Massage pillow
By combining large and small ring-shaped bladders, the air pressure can be independently adjusted, increasing the extension and retraction of the massage components and the adjustment of head posture. This solves the problem of insufficient massage stimulation in existing massage pillows and improves massage comfort and effectiveness.
Patent Information
- Application Number
- CN202423254022.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-27
- Publication Date
- 2025-11-04
- Estimated Expiration
- 2034-12-27
AI Technical Summary
Existing massage pillows have limited range of motion in their massage components, resulting in insufficient massage stimulation and an inability to effectively adjust the user's head posture, thus affecting comfort.
It adopts a combination structure of large and small ring bladders. By independently adjusting the air pressure of the unit bladder, the vertical extension stroke of the massage component is increased. The two independently set unit bladders are used to adjust the user's head posture, thereby realizing the lateral shift of the head's center of gravity and the change of the pressure area.
It enhances the intensity and comfort of massage stimulation, and drives the head to turn by adjusting the height difference of the unit sacs, thereby increasing the pressure force of the massage components on the head and improving the overall massage experience.
Smart Images

Figure CN223503985U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of bedding, specifically to a massage pillow. Background Technology
[0002] Existing massage pillows include a pillow body and a massage component disposed on the pillow body. The massage component includes several vertically retractable protrusions. Due to the limited range of extension and retraction of the protrusions, the pressing force exerted on the user when the massage component is extended is small, resulting in less massage stimulation for the user and failing to provide comfortable massage stimulation. Furthermore, it is impossible to adjust the posture of the user's head, thus failing to apply effective pressing force to the user's head and affecting the comfort of use. Utility Model Content
[0003] To address the shortcomings of existing technologies, this utility model provides a massage pillow with a large ring-shaped pouch with independent unit pouches and a small ring-shaped pouch inside the large ring-shaped pouch. This not only increases the intensity of massage stimulation by increasing the vertical extension and retraction of the massage components, but also uses the two independently set unit pouches to adjust the user's head posture, so that the user's head weight can fall on a local area of the massage components, thereby increasing the pressure force on the user's head and improving the overall massage experience.
[0004] This utility model is achieved through the following means: a massage pillow, including a pillow body, a massage component disposed on the top of the pillow body, and a control box disposed outside the pillow body. The control box controls the air pressure inside the massage component. The massage component includes a large ring-shaped and concentrically nested large ring-shaped pouch and a small ring-shaped pouch. The large ring-shaped pouch includes two symmetrically placed and arc-shaped unit pouches. The air pressure inside the small ring-shaped pouches is independently adjustable and applies massage stimulation to the supported object. The air pressure inside the unit pouches is independently adjustable and forms an adjustable-angle support surface on the top surface to adjust the posture of the supported object. The massage unit is equipped with a large ring-shaped pouch with independent unit pockets and a small ring-shaped pouch inside the large ring-shaped pouch. This design increases the vertical extension range of the massage component by using the small ring-shaped pouch, thereby enhancing the intensity of the massage stimulation. The two independently designed unit pockets can also adjust the user's head posture. Driven by the unit pockets on both sides, the user's head can be tilted, allowing the center of gravity of the user's head to shift laterally. This makes the pressure area between the user's head and the massage component variable, effectively increasing the pressure force on the pressure area, enhancing the massage stimulation in the pressure area, and improving the overall massage experience.
[0005] Preferably, the unit pockets are symmetrically arranged along the width of the pillow body, so that the supported object can be adjusted to deflect along the width of the pillow body. The unit pockets are located on both sides of the pillow body in the width direction, and the top surface height of the unit pockets can be independently adjusted to change independently. In this way, by adjusting the height of the top surface of the unit pocket, the user's head can be turned, thereby adjusting the position of the force-bearing area.
[0006] Preferably, the vertical expansion and contraction range of the small ring pouch is greater than that of the large ring pouch, so that the top of the small ring pouch protrudes outward from the support surface when inflated, thereby applying massage stimulation to the supported object. The top surface height of the small ring pouch when inflated is higher than that of the large ring pouch when inflated. This ensures that the top surface of the large ring pouch can support the user's head and adjust its posture, while also ensuring that the small ring pouch can apply pressure to the user's head through a greater vertical expansion and contraction range, thus translating into greater massage stimulation at the pressure area of the user's head. The pressure area is formed at the lowest point of the area above the small ring pouch where the user's head is located. When the user's head is turned, the pressure area shifts accordingly, so that all areas of the user's head can obtain an effective massage experience by forming pressure areas.
[0007] Preferably, the larger annular sac is fitted over the smaller annular sac, with the bottom surfaces of the larger and smaller annular sacs at the same height and fixed together by a connecting piece, thus fixing the relative position between their vertical projections. The connecting piece adheres to the bottom walls of both the larger and smaller annular sacs, ensuring that their bottom walls maintain a uniform height. This facilitates controlling the height of their top walls by adjusting the vertical expansion and contraction of the larger and smaller annular sacs, thereby controlling the intensity of the massage stimulation. It also ensures that the horizontal relative position between adjacent larger and smaller annular sacs is fixed, preventing local overlap and interference, and ensuring that each annular sac can move independently.
[0008] Preferably, both the small ring bladder and the unit bladder have air nozzles at their bottoms that communicate with the outside. The small ring bladder and the unit bladder are connected to an external control box via these air nozzles, allowing the control box to adjust the air pressure inside them. This enables the small ring bladder to apply massage stimulation to the user's head, and the unit bladder to adjust the user's head support posture, thereby changing the position of the pressure area. The air nozzles are located on the bottom wall of the massage assembly, which facilitates both concealment and connection of the air nozzles to the control box via air tubes.
[0009] Preferably, the outer diameter of the large ring pouch is A, 200mm≤A≤270mm; the inner diameter of the large ring pouch is B, 135mm≤B≤180mm; the outer diameter of the small ring pouch is C, 130mm≤C≤170mm; and the inner diameter of the small ring pouch is D, 65mm≤D≤85mm. Limiting the inner and outer diameters of the large and small ring pouches ensures that the vertical deformation of the small ring pouch meets usage requirements, providing effective massage stimulation to the user's head, while also ensuring that the large ring pouch effectively supports the periphery of the user's head and allows for head tilt adjustment via independently adjustable unit pouches, thereby ensuring massage comfort.
[0010] Preferably, the small ring-shaped bladder includes two annular small ring pieces. Both the inner and outer edges of each small ring piece are provided with annular sealing portions. Circumferentially equidistant partitions are provided between the annular sealing portions. The small ring pieces are vertically stacked and welded together by the annular sealing portions and partitions. A through-hole is formed between the partitions and the sealing portions, thus dividing the small ring-shaped bladder into multiple arc-shaped unit cavities connected by the through-holes. The vertical stacking of the small ring pieces and the welding together by corresponding annular sealing portions ensure that the bladder cavity is isolated from the external space. The partitions within the bladder cavity, with through-holes on both sides of the partitions, not only divide the bladder cavity into multiple unit cavities, but also divide the top surface area of the small ring-shaped bladder into multiple separate unit regions. This allows for concentrated pressure on the user's head from each unit region, ensuring massage comfort. Furthermore, the through-holes connect the unit cavities, enabling synchronous adjustment of each unit cavity through the same air source, simplifying the air path structure and facilitating production and use.
[0011] Preferably, the large annular bladder comprises two large annular pieces, each with an annular sealing portion on both its inner and outer edges. A strip-shaped sealing portion spans between these concentrically arranged annular sealing portions. The large annular pieces are vertically stacked and welded together by the annular and strip-shaped sealing portions, thus dividing the large annular bladder into unit bladders. The vertical stacking of the large annular pieces and their welding together by corresponding annular sealing portions ensures that the bladder cavity is isolated from the external space. A strip-shaped sealing portion is arranged radially within the cavity of the large annular bladder, dividing it into two unconnected and symmetrically oriented unit bladders. Differential air pressure control within the unit bladders adjusts the height difference of their top surfaces, thereby causing the user's head to turn. This facilitates massage of various areas of the user's head surface when used in conjunction with the smaller annular bladders.
[0012] Preferably, the strip-shaped sealing portion is placed at the front and rear edges of the large ring sac, so that the large ring sac cavity is divided into unit sacs symmetrically arranged along the left and right width of the occipital body, which facilitates the left and right rotation of the user's head.
[0013] Preferably, the pillow body includes a pillow core and an inner pillowcase that wraps around the pillow core, with the massage component positioned in the center of the top surface of the inner pillowcase. The inner pillowcase protects and wraps the pillow core, ensuring that the massage component is positioned in the center of the top surface of the pillow core. It also facilitates the removal of the inner pillowcase to install and remove the massage component, making it convenient for disassembly and maintenance of the massage component.
[0014] Preferably, the pillow body includes an inner pillowcase and an outer pillowcase that encloses the massage components. The outer pillowcase protects and conceals the massage components, enhancing both aesthetics and ease of removal and washing, thus improving the user experience.
[0015] The beneficial effects of this utility model are as follows: The large ring-shaped pouch with an independent unit pouch and the small ring-shaped pouch inside the large ring-shaped pouch increase the vertical extension stroke of the massage component, thereby enhancing the intensity of the massage stimulation. Furthermore, the two independently designed unit pouches can adjust the user's head posture. Driven by the two unit pouches on both sides, the user's head rotates, causing a lateral shift in the user's center of gravity. This makes the contact area between the user's head and the massage component variable, effectively increasing the pressing force on the contact area, enhancing the massage stimulation at that area, and improving the overall massage experience. Attached Figure Description
[0016] Figure 1 This is a schematic diagram of the structure of the massage component;
[0017] Figure 2 This is a schematic diagram showing the disassembled structure of the massage pillow;
[0018] Figure 3 This is a schematic diagram of the structure of the small ring plate;
[0019] Figure 4 This is a schematic diagram of the disassembled structure of the small annular cyst;
[0020] Figure 5 This is a schematic diagram of the structure of the large annular plate;
[0021] Figure 6 This is a schematic diagram of the disassembled structure of the large annular bladder;
[0022] In the diagram: 1. Pillow body, 2. Control box, 3. Large ring bladder, 4. Small ring bladder, 5. Unit bladder, 6. Air nozzle, 7. Small ring plate, 8. Large ring plate, 9. Annular sealing part, 10. Divider, 11. Through hole, 12. Strip sealing part, 13. Pillow core, 14. Inner pillowcase, 15. Outer pillowcase. Detailed Implementation
[0023] The essential features of this utility model will be further described below with reference to the accompanying drawings and specific embodiments.
[0024] like Figure 1 and 2The massage pillow shown includes a pillow body 1, a massage component disposed on the top of the pillow body 1, and a control box 2 externally disposed on the pillow body 1. The control box 2 controls the air pressure inside the massage component. The massage component includes a large ring 3 and a small ring 4 that are concentrically arranged in a circular shape. The large ring 3 includes two symmetrically placed arc-shaped unit 5s. The air pressure inside the small ring 4 is independently adjustable and applies massage stimulation to the supported object. The air pressure inside the unit 5 is independently adjustable and forms an adjustable-angle support surface on its top surface to adjust the posture of the supported object. The massage unit is equipped with a large ring-shaped pouch 3 with an independent unit pouch 5 and a small ring-shaped pouch 4 inside the large ring-shaped pouch 3. The small ring-shaped pouch 4 increases the vertical extension stroke of the massage component, thereby enhancing the intensity of the massage stimulation. The two independently designed unit pouches 5 can also adjust the user's head posture. The user's head is turned under the drive of the two unit pouches 5, which allows the center of gravity of the user's head to shift laterally. This makes the contact area between the user's head and the massage component variable, effectively increasing the pressure force on the contact area, enhancing the massage stimulation of the contact area, and improving the overall massage experience.
[0025] In actual operation, the unit bladder 5 is symmetrically arranged along the width direction of the pillow body 1 so that the supported object can be adjusted to deflect along the width direction of the pillow body 1. The unit bladder 5 is placed on the left and right sides of the small ring bladder 4, and the air pressure inside the unit bladder 5 and the small ring bladder 4 can be adjusted independently, so that the vertical extension and contraction amplitude of the unit bladder 5 and the small ring bladder 4 can be adjusted independently.
[0026] In use, the unit sac 5 supports the user's head, while the small ring sac 4 provides a massage effect, thus creating multiple usage modes, including:
[0027] In Mode 1, when the top surfaces of the two unit pouches 5 are at the same height, the user's head receives balanced support on both sides, allowing the small ring pouches 4 to apply pressure to the middle of the user's head, ensuring that a pressure area is formed in the middle of the user's head and that the user receives an effective massage.
[0028] In Mode 2, when the top surfaces of the two unit sacs 5 have different heights, the bottom surface of the user's head will deflect due to the different support heights on both sides. The weight of the user's head will shift towards the side with the lower top surface height in the unit sac 5. When the small ring sac 4 reciprocates and expands, it can form a force-bearing area on the bottom surface of the user's head near the lower side unit sac 5 and obtain effective massage.
[0029] By adjusting the height difference between the top surfaces of the unit sacs 5, the user's head deflection range is increased, thereby adjusting the position of the force area. The user's head deflects to lower the height of the preset area, thereby using the weight of the user's head to hinder the vertical extension and contraction of the small ring sacs 4 and increase the pressing force, thus obtaining a massage stimulation that meets the intensity requirements.
[0030] Furthermore, both the small ring pouch 4 and the unit pouch 5 can support and massage the user's head, enabling multiple usage modes, and should also be considered specific embodiments of this utility model. Usage modes also include, but are not limited to:
[0031] In mode three, the small ring bladder 4 can also support the user's head after inflation, and the two side unit bladders 5 apply pressure to the two sides of the bottom surface of the user's head by reciprocating expansion and contraction, so that the two sides of the bottom surface of the user's head form a force-bearing area.
[0032] In mode four, the small ring pouch 4 and the single-sided unit pouch 5 work together to drive the user's head to turn, and the other unit pouch 5 is used to apply massage stimulation to the user's head. The top surfaces of the unit pouch 5 and the small ring pouch 4 are lowered from one side to the other, causing the user's head to turn, and the unit pouch 5 with the lower top surface is used to apply massage stimulation to the corresponding area of the user's head.
[0033] In actual operation, the vertical extension range of the small ring bladder 4 is greater than that of the large ring bladder 3, so that the top of the small ring bladder 4 protrudes outward from the supporting surface when inflated, thereby applying massage stimulation to the supported object. The user's head is driven to turn by adjusting the height difference between the unit bladders 5, and the height difference between the unit bladders 5 and the top surface of the small ring bladder 4 is adjusted by uniformly adjusting the rise and fall of the unit bladders 5, thereby adjusting the intensity of the massage stimulation.
[0034] In actual operation, the large annular bladder 3 is fitted over the small annular bladder 4. The bottom surfaces of the large annular bladder 3 and the small annular bladder 4 are set at the same height and fixed together by connecting pieces, so that the relative positions of the vertical projections of the large annular bladder 3 and the small annular bladder 4 are fixed. The middle part of the bottom wall of the large annular bladder 3 and the small annular bladder 4 are welded and fixed to the connecting pieces, which not only ensures that the bottom walls of the large annular bladder 3 and the small annular bladder 4 maintain a uniform height, thus converting the vertical expansion distance into the height difference of the top surfaces of the large annular bladder 3 and the small annular bladder 4, but also ensures that the horizontal relative positions of the large annular bladder 3 and the small annular bladder 4 are fixed, preventing mutual interference.
[0035] In actual operation, the outer diameter of the large annular sac 3 is A (e.g., Figure 5 As shown in the figure, the preferred solution is A = 210mm. In addition, the parameter A can also be 200mm, 230mm, 270mm, etc., as long as it meets the requirement of 200mm≤A≤270mm.
[0036] In actual operation, the inner diameter of the large annular bladder 3 is B. In the preferred embodiment, B = 140 mm. In addition, the parameter B can also be 135 mm, 150 mm, 180 mm, etc., as long as it meets the requirement of 135 mm ≤ B ≤ 180 mm.
[0037] In actual operation, the outer diameter of the small annular sac 4 is C (e.g., Figure 3As shown in the figure, the preferred solution is C = 140mm. In addition, the parameter C can also be 130mm, 150mm, 170mm, etc., as long as it meets the requirements of 130mm≤C≤170mm and C≤B.
[0038] In actual operation, the inner diameter of the small annular sac 4 is D. In the preferred embodiment, D = 70 mm. In addition, the parameter D can also be 65 mm, 75 mm, 85 mm, etc., as long as it meets the requirement of 65 mm ≤ D ≤ 85 mm.
[0039] In practice, the small annular capsule 4 includes two small annular pieces 7 (such as...). Figure 4 As shown, the inner and outer edges of the small ring piece 7 are provided with annular sealing parts 9. The small ring pieces 7 are stacked vertically and welded together through the annular sealing parts 9. The small ring pieces 7 are independently processed and stacked and welded to form a small ring bladder 4. The corresponding inner edges and corresponding outer edges of the small ring pieces 7 are stacked and welded to each other to form annular bladder cavities. This facilitates the mass production of the small ring pieces 7 and the assembly to form the small ring bladder 4, ensuring that the small ring bladder 4 has good sealing performance.
[0040] In actual operation, the annular sealing portions 9 are provided with circumferentially equidistant partitions 10. The small ring pieces 7 are vertically stacked and the partitions 10 are welded together. The partitions 10 and the annular sealing portions 9 form through holes 11, so that the small ring bladder 4 is divided into multiple arc-shaped unit cavities connected by the through holes 11. The small ring pieces 7 are provided with weldable partitions 10 in the annular central region between the outer and inner edges. Through holes 11 are reserved between the partitions 10 and the sidewalls of the small ring bladder 4. The cavity of the small ring bladder 4 is divided into multiple arc-shaped unit cavities connected by the through holes 11 by the partitions 10, so that the unit cavities rise and fall synchronously and independently apply massage stimulation to the user's head.
[0041] In practice, the large annular capsule 3 includes two large annular plates 8 (e.g., Figure 6 As shown, the large annular piece 8 has annular sealing portions 9 on both its inner and outer edges. A strip-shaped sealing portion 12 spans between the concentrically arranged annular sealing portions 9. The large annular pieces 8 are vertically stacked and welded together by the annular sealing portions 9 and the strip-shaped sealing portions 12, thus dividing the large annular bladder 3 into unit bladders 5. The large annular pieces 8 are independently processed and stacked and welded to form small annular bladders 4. The corresponding inner and outer edges of the large annular pieces 8 are stacked and welded together to form annular cavities. This facilitates both mass production of the large annular pieces 8 and assembly to form the large annular bladder 3, ensuring good sealing performance. The cavities within the large annular bladder 3 are divided by the strip-shaped sealing portions 12, which are positioned at the front and rear edges of the large annular bladder 3, thus dividing the cavities within the large annular bladder 3 into two symmetrically positioned unit cavities.
[0042] In actual operation, both the small ring bladder 4 and the unit bladder 5 have air nozzles 6 at their bottom that communicate with the outside. The air nozzles 6 are located on the lower small ring plate 7 and the lower large ring plate 8. The large ring plate 8 has two air nozzles 6 placed on the left and right sides, ensuring that the air pressure in each unit bladder can be adjusted independently. This not only makes it easy to hide the air nozzles 6, but also allows the air nozzles 6 to be connected to the control box 2 through the air tube located below the massage component, thereby controlling the massage component to provide massage stimulation to the user's head in any usage mode.
[0043] In actual operation, the pillow body 1 includes a pillow core 13 and an inner pillowcase 14 that wraps around the pillow core 13. The massage component is located in the center of the top surface of the inner pillowcase 14. The massage component is adhered to the inner pillowcase 14, so that the massage component is fixed to the pillow core 13 through the inner pillowcase 14, ensuring that the massage component is always located in the center of the top surface of the pillow core 13, providing support and massage for the user's head.
[0044] In actual operation, the pillow body 1 includes an outer pillowcase 15 that covers the inner pillowcase 14 and the massage component. The outer pillowcase 15 not only protects the massage component, the pillow core 13 and the inner pillowcase 14, making it easy to disassemble and clean, but also covers the massage component and the inner pillowcase 14, improving the aesthetics.
Claims
1. A massage pillow, comprising a pillow body (1), a massage component disposed on the top of the pillow body (1), and a control box (2) externally disposed on the pillow body (1), the control box (2) controlling the air pressure inside the massage component, characterized in that, The massage component includes a large ring-shaped pouch (3) and a small ring-shaped pouch (4) that are concentrically nested in a circular shape. The large ring-shaped pouch (3) includes two symmetrically placed unit pouches (5) that are arc-shaped. The air pressure inside the small ring-shaped pouch (4) is independently adjustable and applies massage stimulation to the supported object. The air pressure inside the unit pouch (5) is independently adjustable and forms a support surface with an adjustable tilt angle on its top surface to adjust the posture of the supported object.
2. A massage pillow according to claim 1, characterized in that, The unit sac (5) is symmetrically arranged along the width direction of the pillow body (1) so that the supported object can be adjusted by deflection along the width direction of the pillow body (1).
3. A massage pillow according to claim 2, characterized in that, The vertical expansion and contraction of the small ring bladder (4) is greater than that of the large ring bladder (3), so that the top of the small ring bladder (4) protrudes outward from the supporting surface when inflated, so as to apply massage stimulation to the supported object.
4. A massage pillow according to claim 1, characterized in that, The large ring bladder (3) is fitted over the small ring bladder (4). The bottom surfaces of the large ring bladder (3) and the small ring bladder (4) are set at the same height and are fixed together by connecting pieces, so that the relative positions of the vertical projections of the large ring bladder (3) and the small ring bladder (4) are fixed; or, the bottom of the small ring bladder (4) and the unit bladder (5) are provided with air nozzles (6) that communicate with the outside.
5. A massage pillow according to claim 1, characterized in that, The outer diameter of the large annular sac (3) is A, 200mm≤A≤270mm; or, the inner diameter of the large annular sac (3) is B, 135mm≤B≤180mm; or, the outer diameter of the small annular sac (4) is C, 130mm≤C≤170mm; or, the inner diameter of the small annular sac (4) is D, 65mm≤D≤85mm.
6. A massage pillow according to any one of claims 1-5, characterized in that, The small ring capsule (4) includes two small ring pieces (7) in the shape of rings. The inner and outer edges of the small ring pieces (7) are provided with annular sealing parts (9). The annular sealing parts (9) are provided with circumferentially equidistant partitions (10). The small ring pieces (7) are stacked vertically and welded together by the annular sealing parts (9) and the partitions (10). The partitions (10) and the sealing parts form a through hole (11) so that the small ring capsule (4) is divided into multiple arc-shaped unit cavities connected by the through holes (11).
7. A massage pillow according to any one of claims 1-5, characterized in that, The large annular capsule (3) includes two large annular pieces (8) in the shape of rings. Both the inner and outer edges of the large annular pieces (8) are provided with annular sealing parts (9). The annular sealing parts (9) arranged concentrically are connected by strip sealing parts (12). The large annular pieces (8) are stacked vertically and welded together by the annular sealing parts (9) and the strip sealing parts (12) so that the large annular capsule (3) is divided into the unit capsules (5).
8. A massage pillow according to claim 7, characterized in that, The strip-shaped sealing part (12) is located at the front edge and the rear edge of the large ring bag (3).
9. A massage pillow according to any one of claims 1-5, characterized in that, The pillow body (1) includes a pillow core (13) and an inner pillowcase (14) that wraps the pillow core (13), and the massage component is disposed in the middle of the top surface of the inner pillowcase (14).
10. A massage pillow according to claim 9, characterized in that, The pillow body (1) includes an inner pillowcase (14) and an outer pillowcase (15) that encloses the massage components.