Electric heating vest

The electric heating vest, with its layered design and detachable heating components, solves the problems of non-replaceable batteries and easily damaged heating elements, achieving the effects of multiple power supply compatibility and convenient cleaning, thus improving the practicality and comfort of the device.

CN223473144UActive Publication Date: 2025-10-28ARMOR ACADEMY OF CHINESE PEOPLES LIBERATION ARMY
View PDF 1 Cites 0 Cited by

Patent Information

Application Number
CN202422073100.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-26
Publication Date
2025-10-28
Estimated Expiration
2034-08-26

AI Technical Summary

Technical Problem

In existing electric heating vests, the battery is fixed and cannot be replaced with batteries of different sizes. The heating element is difficult to disassemble and may be damaged during cleaning, which reduces practicality.

Method used

It adopts a layered design, including a heat insulation layer and a heat preservation layer. The heating element is fixed to the heat insulation layer by an adhesive component and secured to the body with Velcro. The storage component can be placed in a power bank. The heating wire is connected to the connector for power supply via a telescopic rope. It supports power supplies of different sizes, and the heating element can be disassembled for cleaning.

Benefits of technology

It enables the heating element to be detached and cleaned, the heat insulation layer locks in heat, and the heat preservation layer indirectly transfers heat, avoiding direct contact with the skin, thus improving the practicality and comfort of the device. It also supports multiple power supply sizes and reduces the risk of damage to the heating element.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223473144U_ABST
    Figure CN223473144U_ABST
Patent Text Reader

Abstract

The utility model discloses an electric heating vest, and particularly relates to the technical field of electric heating, the electric heating vest comprises a coat, a storage assembly is arranged on the left chest part of the coat, the clavicle part of the coat is symmetrically sewed and connected with pasting assembly female surfaces left and right, and the rear side of the upper part of the coat is symmetrically sewed and connected with straps. The clavicle parts of the two straps are connected with sticking component sub-surfaces in a sewing mode, the middle side of the left portion of the coat is connected with a plurality of hook-and-loop fastener sub-surfaces in an up-and-down sewing mode, the middle side of the right portion of the coat is connected with a plurality of hook-and-loop fastener main surfaces in an up-and-down sewing mode, and a heating component is installed in the coat in a surrounding mode; a plurality of bonding assemblies are connected to the outer surface of the heating assembly in a sewing mode. According to the electric heating vest, the heating assembly is bonded on the heat insulation layer through the bonding assembly, the heating assembly can be rapidly detached when cleaning is needed, the whole electric heating vest is cleaned in a split mode, the heating assembly can be protected against damage, the electric heating vest can be independently cleaned, and the practicability of the electric heating vest is improved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the field of electric heating technology, and in particular to an electric heating vest. Background Technology

[0002] An electric heating vest is a garment product that uses electric heating elements to provide warmth to the wearer. It has multiple small electric heating pads or heating elements built in, which are powered by batteries or a power source to convert electrical energy into heat energy and transfer the heat to the body through the vest fabric to achieve the effect of keeping warm.

[0003] Its working principle is based on the principle of converting electrical energy into heat energy. When the heating elements are powered on, they generate heat, which is then absorbed by the vest fabric and transferred to the wearer, thus providing warmth.

[0004] Chinese Patent Publication No. CN218418510U discloses an electrically heated vest, including a vest body with a far-infrared heating film on it. The vest body also has a power input terminal for connecting to an external power source, and the power input terminal is electrically connected to the far-infrared heating film. The vest body includes a front body and a back body, with their top ends connected to each other. Each of the two sides between the front body and the back body is provided with one or more connecting straps. One end of each connecting strap is integrally formed with the back body, and the other end of each connecting strap is adjustablely detachably connected to the front body.

[0005] The above-mentioned patents still have the following defects in practice:

[0006] The device generates heat through the battery in the battery compartment. The battery is a fixed battery, which can be replaced, but only the battery specified for this device can be used. It is not possible to replace it with batteries of different sizes or external power sources. The heating element cannot be freely disassembled or installed, and cleaning may damage the element, reducing its practicality. Utility Model Content

[0007] The main purpose of this invention is to provide an electrically heated vest that can effectively solve the problem of not being warm in cold weather.

[0008] To achieve the above objectives, the technical solution adopted by this utility model is as follows:

[0009] An electrically heated vest includes an outer garment. A storage component is installed on the left chest of the outer garment. Adhesive component mother surfaces are symmetrically sewn to the left and right sides of the collarbone area of ​​the outer garment. Back straps are symmetrically sewn to the upper back side of the outer garment. Adhesive component mother surfaces are sewn to the collarbone areas of both back straps. Several Velcro surfaces are sewn to the top and bottom of the middle left side of the outer garment. Several Velcro mother surfaces are sewn to the top and bottom of the middle right side of the outer garment. A heating component is installed around the inside of the outer garment. Several adhesive components are sewn to the outer surface of the heating component.

[0010] Preferably, the outer garment includes a heat insulation layer and a thermal insulation layer, with the heat insulation layer located on the outside and the thermal insulation layer located on the inside. The inner and outer rings of the heat insulation layer and the thermal insulation layer are stitched together with a fixing component.

[0011] Preferably, the adhesive component includes an adhesive sub-face, which is sewn to the inner wall of the heat insulation layer, and the adhesive mother-face is sewn to the front of the heating component.

[0012] Preferably, the storage component includes a housing, with rectangular grooves formed on both the front and rear walls of the housing. Slide plates are fixedly connected to the inner surfaces of the two rectangular grooves. Compression springs are fitted onto the left and right sides of the inner surfaces of the two slide plates. Slider blocks are slidably connected to the middle sides of the left and right sides of the two slide plates. Four compression springs are fixedly connected to the ends of the four sliders that are far apart from each other. Arc-shaped blocks are rotatably connected between two sliders on the same side. Elastic ropes are fixedly connected to the upper middle sides of the two arc-shaped blocks that are far apart from each other. The other ends of the two elastic ropes are fixedly connected to the left and right walls of the housing, respectively.

[0013] Preferably, the heating element includes a heating wire and a telescopic rope. The heating wire is installed between the heat insulation layer and the heat preservation layer. The output end of the telescopic rope passes through the heat insulation layer and is connected to the heating wire. The input end of the telescopic rope is fixedly connected to a connector.

[0014] Preferably, the fixing component is divided into an A side and a B side, the A side being connected to the outer ring of the heat insulation layer, and the B side being connected to the outer ring of the thermal insulation layer.

[0015] Preferably, the thermal insulation layer is filled with thermal insulation material, and the heat insulation layer is filled with heat insulation material.

[0016] Compared with the prior art, the present invention has the following beneficial effects:

[0017] 1. The heating element is bonded to the insulation layer by an adhesive component. When cleaning is required, it can be quickly disassembled for separate cleaning. This not only protects the heating element from damage but also allows for individual cleaning of the device, increasing its practicality.

[0018] 2. Through the layered design of the equipment, the insulation layer can lock heat inside the equipment and also insulate against cold air from the outside, making the equipment more practical to use.

[0019] The insulation layer can prevent the heating element from coming into direct contact with the skin, and can also indirectly transfer the heat generated by the heating element to the wearer, making the device more comfortable to use. Attached Figure Description

[0020] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0021] Figure 2 This is a schematic diagram of the internal structure of the present invention;

[0022] Figure 3 This is a schematic diagram of the outer garment structure of this utility model;

[0023] Figure 4 This is a schematic diagram of the internal rear view structure of this utility model;

[0024] Figure 5 This is a schematic diagram of the storage component structure of this utility model;

[0025] Figure 6 This is a schematic diagram of the heating component structure of this utility model.

[0026] In the diagram: 1. Outer garment; 2. Storage component; 3. Adhesive component; 4. Shoulder strap; 5. Velcro; 6. Heating component; 7. Adhesive component; 8. Fixing component; 11. Insulation layer; 12. Thermal insulation layer; 21. Outer shell; 22. Elastic rope; 23. Arc-shaped block; 24. Slide board; 25. Slider; 26. Pressure spring; 61. Heating wire; 62. Telescopic rope; 63. Connector; 71. Adhesive sub-surface; 72. Adhesive female-side. Detailed Implementation

[0027] To make the technical means, creative features, objectives and effects of this utility model easier to understand, the present utility model will be further described below in conjunction with specific embodiments.

[0028] like Figure 1 , Figure 2 and Figure 3As shown, an electrically heated vest includes an outer garment 1. A storage component 2 is installed on the left chest of the outer garment 1. The outer garment 1 has adhesive component 3 mother surfaces symmetrically sewn to the left and right sides of the collarbone area. The upper back side of the outer garment 1 has shoulder straps symmetrically sewn to the back side. Both shoulder straps 4 have adhesive component 3 daughter surfaces sewn to the collarbone area. The middle left side of the outer garment 1 has several Velcro 5 daughter surfaces sewn to the top and bottom. The middle right side of the outer garment 1 has several Velcro 5 mother surfaces sewn to the top and bottom. A heating component 6 is installed around the inside of the outer garment 1. Several adhesive components 7 are sewn to the outer surface of the heating component 6.

[0029] The outer garment 1 includes a heat insulation layer 11 and a heat insulation layer 12. The heat insulation layer 11 is located on the outside and the heat insulation layer 12 is located on the inside. The inner and outer rings of the heat insulation layer 11 and the heat insulation layer 12 are sewn together with a fixing component 8.

[0030] The adhesive component 7 includes an adhesive sub-surface 71, which is sewn to the inner wall of the heat insulation layer 11, and an adhesive mother-surface 72, which is sewn to the front of the heating component 6.

[0031] The fixing component 8 is divided into side A and side B. Side A is connected to the outer ring of the heat insulation layer 11, and side B is connected to the outer ring of the heat insulation layer 12.

[0032] The insulation layer 12 is filled with insulation material, and the heat insulation layer 11 is filled with heat insulation material.

[0033] This device requires a power bank before use.

[0034] In the above process, after the user puts on the device, it is powered by a power bank. The device is then fixed to the body by Velcro 5. The power bank is placed in the storage component 2 to power the heating component 6 and generate heat, thereby converting electrical energy into heat energy. The heat insulation layer 11 can lock the heat inside and prevent air leakage from causing heat loss. The heat insulation layer 12 can transfer heat to the wearer and prevent the heating component 6 from directly contacting the user's skin, thus avoiding the risk of burns. It can also make the user more comfortable when wearing the device.

[0035] In the above, the adhesive component 7 adheres the heating component 6 to the inner wall of the insulation layer 11, and the fixing component 8 adheres the insulation layer 11 and the heat preservation layer 12 together, which facilitates installation and separation. When in use, they are adhered together. When cleaning is required, the connection between the insulation layer 11 and the heat preservation layer 12 can be separated first, and then the connection between the heating component 6 and the insulation layer 11 can be removed, which is convenient for direct cleaning without worrying about damage to the heating component 6, thus increasing the practicality of the equipment.

[0036] In the above, the adhesive component 3 attaches the shoulder strap 4 to the collarbone area of ​​the heat insulation layer 11, which facilitates better separation of the heat insulation layer 11 and the heat preservation layer 12 during cleaning, reducing the complexity of the equipment.

[0037] The insulation material mentioned above can be foamed plastic, which has good thermal insulation properties, is soft in texture, and will not cause harm to the human body.

[0038] Thermal insulation materials can be aerogel fibers, which have extremely high porosity, low density and excellent thermal insulation properties.

[0039] Furthermore, to prevent the portable power bank from swaying during wearer movement, please refer to... Figure 5 The storage component 2 includes a housing 21. Rectangular grooves are provided on the front and rear walls of the housing 21. Slide plates 24 are fixedly connected to the inner surfaces of the two rectangular grooves. Pressure springs 26 are fitted on the left and right sides of the inner surfaces of the two slide plates 24. Slider blocks 25 are slidably connected to the middle sides of the left and right sides of the two slide plates 24. The four pressure springs 26 are fixedly connected to the four sliders 25 at their respective ends. Arc blocks 23 are rotatably connected between the two sliders 25 on the same side. Elastic ropes 22 are fixedly connected to the middle upper sides of the two arc blocks 23 at their respective ends. The other ends of the two elastic ropes 22 are fixedly connected to the left and right walls of the housing 21, respectively.

[0040] In the above process, when the power bank is placed in the outer casing 21, the arc-shaped block 23 will rotate downwards to a vertical position under the action of gravity. The arc-shaped block 23 will continue to move to both sides, driving the pressure spring 26 to generate pressure, thereby clamping the power bank and preventing it from shaking. This allows the device to store power banks of different sizes, increasing the device's practicality.

[0041] In the above, the elastic cord 22 can keep the arc-shaped block 23 facing upwards. When the power bank is inserted, the arc-shaped block 23 rotates and pulls the elastic cord 22 to generate a pulling force. As a result, when the power bank is taken out, the elastic cord 22 will pull the arc-shaped block 23 to rotate upwards.

[0042] For details on how the heating component 6 is powered and generates heat, please refer to [link / reference]. Figure 6 The heating component 6 includes a heating wire 61 and a telescopic rope 62. The heating wire 61 is installed between the heat insulation layer 11 and the heat preservation layer 12. The output end of the telescopic rope 62 passes through the heat insulation layer 11 and is connected to the heating wire 61. The input end of the telescopic rope 62 is fixedly connected to a connector 63.

[0043] In the above process, electrical energy is transmitted to the heating wire 61 through the connector 63 via the telescopic rope 62, causing the heating wire 61 to generate heat energy, which in turn generates heat for the equipment.

[0044] In the above process, electrical energy is transmitted to the heating wire 61 through the connector 63 via the telescopic rope 62, causing the heating wire 61 to generate heat energy, which in turn generates heat for the equipment.

[0045] As described above, the telescopic rope 62 can be freely stretched and contracted. When not in use, it will automatically contract, and when needed, it will be stretched so that the connector 63 can be inserted into the power bank.

[0046] In the above, the heating wire 61 is in the form of a conductive wire and is evenly distributed in key parts of the vest, such as the back and chest. It can also be designed according to ergonomic principles to ensure that heat can be evenly distributed throughout the vest.

[0047] In the above, the heating wire 61 can be a carbon fiber heating wire, which is a high-performance heating material with advantages such as high heating efficiency and long service life. It is made using advanced carbon fiber technology, which can generate a large amount of heat at a relatively low voltage, and has good high-temperature resistance and stability.

[0048] As described above, connector 63 can be designed according to the usage, such as a USB interface and a TC port.

[0049] It should be noted that the specific installation method, circuit connection method, and control method of the heating wire 61 used in this utility model are all conventional designs, and will not be described in detail in this utility model.

[0050] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claims. The scope of protection of this utility model is defined by the appended claims and their equivalents.

Claims

1. An electrically heated vest, comprising an outer garment (1), characterized in that: The outer garment (1) has a storage component (2) installed on the left chest. The outer garment (1) has adhesive component (3) mother surfaces sewn symmetrically to the left and right sides of the collarbone area. The outer garment (1) has shoulder straps (4) sewn symmetrically to the upper back side. Both shoulder straps (4) have adhesive component (3) daughter surfaces sewn to the collarbone area. The outer garment (1) has several Velcro (5) daughter surfaces sewn vertically to the middle left side. The outer garment (1) has several Velcro (5) mother surfaces sewn vertically to the middle right side. The outer garment (1) has a heating component (6) installed around the inside. The heating component (6) has several adhesive components (7) sewn to the outer surface of the outer surface.

2. The electrically heated vest according to claim 1, characterized in that: The outer garment (1) includes a heat insulation layer (11) and a heat insulation layer (12). The heat insulation layer (11) is located on the outside and the heat insulation layer (12) is located on the inside. The inner and outer rings of the heat insulation layer (11) and the heat insulation layer (12) are sewn together with a fixing component (8).

3. The electrically heated vest according to claim 2, characterized in that: The adhesive assembly (7) includes an adhesive sub-surface (71) and an adhesive mother-surface (72). The adhesive sub-surface (71) is stitched to the inner wall of the heat insulation layer (11), and the adhesive mother-surface (72) is stitched to the front of the heating assembly (6).

4. The electrically heated vest according to claim 1, characterized in that: The storage component (2) includes a housing (21). The front and rear walls of the housing (21) are provided with rectangular grooves. Slide plates (24) are fixedly connected to the inner surfaces of the two rectangular grooves. Pressure springs (26) are sleeved on the left and right sides of the inner surfaces of the two slide plates (24). Slider blocks (25) are slidably connected to the middle sides of the left and right sides of the two slide plates (24). The four pressure springs (26) are fixedly connected to the ends of the four sliders (25) that are far apart from each other. Arc blocks (23) are rotatably connected between the two sliders (25) on the same side. Elastic ropes (22) are fixedly connected to the middle sides of the upper part of the two arc blocks (23) that are far apart from each other. The other ends of the two elastic ropes (22) are fixedly connected to the left and right walls of the housing (21) respectively.

5. An electrically heated vest according to claim 1, characterized in that: The heating component (6) includes a heating wire (61) and a telescopic rope (62). The heating wire (61) is installed between the heat insulation layer (11) and the heat preservation layer (12). The output end of the telescopic rope (62) passes through the heat insulation layer (11) and is connected to the heating wire (61). The input end of the telescopic rope (62) is fixedly connected to a connector (63).

6. The electrically heated vest according to claim 2, characterized in that: The fixing component (8) is divided into an A side and a B side. The A side is connected to the outer ring of the heat insulation layer (11), and the B side is connected to the outer ring of the heat insulation layer (12).

7. An electrically heated vest according to claim 2, characterized in that: The insulation layer (12) is filled with insulation material, and the heat insulation layer (11) is filled with heat insulation material.

Citation Information

Patent Citations

  • Electric heating vest

    CN218418510U