079] The lever 117 provides a convenient point for the user to hold the cover 114, allowing the user to hold the cover 114 more firmly and avoid slipping or instability.
[0080] As part of the cover 114, the lever 117 enhances the structural strength of the cover 114 and helps prevent the cover 114 from deforming or being damaged under stress.
[0081] Secondly, embodiments of this application also provide a heat therapy bandage 200, including an installation part 210 and a fixing part 220.
[0082] like Figure 5 As shown, a limiting net 230 is installed on the mounting part 210; the limiting net 230 is used to limit the medicine pack.
[0083] The fixing part 220 is fixedly connected to the mounting part 210 by means of snap fasteners, adhesive, knitting or snap-fit integral molding.
[0084] At least two fixing parts 220 are provided on the mounting part 210. The fixing parts 220 are detachably connected to each other. For example, two fixing parts 220 are provided, one end of one fixing part 220 is fixedly connected to the mounting part 210, and the other end is connected to one end of the other fixing part 220. The other end of the other fixing part 220 is connected to the mounting part 210. The connection method of the two fixing parts 220 is, for example, hook and loop fastener, snap fastener, adhesive, or bundling.
[0085] The fixing part 220 is used to fix the mounting part 210 to the human body. The mounting part 210 is provided with a limiting net 230, and a medicine pack is provided on the limiting net 230. The fixing part 220 can fix the mounting part 210, the limiting net 230 and the medicine pack to the part of the human body to be treated, wherein the medicine pack abuts against the part of the human body to be treated through the holes of the limiting net 230.
[0086] The limiting mesh 230 is used to position the medicine pack, ensuring it fits snugly against the area to be treated, thus improving the therapeutic effect of the heat therapy. Simultaneously, the medicine pack, with its openings in the limiting mesh 230, contacts the area, facilitating better penetration and absorption of the medicinal ingredients.
[0087] like Figure 8 As shown, in one embodiment, the limiting net 230 is detachably connected to the mounting part 210.
[0088] For example, the limiting net 230 and the mounting part 210 can be detachably connected by means of snaps, Velcro, clips or adhesive.
[0089] For example, the mounting part 210 has a first side and a second side, which are disposed opposite to each other. During use, the limiting net 230 is disposed on the first side, such as... Figure 8 As shown, the limiting net 230 is used to limit the medicine pack. First, open the limiting net 230, put the medicine pack into the limiting net 230, and the limiting net 230 and the first side limit the medicine pack. Align the medicine pack with the part of the human body to be treated, and then fix the mounting part 210 to the human body through the fixing part 220.
[0090] like Figure 6 and Figure 7 As shown, in one embodiment, the mounting part 210 has a spray port 212 near the limiting net 230, and the setting position of the spray port 212 matches the setting position of the limiting net 230.
[0091] For example, the mounting part 210 has a first side and a second side, which are arranged opposite to each other. The application port 212 passes through the first side and the second side. The limiting net 230 is disposed on the first side, and the medicine pack is disposed on the second side. The second side and the medicine pack located on the second side abut against the part of the human body to be treated.
[0092] Thirdly, such as Figure 9 As shown, embodiments of this application also provide a hot compress device, including a hot compress medicine pack heating device 100 as described in any of the above embodiments and a hot compress bandage 200 as described in any of the above embodiments.
[0093] like Figure 9 As shown, the steamer 120 of the hot compress medicine pack heating device 100 is detachably connected to the mounting part 210 of the hot compress bandage 200.
[0094] For example, the mounting part 210 has a first side and a second side, which are arranged opposite to each other. The mounting part 210 is provided with a medicine inlet 212, which passes through the first side and the second side. A limiting net 230 is provided on the first side, and a steamer 120 is provided on the second side. The medicine dispensing port 126 of the steamer 120 abuts against the second side. The steamer 120 stores a medicine pack. The medicine pack abuts against the limiting net 230 after passing through the medicine dispensing port 126 and the medicine inlet 212. The efficacy of the medicine pack reaches the treatment site of the human body through the mesh of the limiting net 230. The limiting net 230 limits the medicine pack in the steamer 120.
[0095] For example, the steamer 120 and the mounting part 210 are detachably connected by means of snaps, clips, Velcro or adhesive.
[0096] Using the hot compress device provided in the embodiments of this application, the medicine pack does not need to be removed after it has been heated in the steamer 120. The steamer 120 can be directly installed on the mounting part 210, which can reduce the risk of burns. The efficacy of the medicine pack can still reach the treatment area of the human body through the mesh of the limiting net 230.
[0097] By detachably connecting the steamer 120 to the mounting part 210 of the hot compress bandage 200, and by providing an application port 212 and a limiting net 230 on the mounting part 210, users do not need to directly contact the medicine pack or steamer 120 after heating the medicine pack, thus greatly reducing the risk of burns. This design makes the hot compress process safer, especially suitable for home or self-care scenarios.
[0098] It should be noted that, where there is no conflict, the features in the embodiments of this application can be combined with each other.
[0099] The above description is merely a preferred embodiment of this application and is not intended to limit this application. Various modifications and variations can be made to this application by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this application should be included within the protection scope of this application.
Claims
1. A heating device for a hot compress medicine pack, characterized in that, include: A steamer (110) having a water chamber (111) and a perforated shell (112) inside the water chamber (111) capable of storing zeolite. A steamer (120) is detachably installed in the steamer (110). The steamer (120) has a hot medicine chamber (124) for storing medicine packets. A steam vent (125) is provided on one end face of the steamer (120) near the steamer (110). Steam generated by heating water in the water chamber (111) enters the hot medicine chamber (124) of the steamer (120) through the steam vent (125).
2. The heating device for the hot compress medicine pack according to claim 1, characterized in that, The steamer (120) includes: A cage (121) is provided with a steam vent (125) on one end of the cage (121) near the steamer (110), and a medicine dispensing port (126) is provided on the other end of the cage (121) away from the steamer (110). The cage (121) is installed in the water chamber (111) of the steamer (110), and the steam vent (125) is provided on the cage (121); A cover (122) is installed at the medicine dispensing port (126) of the cage (121), and the cover (122) can block the medicine dispensing port (126).
3. The heating device for the hot compress medicine pack according to claim 2, characterized in that, The cover (122) is provided with an exhaust vent (123).
4. The heating device for the hot compress medicine pack according to claim 1, characterized in that, The hollow shell (112) includes: Bottom shell (113) is disposed on the inner wall of the water chamber (111). The bottom shell (113) is used to store zeolite. The bottom shell (113) has a feed port (118) through which zeolite can be added to the bottom shell (113). A cover (114) is detachably installed at the feed port (118) of the bottom shell (113), and the cover (114) is used to block the feed port (118); The inner wall of the bottom shell (113) and / or the inner wall of the cover shell (114) are hollow structures.
5. The heating device for the hot compress medicine pack according to claim 4, characterized in that, The bottom shell (113) is provided with a first connecting part, and the cover shell (114) is provided with a second connecting part that cooperates with the first connecting part. The first connecting part and the second connecting part cooperate to connect the cover shell (114) with the bottom shell (113).
6. The heating device for the hot compress medicine pack according to claim 4, characterized in that, A lever (117) is provided on the outer peripheral surface of the cover (114).
7. A heat therapy bandage, characterized in that, include: Mounting section (210), on which a limiting mesh (230) is mounted; A fixing part (220) is fixedly connected to the mounting part (210), and the fixing part (220) is used to fix the mounting part (210) to the human body.
8. The heat therapy bandage according to claim 7, characterized in that, The mounting part (210) has a drug application port (212) near the limiting net (230), and the setting position of the drug application port (212) matches the setting position of the limiting net (230).
9. The heat therapy bandage according to claim 7, characterized in that, The limiting net (230) is detachably connected to the mounting part (210).
10. A heat therapy device, characterized in that, include: The heating device (100) for hot compress medicine pack as described in any one of claims 1 to 6; The heat therapy bandage (200) as described in any one of claims 7 to 9; The steamer (120) of the hot compress medicine pack heating device (100) is detachably connected to the mounting part (210) of the hot compress bandage (200).