A pillow with a snore stop assembly
Patent Information
- Application Number
- CN202522542808.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-28
- Publication Date
- 2026-09-22
- Estimated Expiration
- 2035-11-28
AI Technical Summary
现有枕头的止鼾手段单一,影响止鼾效果,此外,枕体需要专门开设供止鼾垫安装的容纳腔,存在枕体结构复杂且加工装配繁琐的问题
[0017]本实用新型的有益效果:在枕体下方设置止鼾组件,止鼾组件包括止鼾垫和药物挥发盒,止鼾垫对枕体顶面轮廓进行调节,通过改变头颈部姿态来确保呼吸顺畅,药物挥发盒可向外散发止鼾气体,止鼾气体被呼吸道吸收并有助于顺畅呼吸,既能通过改变止鼾组件安装位置来简化枕体结构,方便加工和装配,还能通过设置多样的止鼾方式来提升止鼾效果,改善睡眠质量,提升使用体验。
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Figure CN224776478U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of bedding, specifically to a pillow. Background Technology
[0002] Existing pillows consist of a pillow body and an anti-snoring component mounted on the pillow body. The anti-snoring component includes an anti-snoring pad housed within the pillow body. A cavity is formed in the center of the pillow body for the anti-snoring pad to be inserted into the cavity. The anti-snoring pad undergoes vertical deformation through inflation and deflation, adjusting the contour of the pillow's top surface to drive the user's head and neck to shift and rotate, thereby soothing the airway and improving breathing ease to stop snoring. However, existing pillows offer only one method of anti-snoring, affecting their effectiveness. Furthermore, the pillow body requires a specially designed cavity for the anti-snoring pad, resulting in a complex structure and cumbersome manufacturing and assembly. Utility Model Content
[0003] To address the shortcomings of existing technologies, this utility model provides a pillow with an anti-snoring component. The anti-snoring component includes an anti-snoring pad and a drug vaporization box, which can not only play an anti-snoring role through multiple methods and improve the anti-snoring effect, but also place the anti-snoring component under the pillow body for easy processing and assembly.
[0004] This invention achieves its purpose through the following method: a pillow with an anti-snoring component, comprising a pillow body, wherein the anti-snoring component is disposed at the bottom of the pillow body. The anti-snoring component includes an anti-snoring pad that adjusts the contour of the top surface of the pillow body and a drug vaporization box embedded and hidden at the bottom of the pillow body that disperses anti-snoring gas upwards. The anti-snoring component, comprising an anti-snoring pad and a drug vaporization box, is disposed at the bottom of the pillow body. The anti-snoring pad adjusts the contour of the top surface of the pillow body, ensuring smooth breathing by changing the head and neck posture. The drug vaporization box disperses anti-snoring gas outwards, which is absorbed by the respiratory tract and helps with smooth breathing. This invention simplifies the pillow structure by changing the installation position of the anti-snoring component, facilitating processing and assembly, and enhances the anti-snoring effect, improves sleep quality, and enhances the user experience by providing various anti-snoring methods.
[0005] Preferably, the anti-snoring pad includes at least two sets of airbags arranged along the width of the pillow. Each airbag set contains a matrix of anti-snoring sacs arranged along the width of the pillow. Each row of anti-snoring sacs can be independently inflated, causing deformation of the corresponding area on the top surface of the pillow. The dispersed arrangement of the airbags allows each area of the pillow's top surface to effectively deform, driving head and neck displacement and rotation, thereby ensuring smooth breathing and achieving an anti-snoring effect. The matrix distribution of the anti-snoring sacs ensures that each area of the pillow's top surface is pushed up by its corresponding anti-snoring sac, thus providing precise compression to the user's head and neck.
[0006] Preferably, the airbag assembly includes two rows of anti-snoring airbags, with the airbags in the same row aligned front to back and connected by a trachea. By setting two rows of anti-snoring airbags, the vertical projection area of each airbag is reduced. This reduces the area where the top surface of the pillow aligns with the top surface of each airbag, improves control precision through independent deformation control of a smaller area, and ensures that the top of each airbag can swing independently and deform synchronously with the bottom surface of the pillow. This enhances the fit between the anti-snoring pad and the pillow, ensuring that the vertical deformation of the airbags is effectively transmitted upwards and manifested outwards through the deformation of the top surface of the pillow.
[0007] Preferably, the pillow includes a control box externally mounted on the pillow body and a detection component mounted on the pillow body. The control box is independently connected to each row of anti-snoring sacs within the airbag assembly via an air tube. The control box receives detection signals from the detection component and inflates the anti-snoring sacs through inflation. The control box receives detection signals from the detection component and controls the corresponding anti-snoring sac movement, thereby pushing, displacing, and rotating the user's head and neck. The detection component includes a sound detector and a position detector. The sound detector detects whether the user is snoring, and the position detector detects the position of the user's head and neck, facilitating the control box's control of the anti-snoring sacs located below the head and neck. This effectively reduces the movement of the anti-snoring pads, thus minimizing their impact on the user's sleep, and also stops snoring by changing the user's head and neck posture.
[0008] Preferably, the airbag assembly comprises two groups, positioned at the front and rear edges of the pillow body. The vertical projection of the drug dispersing box is located between the airbag groups. The airbag groups, positioned at the front and rear edges of the pillow body, allow the user to easily rotate the pillow as needed and ensure appropriate support for the user's head and neck. Each row of anti-snoring airbags in each airbag group can be independently controlled, improving control precision, reducing control box operation time, lowering noise, and minimizing impact on the user's sleep. The drug dispersing box is located in the center of the pillow body, vertically avoiding the airbag groups, ensuring that the vertical deformation of the airbag groups is effectively transmitted upwards.
[0009] Preferably, the airbag assembly consists of three groups, positioned at the front, middle, and rear edges of the pillow body. The airbag group located in the middle of the pillow body can be used in conjunction with the airbag groups located at the front and rear edges of the pillow body, thereby increasing the area of the raised region on the top surface of the pillow body to improve pushing comfort and reduce the impact on the user's sleep.
[0010] Preferably, the anti-snoring sac comprises multiple vertically stacked and interconnected unit sacs, allowing the height of the anti-snoring sac to be adjusted through inflation and deflation. The interconnected unit sacs can be inflated and deflated simultaneously, effectively reducing the thickness after deflation and providing a large vertical deformation range, ensuring that the top surface contour deformation of the pillow meets the anti-snoring requirements.
[0011] Preferably, the center of the pillow's bottom surface is recessed to form a receiving groove. A diverging diffusion channel is provided between the top wall of the receiving groove and the top surface of the pillow. The drug vaporization box is fixedly held within the receiving groove, allowing the anti-snoring gas to diffuse through the diffusion channel to various areas above the pillow. The drug vaporization box contains medication that promotes smooth breathing, thus stopping snoring by improving breathing ease. The anti-snoring gas generated by the drug vaporization diffuses through the diffusion channel into the space above the pillow, facilitating absorption by the user through the respiratory tract or skin, effectively improving breathing ease and thus stopping snoring.
[0012] Preferably, there are multiple diffusion channels, with the upper ports of the diffusion channels evenly distributed on the top surface of the pillow body and the lower ports evenly distributed on the top wall of the receiving groove. The lower ports of the diffusion channels converge towards the top wall of the receiving groove, while the upper ports diffuse outward and cover the top surface of the pillow body. This allows the anti-snoring gas to effectively diffuse to all areas above the pillow body, and it can also effectively diffuse the anti-snoring gas even when some diffusion channels are blocked by the head and neck, thus effectively improving the anti-snoring effect.
[0013] Preferably, the diffusion channel is a linear channel to reduce gas flow resistance. The diffusion channel is a straight tube located between its upper and lower ports, which facilitates the flow and diffusion of anti-snoring gas.
[0014] Preferably, the front and rear edges of the top surface of the pillow body are raised to form a forward convex portion and a rear convex portion, respectively. The top surfaces of the forward convex portion and the rear convex portion have different heights, allowing users to choose the appropriate one according to their needs and effectively improving user comfort.
[0015] Preferably, the bottom surface of the pillow has the same contour as the top surface. The pillow includes a base pad positioned below the anti-snoring assembly. The base pad has an upwardly raised, arc-shaped support surface in the area below the airbag assembly. The bottom wall of the anti-snoring bladder abuts against the arc-shaped support surface and is inclined, so that the top wall of the anti-snoring bladder matches and fits snugly against the bottom surface of the pillow. Two rows of anti-snoring bladders overlap on both sides of the arc-shaped support surface, so that the two rows of anti-snoring bladders have different orientations and fit against the corresponding area of the bottom surface of the pillow, effectively transmitting vertical deformation and improving the anti-snoring effect.
[0016] Preferably, the center of the base pad is raised to form a horizontal support surface, which supports the bottom surface of the drug vaporization box, thereby positioning the drug vaporization box. The drug vaporization box is inserted into the receiving groove and the groove opening is sealed by the horizontal support surface, ensuring that the drug vaporization box is locked and positioned in the receiving groove, preventing it from detaching.
[0017] The beneficial effects of this utility model are as follows: An anti-snoring component is set under the pillow body. The anti-snoring component includes an anti-snoring pad and a drug vaporization box. The anti-snoring pad adjusts the contour of the top surface of the pillow body and ensures smooth breathing by changing the posture of the head and neck. The drug vaporization box can release anti-snoring gas outward. The anti-snoring gas is absorbed by the respiratory tract and helps to facilitate smooth breathing. It can simplify the pillow body structure by changing the installation position of the anti-snoring component, making it easier to process and assemble. It can also improve the anti-snoring effect, improve sleep quality, and enhance the user experience by setting various anti-snoring methods. Attached Figure Description
[0018] Figure 1 This is a schematic diagram of the disassembled structure of the pillow described in Example 1;
[0019] Figure 2 This is a schematic diagram showing the disassembled structure of the pillow body and anti-snoring component described in Embodiment 1;
[0020] Figure 3 This is a schematic diagram from another perspective showing the disassembled structure of the pillow body and anti-snoring component described in Embodiment 1;
[0021] Figure 4 This is a cross-sectional view of the pillow described in Example 1;
[0022] Figure 5 This is a cross-sectional view of the airbag assembly described in Embodiment 1;
[0023] Figure 6 This is a cross-sectional view of the disassembled structure of the pillow described in Example 2;
[0024] In the diagram: 1. Pillow body, 2. Airbag assembly, 3. Drug vaporization box, 4. Anti-snoring bag, 5. Trachea, 6. Control box, 7. Unit bag, 8. Receptacle, 9. Diffusion channel, 10. Forward protrusion, 11. Backward protrusion, 12. Base pad, 13. Arc-shaped support surface, 14. Horizontal support surface. Detailed Implementation
[0025] The essential features of this utility model will be further described below with reference to the accompanying drawings and specific embodiments.
[0026] Example 1:
[0027] This embodiment provides a pillow.
[0028] like Figure 1 and 2The pillow shown includes a pillow body 1, with an anti-snoring component at its bottom. The anti-snoring component includes an anti-snoring pad that adjusts the contour of the top surface of the pillow body 1, and a drug vaporization box 3 embedded and hidden at the bottom of the pillow body 1, which disperses anti-snoring gas upwards. The anti-snoring component, consisting of an anti-snoring pad and a drug vaporization box 3, adjusts the contour of the top surface of the pillow body 1 by changing the head and neck posture to ensure smooth breathing. The drug vaporization box 3 disperses anti-snoring gas outwards, which is absorbed by the respiratory tract and helps with smooth breathing. This design simplifies the structure of the pillow body 1 by changing the installation position of the anti-snoring component, facilitating processing and assembly. Furthermore, it enhances the anti-snoring effect, improves sleep quality, and enhances the user experience by offering various anti-snoring methods.
[0029] In practice, the anti-snoring component is positioned below the pillow body 1, making the pillow body 1 a solid block structure manufactured in one piece. This eliminates the need for internal cavities within the pillow body 1, facilitating mass production, simplifying processing steps, and improving efficiency. The anti-snoring component is installed by stacking and assembling below the pillow body 1, eliminating the need for through-hole installation, thus reducing assembly difficulty and improving assembly efficiency.
[0030] In actual operation, the anti-snoring pad includes at least two sets of airbag groups 2 laid along the width of the pillow body 1. Each airbag group 2 contains anti-snoring sacs 4 arranged in a matrix along the width of the pillow body 1. Each row of anti-snoring sacs 4 can be independently inflated and raised, causing deformation of the corresponding area on the top surface of the pillow body 1. The anti-snoring sacs 4 are arranged in a matrix. Specifically, each airbag group 2 includes two rows of anti-snoring sacs 4. The anti-snoring sacs 4 in the same row are aligned front to back and connected by an air tube 5. The anti-snoring sacs 4 in the same row of the airbag group 2 achieve synchronous air pressure regulation through the air tube 5. This ensures that the anti-snoring sacs 4 in the same row can be raised synchronously, causing the corresponding area on the top surface of the pillow body 1 to rise, which is used to push the user's head and neck to move and turn. It also ensures that the top of each anti-snoring sac 4 can swing freely and match and fit the bottom surface of the pillow body 1, ensuring that the vertical deformation formed by the inflation of the anti-snoring sac 4 can be effectively transmitted to the top surface of the pillow body 1.
[0031] In actual operation, the airbag group 2 consists of two groups, which are placed at the front and rear edges of the pillow body 1. The front and rear edges of the top surface of the pillow body 1 are respectively raised to form a forward protrusion 10 and a rear protrusion 11. The top surfaces of the forward protrusion 10 and the rear protrusion 11 have different heights. The user can rotate the pillow body 1 to select to use the forward protrusion 10 or the rear protrusion 11 to support the neck. Then, by setting the corresponding airbag group 2 at the front or rear edge, the user's head and neck can be pushed and displaced.
[0032] In actual operation, the vertical projection of the drug vaporization box 3 is located between the airbag groups 2. The airbag groups 2 are respectively set at the front and rear edges of the pillow body 1. A receiving groove 8 is opened in the lower middle part of the pillow body 1. The drug vaporization box 3 is inserted into the receiving groove 8 and is vertically offset from the airbag groups 2. This prevents the vertical deformation caused by the inflation of the anti-snoring sac 4 from being blocked by the relatively rigid drug vaporization box 3 and thus preventing it from being transmitted upward. This ensures that the corresponding areas of the front and rear edges of the top edge of the pillow body 1 can achieve bulging deformation under the drive of the corresponding anti-snoring sac 4.
[0033] In actual operation, the pillow includes a control box 6 externally mounted on the pillow body 1 and a detection component mounted on the pillow body 1. The control box 6 is independently connected to each row of anti-snoring sacs 4 within the airbag assembly 2 via an air tube 5. The control box 6 receives detection signals through the detection component and inflates the anti-snoring sacs 4. The detection component includes a sound detection element and a position detection element. The position detection element is preferably a flexible sensing fabric. The flexible sensing fabric is laid on the top surface of the pillow body 1 and conforms to the top surface of the pillow body 1 through its own deformation. This effectively eliminates the feeling of foreign objects and improves the detection effect by increasing the contact area with the head and neck surface. The control box 6 is triggered when the user's snoring is detected by the sound detection element. The control box 6 senses the position of the head and neck through the position detection element and inflates the anti-snoring sacs 4 below the head and neck. The area of the top surface of the pillow body 1 that is in contact with the head and neck rises upward under the action of the corresponding anti-snoring sacs 4, causing the head and neck to move to the lower surrounding area under its own weight. By changing the posture of the head and neck, unobstructed breathing is ensured, thereby achieving the effect of stopping snoring.
[0034] In actual operation, the control box 6 is equipped with an air pump and a solenoid valve group. The solenoid valve group is connected to the corresponding anti-snoring sac 4 through the air tube 5. There are multiple air tubes 5, which are laid in the lower middle part of the pillow body 1 to ensure that the air tube 5 and the air sac group 2 are vertically misaligned to prevent the air sac group 2 from squeezing the air tube 5 due to inflation deformation, and to ensure that the air tube 5 remains unobstructed.
[0035] In practice, the anti-snoring sac 4 comprises multiple vertically stacked and interconnected unit sacs 7 (such as...). Figure 5 As shown, the anti-snoring sac 4 can be height-adjusted by inflation and deflation. The unit sacs 7 are interconnected and can be vertically deformed by synchronous inflation, providing a driving force for adjusting the top surface contour of the pillow body 1. In addition, adjacent unit sacs 7 can swing moderately to ensure that the top surface of the anti-snoring sac 4 can deform synchronously with the pillow body 1 and always match and fit the bottom surface of the pillow body 1.
[0036] In actual operation, the bottom surface of the pillow body 1 is recessed upward to form a receiving groove 8 (e.g., Figure 3As shown), a diverging diffusion channel 9 is provided between the top wall of the receiving groove 8 and the top surface of the pillow body 1. The drug vaporization box 3 is fixedly inserted into the receiving groove 8 so that the anti-snoring gas can diffuse to various areas above the pillow body 1 through the diffusion channel 9. There are multiple diffusion channels 9 (e.g., ...). Figure 4 As shown, the upper ports of the diffusion channels 9 are evenly distributed on the top surface of the pillow body 1, and the lower ports of the diffusion channels 9 are evenly distributed on the top wall of the receiving groove 8. A buffer space is reserved between the top surface of the drug evaporation box 3 and the top wall of the receiving groove 8 to ensure that the anti-snoring gas diffuses within the buffer space and can be evenly released outward through each diffusion channel 9.
[0037] In actual operation, the diffusion channel 9 is a linear channel to reduce gas flow resistance. The diffusion channel 9 with its upper port located in the middle of the top surface of the pillow body 1 is vertically arranged, while the diffusion channel 9 with its upper port located at the periphery of the top surface of the pillow body 1 is inclined to ensure that adjacent diffusion channels 9 do not interfere with each other.
[0038] In actual operation, the sidewall of the receiving groove 8 is closely fitted with the sidewall of the drug evaporation box 3, which not only serves to limit the horizontal movement of the drug evaporation box 3, but also effectively prevents the drug evaporation box 3 from falling off the receiving groove 8, and prevents the anti-snoring gas from diffusing downward through the gap between the sidewall of the drug evaporation box 3 and the sidewall of the receiving groove 8.
[0039] In actual operation, the airbag group 2 consists of three groups, which are placed at the front edge, middle and rear edge of the pillow body 1, and should also be regarded as a specific implementation of this embodiment.
[0040] Example 2:
[0041] Compared to Example 1, this example provides another type of pillow.
[0042] like Figure 6 As shown, the bottom surface of the pillow body 1 has the same contour as the top surface of the pillow body 1. The pillow includes a bottom pad 12 disposed below the anti-snoring component. The bottom pad 12 has an upwardly raised arc-shaped support surface 13 in the area below the airbag assembly 2. The bottom wall of the anti-snoring sac 4 abuts against the arc-shaped support surface 13 and is inclined so that the top wall of the anti-snoring sac 4 matches and fits the bottom surface of the pillow body 1. The bottom pad 12 supports and positions the anti-snoring sac 4 and the drug vaporization box 3, ensuring that the anti-snoring sac 4 and the drug vaporization box 3 are positioned under the pillow body 1 in a preset posture.
[0043] In actual operation, the top surface of the bottom pad 12 is provided with an arc-shaped support surface 13 that corresponds to the airbag group 2 one by one. The middle part of the arc-shaped support surface 13 is raised upward, so that the anti-snoring bag 4 will overlap the front and rear parts of the arc-shaped support surface 13 and have opposite tilt directions, ensuring that the top surface of the anti-snoring bag 4 can match and fit the corresponding area of the bottom surface of the pillow body 1, and ensuring that the axial deformation of the anti-snoring bag 4 can be effectively transmitted to the pillow body 1.
[0044] In actual operation, the middle of the base pad 12 is raised to form a horizontal support surface 14, which supports the bottom surface of the drug vaporization box 3, thereby positioning the drug vaporization box 3. The top surface of the base pad 12 is provided with a horizontal support surface 14 in the area below the receiving groove 8. The horizontal support surface 14 is used to support the drug vaporization box 3 and seal the receiving groove 8, ensuring that the drug vaporization box 3 is locked and positioned in the receiving groove 8, preventing the anti-snoring gas from diffusing downward through the opening of the receiving groove 8.
[0045] The other structures and effects of the pillow described in this embodiment are the same as those in Embodiment 1, and will not be repeated here.
Claims
1. A pillow with an anti-snoring component, comprising a pillow body (1), characterized in that, The bottom of the pillow (1) is provided with an anti-snoring component, which includes an anti-snoring pad that adjusts the contour of the top surface of the pillow (1) and a drug vaporization box (3) that is embedded and hidden in the bottom of the pillow (1) and spreads anti-snoring gas upward.
2. A pillow with an anti-snoring component according to claim 1, characterized in that, The anti-snoring pad includes at least two sets of airbag groups (2) laid along the width direction of the pillow body (1). Each airbag group (2) contains an anti-snoring sac (4) laid in a matrix along the width direction of the pillow body (1). Each row of anti-snoring sacs (4) can be independently inflated and raised, causing the top surface of the pillow body (1) to deform in the corresponding area.
3. A pillow with an anti-snoring component according to claim 2, characterized in that, The airbag assembly (2) includes two rows of anti-snoring bags (4), with the anti-snoring bags (4) in the same row aligned front to back and connected by a trachea (5).
4. A pillow with an anti-snoring component according to claim 3, characterized in that, The pillow includes a control box (6) externally placed on the pillow body (1) and a detection component set on the pillow body (1). The control box (6) is independently connected to each row of anti-snoring sacs (4) in the airbag group (2) through the air tube (5). The control box (6) receives detection signals through the detection component and drives the anti-snoring sacs (4) to bulge through the inflation operation.
5. A pillow with an anti-snoring component according to claim 2, characterized in that, The airbag group (2) consists of two groups, which are placed at the front and rear edges of the pillow body (1), and the vertical projection of the drug volatilization box (3) is located between the airbag groups (2); or, the airbag group (2) consists of three groups, which are placed at the front, middle and rear edges of the pillow body (1).
6. A pillow with an anti-snoring component according to claim 2, characterized in that, The antisnoring sac (4) includes multiple vertically stacked and interconnected unit sacs (7) so that the height of the antisnoring sac (4) can be adjusted by inflation and deflation.
7. A pillow with an anti-snoring component according to claim 2, characterized in that, The bottom surface of the pillow (1) is recessed to form a receiving groove (8). A divergent diffusion channel (9) is provided between the top wall of the receiving groove (8) and the top surface of the pillow (1). The drug volatilization box (3) is fixed in the receiving groove (8) so that the anti-snoring gas diffuses to the area above the pillow (1) through the diffusion channel (9).
8. A pillow with an anti-snoring component according to claim 7, characterized in that, There are multiple diffusion channels (9). The upper ports of the diffusion channels (9) are evenly distributed on the top surface of the pillow body (1), and the lower ports of the diffusion channels (9) are evenly distributed on the top wall of the receiving groove (8); or, the diffusion channels (9) are linear channels to reduce gas flow resistance.
9. A pillow with an anti-snoring component according to any one of claims 2-8, characterized in that, The front and rear edges of the top surface of the pillow body (1) are raised to form a forward protrusion (10) and a rear protrusion (11), respectively. The bottom surface of the pillow body (1) has the same contour as the top surface of the pillow body (1). The pillow includes a bottom pad (12) disposed below the anti-snoring component. The bottom pad (12) is provided with an upwardly raised arc-shaped support surface (13) in the area below the airbag assembly (2). The bottom wall of the anti-snoring bag (4) abuts against the arc-shaped support surface (13) and is inclined so that the top wall of the anti-snoring bag (4) matches and fits the bottom surface of the pillow body (1).
10. A pillow with an anti-snoring component according to claim 9, characterized in that, The middle of the base pad (12) is raised to form a horizontal support surface (14), which supports the bottom surface of the drug evaporation box (3) so that the drug evaporation box (3) is supported and positioned.