Adjustable graphene pillow frame
Patent Information
- Application Number
- CN202522419990.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-14
- Publication Date
- 2026-09-25
- Estimated Expiration
- 2035-11-14
AI Technical Summary
[0004]本实用新型的目的在于:针对目前存在的可调式枕体框架,多采用充气或机械卡扣设计,存在调节精度不足的问题,且长期使用后易因材料老化或结构松动导致高度回弹失效,难以维持个性化支撑需求;以单一密度泡沫或弹簧为主,无法动态适配不同睡姿下的压力分布,易出现局部塌陷或支撑力不足,长期使用后易变形,影响颈椎健康与睡眠质量的问题,提供可调式石墨烯枕体框架,以解决上述问题
1.通过设置的可调组件,实现了枕体高度的灵活调节与石墨烯理疗功能的集成,用户可直接旋转防滑支撑座,带动调节螺杆沿螺纹筒升降,快速适配不同人群肩颈生理曲度,支撑壳体的仿生弧形结构贴合肩颈轮廓,石墨烯发热片提供温和理疗,柔性缓冲层保障接触舒适度,让用户在不同场景下都能获得个性化支撑与理疗体验,提升使用适配性与舒适性;
Smart Images

Figure CN224792049U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of bedding technology, and more specifically, to an adjustable graphene pillow frame. Background Technology
[0002] Graphene, a two-dimensional material composed of a single layer of carbon atoms, has gradually become a research hotspot in the home textile field since it was first prepared by a team at the University of Manchester in the UK in 2004 using the mechanical exfoliation method. Due to its excellent thermal conductivity, far-infrared emission properties and antibacterial characteristics, it has become a research hotspot in the home textile field. With technological iteration, graphene pillows are gradually developing towards functional integration, combining ergonomic design to achieve a dual improvement in support and health functions.
[0003] A search revealed that Chinese Patent Publication No. CN204995086U discloses "an adjustable cervical pillow suitable for different body positions, wherein the adjustable cervical pillow is a cuboid structure pillow composed of a left pillow, a right pillow, and a main pillow connected between the left and right pillows. The left, right, and main pillows are independently structured inflatable pillows, and each of the left, right, and main pillows is connected to an air pump. The lower part of the main pillow contains a neck pillow recess that conforms to the curve of the human neck and shoulders, and the neck pillow recess is also connected to an air pump. Through the above method, this utility model has a reasonable design and simple structure, and can be used in both supine and lateral positions. It can maintain the normal physiological curvature of the neck and can flexibly adjust the height according to the shoulder width of different patients, thereby enhancing the patient's comfort and meeting the needs of patients in different lying positions after cervical spine surgery, which is conducive to the recovery of the disease." However, the following defects still exist: (1) In actual use, the device is mostly designed with air or mechanical buckle, which has the problem of insufficient adjustment accuracy. After long-term use, it is easy to fail due to material aging or structural loosening, making it difficult to maintain personalized support requirements. (2) In actual use, the device mainly uses single-density foam or springs, which cannot dynamically adapt to the pressure distribution under different sleeping positions. It is prone to local collapse or insufficient support, and it is easy to deform after long-term use, affecting cervical spine health and sleep quality. Therefore, an adjustable graphene pillow frame is proposed. Utility Model Content
[0004] The purpose of this invention is to address the problems of existing adjustable pillow frames, which mostly employ inflatable or mechanical buckle designs, resulting in insufficient adjustment precision. Furthermore, these frames are prone to failure due to material aging or structural loosening after prolonged use, making it difficult to maintain personalized support. Additionally, the use of single-density foam or springs cannot dynamically adapt to the pressure distribution under different sleeping positions, leading to localized collapse or insufficient support. Long-term use also causes deformation, affecting cervical spine health and sleep quality. This invention provides an adjustable graphene pillow frame to solve these problems.
[0005] To achieve the above-mentioned objectives, this utility model provides the following technical solution: The present invention is as follows: an adjustable graphene pillow frame, including a pillow base, an adjustable component for adapting to the neck and shoulder curve and integrating graphene physiotherapy function is provided on the top of the pillow base, a support component for enhancing support stability is provided on the top of the pillow base, and a control component for controlling the working state of the graphene heating element is provided on one side of the adjustable component. The adjustable component includes a slot fixedly installed on the top of the pillow base, a support shell engaged inside the slot, the support shell having a biomimetic arc-shaped structure, an installation groove on the top of the support shell, a graphene heating element installed inside the installation groove, a flexible buffer layer adhered to the top of the support shell, the flexible buffer layer covering the graphene heating element, threaded cylinders at the four corners of the pillow base, adjusting screws threaded inside the threaded cylinders, and anti-slip support bases fixed to the bottom of the adjusting screws.
[0006] As a preferred technical solution of this utility model, the support assembly includes four plug-in cylinders fixedly installed on the top of the pillow base, each of the four plug-in cylinders having a support column inserted inside, and a support plate fixedly installed on the top of each support column, the support plate being fixedly connected to the support shell.
[0007] As a preferred technical solution of this utility model, the control component includes a control panel mounted on one side of the supporting housing. The control panel is electrically connected to the graphene heating element. The control panel integrates a power interface, a display screen, a power control button, and a temperature control button. The power interface is a Type-C interface.
[0008] As a preferred technical solution of this utility model, an elastic pull rope is fixedly installed on one side of the control panel, and a dust plug is fixedly installed on the end of the elastic pull rope away from the control panel. The dust plug is used in conjunction with the power interface.
[0009] As a preferred technical solution of this utility model, a pillowcase is fitted onto the outside of the support shell. The pillowcase is made of breathable cotton and linen material. An adapter hole that matches the outline of the control panel is opened on one side of the pillowcase, and an elastic webbing is provided at the bottom of the pillowcase.
[0010] As a preferred technical solution of this utility model, the pillow base is provided with four reserved holes, and the four reserved holes are at the same height as the anti-slip support seat.
[0011] As a preferred technical solution of this utility model, several ventilation holes are provided on both sides of the support shell, and the ventilation holes penetrate the inner and outer walls of the support shell to enhance the air circulation of the pillow.
[0012] Compared with the prior art, the beneficial effects of this utility model are as follows: 1. Through the adjustable components, the pillow height can be flexibly adjusted and graphene therapy function can be integrated. Users can directly rotate the anti-slip support to drive the adjustment screw to rise and fall along the threaded cylinder, quickly adapting to the physiological curvature of the neck and shoulders of different people. The biomimetic arc structure of the support shell fits the contour of the neck and shoulders, the graphene heating pad provides gentle therapy, and the flexible buffer layer ensures contact comfort, allowing users to obtain personalized support and therapy experience in different scenarios, improving adaptability and comfort. 2. By designing the support components, the problems of uneven stress on the support shell and easy collapse and displacement that may occur when the adjustable components are used alone are solved. The four support columns are precisely inserted into the plug-in cylinder, and the top support plate fully supports the support shell, forming a stable four-point support structure. This effectively disperses the pressure on the shoulders and neck, enhances the load-bearing stability of the support shell, provides a reliable support foundation for the shoulders and neck, and extends the product's service life. Attached Figure Description
[0013] Figure 1 A schematic diagram of the adjustable graphene pillow frame provided by this utility model; Figure 2 Right view of the adjustable graphene pillow frame provided by this utility model; Figure 3 The adjustable graphene pillow frame provided by this utility model Figure 2 A schematic diagram of the three-dimensional cross-sectional structure at point AA; Figure 4 A schematic diagram of the adjustable component of the adjustable graphene pillow frame provided by this utility model; Figure 5 A schematic diagram of the adjustable graphene pillow frame control assembly provided by this utility model; Figure 6 A schematic diagram of the adjustable graphene pillow frame pillowcase provided by this utility model.
[0014] The diagram shows: 1. Pillow base; 2. Adjustable component; 3. Support component; 4. Control component; 201. Slot; 202. Support housing; 203. Mounting slot; 204. Graphene heating element; 205. Flexible buffer layer; 206. Threaded cylinder; 207. Adjusting screw; 208. Anti-slip support seat; 301. Connecting cylinder; 302. Support column; 303. Support plate; 401. Control panel; 402. Power interface; 403. Display screen; 404. Power control button; 405. Temperature control button; 5. Elastic pull cord; 6. Dust plug; 7. Pillowcase; 8. Adapter hole; 9. Elastic webbing; 10. Reserved hole; 11. Ventilation hole. Detailed Implementation
[0015] The preferred embodiments of the present invention will now be described in detail with reference to the accompanying drawings, so that the advantages and features of the present invention can be more easily understood by those skilled in the art, thereby providing a clearer and more definite definition of the scope of protection of the present invention.
[0016] Example: Figures 1-6 As shown, this embodiment proposes an adjustable graphene pillow frame, including a pillow base 1. The top of the pillow base 1 is provided with an adjustable component 2 for adapting to the neck and shoulder curve and integrating graphene physiotherapy function. The top of the pillow base 1 is provided with a support component 3 for enhancing support stability. A control component 4 for controlling the working state of the graphene heating element 204 is provided on one side of the adjustable component 2. like Figure 3 and Figure 4 As shown, the adjustable component 2 includes a slot 201 fixedly installed on the top of the pillow base 1. A support housing 202 is engaged inside the slot 201. The support housing 202 has a biomimetic arc-shaped structure. An installation groove 203 is opened on the top of the support housing 202. A graphene heating element 204 is installed inside the installation groove 203. A flexible buffer layer 205 is adhered to the top of the support housing 202, covering the graphene heating element 204. Threaded cylinders 206 are provided at the four corners of the pillow base 1. Adjusting screws 207 are installed inside the threads of the threaded cylinders 206. Anti-slip supports are fixed to the bottom of the adjusting screws 207. The support base 208, when in use, rotates the anti-slip support bases 208 at the four corners of the pillow base 1. The rotation of the anti-slip support base 208 drives the adjusting screw 207 to rise and fall along the threaded cylinder 206, thereby changing the height of the entire pillow to adapt to the physiological curvature of the neck and shoulders of different people. The support shell 202 is fixed to the base through the slot 201 and adopts a biomimetic arc structure to fit the contour of the neck and shoulders. The graphene heating element 204 installed inside can be activated by the control component 4. The flexible buffer layer 205 covers the graphene heating element 204, which not only ensures the therapeutic effect but also improves the contact comfort, realizing the synergy between height adjustment and graphene therapeutic function.
[0017] like Figure 3As shown, the support assembly 3 includes four plug-in cylinders 301 fixedly installed on the top of the pillow base 1. Each of the four plug-in cylinders 301 has a support column 302 inserted inside. A support plate 303 is fixedly installed on the top of the support column 302. The support plate 303 is fixedly connected to the support shell 202. In use, the four support columns 302 of the support assembly 3 are respectively inserted into the plug-in cylinders 301 of the pillow base 1, and the top support plate 303 is fixedly connected to the support shell 202, forming a stable four-point support structure. This design fully supports the bottom of the support shell 202 through the support plate 303, which can effectively distribute the pressure on the shoulders and neck, prevent the support shell 202 from collapsing or tilting due to uneven force, enhance the load-bearing stability of the support shell 202, avoid shaking or displacement during use, and ensure that the support shell 202 can remain horizontal and stable at different heights, providing a reliable support foundation for the shoulders and neck.
[0018] like Figure 5 As shown, the control component 4 includes a control panel 401 mounted on one side of the support housing 202. The control panel 401 is electrically connected to the graphene heating element 204. The control panel 401 integrates a power interface 402, a display screen 403, a power control button 404, and a temperature control button 405. The power interface 402 is a Type-C interface. In use, the graphene heating element 204 is activated by the power control button 404 on the control panel 401. The temperature control button 405 can adjust the temperature of the graphene heating element 204. The display screen 403 displays the current temperature and working status in real time. The power interface 402 uses a Type-C interface to connect an external power source to power the graphene heating element 204. The integrated design of the control component 4 makes operation convenient and intuitive, and can accurately control the physiotherapy process to meet the temperature needs of different users.
[0019] like Figure 5 As shown, an elastic pull cord 5 is fixedly installed on one side of the control panel 401. A dust plug 6 is fixedly installed at the end of the elastic pull cord 5 away from the control panel 401. The dust plug 6 is used in conjunction with the power interface 402. When the power interface 402 is not connected to a power cord, the dust plug 6 is inserted into the interface through the elastic pull cord 5 to prevent dust and debris from entering the inside of the power interface 402 and avoid poor contact or short circuit problems. The elastic pull cord 5 can prevent the dust plug 6 from being lost. When in use, simply pull out the dust plug 6 to connect to the power supply, which not only ensures the cleanliness and safety of the power interface 402, but also improves the convenience of use.
[0020] like Figure 6As shown, a pillowcase 7 is fitted onto the outside of the support housing 202. The pillowcase 7 is made of breathable cotton and linen material. One side of the pillowcase 7 has an adapter hole 8 that matches the contour of the control panel 401. The bottom of the pillowcase 7 has an elastic webbing 9. When in use, the pillowcase 7 is fitted onto the outside of the support housing 202. The breathable cotton and linen material enhances air circulation and avoids stuffiness. The adapter hole 8 corresponds precisely to the control panel 401 and does not affect operation. The elastic webbing 9 at the bottom can fix the pillowcase 7 to prevent displacement. The pillowcase 7 can be removed and washed regularly to maintain hygiene. At the same time, the soft material further enhances the comfort of use and works in conjunction with the flexible cushioning layer 205 to optimize the shoulder and neck contact experience.
[0021] like Figure 3 As shown, the pillow base 1 has four pre-drilled holes 10, which are at the same height as the anti-slip support 208. In use, when the adjusting screw 207 lowers the anti-slip support 208 to its lowest position, the anti-slip support 208 can be inserted into the pre-drilled holes 10 of the pillow base 1, making the bottom of the pillow base 1 flat and in line with the bed surface, thus enhancing overall stability. The depth of the pre-drilled holes 10 is consistent with the height of the anti-slip support 208, ensuring that the base will not tilt due to the protrusion of the anti-slip support 208 during adjustment, thus ensuring safety and comfort during use.
[0022] like Figure 3 As shown, several ventilation holes 11 are provided on both sides of the support shell 202. These ventilation holes 11 penetrate the inner and outer walls of the support shell 202 to enhance the air circulation of the pillow. During use, the ventilation holes 11 on both sides of the support shell 202 penetrate the inner and outer walls to form an air convection channel. The heat generated by the graphene heating element 204 during operation can be dissipated through the ventilation holes 11 to avoid local overheating. At the same time, the ventilation holes 11 enhance the breathability of the pillow, reduce stuffiness, and improve the comfort of use. This design not only ensures the heat dissipation efficiency of the graphene heating element 204 but also optimizes the user experience.
[0023] Working Principle: This utility model provides an adjustable graphene pillow frame. The specific usage steps are as follows: By rotating the anti-slip support seats 208 at the four corners of the pillow base 1, the rotation of the anti-slip support seats 208 drives the adjusting screw 207 to rise and fall along the threaded cylinder 206, thereby changing the height of the entire pillow to suit the physiological curvature of the neck and shoulders of different people; the support shell 202 is fixed to the base through the slot 201 and adopts a biomimetic arc structure to conform to the contour of the neck and shoulders. The graphene heating element 204 installed inside can be activated through the control component 4. The flexible buffer layer 205 covers the graphene heating element 204, ensuring both therapeutic effect and improved contact comfort, achieving synergy between height adjustment and graphene therapeutic function (e.g., Figure 3 and Figure 4As shown), the four support columns 302 of the support assembly 3 are respectively inserted into the insertion cylinders 301 of the pillow base 1. The top support plate 303 is fixedly connected to the support shell 202, forming a stable four-point support structure. This design, through the support plate 303, fully supports the bottom of the support shell 202, effectively distributing shoulder and neck pressure, preventing the support shell 202 from collapsing or tilting due to uneven force, enhancing the load-bearing stability of the support shell 202, avoiding shaking or displacement during use, and ensuring that the support shell 202 remains level and stable at different heights, providing a reliable support foundation for the shoulders and neck (e.g., Figure 3 (As shown).
[0024] All technical features in this embodiment can be freely combined according to actual needs.
[0025] The above embodiments are preferred implementations of this utility model. In addition, this utility model can also be implemented in other ways. Any obvious substitutions without departing from the concept of this technical solution are within the protection scope of this utility model.
Claims
1. An adjustable graphene pillow frame, comprising a pillow base (1), characterized in that, The top of the pillow base (1) is provided with an adjustable component (2) for adapting to the neck and shoulder curve and integrating graphene physiotherapy function. The top of the pillow base (1) is provided with a support component (3) for enhancing support stability. One side of the adjustable component (2) is provided with a control component (4) for controlling the working state of the graphene heating element (204). The adjustable component (2) includes a slot (201) fixedly installed on the top of the pillow base (1). A support shell (202) is snapped into the inside of the slot (201). The support shell (202) has a biomimetic arc structure. An installation groove (203) is opened on the top of the support shell (202). A graphene heating element (204) is installed inside the installation groove (203). A flexible buffer layer (205) is bonded to the top of the support shell (202). The flexible buffer layer (205) covers the graphene heating element (204). Threaded cylinders (206) are provided at the four corners of the pillow base (1). An adjusting screw (207) is installed in the internal thread of the threaded cylinder (206). An anti-slip support seat (208) is fixed at the bottom of the adjusting screw (207).
2. The adjustable graphene pillow frame according to claim 1, characterized in that, The support assembly (3) includes four plug-in tubes (301) fixedly installed on the top of the pillow base (1). Each of the four plug-in tubes (301) has a support column (302) inserted inside. A support plate (303) is fixedly installed on the top of the support column (302). The support plate (303) is fixedly connected to the support shell (202).
3. The adjustable graphene pillow frame according to claim 1, characterized in that, The control component (4) includes a control panel (401) mounted on one side of the support housing (202). The control panel (401) is electrically connected to the graphene heating element (204). The control panel (401) integrates a power interface (402), a display screen (403), a power control button (404), and a temperature control button (405). The power interface (402) is a Type-C interface.
4. The adjustable graphene pillow frame according to claim 3, characterized in that, An elastic pull rope (5) is fixedly installed on one side of the control panel (401). A dust plug (6) is fixedly installed at the end of the elastic pull rope (5) away from the control panel (401). The dust plug (6) is used in conjunction with the power interface (402).
5. The adjustable graphene pillow frame according to claim 3, characterized in that, The support housing (202) is fitted with a pillowcase (7), which is made of breathable cotton and linen material. One side of the pillowcase (7) has an adapter hole (8) that matches the outline of the control panel (401), and the bottom of the pillowcase (7) is provided with an elastic webbing (9).
6. The adjustable graphene pillow frame according to claim 1, characterized in that, The pillow base (1) has four reserved holes (10), and the four reserved holes (10) are at the same height as the anti-slip support (208).
7. The adjustable graphene pillow frame according to claim 1, characterized in that, The support shell (202) has several ventilation holes (11) on both sides. The ventilation holes (11) penetrate the inner and outer walls of the support shell (202) to enhance the air circulation of the pillow.
Citation Information
Patent Citations
Adjustable cervical pillow suitable for different positions
CN204995086U