Reyan bag glove

By designing multiple connected interlayers and heating components in the hot bag gloves, the existing hot bag heating and insulation effects are solved, the constant temperature of the gloves is achieved, the heating and insulation effect is improved, and the frequency and cost of replacement of medicine bags is reduced.

CN222967997UActive Publication Date: 2025-06-13CHANGZI COUNTY TRADITIONAL CHINESE MEDICINE HOSPITAL
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Patent Information

Application Number
CN202421964623.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-14
Publication Date
2025-06-13
Estimated Expiration
2034-08-14

AI Technical Summary

Technical Problem

During the use of existing hot bags, the exposed medicine bags lead to poor heating and insulation effects, and the temperature is difficult to maintain after the patient has used for a period of time, so the medicine bags need to be changed frequently, resulting in waste of costs and increasing the work burden of medical staff.

Method used

A hot bag glove is designed, which contains multiple connected interlayers, one of which is used to place the medicine bag and is equipped with heating components, including heating tubes, diverters, controllers and thermal fins. These components allow the gloves to be in a constant temperature state and improve the heating and insulation effect.

Benefits of technology

By setting up interlayers and heating components, gloves can fully utilize the heating effect of the medicine bag, maintain a constant temperature, improve the heating and insulation effect, reduce the frequency of medicine bag replacement, reduce costs, and reduce the work burden of medical staff.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of medical instruments, and provides a hot compress bag glove which comprises a glove part used for wrapping a palm and an arm part with an opening, a plurality of interlayers communicated with each other are formed between the arm part and the glove part, one interlayer is used for containing a medicine bag and is communicated with the opening of the arm part, and the other interlayer is used for containing a medicine bag and is communicated with the opening of the arm part. A heating part is accommodated in one interlayer and is arranged on the outer side of the interlayer with the medicine bag. The glove is provided with the interlayer capable of containing the medicine bag, so that the medicine bag can fully play a heating role, and the glove can be in a constant-temperature state through the heating assembly, so that the heating and heat preservation effects of the glove are improved; the gaps of the arm parts are bonded through the hook-and-loop fasteners, so that the arm parts can be adjusted according to the thickness of the arms of the patients, the use requirements of most patients are met, and the application range is widened.
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Description

Technical Field

[0001] The utility model relates to the technical field of medical appliances, and specifically relates to a hot compress bag glove. Background Art

[0002] Oxaliplatin is a commonly used chemotherapy drug in this department, and is mainly clinically applied to the chemotherapy regimens for the treatment of gastric cancer, colorectal cancer. Compared with cisplatin, oxaliplatin has mild myelosuppression, but the main side effect during treatment is dose-limiting acute and chronic neurotoxicity, which not only directly affects the quality of life of patients, but also indirectly affects the chemotherapy efficacy.

[0003] The neurotoxicity of oxaliplatin is mainly manifested as numbness at the distal extremities, paresthesia (formication, foreign body sensation and pricking sensation), or accompanied by painful spasm. Sometimes, numbness in the throat can be seen, and even acute laryngeal spasm. Usually, cold stimulation will trigger and exacerbate it.

[0004] At present, a hot compress bag is needed during medical treatment. The hot compress bag, also known as the traditional Chinese medicine hot compress method, is a kind of hot ironing therapy. With coarse salt as the medium, traditional Chinese medicines are mostly aromatic and pungent products with the functions of expelling cold and warming meridians, promoting blood circulation and dredging collaterals. The combination of traditional Chinese medicine and coarse salt can play the roles of promoting qi and activating blood circulation, dispelling cold and dampness, dredging meridians and collaterals, and reducing swelling and pain through the stimulation of heat and the penetration of drug properties. However, during the use of the existing hot compress bag, the medicine bag often exposes, resulting in poor heating and heat preservation effects. And after the patient uses it for a period of time, the temperature cannot reach the ideal state, and the medicine bag needs to be replaced again, causing cost waste and increasing the work burden of medical staff. Therefore, there is room for improvement in view of the above problems. Content of the Utility Model

[0005] The utility model provides a hot compress bag glove, which is provided with a sandwich layer capable of placing a medicine bag, so that the medicine bag can fully play the heating role, and through a heating component, the glove can be in a constant temperature state, thereby improving the heating and heat preservation effects of the glove. The specific implementation is as follows:

[0006] A hot compress bag glove includes a glove part for wrapping the palm and an arm part with an opening. A plurality of interconnected sandwich layers are formed between the arm part and the glove part. One of the sandwich layers is used for accommodating the medicine bag and is communicated with the opening of the arm part. A heating component is accommodated in one of the sandwich layers, and the heating component is arranged outside the sandwich layer with the medicine bag.

[0007] Further, the heating component includes a heating tube, the heating tube is coiled in the sandwich layer, and a left and right shunt is further arranged in the arm part and is electrically connected to the heating tube.

[0008] Further, fins are arranged on the heating tube, and the fins are arranged corresponding to the sandwich layer of the arm part for accommodating the medicine bag.

[0009] Further, a controller is provided inside the arm part, and the controller is electrically connected to the heating tube.

[0010] Further, the arm part includes an outer arm layer and an inner arm layer. The interlayer is arranged on the outer arm layer and the inner arm layer. The inner arm layer is used to accommodate the medicine bag, and the outer arm layer is used to accommodate the heating component.

[0011] Further, an arm inlet is formed in the arm part. A notch is provided in the arm part corresponding to the arm inlet. The arm inlet is bonded by an adjusting component to close the notch.

[0012] Further, the adjusting component includes a hook surface and a loop surface that are bonded to each other. The hook surface and the loop surface are respectively arranged on both sides of the notch. When the hook surface and the loop surface are in a bonded state, the notch is closed.

[0013] Further, a zipper is also provided on the arm part. The zipper is arranged at the opening of the arm part to seal the opening of the arm part.

[0014] Further, a heat preservation layer is provided on the outer arm layer. The heat preservation layer is arranged on the inner wall of the outer arm layer corresponding to the heating component.

[0015] Further, a strengthening protection layer is provided on the outer arm layer. The strengthening protection layer is arranged on the outer wall of the outer arm layer.

[0016] Due to the adoption of the above technical solutions, the beneficial technical effects of the present utility model are as follows:

[0017] 1. The present utility model is provided with an interlayer capable of placing a medicine bag, enabling the medicine bag to fully exert its heating effect, and the heating component can keep the glove in a constant temperature state, thereby improving the heating and heat preservation effect of the glove;

[0018] 2. The present utility model bonds the notch of the arm part through Velcro, enabling the arm part to be adjusted according to the thickness of the patient's arm, meeting the usage requirements of most patients, and thus improving its scope of application;

[0019] 3. The present utility model is provided with a heating component. The heating tube is controlled by a controller to be turned on or off, thereby realizing the automatic heating function of the glove. Moreover, heat-conducting fins are provided on the heating tube, enabling the heat of the heating tube to be transmitted to the human body, and further improving its heating and heat preservation effect. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1 It is a schematic structural diagram of a hot compress bag glove in a specific embodiment of the present utility model;

[0021] Figure 2 It is a partial schematic diagram of a hot compress bag glove in a specific embodiment of the present utility model;

[0022] Figure 3 This is a partial sectional view of a hot compress glove in a specific embodiment of the present utility model;

[0023] Figure 4 For the present utility model Figure 3 An enlarged view of the structure of part A.

[0024] Explanation of reference numerals in the drawings:

[0025] 1. Arm part, 2. Wrist part, 3. Glove part, 4. Inner layer of the arm, 5. Outer layer of the arm, 6. Heating tube, 7. Left and right shunt, 8. Controller, 9. Notch, 10. Hook surface, 11. Fluffy surface, 12. Zipper, 13. Plug, 14. First connecting wire, 15. Battery, 16. Second connecting wire, 17. Fins, 18. Arm inlet. Specific embodiments

[0026] The following describes the specific embodiments of the present utility model in conjunction with the drawings and embodiments:

[0027] It should be noted that the structures, ratios, sizes, etc. shown in the drawings of this specification are only used to cooperate with the content disclosed in the specification for those skilled in this technology to understand and read, and are not used to limit the limiting conditions under which the present utility model can be implemented. Any modification of the structure, change of the proportional relationship or adjustment of the size, without affecting the effects that the present utility model can produce and the purposes that can be achieved, should still fall within the scope that can be covered by the technical content disclosed in the present utility model.

[0028] At the same time, the terms such as "upper", "lower", "left", "right", "middle" and "one" cited in this specification are only for the convenience of clear narration, and are not used to limit the scope in which the present utility model can be implemented. The change or adjustment of their relative relationship, without substantial change in the technical content, should also be regarded as the scope in which the present utility model can be implemented.

[0029] Example 1, in combination with Figures 1 to 4 As shown, this embodiment provides a hot compress glove, including a glove part 3 for wrapping the palm and an arm part 1 with an opening. A plurality of interconnected interlayers are formed between the arm part 1 and the glove part 3. One of the interlayers is used to accommodate a medicine bag and is communicated with the opening of the arm part 1. One of the interlayers contains a heating component, and the heating component is arranged outside the interlayer with the medicine bag. The hot compress glove further includes a wrist part 2, and the wrist part 2 is used to connect the arm part 1 and the glove part 3. The arranged interlayers can place the medicine bag, enabling the medicine bag to fully exert its heating effect, and then the glove can be kept at a constant temperature through the heating component, thereby improving the heating and heat preservation effect of the glove.

[0030] Specifically, the heating component includes a heating tube 6, which is coiled within the interlayer. A left and right shunt 7 electrically connected to the heating tube 6 is further provided within the arm portion 1. The left and right shunt 7 is provided on the arm portion 1 to facilitate shunting. A storage battery 15 electrically connected to the heating tube 6 and a first connecting wire 14 connected to the storage battery 15 are also provided on the arm portion 1. The first connecting wire 14 extends outside the arm portion 1 and is connected to a plug 13 through a second connecting wire 16. When charging is required, the plug 13 is connected to an external socket for charging the storage battery 15. During operation, the heating tube 6 is connected to the storage battery 15, which can supply power to the heating tube 6 to enable the heating tube 6 to heat up. The generated heat is transferred from the arm portion 1 and the inner layer of the glove portion 3 to the inner layer, capable of heating and keeping warm the patient's hand and arm.

[0031] Specifically, fins 17 are provided on the heating tube 6, and the fins 17 are arranged corresponding to the interlayer of the arm portion 1 for accommodating the medicine bag. A plurality of fins 17 are provided, and the plurality of fins 17 are arranged at equal intervals along the tube direction of the heating tube 6. The fins 17 can play a good heat conduction role, enabling the heat after the heating tube 6 is heated to be quickly transferred to the inner layer material of the moxibustion glove, capable of heating and keeping warm the patient's hand and arm.

[0032] Specifically, a controller 8 is further provided within the arm portion 1, and the controller 8 is electrically connected to the heating tube 6. A temperature sensor for real-time monitoring of the heating temperature of the heating tube 6 is also provided within the arm portion 1. The temperature sensor is electrically connected to the controller 8. When the temperature reaches a certain value, the temperature sensor will feedback a signal to the controller 8, and the controller 8 controls the heating tube 6 to turn off. When the temperature drops somewhat, the controller 8 controls the heating tube 6 to turn on, thereby ensuring that the temperatures of the arm portion 1 and the glove portion 3 are always in a constant temperature state.

[0033] Specifically, the arm portion 1 includes an outer arm layer 5 and an inner arm layer 4. The interlayer is provided on the outer arm layer 5 and the inner arm layer 4. The inner arm layer 4 is used for accommodating the medicine bag, and the outer arm layer 5 is used for accommodating the heating component. The inner arm layer 4 for accommodating the medicine bag is arranged opposite to the human body, and the medicine bag can fully exert the warming effect of traditional Chinese medicine within the inner arm layer 4, with good treatment effects. The heating tube 6 of the heating component is wound around the outside of the inner arm layer 4 and arranged within the outer arm layer 5, capable of ensuring the continuous heating effect of the medicine bag.

[0034] Specifically, to facilitate the adjustment of the moxibustion glove according to the thickness of the patient's arm, an arm entrance 18 is formed on the arm portion 1. A notch 9 is provided on the arm portion 1 corresponding to the arm entrance 18. The arm entrance 18 is bonded through an adjustment assembly to close the notch 9. Thus, the usage requirements of most patients can be met, and furthermore, its applicable range can be improved.

[0035] Preferably, the adjusting component includes a hook surface 10 and a loop surface 11 that are adhesively bonded to each other. The hook surface 10 and the loop surface 11 are respectively disposed on both sides of the notch 9. When the hook surface 10 and the loop surface 11 are in an adhesively bonded state, the notch 9 is closed. The notch 9 of the arm portion 1 is bonded by the mutually bonded hook surface 10 and loop surface 11, so that the arm portion can be adjusted according to the thickness of the patient's arm, meeting the usage requirements of most patients, thereby improving its scope of application.

[0036] Specifically, a zipper 12 is further provided on the arm portion 1. The zipper 12 is disposed at the opening of the arm portion 1 to seal the opening of the arm portion 1. The opening communicates with the inner layer 4 of the arm. By providing the zipper 12 (the zipper is made of resin material), the medicine bag can be placed in the inner layer 4 of the arm to conduct heat to the human body. After the medicine bag is placed, the zipper 12 is zipped up, thereby preventing the medicine bag from leaking out and playing a good fixing role for the medicine bag.

[0037] Specifically, the outer layer 5 of the arm is provided with a heat preservation layer. The heat preservation layer is disposed on the inner wall of the outer layer 5 of the arm corresponding to the heating component. The outer layer 5 of the arm is provided with a strengthening protection layer. The strengthening protection layer is disposed on the outer wall of the outer layer 5 of the arm. The heat preservation layer is filled with heat preservation cotton and can play a heat preservation role for the arm portion 1 and the glove portion 3, preventing the temperature of the heating tube 6 and the medicine bag from dissipating. The strengthening protection layer can play a better protection role for the moxibustion bag glove.

[0038] In actual application, first, a suitable traditional Chinese medicine formula is selected according to the patient's condition to make a medicine bag. The medicine bag is placed in the position of the inner layer 4 of the arm through the opening, and the zipper 12 is zipped up to ensure that the medicine bag does not leak. Then, the heated glove is taken out and worn by the patient. The bonding position of the hook surface 10 on the loop surface 11 is adjusted according to the thickness of the patient's arm to ensure the comfort of the patient wearing the glove. The temperature of the moxibustion bag glove is monitored in real time through the temperature sensor. When the temperature drops, the temperature sensor feeds back the signal to the controller 8, and the heating tube 6 is controlled by the controller 8 to be turned on, and the heating function of the moxibustion bag glove is performed. The generated heat is transferred from the inner layers of the arm portion 1 and the glove portion 3 to the inner layer, and can heat and keep warm the patient's hand and arm.

[0039] When the patient has finished using, the external socket can be connected through the plug 13 to supply power to the storage battery 15 to ensure that the moxibustion bag glove can work normally.

[0040] Many other changes and modifications can be made without departing from the concept and scope of the present invention. It should be understood that the present invention is not limited to a specific embodiment, and the scope of the present invention is defined by the appended claims.

Claims

1. A heat-protection glove, characterized in that: It comprises a glove portion (3) for wrapping a palm, and an arm portion (1) having an opening, wherein a plurality of interconnected interlayers are formed between the arm portion (1) and the glove portion (3), wherein one of the interlayers is used to accommodate a medicine bag and is connected to the opening of the arm portion (1), and wherein one of the interlayers contains a heating component, and the heating component is arranged outside the interlayer having the medicine bag.

2. The thermal insulation glove according to claim 1, characterized in that: The heating component comprises a heating tube (6), wherein the heating tube (6) is coiled in the interlayer, and left and right flow dividers (7) electrically connected to the heating tube (6) are also arranged in the arm portion (1).

3. The thermal insulation glove according to claim 2, characterized in that: The heating tube (6) is provided with fins (17), and the fins (17) are arranged corresponding to the interlayer for accommodating the arm portion (1) of the medicine package.

4. The thermal insulation glove according to claim 2, characterized in that: A controller (8) is also provided in the arm portion (1), and the controller (8) is electrically connected to the heating tube (6).

5. The thermal insulation glove according to claim 1, characterized in that: The arm portion (1) comprises an arm outer layer (5) and an arm inner layer (4), the interlayer being arranged on the arm outer layer (5) and the arm inner layer (4), the arm inner layer (4) being used for accommodating a medicine bag, and the arm outer layer (5) being used for accommodating a heating component.

6. The thermal insulation glove according to claim 1, characterized in that: The arm portion (1) is formed with an arm entrance (18), and the arm portion (1) is provided with a notch (9) corresponding to the arm entrance (18), and the arm entrance (18) is bonded by adjusting the component to achieve closing of the notch (9).

7. The thermal insulation glove according to claim 6, characterized in that: The adjustment component comprises a hook surface (10) and a fur surface (11) that are bonded to each other. The hook surface (10) and the fur surface (11) are respectively arranged on both sides of the notch (9). When the hook surface (10) and the fur surface (11) are bonded to each other, the notch (9) is closed.

8. The thermal insulation glove according to claim 1, characterized in that: The arm portion (1) is also provided with a zipper (12), and the zipper (12) is arranged at the opening of the arm portion (1) to achieve sealing of the opening of the arm portion (1).

9. The thermal insulation glove according to claim 5, characterized in that: The outer layer (5) of the arm is provided with a heat preservation layer, and the heat preservation layer corresponds to a heating component provided on the inner wall of the outer layer (5) of the arm.

10. The thermal insulation glove according to claim 5, characterized in that: The arm outer layer (5) is provided with a reinforced protective layer, and the reinforced protective layer is provided on the outer wall of the arm outer layer (5).