Massage pillow

By setting up receiving cavities with notches at the front and rear ends between the unit bladders of the massage pillow, the inflated unit bladders can be pressed vertically and clamped horizontally, solving the problem of the single massage mode of existing massage pillows and realizing multiple massage stimulations and greater comfort.

CN223489468UActive Publication Date: 2025-10-31AISE HEALTH DIGITAL TECHNOLOGY (HAINAN) CO LTD
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Patent Information

Application Number
CN202423257453.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-27
Publication Date
2025-10-31
Estimated Expiration
2034-12-27

AI Technical Summary

Technical Problem

Existing massage pillows can only apply vertical upward pressure to the user's head, resulting in a limited massage experience.

Method used

The massage pillow features cavities with notches at the front and rear ends between its unit bladders. The inflatable unit bladders can both vertically press the user's head by extending and contracting vertically, and horizontally clamp the embedded part by expanding horizontally, thus increasing the massage options and enhancing the user experience.

Benefits of technology

By adding vertical and horizontal massage modes, the user experience of the massage pillow is enhanced, providing multiple massage stimuli and greater comfort.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a massage pillow. An existing massage pillow is single in massage form and affects comfort. The massage pillow comprises a pillow body, a massage assembly arranged at the top of the pillow body and a control box arranged outside the pillow body, the massage assembly comprises a small annular bag which is in a circular ring shape and internally provided with a containing cavity, and the small annular bag comprises two unit bags which are symmetrically arranged in the width direction of the pillow body in a split mode and are in an arc shape. Notches communicated with the containing cavity are formed between the corresponding ends of the unit bags, and the edges of the two sides of the containing cavity expand through the notches and wrap a bearing object so that the bearing object can be horizontally clamped when the unit bags are inflated. The containing cavity with the notches in the front end and the rear end is formed between the unit bags, the containing cavity is in the shape of a long strip arranged in the front-back direction, the bottom face of the head of a user can be conveniently embedded into the containing cavity, and the inflated unit bags can vertically press the head of the user through vertical stretching and retracting; and the part embedded into the containing cavity can be horizontally clamped through horizontal expansion, and the use experience is improved by adding a massage mode.
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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 mounted on the pillow body. The massage component supports and presses against the bottom of the user's head by vertically extending and retracting. A control box inflates and deflates the massage component, causing it to reciprocate and extend to provide massage stimulation to the user. Because the massage component effectively supports the user's head, it is positioned directly below the user's head, meaning it can only apply vertical upward pressure. This results in a limited massage experience and negatively impacts the user experience. Utility Model Content

[0003] To address the shortcomings of existing technologies, this utility model provides a massage pillow with a receiving cavity with notches at the front and rear ends between the unit bladders. The bottom of the user's head can be embedded in the receiving cavity. The inflated unit bladders exert vertical pressure and horizontal clamping on the user's head, thereby enhancing the user experience by increasing the massage methods.

[0004] This utility model is achieved through the following method: a massage pillow, including a pillow body, a massage component disposed at the top of the pillow body, and a control box disposed outside the pillow body. The massage component includes a small annular bladder with an internal cavity. Each small annular bladder includes two symmetrically arranged arc-shaped unit bladders along the width of the pillow body. A notch communicating with the internal cavity is provided between corresponding ends of each unit bladder. The two sides of the internal cavity expand through the notch and wrap around the supported object, so that the unit bladder horizontally clamps the supported object when inflated. An internal cavity with notches at the front and rear ends is provided between the unit bladders. The internal cavity is elongated in the front-to-back direction, facilitating the insertion of the user's head into the internal cavity. The inflated unit bladder can both vertically press the user's head through vertical expansion and horizontally clamp the part inserted into the internal cavity, thus enhancing the user experience by increasing the massage methods.

[0005] Preferably, the small ring-shaped capsule comprises two annular small ring pieces, each with an annular sealing portion at both its inner and outer edges. An end-sealing portion spans between these annular sealing portions. The small ring pieces are vertically stacked and welded together by the annular sealing portions and the end-sealing portions, thus dividing the small ring-shaped capsule into unit capsules. The vertical stacking of the small ring pieces and the welding together by corresponding annular sealing portions ensure that the inner cavity of the small ring-shaped capsule is isolated from the external space. An end-sealing portion is provided within the cavity of the small ring-shaped capsule, dividing the cavity into two unconnected and symmetrically oriented unit capsules. The unit capsules expand radially inwards horizontally upon inflation, applying a horizontal clamping force to the bottom of the user's head, thereby providing horizontal massage stimulation to the user.

[0006] Preferably, the notch is provided on the end-sealed portion, and the notch is exposed towards the receiving cavity. By providing the notch, the front-to-back dimension of the receiving cavity is increased, thereby providing space for the area of ​​the bottom surface of the user's head, ensuring that the bottom surface of the user's head can be embedded in the receiving cavity.

[0007] Preferably, the end-sealed portion is V-shaped and the notch is an isosceles triangle, ensuring that the unit bladder has a symmetrical profile, thereby ensuring that the two sides of the notch can apply equal pressing force to the user's head, improving massage comfort.

[0008] Preferably, the end-sealing portion is located at the front and rear edges of the small annular pouch, so that the anteroposterior length of the receiving cavity is greater than its lateral width. The receiving cavity has a large anteroposterior dimension, which facilitates the insertion of the user's neck and the bottom surface of the head into the receiving cavity, thereby applying horizontal massage stimulation to the user.

[0009] Preferably, the massage component includes a large annular pouch arranged in a circular shape around the smaller annular pouch, with the large and small annular pouches concentrically arranged. The large annular pouch surrounding the small annular pouch provides multiple massage stimuli to the user's head through the independently arranged large and small annular pouches, while also enhancing the support and stability for the user. When the user is lying down, the periphery of the bottom surface of the user's head can rest on the top surfaces of the large and small annular pouches.

[0010] Preferably, both the large annular bladder and the unit bladder are equipped with air nozzles at their bottoms that connect to the outside, allowing for independent adjustment of the air pressure within each bladder. This independent adjustment enhances the ease of control and operation of the massage components, and also enables the creation of diverse massage experiences through independent control of the large annular bladder and the unit bladder.

[0011] Preferably, the large annular bladder comprises two large annular plates, each with an annular sealing portion on both its inner and outer edges. Equivalently spaced partitions are provided between the annular sealing portions. The large annular plates are vertically stacked and welded together by the annular sealing portions and the partitions. A through-hole is formed between the partitions and the sealing portions, thus dividing the large annular bladder into multiple arc-shaped unit cavities connected by the through-holes. The vertical stacking of the large annular plates and their welding together by corresponding annular sealing portions ensures 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 large annular 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 via the same air source, simplifying the air path structure and facilitating production and use. Large ring tablets can be mass-produced, effectively reducing processing costs.

[0012] 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.

[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 unit bladder is provided with a receiving cavity with notches at the front and rear ends. The receiving cavity is a long strip arranged in the front and back direction, which makes it convenient for the bottom of the user's head to be inserted into the receiving cavity. The inflatable unit bladder can not only exert a vertical pressing effect on the user's head through vertical extension and contraction, but also exert a horizontal clamping effect on the part inserted into the receiving cavity through horizontal expansion. The user experience is improved by increasing the massage mode. 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 of 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. Small ring bladder, 4. Large ring bladder, 5. Unit bladder, 6. Receiving cavity, 7. Notch, 8. Small ring plate, 9. Annular sealing part, 10. End sealing part, 11. Air nozzle, 12. Large ring plate, 13. Divider, 14. Through hole, 15. Pillow core, 16. Inner pillowcase, 17. 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 2 The 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 massage component includes a small ring-shaped pouch 3 with a cavity 6 inside. The small ring-shaped pouch 3 includes two arc-shaped unit pouches 5 symmetrically arranged along the width direction of the pillow body 1. A notch 7 communicating with the cavity 6 is provided between the corresponding ends of the unit pouches 5. The two sides of the cavity 6 expand through the notch 7 and wrap around the supported object, so that the unit pouches 5 horizontally clamp the supported object when inflated.

[0025] In actual operation, the notch 7 is located on the end-sealing part 10, and the notch 7 is exposed towards the receiving cavity 6. The end-sealing part 10 is V-shaped, and the opening of the end-sealing part 10 faces the receiving cavity 6, so that the notch 7 is an isosceles triangle and communicates with the receiving cavity 6. The receiving cavity 6 increases its front-to-back length by communicating with the notch 7. The bottom surface of the user's head and neck is a continuous strip. When the user is lying down, the bottom surface of their head and neck can be embedded in the receiving cavity 6 and the notch 7 from top to bottom. When in use, the unit bladder 5 undergoes vertical and horizontal deformation when inflated. The unit bladder 5 applies a vertical pressing force to the user's head through vertical deformation, and applies a horizontal pressing force to the part of the user's head located between the unit bladders through horizontal deformation. This allows the unit bladder 5 to apply massage stimulation to the user in multiple directions, effectively improving massage comfort.

[0026] In practice, the small annular capsule 3 includes two small annular pieces 8 (such as...). Figure 4As shown, the inner and outer edges of the small annular pieces 8 are provided with annular sealing portions 9, and end-positioned sealing portions 10 are connected between the annular sealing portions 9. The small annular pieces 8 are vertically stacked and welded together by the annular sealing portions 9 and the end-positioned sealing portions 10, so that the small annular bladder 3 is divided into the unit bladder 5. The small annular pieces 8 are independently processed and stacked and welded to form the small annular bladder 3. The corresponding inner edges and corresponding outer edges of the small annular pieces 8 are stacked and welded to each other to form annular bladder cavities, which facilitates the mass production of small annular pieces 8 and the assembly to form small annular bladder 3, ensuring that the small annular bladder 3 has good sealing performance. The bladder cavities inside the small annular bladder 3 are divided by setting the end-positioned sealing portions 10. The end-positioned sealing portions 10 are placed at the front edge and the rear edge of the small annular bladder 3, so that the bladder cavities inside the small annular bladder 3 are divided into two symmetrically placed unit cavities.

[0027] In actual operation, the large annular capsule 4 includes two large annular plates 12 (e.g., Figure 6 As shown, the inner and outer edges of the large ring plate 12 are provided with annular sealing parts 9. The large ring plates 12 are stacked vertically and welded together by the annular sealing parts 9. The large ring plates 12 are independently processed and stacked and welded to form a large ring bladder 4. The corresponding inner edges and corresponding outer edges of the large ring plates 12 are stacked and welded to form annular bladder cavities. This facilitates the mass production of the large ring plates 12 and the assembly to form the large ring bladder 4, ensuring that the large ring bladder 4 has good sealing performance.

[0028] In actual operation, the annular sealing parts 9 are provided with circumferentially equidistant partitions 13. The large annular pieces 12 are vertically stacked and welded together through the partitions 13. The partitions 13 and the sealing parts form a through hole 14, so that the large annular bladder 4 is divided into multiple arc-shaped unit cavities connected by the through holes 14. The large annular pieces 12 are provided with a weldable partition 13 in the annular central region between the outer and inner edges. The partitions 13 and the sidewalls of the large annular bladder 4 are provided with through holes 14. The bladder cavity of the large annular bladder 4 is divided into multiple arc-shaped unit cavities connected by the through holes 14 by the partitions 13, ensuring that adjacent unit cavities can deform freely, providing deformation space for the unit cavities to inflate and expand, thereby ensuring that the top surface of the large annular bladder 4 can reliably support the user's head and apply massage stimulation to the user's head.

[0029] Both the large ring bladder 4 and the unit bladder 5 have air nozzles 11 at their bottoms that communicate with the outside, allowing the air pressure inside the large ring bladder 4 and the unit bladder 5 to be adjusted independently. The air nozzles 11 are located on the lower small ring plate 8 and the lower large ring plate 12. The small ring plate 8 has two air nozzles 11 positioned to the left and right, ensuring that the air pressure inside each unit bladder 5 can be adjusted independently. This not only makes it easy to hide the air nozzles 11, but also allows the air nozzles 11 to be connected to the control box 2 via an air tube located below the massage component, thereby controlling the massage component to provide massage stimulation to the user's head.

[0030] In actual operation, the massage component includes a large annular pouch 4 that surrounds the small annular pouch 3 in a circular shape, with the large annular pouch 4 and the small annular pouch 3 being concentrically arranged. The bottom surfaces of the large annular pouch 4 and the small annular pouch 3 are at the same height and are fixed together by connecting pieces to fix the relative positions of the vertical projections of the large annular pouch 4 and the small annular pouch 3. The middle of the bottom walls of both the large annular pouch 4 and the small annular pouch 3 are welded and fixed to the connecting pieces, ensuring that the bottom walls of the large annular pouch 4 and the small annular pouch 3 maintain a uniform height and that their horizontal relative positions are fixed, preventing mutual interference.

[0031] In actual operation, the outer diameter of the large annular sac 43 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.

[0032] In actual operation, the inner diameter of the large annular bladder 43 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.

[0033] In actual operation, the outer diameter of the small annular sac 34 is C (e.g., Figure 3 As 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.

[0034] In actual operation, the inner diameter of the small annular sac 34 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.

[0035] In actual operation, the pillow body 1 includes a pillow core 15 and an inner pillowcase 16 that wraps around the pillow core 15. The massage component is located in the center of the top surface of the inner pillowcase 16. The massage component is adhered to the inner pillowcase 16, so that the massage component is fixed to the pillow core 15 through the inner pillowcase 16, ensuring that the massage component is always located in the center of the top surface of the pillow core 15, providing support and massage for the user's head.

[0036] In actual operation, the pillow body 1 includes an outer pillowcase 17 that covers the inner pillowcase 16 and the massage component. The outer pillowcase 17 not only protects the massage component, the pillow core 15 and the inner pillowcase 16 and facilitates disassembly and cleaning, but also covers the massage component and the inner pillowcase 16 to improve aesthetics.

Claims

1. A massage pillow, comprising a pillow body (1), a massage assembly disposed on the top of the pillow body (1), and a control box (2) externally disposed on the pillow body (1), characterized in that, The massage component includes a small ring-shaped pouch (3) with a cavity (6) in the shape of a ring. The small ring-shaped pouch (3) includes two unit pouches (5) that are symmetrically placed along the width direction of the pillow body (1) and are in the shape of an arc. The corresponding ends of the unit pouches (5) are provided with notches (7) that communicate with the cavity (6). The two sides of the cavity (6) expand through the notches (7) and wrap around the object being supported, so that the unit pouches (5) horizontally clamp the object being supported when inflated.

2. A massage pillow according to claim 1, characterized in that, The small ring capsule (3) includes two small ring pieces (8) in the shape of rings. The inner and outer edges of the small ring pieces (8) are provided with annular sealing parts (9). An end sealing part (10) is connected between the annular sealing parts (9). The small ring pieces (8) are stacked vertically and welded together by the annular sealing parts (9) and the end sealing parts (10) so that the small ring capsule (3) is divided into the unit capsules (5).

3. A massage pillow according to claim 2, characterized in that, The notch (7) is provided on the end sealing part (10), and the notch (7) is exposed toward the receiving cavity (6).

4. A massage pillow according to claim 3, characterized in that, The end-sealed part (10) is V-shaped, and the notch (7) is an isosceles triangle; or, the end-sealed part (10) is located at the front and rear edges of the small ring sac (3) so that the front-to-back length of the receiving cavity (6) is greater than the left-to-right width.

5. A massage pillow according to claim 1, characterized in that, The massage component includes a large ring (4) arranged in a circular shape around the small ring (3), and the large ring (4) and the small ring (3) are arranged concentrically.

6. A massage pillow according to claim 5, characterized in that, Both the large ring bladder (4) and the unit bladder (5) are provided with air nozzles (11) at the bottom that communicate with the outside, so that the air pressure inside the large ring bladder (4) and the unit bladder (5) can be adjusted independently.

7. A massage pillow according to claim 5, characterized in that, The large annular capsule (4) includes two large annular pieces (12) in the shape of rings. The inner and outer edges of the large annular pieces (12) are provided with annular sealing parts (9). The annular sealing parts (9) are provided with circumferentially equidistant partitions (13). The large annular pieces (12) are stacked vertically and welded together by the annular sealing parts (9) and the partitions (13). The partitions (13) and the sealing parts form a through hole (14) so ​​that the large annular capsule (4) is divided into multiple arc-shaped unit cavities that are connected by the through holes (14).

8. A massage pillow according to claim 5, characterized in that, The outer diameter of the large annular sac (4) is A, 200mm≤A≤270mm; or, the inner diameter of the large annular sac (4) is B, 135mm≤B≤180mm; or, the outer diameter of the small annular sac (3) is C, 130mm≤A≤170mm; or, the inner diameter of the small annular sac (3) is D, 65mm≤D≤85mm.

9. A massage pillow according to any one of claims 1-8, characterized in that, The pillow body (1) includes a pillow core (15) and an inner pillowcase (16) that wraps the pillow core (15), and the massage component is disposed in the middle of the top surface of the inner pillowcase (16).

10. A massage pillow according to claim 9, characterized in that, The pillow body (1) includes an inner pillowcase (16) and an outer pillowcase (17) that encloses the massage components.