Memory foam heating cushion body and memory foam heating seat cushion
The integration of thermal gel and a coiled heating component in memory foam cushions addresses thermal conductivity and breathability issues, offering adaptable temperature regulation and safety features for enhanced user comfort.
Patent Information
- Application Number
- US18/425861
- Authority / Receiving Office
- US · United States
- Patent Type
- Applications(United States)
- Current Assignee / Owner
- Filing Date
- 2024-03-01
- Publication Date
- 2025-09-04
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
Memory foam products suffer from poor thermal conductivity and breathability, leading to discomfort in varying weather conditions, and existing solutions either fail to regulate temperature effectively or compromise user safety.
A memory foam cushion body incorporating thermal gel with a heating component coiled in a PWM wavy structure, allowing for temperature regulation through thermal conductivity and safety isolation, featuring adjustable control and display.
The structure provides adaptable temperature control, enhancing user comfort in diverse weather conditions while ensuring safety by isolating the heating component, and improving durability and connection strength.
Smart Images

Figure US20250275634A1-D00000_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present disclosure relates to the technical field of cushion bodies, and in particular, to a memory foam heating cushion body and a memory foam heating seat cushion.BACKGROUND
[0002] For comfort and safety, cushion bodies are widely used in people's daily lives, such as mattresses, seat cushions, and back cushions. These cushion bodies are usually covered with cloth or leather and filled with sponge, cotton, or down feather. Memory foam can maintain a fixed shape due to its slow recovery characteristic, so that the cushion body can continue to abut against the human body. Memory foam cushion bodies are particularly popular.
[0003] However, memory foam products on the current market commonly have following problems. Due to a compact structure, poor thermal conductivity, and poor breathability, the memory foam easily accumulates heat. Especially in summer, when high temperature weather persists, if the memory foam product is used, a user has a poor experience because of the poor thermal conductivity and the poor breathability of the memory foam. To achieve a cool user experience, a gel sheet is directly arranged on a surface of some products. However, these products will reduce the body temperature of the user too fast when the weather is cold, and the user feels cold in the body. The user experience is poor.
[0004] Therefore, the present disclosure provides a memory foam cushion body and a memory foam seat cushion, which can effectively solve the above problems and achieve a simple structure and high adaptability.SUMMARY
[0005] In order to overcome the shortcomings of the prior art, the present disclosure provides a memory foam cushion body. The memory foam cushion body has a simple structure and high adaptability.
[0006] The present disclosure provides a memory foam heating cushion body, including:
[0007] a memory foam main body, wherein the memory foam main body has an upper surface and a lower surface;
[0008] thermal gel, wherein the thermal gel is at least partially covered at the upper surface of the memory foam main body; and
[0009] a heating component, wherein the heating component is arranged between the thermal gel and the memory foam main body.
[0010] As the improvement of the present disclosure, the thermal gel has a connecting surface connected to the memory foam main body and a contact surface configured to be in contact with a user; the heating component is uniformly distributed between the connecting surface and the memory foam main body; and a region where the heating component is located corresponds to a region where the contact surface is located.
[0011] As the improvement of the present disclosure, the heating component is filamentous and is coiled in a reciprocating in the thermal gel to form a similar pulse width modulation (PWM) wavy structure; and a distance between two adjacent sections of the heating component is roughly the same.
[0012] As the improvement of the present disclosure, the heating component includes a plurality of heating wires, and a distance between two adjacent heating wires is roughly the same.
[0013] As the improvement of the present disclosure, protruding massage parts are distributed on a surface of the contact surface.
[0014] As the improvement of the present disclosure, the heating component is one or more of an alloy wire, a resistance wire, a carbon fiber, and graphene.
[0015] As the improvement of the present disclosure, the memory foam heating cushion body further includes a heating control panel, wherein the memory foam main body is provided with an accommodating slot; and the heating control panel is threaded out of the accommodating slot and is electrically connected to the heating component through an electrical connecting wire.
[0016] As the improvement of the present disclosure, the memory foam heating cushion body further includes an adjustment button, wherein the adjustment button is connected to the heating control panel; and the adjustment button is configured to be pressed by the user to generate an electrical signal transmitted to the heating control panel.
[0017] As the improvement of the present disclosure, the memory foam heating cushion body further includes a display device, wherein the display device is arranged on one side of the heating control panel facing away from the accommodating slot and is electrically connected to the heating control panel; and the display device is configured to display a working state of the heating component.
[0018] As the improvement of the present disclosure, the memory foam heating cushion body further includes an electrical connector, wherein the electrical connector is arranged in the accommodating slot; a connecting end of the electrical connector is electrically connected to the heating control panel; and a free end of the electrical connector is configured to be connected to an external power supply.
[0019] The present disclosure has the following beneficial effects. Through the arrangement of the above structure, when the heating component does not work, the lower surface of the memory foam main body is placed on a supporting plane, and a user sits or lies on the thermal gel. The thermal gel has high thermal conductivity, which can effectively transfer heat, so that the user feels cool. When the heating component works, heat generated by the heating component can be effectively transferred to the user through the conduction of the thermal gel, which can warm the user. Through the cooperation between the thermal gel and the heating component, the memory foam heating cushion body can be applied to more use scenarios. In hot weather, the user feels cooler. In cold weather, the user can be warmed. Moreover, the heating component is arranged between the thermal gel and the memory foam main body, which can isolate the heating component from the user and the memory foam main body, prevent the heating component from being in direct contact with the user and scalding the user, and improve the use safety of the product.
[0020] The present disclosure also provides a memory foam heating seat cushion, including:
[0021] a memory foam main body, wherein the memory foam main body has an upper surface and a lower surface, and the upper surface of the memory foam main body is provided with a connecting slot;
[0022] thermal gel, wherein the thermal gel is inserted into the connecting slot and is at least partially covered at the upper surface of the memory foam main body; and
[0023] a heating component, wherein the heating component is arranged between the thermal gel and the memory foam main body.
[0024] As the improvement of the present disclosure, the thermal gel has a connecting surface connected to the memory foam main body and a contact surface configured to be in contact with a user; the heating component is uniformly distributed between the connecting surface and the memory foam main body; a region where the heating component is located corresponds to a region where the contact surface is located; and the contact surface is matched with the upper surface of the memory foam main body.
[0025] As the improvement of the present disclosure, the heating component is filamentous and is coiled in a reciprocating in the thermal gel to form a similar PWM wavy structure; and a distance between two adjacent sections of the heating component is roughly the same.
[0026] As the improvement of the present disclosure, the heating component includes a plurality of heating wires, and a distance between two adjacent heating wires is roughly the same.
[0027] As the improvement of the present disclosure, protruding massage parts are distributed on a surface of the contact surface.
[0028] As the improvement of the present disclosure, the heating component is one or more of an alloy wire, a resistance wire, a carbon fiber, and graphene.
[0029] As the improvement of the present disclosure, the memory foam heating seat cushion further includes a heating control panel, wherein the memory foam main body is provided with an accommodating slot; and the heating control panel is threaded out of the accommodating slot and is electrically connected to the heating component through an electrical connecting wire.
[0030] As the improvement of the present disclosure, the memory foam heating seat cushion further includes an adjustment button, wherein the adjustment button is connected to the heating control panel; and the adjustment button is configured to be pressed by the user to generate an electrical signal transmitted to the heating control panel.
[0031] As the improvement of the present disclosure, the memory foam heating seat cushion further includes a display device, wherein the display device is arranged on one side of the heating control panel facing away from the accommodating slot and is electrically connected to the heating control panel; and the display device is configured to display a working state of the heating component.
[0032] As the improvement of the present disclosure, the memory foam heating seat cushion further includes an electrical connector, wherein a connecting end of the electrical connector is electrically connected to the heating control panel; and a free end of the electrical connector is configured to be connected to an external power supply.
[0033] The present disclosure has the following beneficial effects. Through the arrangement of the above structure, when the heating component does not work, the lower surface of the memory foam main body is placed on a supporting plane, and a user sits or lies on the thermal gel. The thermal gel has high thermal conductivity, which can effectively transfer heat, so that the user feels cool. When the heating component works, heat generated by the heating component can be effectively transferred to the user through the conduction of the thermal gel, which can warm the user. Through the cooperation between the thermal gel and the heating component, the memory foam heating cushion body can be applied to more use scenarios. In hot weather, the user feels cooler. In cold weather, the user can be warmed. Moreover, the heating component is arranged between the thermal gel and the memory foam main body, which can isolate the heating component from the user and the memory foam main body, prevent the heating component from being in direct contact with the user and scalding the user, and improve the use safety of the product. Furthermore, the thermal gel is embedded into the connecting slot, which can improve the connection strength of the product and make the product firmer and more durable.BRIEF DESCRIPTION OF THE DRAWINGS
[0034] In order to explain the technical solutions of the embodiments of the present disclosure more clearly, the following will briefly introduce the accompanying drawings used in the embodiments. The drawings in the following description are only some embodiments of the present disclosure. Those of ordinary skill in the art can obtain other drawings based on these drawings without creative work.
[0035] The present disclosure is further described below in detail in combination with the accompanying drawings and embodiments.
[0036] FIG. 1 is a schematic diagram of an entire structure of the present disclosure;
[0037] FIG. 2 is a structural exploded diagram of the present disclosure in an angle;
[0038] FIG. 3 is a structural exploded diagram of the present disclosure in another angle;
[0039] FIG. 4 is a schematic diagram of a cross-sectional structure according to the present disclosure;
[0040] FIG. 5 is an enlarged view of circle A in FIG. 4;
[0041] FIG. 6 is a schematic diagram of an implementation of a heating component according to the present disclosure; and
[0042] FIG. 7 is a schematic diagram of another implementation of a heating component according to the present disclosure.DETAILED DESCRIPTION OF THE EMBODIMENTS
[0043] Referring to FIG. 1 to FIG. 7, a memory foam heating cushion body includes:
[0044] a memory foam main body 10, wherein the memory foam main body 10 has an upper surface and a lower surface;
[0045] thermal gel 20, wherein the thermal gel 20 is at least partially covered at the upper surface of the memory foam main body 10; and
[0046] a heating component 30, wherein the heating component 30 is arranged between the thermal gel 20 and the memory foam main body 10.
[0047] Through the arrangement of the above structure, when the heating component 30 does not work, the lower surface of the memory foam main body 10 is placed on a supporting plane, and a user sits or lies on the thermal gel 20. The thermal gel 20 has high thermal conductivity, which can effectively transfer heat, so that the user feels cool. When the heating component 30 works, heat generated by the heating component 30 can be effectively transferred to the user through the conduction of the thermal gel 20, which can warm the user. Through the cooperation between the thermal gel 20 and the heating component 30, the memory foam heating cushion body can be applied to more use scenarios. In hot weather, the user feels cooler. In cold weather, the user can be warmed. Moreover, the heating component 30 is arranged between the thermal gel 20 and the memory foam main body 10, which can isolate the heating component 30 from the user and the memory foam main body 10, prevent the heating component 30 from being in direct contact with the user and scalding the user, and improve the use safety of the product.
[0048] In this embodiment, the thermal gel 20 has a connecting surface 20a connected to the memory foam main body 10 and a contact surface 20b configured to be in contact with the user; the heating component 30 is uniformly distributed between the connecting surface 20a and the memory foam main body 10; and a region where the heating component 30 is located corresponds to a region where the contact surface 20b is located. Through the arrangement of the above structure, the region where the heating component 30 is located corresponds to the region where the contact surface 20b is located, so that the heating component 30 can cover the entire contact surface 20b, and at least a portion of the heating component 30 can exist in all parts of the thermal gel 20. The entire thermal gel 20 is heated uniformly, which improves the user experience.
[0049] In this embodiment, the heating component 30 is filamentous and is coiled in a reciprocating in the thermal gel 20 to form a similar PWM wavy structure; and a distance between two adjacent sections of the heating component 30 is roughly the same. Through the arrangement of the above structure, the filamentous heating component 30 is coiled in the reciprocating manner in the thermal gel 20 to form the structure similar to PWM waves, so that the heating component 30 can uniformly fill the thermal gel 20. Meanwhile, the distance between two adjacent sections of the heating component 30 is roughly the same, so that the heat generated by the heating component 30 can be more uniformly dissipated through the thermal gel 20, and the product has a better use experience.
[0050] In this embodiment, the heating component 30 includes a plurality of heating wires 30a, and a distance between two adjacent heating wires 30a is roughly the same. By the arrangement of the above structure, a plurality of heating wires 30a are spaced apart from each other, and the distance between two adjacent heating wires 30a is roughly the same, so that the heating component 30 can be uniformly distributed in the thermal gel 20, and the heat generated by the heating component 30 can be uniformly transferred to the thermal gel 20 and then to the body surface of the user. The heating wires 30a are uniformly spaced apart from each other, so that the heating effect is good.
[0051] In this embodiment, protruding massage parts 21 are distributed on a surface of the contact surface 20b. Through the arrangement of the above structure, the protruding massage parts 21 can touch and press the body surface of the user to massage the body of the user, relax muscles, and promote blood circulation, which is beneficial to the physical health of the user and improves the user experience.
[0052] In this embodiment, the heating component 30 is one or more of an alloy wire, a resistance wire, a carbon fiber, and graphene. Through the arrangement of the above structure, one or more of the alloy wire, the resistance wire, the carbon fiber, and the graphene is used as the heating component 30, which can ensure the stability of the heating component 30, and the heating effect is good. The alloy wire and the resistance wire have low costs, so that using the alloy wire or the resistance wire can reduce the cost of the product. A carbon fiber heating component has good insulation performance and is safe to use. A graphene heating component has superior conductivity, high thermal stability, and better user experience.
[0053] In this embodiment, the memory foam cushion body further includes a heating control panel 40, wherein the memory foam main body 10 is provided with an accommodating slot 12; and the heating control panel 40 is threaded out of the accommodating slot 12 and is electrically connected to the heating component 30 through an electrical connecting wire 50. Through the arrangement of the above structure, the user can control turning on, turning off, temperature adjustment, and timing of the heating component 30 through the heating control panel 40 during use. This allows the user to freely adjust the heating component 30 based on own needs. The memory foam heating cushion body is more convenient to use and has richer applicable scenes.
[0054] In this embodiment, the memory foam heating cushion body further includes an adjustment button 60; the adjustment button 60 is connected to the heating control panel 40; and the adjustment button 60 is configured to be pressed by the user to generate an electrical signal transmitted to the heating control panel 40. Through the arrangement of the above structure, the user can achieve human-computer interactions by pressing and touching the adjustment button 60. Specifically, when the user presses or touches the adjustment button 60, the electrical signal is generated, and the electrical signal is transmitted to the heating control panel 40. The heating control panel 40 controls the heating component 30 based on the electrical signal, making it more convenient to use. The adjustment button 60 is pressed or touched to achieve functions such as turning on, turning off, temperature adjustment, and timing and achieve human-computer interactions through the heating control panel 40. Moreover, the accommodating slot 12 is arranged on a side part of the memory foam main body 10, making it convenient for the user to press or touch the adjustment button 60, which facilitates use.
[0055] In this embodiment, the memory foam heating cushion body further includes a display device 70; the display device 70 is arranged on one side of the heating control panel 40 facing away from the accommodating slot 12 and is electrically connected to the heating control panel 40; and the display device 70 is configured to display a working state of the heating component. Through the arrangement of the above structure, the display device 70 can display the working state of the heating component 30 based on an instruction of the heating control panel 40. Specifically, the display device can display information such as a current temperature of the heating component 30 and a duration of use of the product, making it convenient for the user to intuitively learn about the working state of the heating component 30.
[0056] In this embodiment, the memory foam heating cushion body further includes an electrical connector 80; the electrical connector 80 is arranged in the accommodating slot 12; a connecting end of the electrical connector 80 is electrically connected to the heating control panel 40; and a free end of the electrical connector 80 is configured to be connected to an external power supply. Through the arrangement of the above structure, during use, the electrical connector 80 is connected to a mains supply, which can achieve supplying of power, so that the power is supplied to the heating control panel 40, the heating component 30, and the display device 70.
[0057] Referring to FIG. 1 to FIG. 7, a memory foam heating seat cushion includes:
[0058] a memory foam main body 10, wherein the memory foam main body 10 has an upper surface and a lower surface, and the upper surface of the memory foam main body 10 is provided with a connecting slot 11;
[0059] thermal gel 20, wherein the thermal gel 20 is inserted into the connecting slot 11 and is at least partially covered at the upper surface of the memory foam main body 10; and
[0060] a heating component 30, wherein the heating component 30 is arranged between the thermal gel 20 and the memory foam main body 10.
[0061] Through the arrangement of the above structure, when the heating component 30 does not work, the lower surface of the memory foam main body 10 is placed on a supporting plane, and a user sits or lies on the thermal gel 20. The thermal gel 20 has high thermal conductivity, which can effectively transfer heat, so that the user feels cool. When the heating component 30 works, heat generated by the heating component 30 can be effectively transferred to the user through the conduction of the thermal gel 20, which can warm the user. Through the cooperation between the thermal gel 20 and the heating component 30, the memory foam heating cushion body can be applied to more use scenarios. In hot weather, the user feels cooler. In cold weather, the user can be warmed. Moreover, the heating component 30 is arranged between the thermal gel 20 and the memory foam main body 10, which can isolate the heating component 30 from the user and the memory foam main body 10, prevent the heating component 30 from being in direct contact with the user and scalding the user, and improve the use safety of the product. Furthermore, the thermal gel 20 is embedded into the connecting slot 11, which can improve the connection strength of the product and make the product firmer and more durable.
[0062] In this embodiment, the thermal gel 20 has a connecting surface 20a connected to the memory foam main body 10 and a contact surface 20b configured to be in contact with the user; the heating component 30 is uniformly distributed between the connecting surface 20a and the memory foam main body 10; a region where the heating component 30 is located corresponds to a region where the contact surface 20b is located; and the contact surface 20b is matched with the upper surface of the memory foam main body 10. Through the arrangement of the above structure, the region where the heating component 30 is located corresponds to the region where the contact surface 20b is located, so that the heating component 30 can cover the entire contact surface 20b, and at least a portion of the heating component 30 can exist in all parts of the thermal gel 20. The entire thermal gel 20 is heated uniformly, which improves the user experience. Furthermore, the contact surface 20b is matched with the upper surface of the memory foam main body 10, so that the user can be in direct contact with the thermal gel 20, and the use effect is good.
[0063] In this embodiment, the heating component 30 is filamentous and is coiled in a reciprocating in the thermal gel 20 to form a similar PWM wavy structure; and a distance between two adjacent sections of the heating component 30 is roughly the same. Through the arrangement of the above structure, the filamentous heating component 30 is coiled in the reciprocating manner in the thermal gel 20 to form the structure similar to PWM waves, so that the heating component 30 can uniformly fill the thermal gel 20. Meanwhile, the distance between two adjacent sections of the heating component 30 is roughly the same, so that the heat generated by the heating component 30 can be more uniformly dissipated through the thermal gel 20, and the product has a better use experience.
[0064] In this embodiment, the heating component 30 includes a plurality of heating wires 30a, and a distance between two adjacent heating wires 30a is roughly the same. By the arrangement of the above structure, a plurality of heating wires 30a are spaced apart from each other, and the distance between two adjacent heating wires 30a is roughly the same, so that the heating component 30 can be uniformly distributed in the thermal gel 20, and the heat generated by the heating component 30 can be uniformly transferred to the thermal gel 20 and then to the body surface of the user. The heating wires 30a are uniformly spaced apart from each other, so that the heating effect is good.
[0065] In this embodiment, protruding massage parts 21 are distributed on a surface of the contact surface 20b. Through the arrangement of the above structure, the protruding massage parts 21 can touch and press the body surface of the user to massage the body of the user, relax muscles, and promote blood circulation, which is beneficial to the physical health of the user and improves the user experience.
[0066] In this embodiment, the heating component 30 is one or more of an alloy wire, a resistance wire, a carbon fiber, and graphene. Through the arrangement of the above structure, one or more of the alloy wire, the resistance wire, the carbon fiber, and the graphene is used as the heating component 30, which can ensure the stability of the heating component 30, and the heating effect is good. The alloy wire and the resistance wire have low costs, so that using the alloy wire or the resistance wire can reduce the cost of the product. A carbon fiber heating component has good insulation performance and is safe to use. A graphene heating component has superior conductivity, high thermal stability, and better user experience.
[0067] In this embodiment, the memory foam cushion body further includes a heating control panel 40, wherein the memory foam main body 10 is provided with an accommodating slot 12; and the heating control panel 40 is threaded out of the accommodating slot 12 and is electrically connected to the heating component 30 through an electrical connecting wire 50. Through the arrangement of the above structure, the user can control turning on, turning off, temperature adjustment, and timing of the heating component 30 through the heating control panel 40 during use. This allows the user to freely adjust the heating component 30 based on own needs. The memory foam heating cushion body is more convenient to use and has richer applicable scenes.
[0068] In this embodiment, the memory foam heating cushion body further includes an adjustment button 60; the adjustment button 60 is connected to the heating control panel 40; and the adjustment button 60 is configured to be pressed by the user to generate an electrical signal transmitted to the heating control panel 40. Through the arrangement of the above structure, the user can achieve human-computer interactions by pressing and touching the adjustment button 60. Specifically, when the user presses or touches the adjustment button 60, the electrical signal is generated, and the electrical signal is transmitted to the heating control panel 40. The heating control panel 40 controls the heating component 30 based on the electrical signal, making it more convenient to use. The adjustment button 60 is pressed or touched to achieve functions such as turning on, turning off, temperature adjustment, and timing and achieve human-computer interactions through the heating control panel 40. Moreover, the accommodating slot 12 is arranged on a side part of the memory foam main body 10, making it convenient for the user to press or touch the adjustment button 60, which facilitates use.
[0069] In this embodiment, the memory foam heating cushion body further includes a display device 70; the display device 70 is arranged on one side of the heating control panel 40 facing away from the accommodating slot 12 and is electrically connected to the heating control panel 40; and the display device 70 is configured to display a working state of the heating component. Through the arrangement of the above structure, the display device 70 can display the working state of the heating component 30 based on an instruction of the heating control panel 40. Specifically, the display device can display information such as a current temperature of the heating component 30 and a duration of use of the product, making it convenient for the user to intuitively learn about the working state of the heating component 30.
[0070] In this embodiment, the memory foam heating cushion body further includes an electrical connector 80; the electrical connector 80 is arranged in the accommodating slot 12; a connecting end of the electrical connector 80 is electrically connected to the heating control panel 40; and a free end of the electrical connector 80 is configured to be connected to an external power supply. Through the arrangement of the above structure, during use, the electrical connector 80 is connected to a mains supply, which can achieve supplying of power, so that the power is supplied to the heating control panel 40, the heating component 30, and the display device 70.
[0071] One or more implementation modes are provided above in combination with specific contents, and it is not deemed that the specific implementation of the present disclosure is limited to these specifications. Any technical deductions or replacements approximate or similar to the method and structure of the present disclosure or made under the concept of the present disclosure shall fall within the scope of protection of the present disclosure.
Examples
Embodiment Construction
[0043]Referring to FIG. 1 to FIG. 7, a memory foam heating cushion body includes:[0044]a memory foam main body 10, wherein the memory foam main body 10 has an upper surface and a lower surface;[0045]thermal gel 20, wherein the thermal gel 20 is at least partially covered at the upper surface of the memory foam main body 10; and[0046]a heating component 30, wherein the heating component 30 is arranged between the thermal gel 20 and the memory foam main body 10.
[0047]Through the arrangement of the above structure, when the heating component 30 does not work, the lower surface of the memory foam main body 10 is placed on a supporting plane, and a user sits or lies on the thermal gel 20. The thermal gel 20 has high thermal conductivity, which can effectively transfer heat, so that the user feels cool. When the heating component 30 works, heat generated by the heating component 30 can be effectively transferred to the user through the conduction of the thermal gel 20, which can warm the ...
Claims
1. A memory foam heating cushion body, comprising:a memory foam main body, wherein the memory foam main body has an upper surface and a lower surface;thermal gel, wherein the thermal gel is at least partially covered at the upper surface of the memory foam main body; anda heating component, wherein the heating component is arranged between the thermal gel and the memory foam main body.
2. The memory foam heating cushion body according to claim 1, wherein the thermal gel has a connecting surface connected to the memory foam main body and a contact surface configured to be in contact with a user; the heating component is uniformly distributed between the connecting surface and the memory foam main body; and a region where the heating component is located corresponds to a region where the contact surface is located.
3. The memory foam heating cushion body according to claim 2, wherein the heating component is filamentous and is coiled in a reciprocating in the thermal gel to form a similar pulse width modulation (PWM) wavy structure; and a distance between two adjacent sections of the heating component is roughly the same.
4. The memory foam heating cushion body according to claim 2, wherein the heating component comprises a plurality of heating wires, and a distance between two adjacent heating wires is roughly the same.
5. The memory foam heating cushion body according to claim 2, wherein protruding massage parts are distributed on a surface of the contact surface.
6. The memory foam heating cushion body according to claim 1, wherein the heating component is one or more of an alloy wire, a resistance wire, a carbon fiber, and graphene.
7. The memory foam heating cushion body according to claim 1, further comprising a heating control panel, wherein the memory foam main body is provided with an accommodating slot; and the heating control panel is threaded out of the accommodating slot and is electrically connected to the heating component through an electrical connecting wire.
8. The memory foam heating cushion body according to claim 7, further comprising an adjustment button, wherein the adjustment button is connected to the heating control panel; andthe adjustment button is configured to be pressed by the user to generate an electrical signal transmitted to the heating control panel.
9. The memory foam heating cushion body according to claim 7, further comprising a display device, wherein the display device is arranged on one side of the heating control panel facing away from the accommodating slot and is electrically connected to the heating control panel; and the display device is configured to display a working state of the heating component.
10. The memory foam heating cushion body according to claim 7, further comprising an electrical connector, wherein the electrical connector is arranged in the accommodating slot; a connecting end of the electrical connector is electrically connected to the heating control panel; and a free end of the electrical connector is configured to be connected to an external power supply.
11. A memory foam heating seat cushion, comprising:a memory foam main body, wherein the memory foam main body has an upper surface and a lower surface, and the upper surface of the memory foam main body is provided with a connecting slot;thermal gel, wherein the thermal gel is inserted into the connecting slot and is at least partially covered at the upper surface of the memory foam main body; anda heating component, wherein the heating component is arranged between the thermal gel and the memory foam main body.
12. The memory foam heating seat cushion according to claim 11, wherein the thermal gel has a connecting surface connected to the memory foam main body and a contact surface configured to be in contact with a user; the heating component is uniformly distributed between the connecting surface and the memory foam main body; a region where the heating component is located corresponds to a region where the contact surface is located; and the contact surface is matched with the upper surface of the memory foam main body.
13. The memory foam heating seat cushion according to claim 12, wherein the heating component is filamentous and is coiled in a reciprocating in the thermal gel to form a similar PWM wavy structure; and a distance between two adjacent sections of the heating component is roughly the same.
14. The memory foam heating seat cushion according to claim 12, wherein the heating component comprises a plurality of heating wires, and a distance between two adjacent heating wires is roughly the same.
15. The memory foam heating seat cushion according to claim 12, wherein protruding massage parts are distributed on a surface of the contact surface.
16. The memory foam heating seat cushion according to claim 11, wherein the heating component is one or more of an alloy wire, a resistance wire, a carbon fiber, and graphene.
17. The memory foam heating seat cushion according to claim 11, further comprising a heating control panel, wherein the memory foam main body is provided with an accommodating slot; and the heating control panel is threaded out of the accommodating slot and is electrically connected to the heating component through an electrical connecting wire.
18. The memory foam heating seat cushion according to claim 17, further comprising an adjustment button, wherein the adjustment button is connected to the heating control panel; andthe adjustment button is configured to be pressed by the user to generate an electrical signal transmitted to the heating control panel.
19. The memory foam heating seat cushion according to claim 17, further comprising a display device, wherein the display device is arranged on one side of the heating control panel facing away from the accommodating slot and is electrically connected to the heating control panel; and the display device is configured to display a working state of the heating component.
20. The memory foam heating seat cushion according to claim 17, further comprising an electrical connector, wherein a connecting end of the electrical connector is electrically connected to the heating control panel; and a free end of the electrical connector is configured to be connected to an external power supply.