Outdoor jacket convenient to heat and adjust

By combining graphene heating elements, flexible solar films, and ventilation components, the problem of temperature regulation in outdoor environments has been solved, enabling autonomous temperature control and improving the comfort of outdoor activities.

CN224206221UActive Publication Date: 2026-05-08JIHUA 3502 PROFESSIONAL GARMENT
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
JIHUA 3502 PROFESSIONAL GARMENT
Filing Date
2025-05-30
Publication Date
2026-05-08

AI Technical Summary

Technical Problem

Existing outdoor jackets lack temperature regulation functions and cannot effectively regulate internal temperature in outdoor environments.

Method used

By combining graphene heating elements, flexible solar films, and ventilation components with a charger, the system achieves autonomous temperature regulation through heating with graphene heating elements, charging with flexible solar films, and temperature regulation with ventilation components.

Benefits of technology

It enables autonomous temperature regulation of the jacket's interior in outdoor environments, adapting to different climatic conditions and providing heating or cooling functions, thus improving the comfort of outdoor activities.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224206221U_ABST
Patent Text Reader

Abstract

The utility model relates to an outdoor jacket facilitating heating adjustment. The outdoor jacket comprises a jacket body, a graphene heating piece arranged on the inner side of a rear piece of the jacket body, a flexible solar film arranged on the outer side of the rear piece of the jacket body, a ventilation assembly arranged on the lower side of the rear piece of the jacket body and a charger arranged in a storage bag of a front piece of the jacket body. The graphene heating sheet, the flexible solar thin film and the ventilation assembly are all connected with the charger; when the external environment temperature is low, the temperature adjusting switch is turned on to heat the interior of the outdoor jacket; when the human body feels hot, the fan and the left and right ventilation windows are turned on to cool the inside of the outdoor jacket; when the charger is out of power, solar energy is converted into electric energy through the flexible solar thin film to charge the charger, then power is supplied to the graphene heating piece and the fan, a user can adjust the internal temperature of the outdoor jacket according to self body feeling, and the outdoor jacket is suitable for being worn in an outdoor exploration environment and a dry and cold environment.
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Description

Technical Field

[0001] This utility model relates to a windproof jacket that is easy to heat and adjust, belonging to the field of clothing technology. Background Technology

[0002] A waterproof jacket is an essential piece of equipment for outdoor sports. Currently, most waterproof jackets have relatively limited functionality, offering only basic waterproof and windproof features. The waterproof feature effectively blocks rain and snow, preventing water from seeping into the garment and causing the user to feel damp and cold. The windproof feature prevents wind chill, stopping wind from entering the jacket and blowing away warm air from the body in various outdoor environments. However, most waterproof jackets are used in outdoor adventure environments, where dry, cold, and complex conditions mean that basic functions are insufficient for outdoor activities. Furthermore, there is a lack of waterproof jackets that can regulate internal temperature.

[0003] Chinese utility model patent CN206880106U discloses a novel type of rain jacket. The jacket features a flexible solar panel on the back, with a fluorescent strip on the outside and a reflective strip on the outside of the fluorescent strip. An adhesive layer, comprising an adhesive fleece layer and an adhesive hook layer, is provided between the jacket and the flexible solar panel. Shoulder pockets are located at the sleeves, housing a flexible battery with a power switch at its front end. The jacket contains a first and a second heating element. The first heating element is rectangular and positioned at the back of the jacket; the second heating element is I-shaped and positioned at the waist. While this design provides heating, it lacks ventilation and cooling properties. Utility Model Content

[0004] The technical problem to be solved by this utility model is to provide a rain jacket that regulates the internal environment of the rain jacket.

[0005] The present invention adopts the following technical solution:

[0006] This utility model of a heat-adjustable jacket includes a jacket body, a graphene heating element disposed on the inner side of the back panel of the jacket body, a flexible solar film disposed on the outer side of the back panel of the jacket body, a ventilation component disposed on the lower side of the back panel of the jacket body, and a charger disposed in the storage pocket of the front panel of the jacket body; the graphene heating element, the flexible solar film, and the ventilation component are all connected to the charger.

[0007] This utility model's graphene heating element includes a graphene heating layer, a polyester plain weave fabric heat-locking layer A disposed on the upper side of the graphene heating layer, and a polyester plain weave fabric heat-locking layer B disposed on the lower side of the graphene heating layer. The graphene heating layer includes graphene heating strips longitudinally spaced on a hot melt adhesive film, three copper foil electrodes A transversely spaced on the graphene heating strips, and a power cord. The power cord is fixed to the ends of any two copper foil electrodes A. The other ends of the three copper foil electrodes A are connected to copper foil electrodes B parallel to the graphene heating strips. One end of the power cord is connected to a charger. A temperature adjustment switch is provided on the power cord, and the charger supplies power to the graphene heating strips.

[0008] The present invention has a graphene coating on the outer side of polyester plain weave fabric heat-locking layer A and the inner side of polyester plain weave fabric heat-locking layer B, and a silver film coating on the outer side of polyester plain weave fabric heat-locking layer B.

[0009] The ventilation component of this utility model includes a left ventilation window located on the left side of the garment body, a right ventilation window located on the right side of the garment body, and a fan located on the lower rear side of the garment body. The fan's wire is connected to a charger to power the fan. The left ventilation window extends from the left armpit to the hem, and the right ventilation window is located under the right armpit. Zippers are installed on both the left and right ventilation windows.

[0010] The flexible solar film of this invention has an air hole on the back of the garment body, through which the wires of the flexible solar film pass and connect to the charger.

[0011] Both the left and right ventilation windows of this utility model are made of water-swellable materials, and expansion vents are provided on the left and right ventilation windows.

[0012] The charger of this utility model is a Xiaomi 10000mAh power bank.

[0013] The storage bag of this utility model is located on the lower inner side of the front panel.

[0014] The positive effects of this utility model are as follows: The charger of this utility model charges the graphene heating element. When the external ambient temperature is low, the temperature adjustment switch is turned on to heat the inside of the jacket. When the body feels hot, the fan and left and right ventilation windows are turned on to cool the inside of the jacket. When the charger runs out of power, the flexible solar film converts solar energy into electrical energy to charge the charger, and then powers the graphene heating element and the fan. This allows users to adjust the internal temperature of the jacket according to their own body temperature, making it suitable for wearing in outdoor adventure environments and dry and cold environments. Attached Figure Description

[0015] Appendix Figure 1 This is a schematic diagram of the internal structure of the rain jacket of this utility model;

[0016] Appendix Figure 2This is a schematic diagram of the back structure of the windbreaker of this utility model;

[0017] Appendix Figure 3 This is a schematic diagram of the component assembly structure of the graphene heating element of this utility model;

[0018] Appendix Figure 4 This is a schematic diagram of the ventilation window structure of this utility model;

[0019] Appendix Figure 5 This is a circuit block diagram of the present invention.

[0020] In the attached diagram: 1. Clothing body; 2. Graphene heating element; 21. Polyester plain weave fabric heat-locking layer A; 22. Polyester plain weave fabric heat-locking layer B; 23. Graphene heating strip; 24. Copper foil electrode A; 25. Power cord; 26. Copper foil electrode B; 27. Graphene coating; 28. Temperature adjustment switch; 29. ​​Hot melt adhesive film; 3. Flexible solar film; 4. Storage bag; 51. Left ventilation window; 52. Right ventilation window; 53. Fan; 6. Zipper; 7. Charger; 8. Air vent. Detailed Implementation

[0021] The following will refer to the appendix. Figure 1-4 This utility model will be described in detail below.

[0022] Example 1:

[0023] As attached Figure 1 , 2 As shown in Figure 5, this utility model discloses a heat-adjustable windbreaker, comprising a garment body 1, a graphene heating element 2 disposed on the inner side of the back panel of the garment body 1, a flexible solar film 3 disposed on the outer side of the back panel of the garment body 1, a ventilation component disposed on the lower side of the back panel of the garment body 1, and a charger 7 disposed in a storage pocket 4 on the front panel of the garment body 1. Specifically, the graphene heating element 2 and the flexible solar film 3 are sewn onto the back panel of the garment body 1, and the seams are covered with heat-sealing tape using a heat-sealing machine. The graphene heating element 2, the flexible solar film 3, and the ventilation component are all connected to the charger 7, which is a Xiaomi 10000mAh power bank, or other portable power banks of other models or brands. The storage pocket 4 is disposed on the lower inner side of the front panel. The opening of the storage pocket 4 is equipped with Velcro, buttons, or snap fasteners to effectively prevent the power bank from falling out of the storage pocket during outdoor activities. The flexible solar film 3 is connected to the charger 7 via a wire to store electricity for the charger 7, and a control switch is installed on the wire to control the solar film 3. Specifically, an air vent 8 is located on the back panel of the garment body 1, inside the flexible solar film 3. The wires of the flexible solar film 3 pass through the air vent 8 and connect to the charger 7. Because the air vent 8 is located inside the flexible solar film 3, it prevents air leakage and provides warmth.

[0024] As attached Figure 3As shown, the graphene heating element 2 of this utility model includes a graphene heating layer, a polyester plain weave fabric heat-locking layer A21 disposed on the upper side of the graphene heating layer, and a polyester plain weave fabric heat-locking layer B22 disposed on the lower side of the graphene heating layer. The graphene heating layer includes graphene heating strips 23 longitudinally spaced on a hot melt adhesive film 29, three copper foil electrodes A24 transversely spaced on the graphene heating strips 23, and a power line 25. The hot melt adhesive film 29 is a PES hot melt adhesive film, which bonds the polyester plain weave fabric heat-locking layer A21 and the polyester plain weave fabric heat-locking layer B22. The power line 25 is connected to any two of the graphene heating strips 21 and B22. The copper foil electrode A24 is fixed at one end; the other ends of the three copper foil electrodes A24 are connected to copper foil electrodes B26 parallel to the graphene heating strip 23, and the other end of the power cord 25 is connected to the charger 7; a temperature adjustment switch 28 is set on the power cord 25, and the charger supplies power to the graphene heating strip 23; the temperature adjustment switch 28 has three settings: high, medium, and low; the outer side of the polyester plain weave heat-locking layer A21 and the inner side of the polyester plain weave heat-locking layer B22 are coated with a graphene coating 27, i.e., facing the body when wearing the jacket; a silver film coating is coated on the outer side of the polyester plain weave heat-locking layer B22, i.e., facing the flexible solar film 3. The polyester plain weave heat-locking layers A21 and B22 allow the heat generated by the graphene heating strip 23 to be released into the body of the garment, while the polyester plain weave heat-locking layer B22 blocks the heat from being released to the outside, greatly increasing the heat preservation efficiency.

[0025] Example 2:

[0026] This implementation case is a further improvement based on Implementation Case 1: as shown in the appendix. Figure 2 , 4 As shown, the ventilation component of this utility model includes a left ventilation window 51 located on the left side of the garment body 1, a right ventilation window 52 located on the right side of the garment body 1, and a fan 53 located on the lower rear side of the garment body 1. The fan 53 is powered by a wire connected to a charger 7. A switch is installed on the fan 53 wire to control the start and stop of the fan 53. The left ventilation window 51 extends from the left armpit to the hem, and the right ventilation window 52 is located under the right armpit. A wire channel is provided below the right ventilation window 52, ​​through which each wire passes and is connected to a power bank. Zippers 6 are installed on both the left and right ventilation windows 51 and 52. Both the left and right ventilation windows 51 and 52 are made of water-swellable material 54, and expansion vents 55 are provided on both the left and right ventilation windows 51 and 52. The water-swellable material 54 is a layer of PPy@MXene coating coated on nylon plain weave fabric. The power bank 7 supplies power to the fan 53 so that the fan 53 can operate normally. When the fan 53 is working, the zipper 6 is opened to open the left ventilation window 51 and the right ventilation window 52. When the temperature inside the jacket rises and the body feels hot, the body's sweat causes the expansion pores 55 on the water-swellable material 54 to absorb the moisture inside the jacket, so that the water-swellable material 54 expands and communicates with the outside to dissipate heat and make the body comfortable.

[0027] This utility model's power bank charges the graphene heating element 2. When the external ambient temperature is low, the temperature adjustment switch is turned on to heat the inside of the jacket. When the user feels hot, the fan 53 and the left and right ventilation windows are turned on to cool the inside of the jacket. When the power bank runs out of power, the flexible solar film 3 set on the outside of the jacket body 1 converts solar energy into electrical energy to charge the power bank, and then supplies power to the graphene heating element 2 and the fan 53. This allows the user to adjust the temperature inside the jacket according to their own body temperature, making it suitable for wearing in outdoor adventure environments and dry and cold environments.

[0028] The above description is merely an embodiment of this utility model, but it does not limit this utility model. Any application of the specification and other contents of this utility model, directly or indirectly, to other technical fields, as long as they are included within the scope of the claims of this utility model, is protected.

Claims

1. A waterproof jacket with easy heating adjustment, characterized in that, It includes a clothing body (1), a graphene heating element (2) disposed on the inner side of the back panel of the clothing body (1), a flexible solar film (3) disposed on the outer side of the back panel of the clothing body (1), a ventilation component disposed on the lower side of the back panel of the clothing body (1), and a charger disposed in the storage pocket (4) of the front panel of the clothing body (1); the graphene heating element (2), the flexible solar film (3) and the ventilation component are all connected to the charger (7).

2. The waterproof jacket with easy heating adjustment according to claim 1, characterized in that, The graphene heating element (2) includes a graphene heating layer, a polyester plain weave heat-locking layer A (21) disposed on the upper side of the graphene heating layer, and a polyester plain weave heat-locking layer B (22) disposed on the lower side of the graphene heating layer. The graphene heating layer includes graphene heating strips (23) arranged longitudinally on a hot melt adhesive film (29), three copper foil electrodes A (24) arranged laterally on the graphene heating strips (23), and a power line (25). The power line (25) is fixed to the ends of any two copper foil electrodes A (24). The other ends of the three copper foil electrodes A (24) are connected to copper foil electrodes B (26) parallel to the graphene heating strips (23). The other end of the power line (25) is connected to a charger (7). A temperature adjustment switch (28) is provided on the power line (25), and the charger (7) supplies power to the graphene heating strips (23).

3. A heat-adjustable rain jacket according to claim 2, characterized in that, A graphene coating (27) is applied to the outer side of the polyester plain weave heat-locking layer A (21) and the inner side of the polyester plain weave heat-locking layer B (22), and a silver film coating is applied to the outer side of the polyester plain weave heat-locking layer B (22).

4. A heat-adjustable rain jacket according to claim 2, characterized in that, The ventilation assembly includes a left ventilation window (51) located on the left side of the garment body (1), a right ventilation window (52) located on the right side of the garment body (1), and a fan (53) located on the lower rear side of the garment body (1). The wire of the fan (53) is connected to a charger (7) to power the fan (53). The left ventilation window (51) extends from the left armpit to the hem, and the right ventilation window (52) is located under the right armpit. Zippers (6) are installed on both the left ventilation window (51) and the right ventilation window (52).

5. A heat-adjustable rain jacket according to claim 1, characterized in that, An air hole (8) is provided on the back piece of the garment body (1) inside the flexible solar film (3). The wires of the flexible solar film (3) pass through the air hole (8) and are connected to the charger (7).

6. A heat-adjustable rain jacket according to claim 4, characterized in that, The left ventilation window (51) and the right ventilation window (52) are both made of water-swellable material (54), and expansion vents (55) are provided on the left ventilation window (51) and the right ventilation window (52).

7. A heat-adjustable rain jacket according to claim 1, characterized in that, The charger (7) is a Xiaomi 10000mAh power bank.

8. A heat-adjustable rain jacket according to claim 1, characterized in that, The storage bag (4) is located on the lower inner side of the front panel.

Citation Information

Patent Citations

  • Novel windproof jacket

    CN206880106U