Graphene intelligent temperature control mattress
The graphene smart temperature-controlled mattress solves the problem of uncomfortable temperature regulation in existing mattresses by using graphene materials and a smart temperature control system. It improves the user's comfort and sleep quality while ensuring the environmental friendliness and safety of the materials.
Patent Information
- Application Number
- CN202422790344.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-15
- Publication Date
- 2025-12-05
- Estimated Expiration
- 2034-11-15
AI Technical Summary
Existing mattresses are not good at regulating temperature, and cannot effectively cope with seasonal changes and individual differences, which affects sleep quality. They may also contain harmful substances that threaten human health.
The graphene smart temperature-controlled mattress uses graphene far-infrared heating fibers and graphene phototherapy heating film combined with an intelligent temperature control system to achieve precise temperature regulation of the mattress. High-quality environmentally friendly materials are selected to ensure comfort and safety.
Precise temperature control enhances user comfort, providing personalized temperature control to ensure user comfort and improve sleep quality, while avoiding potential threats from harmful substances.
Smart Images

Figure CN223627225U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the field of smart home, especially to a graphene intelligent temperature control mattress. BACKGROUND
[0002] Mattresses, as essential bedding in daily life, their performance and comfort directly affect people's sleep quality. Good sleep quality not only helps to restore physical strength and enhance immunity, but also promotes mental health and improves quality of life. The support, breathability, temperature regulation ability and other characteristics of the mattress are key factors affecting sleep quality. An ideal mattress should be able to evenly distribute body pressure, maintain the natural curvature of the spine, and have good breathability and temperature regulation function to ensure user comfort during sleep, avoid overheating or overcooling, and effectively improve sleep quality.
[0003] With the progress of technology and people's pursuit of healthy life, existing mattresses have paid more and more attention to their positive effects on physical health in design. Some high-end mattresses use high-quality materials such as memory foam and natural latex to provide better support and comfort, which helps to relieve physical fatigue and promote deep sleep. In addition, some mattresses also incorporate health concepts, such as improving the breathability and moisture absorption of the mattress to prevent the mattress from getting wet and reduce the growth of bacteria and mites, thereby protecting skin health and preventing allergies and other problems.
[0004] Although existing mattresses have made some progress in design and function, the materials of mattresses on the market are still uneven. Some mattresses are made of inferior materials, which not only reduces the comfort and durability of the mattress, but also may pose potential threats to human health. For example, some mattresses may contain harmful substances such as formaldehyde and benzene, which may have adverse effects on human health if exposed to them for a long time. In addition, some mattresses perform poorly in temperature regulation, requiring the use of mats or electric blankets, which cannot effectively cope with seasonal changes and individual differences, resulting in users feeling hot or cold during sleep, affecting sleep quality. SUMMARY
[0005] In order to overcome the disadvantage of being unable to adjust the temperature, the utility model provides a temperature-adjustable graphene intelligent temperature control mattress.
[0006] The graphene intelligent temperature control mattress comprises a supporting cover, which is wrapped with an antibacterial fabric, graphene far-infrared heating fibers, three-dimensional spiral hollow fibers, zero-pressure memory cotton, high-resilience sponge, graphene light moxibustion heating film, high-molecular waist support cotton, three-dimensional hollow constant-temperature fibers and air-permeable fabric; the multiple layers of materials are stacked on each other, and the internal materials of the mattress are sequentially the antibacterial fabric, the graphene far-infrared heating fibers, the three-dimensional spiral hollow fibers, the zero-pressure memory cotton, the high-resilience sponge, the graphene light moxibustion heating film, the high-molecular waist support cotton, the three-dimensional hollow constant-temperature fibers and the air-permeable fabric from top to bottom.
[0007] Optionally, the antibacterial fabric is located at the uppermost layer, and the air-permeable fabric is located at the lowermost layer; the antibacterial fabric is used for eliminating peculiar smell caused by bacteria, and the air-permeable fabric is used for discharging water vapor inside the structure.
[0008] Optionally, the three-dimensional spiral hollow fibers, the zero-pressure memory cotton, the high-resilience sponge and the high-molecular waist support cotton are all supporting materials of the mattress, which are used for maintaining the shape of the mattress and providing suitable support; the three-dimensional spiral hollow fibers are designed with high hollow degree, which are used for providing good support and warmth retention; and the zero-pressure memory cotton is used for eliminating pressure and providing just-right supporting force.
[0009] Optionally, the graphene far-infrared heating fibers and the graphene light moxibustion heating film are heating materials, which are used for emitting heat and regulating the temperature of the mattress; the graphene far-infrared heating fibers and the graphene light moxibustion heating film are connected with a power supply and are connected with a control element used for controlling the heating power; and the graphene light moxibustion heating film is used for emitting heating far-infrared light waves.
[0010] Optionally, the three-dimensional hollow constant-temperature fibers are heat preservation materials, which are located between the high-molecular waist support cotton and the air-permeable fabric, and are used for maintaining the temperature of the mattress and reducing heat loss.
[0011] Optionally, a remote controller is further included; a signal receiver is built in the control element of the graphene far-infrared heating fibers and the graphene light moxibustion heating film; and the signal receiver is used for receiving signals sent by the remote controller.
[0012] Compared with the prior art, the graphene intelligent temperature control mattress has the following advantages:
[0013] 1. The mattress adopts high-quality graphene materials as heating elements, and combines an advanced intelligent temperature control system, so that the temperature of the mattress can be accurately controlled, and personalized temperature setting can be provided according to the physical conditions and sleeping habits of different users, so that the user can maintain the most comfortable body temperature during the sleeping process, thereby improving the sleeping quality.
[0014] 2. The mattress is made with strict quality control in material selection to ensure that all materials meet environmental protection and safety standards, avoiding potential threats to the human body from harmful substances. By optimizing the mattress's structural design, its durability and comfort are improved, further enhancing the user's sleep experience. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of the overall structure of this utility model.
[0016] Figure 2 This is a cross-sectional view of the multi-layer structure of this utility model.
[0017] Figure 3 This is an exploded view of the multi-layer structure of this utility model.
[0018] The meanings of the labels in the attached diagram are as follows: 1: Supporting jacket, 2: Remote control, 3: Antibacterial fabric, 4: Graphene far-infrared heating fiber, 5: Three-dimensional spiral hollow fiber, 6: Zero-pressure memory foam, 7: High-resilience sponge, 8: Graphene phototherapy heating film, 9: Polymer waist support cotton, 10: Three-dimensional hollow constant temperature fiber, 11: Breathable fabric. Detailed Implementation
[0019] To make the objectives, technical solutions, and advantages of this utility model clearer, the following will describe this utility model in further detail with reference to the accompanying drawings. It is hereby declared that the terms "up," "down," "left," "right," "front," "back," "inner," and "outer," etc., appearing or about to appear in this document, are based solely on the accompanying drawings and are not intended to specifically limit this utility model.
[0020] Example: A graphene smart temperature-controlled mattress, such as Figures 1-3 As shown, the mattress includes a support cover 1, which is wrapped with antibacterial fabric 3, graphene far-infrared heating fiber 4, three-dimensional spiral hollow fiber 5, zero-pressure memory foam 6, high-resilience sponge 7, graphene phototherapy heating film 8, polymer lumbar support cotton 9, three-dimensional hollow constant temperature fiber 10, and breathable fabric 11. The multiple layers of materials are stacked on top of each other. The internal materials of the mattress, from top to bottom, are antibacterial fabric 3, graphene far-infrared heating fiber 4, three-dimensional spiral hollow fiber 5, zero-pressure memory foam 6, high-resilience sponge 7, graphene phototherapy heating film 8, polymer lumbar support cotton 9, three-dimensional hollow constant temperature fiber 10, and breathable fabric 11.
[0021] like Figure 2 and Figure 3 As shown, antibacterial fabric 3 is located on the top layer, and breathable fabric 11 is located on the bottom layer. Antibacterial fabric 3 is used to eliminate odors caused by bacteria, and breathable fabric 11 is used to expel moisture from the structure.
[0022] The antibacterial fabric 3 has good antibacterial effect, can eliminate odor caused by bacteria, keep the fabric clean, and avoid the reproduction of bacteria to reduce the risk of re-transmission;
[0023] The breathable fabric 11 has unique breathable performance, can quickly discharge water vapor inside the structure, avoid mold breeding, and keep the human body dry at all times, solving the problems of breathability, warmth retention and the like.
[0024] As shown in Figure 2 and Figure 3 The three-dimensional spiral hollow fiber 5, the zero-pressure memory cotton 6, the high-resilience sponge 7 and the high-molecular waist support cotton 9 are all support materials of the mattress, used for maintaining the shape of the mattress and providing appropriate support. The three-dimensional spiral hollow fiber 5 adopts a high-middle hollow design, used for providing good support and warmth retention. The zero-pressure memory cotton 6 is used for eliminating pressure and providing just-right supporting force.
[0025] The three-dimensional spiral hollow fiber 5 has high hollow degree, good fluffiness, fast resilience speed and good warmth retention, providing good support for the user.
[0026] The zero-pressure memory cotton 6 can eliminate pressure, slowly adapt to the body curve of the user according to the body weight and shape of the user, provide just-right supporting force, effectively reduce the pressure of each part of the body, bring the greatest relaxation and comfort to the body, isolate static electricity, prevent bacteria breeding, have soft and comfortable material, and are not easy to produce noise.
[0027] The high-resilience sponge 7 has high resilience, durability, breathability and the like.
[0028] The high-molecular waist support cotton 9 has super resilience and breathability, is resistant to pressure, is not easy to deform after long sleep, and has good flame retardance.
[0029] As shown in Figure 2 and Figure 3 The graphene far-infrared heating fiber 4 and the graphene light moxibustion heating film 8 are heating materials, used for emitting heat and regulating the temperature of the mattress. The graphene far-infrared heating fiber 4 and the graphene light moxibustion heating film 8 are connected with a power supply and connected with a control element used for controlling the heating power. The graphene light moxibustion heating film 8 is used for emitting heating far-infrared light waves.
[0030] The graphene far-infrared heating fiber 4 quickly increases the temperature, changes the temperature of the mattress, thereby helping to improve blood circulation and having antibacterial and bacteriostatic effects.
[0031] The graphene light moxibustion heating film 8 realizes the temperature control function and promotes the internal and deep light moxibustion effects of the body through the action of heating far-infrared light waves.
[0032] As shown in Figure 2 and Figure 3As shown, the three-dimensional hollow constant temperature fiber 10 is a heat preservation material, and is located between the high polymer waist cotton 9 and the breathable fabric 11, and is used for maintaining the temperature of the mattress and reducing heat loss.
[0033] As shown in the drawings, Figure 2 and Figure 3 Figure 2 Figure 3 The remote controller 2 is further included, and the signal receiver is built in the control element of the graphene far-infrared heating fiber 4 and the graphene light moxibustion heating film 8, and is used for receiving the signal sent by the remote controller 2.
[0034] When the user uses the mattress, the mattress is connected to the power supply, then lies on the mattress, uses the remote controller 2 to start the heating function of the mattress, adjusts the temperature, and enters sleep after reaching the appropriate temperature, so that the sleep quality is improved, and in the sleep process, the support material can provide appropriate support for each part of the body, evenly distribute the pressure of each part, bring the greatest relaxation and comfort to the body, meanwhile, the graphene light moxibustion heating film 8 can perform physiotherapy on the body, discharge negative substances in the body, the antibacterial fabric 3 and the breathable fabric 11 maintain the self use environment of the mattress, and the heating function of the mattress is turned off through the remote controller 2 after sleep.
[0035] Although the present application is described in detail with reference to the above examples, it is obvious to those skilled in the art through the disclosure that various changes or modifications can be made to the present application without departing from the principles and spirit of the application defined in the claims, and therefore, the detailed description of the present application is only used for explanation, but not for limiting the present application, and the protection range is defined by the content of the claims.
Claims
1. A graphene smart temperature control mattress, characterized by: The mattress comprises a support cover (1), which is wrapped with an antibacterial fabric (3), a graphene far-infrared heating fiber (4), a three-dimensional spiral hollow fiber (5), zero-pressure memory cotton (6), a high-resilience sponge (7), a graphene light moxibustion heating film (8), a high-molecular waist support cotton (9), a three-dimensional hollow constant-temperature fiber (10) and a breathable fabric (11). The multiple layers of materials are stacked on each other, and the internal materials of the mattress are sequentially arranged from top to bottom as the antibacterial fabric (3), the graphene far-infrared heating fiber (4), the three-dimensional spiral hollow fiber (5), the zero-pressure memory cotton (6), the high-resilience sponge (7), the graphene light moxibustion heating film (8), the high-molecular waist support cotton (9), the three-dimensional hollow constant-temperature fiber (10) and the breathable fabric (11).
2. The graphene smart temperature control mattress according to claim 1, characterized in that: The antibacterial fabric (3) is located at the uppermost layer, and the breathable fabric (11) is located at the lowermost layer. The antibacterial fabric (3) is used to eliminate odor caused by bacteria, and the breathable fabric (11) is used to discharge water vapor inside the structure.
3. The graphene smart temperature control mattress according to claim 2, characterized in that: The three-dimensional spiral hollow fiber (5), the zero-pressure memory cotton (6), the high-resilience sponge (7) and the high-molecular waist support cotton (9) are all support materials of the mattress, which are used to maintain the shape of the mattress and provide appropriate support. The three-dimensional spiral hollow fiber (5) is designed with high hollow degree, which is used to provide good support and warmth. The zero-pressure memory cotton (6) is used to eliminate pressure and provide just-right support.
4. The graphene smart temperature control mattress according to claim 3, characterized in that: The graphene far-infrared heating fiber (4) and the graphene light moxibustion heating film (8) are heating materials, which are used to emit heat and regulate the temperature of the mattress. The graphene far-infrared heating fiber (4) and the graphene light moxibustion heating film (8) are connected with a power supply and are connected with a control element for controlling the heating power. The graphene light moxibustion heating film (8) is used to emit heating far-infrared light waves.
5. A graphene smart temperature control mattress as claimed in claim 4, characterized in that: The three-dimensional hollow constant-temperature fiber (10) is a heat preservation material, which is located between the high-molecular waist support cotton (9) and the breathable fabric (11), and is used to maintain the temperature of the mattress and reduce heat loss.
6. A graphene smart temperature control mattress as claimed in claim 5, characterized in that: A remote controller (2) is further included. The control elements of the graphene far-infrared heating fiber (4) and the graphene light moxibustion heating film (8) are built-in with a signal receiver, which is used to receive signals sent by the remote controller (2).