Massage pillow

By designing vertically stacked multi-layer massage components, the problems of insufficient massage stimulation and foreign body sensation caused by single-layer massage airbags are solved, resulting in a stronger massage effect and greater comfort.

CN223489467UActive Publication Date: 2025-10-31AISE HEALTH DIGITAL TECHNOLOGY (HAINAN) CO LTD
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Patent Information

Application Number
CN202423254021.4
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 have a single-layer structure for their massage airbags, resulting in a small vertical extension range, which leads to insufficient massage stimulation intensity. In addition, the airbags are large after being deflated, causing a foreign body sensation and affecting the comfort of use.

Method used

The massage components are vertically stacked in a multi-layer structure, including an upper ring bladder and a lower ring bladder. The unit bladder and the lower ring bladder are independently connected to each other. By synchronously adjusting the air pressure, the vertical deformation stroke is accumulated to enhance the massage stimulation, and the independent deformation reduces the foreign body sensation.

Benefits of technology

The massage pillow has increased the intensity of its massage stimulation while reducing the feeling of foreign objects during use, thus improving user 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 poor in massage stimulation intensity. 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 control box adjusts air pressure in the massage assembly and applies massage stimulation to a supported object, and the massage assembly comprises an upper annular bag and a lower annular bag which are in a circular ring shape and are vertically stacked. The upper ring bag comprises at least two arc-shaped unit bags independently communicated with the lower ring bag, and the unit bags are independently arranged so that the unit bags can be matched and attached to a bearing object through deformation of the unit bags. The massage assembly is of a vertically-stacked multi-layer structure, massage stimulation is improved by accumulating vertical deformation strokes, foreign body sensation can be reduced by effectively shrinking and stacking, and the use experience is improved.
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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, a massage component located at the top of the pillow body, and a control box external to the pillow body. The control box adjusts the air pressure inside the massage component and applies massage stimulation to the supported object. The massage component includes independently set massage airbags. The control box inflates and deflates the massage airbags, causing them to expand and contract vertically through air pressure changes, thereby creating massage stimulation on the user's head. Because the massage airbags have a single-layer structure, the limited vertical expansion and contraction range reduces the intensity of the massage stimulation, affecting massage comfort. Furthermore, their large size can cause a foreign body sensation after deflation, also affecting user comfort. Utility Model Content

[0003] To address the shortcomings of existing technologies, this utility model provides a massage pillow with a multi-layered structure in which the massage components are stacked vertically. This structure not only enhances massage stimulation by increasing the vertical deformation stroke, but also reduces the feeling of foreign objects by effectively contracting and stacking the components, thus improving the user 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 adjusts the air pressure inside the massage component and applies massage stimulation to the supported object. The massage component includes an upper ring sac and a lower ring sac that are circular and stacked vertically. The upper ring sac includes at least two arc-shaped unit sacs that are independently connected to the lower ring sac. The unit sacs are independently arranged so that the unit sacs can match and fit the supported object through their own deformation. The massage component includes stacked upper and lower ring bladders. The upper ring bladder comprises multiple independently designed unit bladders, all of which are connected to the lower ring bladder. The unit bladders and lower ring bladders are interconnected and their air pressure can be adjusted synchronously, allowing for synchronized inflation and deflation. This increases the vertical deformation range of the massage component by accumulating vertical deformation travel, thereby increasing the massage stimulation through increased pressure. It effectively reduces the vertical deformation travel requirements of the lower and upper ring bladders. Furthermore, the independent deformation of the unit bladders and lower ring bladders guides the massage component to contract in a neat, stacked manner, reducing any foreign body sensation for the user and improving lying comfort. The upper ring bladder, through its multiple independently designed unit bladders, forms multiple independent support surfaces, effectively supporting the user's head and allowing for independent massage of different areas of the head.

[0005] Preferably, the bottom surface of the unit bladder is bonded to the top surface of the lower ring bladder, allowing the top of the unit bladder to move and fit snugly against the supported object. The fixed connection between each unit bladder and the lower ring bladder not only positions the unit bladders, ensuring their relative positions are fixed, but also ensures effective communication between the unit bladders and the lower ring bladder, thereby ensuring that each unit bladder can be inflated and deflated synchronously.

[0006] Preferably, the bottom wall of the unit capsule has an upper through hole, and the top wall of the lower ring capsule has a lower through hole. The upper and lower through holes are vertically aligned and fixedly connected by peripheral welding, so that the unit capsule and the lower ring capsule are fixedly connected. The vertical alignment of the upper and lower through holes and their corresponding peripheral welding ensures not only a firm connection between the unit capsule and the lower ring capsule, but also a sealed connection between the upper and lower through holes, ensuring that the unit capsule and the lower ring capsule can share an air source and adjust the air pressure synchronously.

[0007] Preferably, the vertical projections of the upper and lower ring sacs coincide, and the upper through-hole is located in the middle of the bottom wall of the unit sac. The unit sacs are assembled to form the upper ring sac, and the vertical projections of the unit sacs all fall within the lower ring sac, ensuring that the lower ring sac can effectively support each unit sac. The upper through-hole is located in the middle of the bottom wall of the unit sac, and the lower through-hole is located in the middle of the top wall of the upper ring sac, allowing the unit sacs to swing around the lower through-hole as the center, ensuring that the top surface of the unit sac matches and conforms to the bottom surface of the user's head, improving support and massage effects.

[0008] Preferably, a gap is reserved between adjacent unit bladders, which not only provides space for the unit bladders to inflate, but also ensures that adjacent unit bladders can swing independently, and ensures that the top surface of the unit bladder can match and fit the bottom surface of the user's head.

[0009] Preferably, there are four unit capsules, and the arc angle of each unit capsule is 90°. The unit capsules have the same structural outline, which facilitates mass production and also reduces the contact area between the top surface of each unit capsule and the user's head by increasing the number of unit capsules, thereby increasing the intensity of massage stimulation.

[0010] Preferably, the bottom wall of the lower ring bladder is provided with at least one air nozzle that communicates with the outside. The lower ring bladder is connected to the control box through the air nozzle, so that the control box can regulate the air pressure of the lower ring bladder and the unit bladder connected to the lower ring bladder.

[0011] Preferably, the lower annular bladder comprises two vertically stacked annular pieces, each with an annular sealing portion at its inner and outer edges. The stacked annular pieces are welded together and fixed in place by the corresponding annular sealing portions. The annular pieces can be mass-produced, effectively reducing production costs. The stacked annular pieces, fixed by welding with the annular sealing portions, enclose an annular cavity isolated from the external space, ensuring precise adjustment of the air pressure within the lower annular bladder.

[0012] Preferably, the unit capsule comprises two vertically stacked arc-shaped pieces, each with an annular sealing portion at its periphery. The stacked arc-shaped pieces are welded together and fixed in place by the corresponding annular sealing portions. The arc-shaped pieces can be mass-produced, effectively reducing production costs. The stacked arc-shaped pieces, fixed by welding with the annular sealing portions, enclose an arc-shaped cavity isolated from the external space, ensuring precise adjustment of the air pressure within the unit capsule.

[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 massage component includes stacked upper and lower ring bladders. The upper ring bladder includes multiple independently arranged unit bladders, all of which are connected to the lower ring bladder. The unit bladders and the lower ring bladder are interconnected and can adjust their air pressure synchronously, allowing them to be inflated and deflated simultaneously. This not only increases the vertical deformation range of the massage component by accumulating the vertical deformation stroke, thereby increasing the massage stimulation by increasing the pressing force, but also guides the massage component to be neatly stacked and contracted by the independent deformation of the unit bladders and the lower ring bladder, thereby reducing the foreign body sensation for the user and improving lying comfort. 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 disassembled structure of the upper ring bladder;

[0019] Figure 4 This is a schematic diagram of the structure of the arc-shaped piece;

[0020] Figure 5 This is a schematic diagram of the disassembled structure of the lower annular bladder;

[0021] Figure 6 This is a schematic diagram of the structure of the ring plate;

[0022] Figure 7 This is a schematic diagram of the front view structure of the massage component;

[0023] In the diagram: 1. Pillow body, 2. Massage component, 3. Lower ring bladder, 4. Unit bladder, 5. Upper through hole, 6. Lower through hole, 7. Movement gap, 8. Air nozzle, 9. Ring piece, 10. Arc piece, 11. Pillow core, 12. Inner pillowcase, 13. Outer pillowcase, 14. Control box. Detailed Implementation

[0024] The essential features of this utility model will be further described below with reference to the accompanying drawings and specific embodiments.

[0025] like Figure 1 and 2 The massage pillow shown includes a pillow body 1, a massage component 2 disposed on the top of the pillow body 1, and a control box 14 disposed outside the pillow body 1. The control box 14 adjusts the air pressure inside the massage component 2 and applies massage stimulation to the supported object. The massage component 2 includes an upper ring pouch and a lower ring pouch 3 that are circular and stacked vertically. The upper ring pouch includes at least two arc-shaped unit pouches 4 that are independently connected to the lower ring pouch 3. The unit pouches 4 are independently arranged so that the unit pouches 4 can match and fit the supported object through their own deformation. The massage component 2 includes stacked upper and lower ring bladders 3. The upper ring bladder includes multiple independently arranged unit bladders 4, all of which are connected to the lower ring bladder 3. The unit bladders 4 and the lower ring bladder 3 are interconnected and can adjust their air pressure synchronously, allowing them to inflate and deflate simultaneously. This can increase the vertical deformation range of the massage component 2 by accumulating the vertical deformation stroke, thereby increasing the massage stimulation by increasing the pressing force. It can also guide the massage component 2 to neatly stack and contract by the independent deformation of the unit bladders 4 and the lower ring bladder 3, thereby reducing the foreign body sensation for the user and improving lying comfort.

[0026] In actual operation, the upper ring bladder includes multiple annularly distributed, arc-shaped unit bladders 4. The bottom surface of each unit bladder 4 is adhered to the top surface of the lower ring bladder 3, allowing the top of the unit bladder 4 to move and fit the supported object. The unit bladders 4 are equidistantly distributed along the circumference of the top surface of the lower ring bladder 3 and are interconnected, ensuring that the air pressure inside the unit bladder 4 and the lower ring bladder 3 can be adjusted synchronously. During use, the control box 14 controls the air pressure inside the massage component 2 through the air nozzle 8: when the massage component 2 is inflated, the lower ring bladder 3 supplies air to the unit bladder 4 and expands synchronously. The lower ring bladder 3 and the unit bladder 4 extend vertically at the same time and apply a pressing force to the bottom of the user's head. The pressing force is increased by increasing the lifting amplitude of the top surface of the unit bladder 4, thereby increasing the intensity of massage stimulation. When the massage component 2 deflates and contracts, the unit bladder 4 deflates through the lower ring bladder 3 and contracts synchronously. The unit bladder 4 is stacked on top of the lower ring bladder 3, which not only effectively reduces the thickness of the massage component 2, but also ensures that the massage component 2 can contract in the preset manner, preparing for the massage component 2 to be inflated again.

[0027] In actual operation, the bottom wall of the unit capsule 4 is provided with an upper through hole 5 (e.g., Figure 3As shown), the top wall of the lower ring bladder 3 is provided with a lower through hole 6 (as shown). Figure 5 As shown), the upper through hole 5 and the lower through hole 6 are vertically aligned and fixed together by peripheral welding to ensure that the unit bladder 4 and the lower ring bladder 3 are connected and fixed. The upper through hole 5 is located in the center of the bottom wall of the unit bladder 4. The unit bladder 4 is stacked on top of the lower ring bladder 3 and fixed by peripheral welding of the upper through hole 5 and the lower through hole 6. This ensures that the unit bladder 4 and the lower ring bladder 3 are firmly connected, which not only limits the position of the unit bladder 4, but also ensures that the upper through hole 5 and the lower through hole 6 are sealed and connected, ensuring that the unit bladder 4 can adjust the air pressure and expand and contract synchronously with the lower ring bladder 3. In addition, an movable gap 7 is reserved between adjacent unit bladders 4 (e.g., Figure 7 As shown in the figure, the unit sac 4 is fixed to the top wall of the lower ring sac 3 through the center of the bottom wall, so that the unit sac 4 can swing with the center of its bottom wall as the center. By adjusting the orientation of the top wall of the unit sac 4, it can match and fit the corresponding area of ​​the bottom of the user's head, thereby improving support comfort and massage comfort.

[0028] In actual operation, the vertical projections of the upper and lower ring sacs 3 coincide, and the upper through hole 5 is opened in the middle of the bottom wall of the unit sac 4. The vertical projection of the unit sac 4 falls completely into the lower ring sac 3, which not only ensures that the lower ring sac 3 can effectively support the unit sac 4, but also eliminates the feeling of foreign objects by neatly stacking them, thus improving lying comfort.

[0029] In practice, there are four unit sacs 4, and the arc angle of each unit sac 4 is 90°. This not only increases the pressing force by reducing the top wall area of ​​each unit sac 4, thereby increasing the intensity of massage stimulation, but also facilitates assembly and processing and improves production efficiency by limiting the number of unit sacs 4. In addition, the number of unit sacs 4 can also be two, three, five, etc., all of which should be considered as specific embodiments of this utility model.

[0030] In practice, the lower annular sac 3 includes two vertically stacked annular pieces 9 (e.g., Figure 6 As shown, the inner and outer edges of the ring plate 9 are provided with annular sealing portions. The ring plates 9 are stacked and fixed by welding through the corresponding annular sealing portions. The inner and outer edges of the ring plate 9 respectively form annular sealing portions. When the ring plates 9 are vertically aligned and stacked, they are stacked and welded through the corresponding annular sealing portions to form an annular cavity. The bottom wall of the lower annular bladder 3 is provided with at least one air nozzle 8 communicating with the outside. The air nozzle 8 is set on the lower ring plate 9, which hides and protects the air nozzle 8. The massage component 2 is used to shield and reduce the feeling of foreign objects. The lower through hole 6 is opened on the upper ring plate 9 to facilitate communication with the unit bladder 4.

[0031] In practice, the unit capsule 4 includes two vertically stacked arc-shaped pieces 10 (e.g., Figure 4As shown, the arc-shaped piece 10 has an annular sealing part around its periphery. The arc-shaped pieces 10 are stacked and fixed by welding through the corresponding annular sealing parts. The lower arc-shaped piece 10 has an upper through hole 5 in its center, which facilitates communication with the lower annular bag 3 and also guides the swing of the unit bag 4.

[0032] In actual operation, the pillow body 1 includes a pillow core 11 and an inner pillowcase 12 that covers the pillow core 11. The massage component 2 is disposed in the center of the top surface of the inner pillowcase 12. The massage component 2 is adhered to the inner pillowcase 12, so that the massage component 2 is fixed to the pillow core 11 through the inner pillowcase 12, ensuring that the massage component 2 is always located in the center of the top surface of the pillow core 11, providing support and massage for the user's head.

[0033] In actual operation, the pillow body 1 includes an outer pillowcase 13 that covers the inner pillowcase 12 and the massage component 2. The outer pillowcase 13 not only protects the massage component 2, the pillow core 11 and the inner pillowcase 12, making it easy to disassemble and clean, but also covers the massage component 2 and the inner pillowcase 12, improving the aesthetics.

Claims

1. A massage pillow, comprising a pillow body (1), a massage component (2) disposed on the top of the pillow body (1), and a control box (14) externally disposed on the pillow body (1), wherein the control box (14) adjusts the air pressure inside the massage component (2) and applies massage stimulation to the supported object, characterized in that, The massage component (2) includes an upper ring pouch and a lower ring pouch (3) that are circular and stacked vertically. The upper ring pouch includes at least two arc-shaped unit pouches (4) that are independently connected to the lower ring pouch (3). The unit pouches (4) are independently arranged so that the unit pouches (4) can match and fit the supported object through their own deformation.

2. A massage pillow according to claim 1, characterized in that, The bottom surface of the unit sac (4) is attached to the top surface of the lower ring sac (3) so that the top of the unit sac (4) can move and match the supported object.

3. A massage pillow according to claim 2, characterized in that, The unit capsule (4) has an upper through hole (5) on its bottom wall and the lower ring capsule (3) has a lower through hole (6) on its top wall. The upper through hole (5) and the lower through hole (6) are vertically aligned and fixed together by peripheral welding so that the unit capsule (4) and the lower ring capsule (3) are fixedly connected.

4. A massage pillow according to claim 3, characterized in that, The vertical projections of the upper and lower annular sacs (3) coincide, and the upper through hole (5) is opened in the middle of the bottom wall of the unit sac (4).

5. A massage pillow according to claim 3, characterized in that, An activity gap (7) is reserved between adjacent unit capsules (4); or, there are four unit capsules (4), and the arc angle of the unit capsules (4) is 90°.

6. A massage pillow according to claim 1, characterized in that, The bottom wall of the lower ring bladder (3) is provided with at least one air nozzle (8) that communicates with the outside.

7. A massage pillow according to any one of claims 1-6, characterized in that, The lower ring bladder (3) includes two vertically stacked ring pieces (9). The inner and outer edges of the ring pieces (9) are provided with annular sealing parts. The ring pieces (9) are stacked and fixed by welding through the corresponding annular sealing parts.

8. A massage pillow according to any one of claims 1-6, characterized in that, The unit capsule (4) includes two vertically stacked arc plates (10), and the periphery of the arc plates (10) is provided with an annular sealing part. The arc plates (10) are stacked and fixed by welding through the corresponding annular sealing parts.

9. A massage pillow according to any one of claims 1-6, characterized in that, The pillow body (1) includes a pillow core (11) and an inner pillowcase (12) that wraps the pillow core (11), and the massage component (2) is disposed in the middle of the top surface of the inner pillowcase (12).

10. A massage pillow according to claim 9, characterized in that, The pillow body (1) includes an outer pillowcase (13) that covers the inner pillowcase (12) and the massage component (2).