Massage pillow

By incorporating a neck clamping component into the pillow body and utilizing the inflation and deflation switching of the support bladder and clamping bladder, the problem of the limited functionality of existing massage pillows is solved, improving the user experience and clamping effect, and adding a heat therapy function.

CN223489470UActive Publication Date: 2025-10-31AISE HEALTH DIGITAL TECHNOLOGY (HAINAN) CO LTD
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Patent Information

Application Number
CN202423285182.X
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 limited functionality, which affects the user experience.

Method used

A neck clamping component, including a support bladder and a clamping bladder, is set on the pillow body. The expansion and contraction states are switched by inflation and deflation. The clamping bladder fits tightly against the user's neck, clamping the user's neck and improving the fit and clamping force.

Benefits of technology

By adding a neck clamping component, the user experience of the massage pillow has been improved. The clamping sac fits closely to the user's neck, the clamping force is enhanced, the foreign body sensation is eliminated, a heat therapy function is provided, and the overall use effect is improved.

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Abstract

The utility model relates to a massage pillow. An existing massage pillow is single in function. The neck massage pillow comprises a pillow body, a neck clamping assembly, a massage assembly and a control box arranged outside the pillow body, the neck clamping assembly is arranged at the front edge of a top bag of the pillow body, the neck clamping assembly comprises a supporting bag and clamping bags symmetrically arranged on the two sides of the top face of the supporting bag, and the neck clamping assembly is switched between an expansion state and a contraction state through inflation and deflation. When the control box controls the neck clamping assembly to be switched to the expansion state, the clamping bags are inflated to expand and clamp a bearing object through opposite closing. The neck clamping assembly is arranged on the pillow body and comprises the supporting bag and the clamping bag, the supporting bag is inflated and drives the clamping bag to be lifted upwards, the clamping bag is tightly attached to the neck of the user, the clamping bag is inflated and clamps the neck of the user, the attaching tightness between the clamping bag and the neck of the user is further improved, the clamping force is effectively improved, and the clamping effect is improved. And the use experience is improved by adding the pillow body function.
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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 consist of a pillow body, massage components, and a control box external to the pillow body. The control box inflates and deflates the massage components, which then extend and retract to massage the user's head. The limited functionality of massage pillows 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 neck clamping component on the pillow body. The neck clamping component includes a clamping bladder, which is inflated and clamps the neck to ensure that the neck clamping component fits closely to the user's head. This enhances the user experience by increasing the pillow's functionality.

[0004] This utility model is achieved through the following method: a massage pillow, including a pillow body, a neck clamping component, a massage component, and a control box externally mounted on the pillow body. The neck clamping component is located at the front edge of the pillow body's top bladder. The neck clamping component includes a support bladder and clamping bladders symmetrically arranged on both sides of the top surface of the support bladder. The neck clamping component switches between an expanded state and a contracted state by inflating and deflating. When the control box controls the neck clamping component to switch to the expanded state, the clamping bladders inflate and clamp the supported object by moving towards each other. By setting the neck clamping component on the pillow body, the neck clamping component, including a support bladder and clamping bladders, inflates and drives the clamping bladders to rise upwards, allowing the clamping bladders to fit tightly against the user's neck. Inflating the clamping bladders and clamping the user's neck further enhances the tightness of the fit between the clamping bladders and the user's neck, effectively increasing the clamping force. By adding functions to the pillow body, the user experience is improved.

[0005] Preferably, the clamping bladder is V-shaped, with its openings facing away from each other, so that the clamping bladder can clamp and support the object when switched to the expanded state. The clamping bladder is V-shaped, with a fixed portion on one side fixed to the support bladder, and a swing portion on the other side that can swing freely. Inflating the clamping bladder increases the angle, allowing the clamping bladders on both sides to approach each other via the swing portion and clamp the user's neck.

[0006] Preferably, the clamping bladder includes a fixed portion that fits against the top surface of the support bladder and a swing portion that is swingably disposed on the fixed portion. The connecting end of the swing portion is fixedly connected to the corresponding end edge of the fixed portion, so that the swing end of the swing portion can swing around its connecting end as the center. The connection between the connecting end of the swing portion and the fixed portion allows the swing portion to swing around its connecting end as the center when inflated, thereby converting the air pressure inside the clamping bladder into a force that drives the swing portion to swing, thus increasing the clamping force.

[0007] Preferably, when the neck clamping assembly is switched to the retracted state, the swinging part moves closer to the fixed part to reduce the height of the neck clamping assembly. Gas is expelled from the swinging part and it contracts, causing the swinging part to move closer to the fixed part and overlap, thus reducing the height of the clamping pouch and eliminating the feeling of a foreign object.

[0008] Preferably, both the top surface of the fixed part and the bottom surface of the swing part are provided with upper through holes near the connecting end. The upper through holes are aligned and bonded together by peripheral welding to connect the fixed part and the swing part. The fixed part and the swing part are independently arranged and connected by the upper through holes, so that the air pressure in the fixed part and the swing part can be adjusted synchronously, ensuring that the neck clamping assembly switches between the expansion state and the contraction state by inflation and deflation.

[0009] Preferably, a lower through hole is provided between the bottom surface of the fixing part and the top surface of the support bladder. The fixing part is stacked on the support bladder, and the lower through holes are aligned and bonded together by peripheral welding to enable communication between the fixing part and the support bladder. The support bladder and the fixing part are connected through corresponding lower through holes, allowing the clamping bladder to obtain an air source through the support bladder and synchronously adjust the air pressure, ensuring that the neck clamping assembly switches between an expanded state and a contracted state through inflation and deflation.

[0010] Preferably, the support bladder, fixing part, and swinging part are all plate-shaped and have a double-layer sheet stacked structure. The stacked sheets are fixed by peripheral welding, which facilitates the stacking and storage of the support bladder, fixing part, and swinging part after deflation, eliminates the feeling of foreign objects by reducing thickness, and ensures that the included angle between the swinging part and the fixing part expands after inflation, effectively increasing the clamping force and improving the user experience. The double-layer sheet structure of the support bladder, fixing part, and swinging part facilitates batch processing of sheets, reduces processing costs, facilitates welding and fixing, improves processing efficiency, and ensures reliable sealing.

[0011] Preferably, the support bladder has unit cavities that correspond one-to-one with the clamping bladders, and the bottom of each unit cavity has an air nozzle that communicates with the outside. The unit cavities correspond one-to-one with the clamping bladders, ensuring that each unit cavity can provide an air source for the clamping bladders. The clamping bladders are connected to the control box through their corresponding unit cavities, allowing the two clamping bladders to operate independently, thus improving the user experience by adding operating modes.

[0012] Preferably, the vertical projection of the clamping pouch falls completely into the corresponding unit cavity. The unit cavity inflates and lifts the corresponding clamping pouch, ensuring stable support for the clamping pouch and preventing it from failing to clamp the user's neck due to deflection.

[0013] Preferably, the pillow body includes a pillow core and an inner pillowcase covering the pillow core. The neck clamping assembly is located at the top front edge of the pillow core, and the top front edge of the inner pillowcase is provided with a heating pad covering the neck clamping assembly. When the neck clamping assembly is switched to the expanded state, it drives the heating pad to fit against the supported object. The heating pad is positioned above the neck clamping assembly through the inner pillowcase, so that when the neck clamping assembly is switched to the expanded state, it drives the heating pad to fit tightly against the user's neck, providing a heat therapy effect to the user's neck.

[0014] Preferably, the pillow body includes an outer pillowcase that covers the inner pillowcase and the heating element. The outer pillowcase protects and conceals the heating element and massage components, improving both aesthetics and ease of removal and washing, thus enhancing the user experience.

[0015] The beneficial effects of this utility model are as follows: A neck clamping component is provided on the pillow body. The neck clamping component includes a support bladder and a clamping bladder. The support bladder is inflated and drives the clamping bladder to rise upward. The clamping bladder fits tightly against the user's neck. The clamping bladder is inflated and clamps the user's neck, which further improves the tightness of the fit between the clamping bladder and the user's neck and effectively increases the clamping force. The user experience is improved by increasing the functionality of the pillow body. Attached Figure Description

[0016] Figure 1 This is a schematic diagram of the structure of the neck clamping assembly;

[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 neck clamping assembly in the retracted state.

[0019] Figure 4 This is a schematic diagram of the disassembled structure of the neck clamping assembly;

[0020] Figure 5 This is a schematic diagram of the structure of the sheet material;

[0021] In the diagram: 1. Pillow body, 2. Neck clamping assembly, 3. Control box, 4. Support sac, 5. Clamping sac, 6. Fixing part, 7. Swinging part, 8. Upper through hole, 9. Lower through hole, 10. Unit cavity, 11. Air nozzle, 12. Pillow core, 13. Inner pillowcase, 14. Heating element, 15. Outer pillowcase, 16. Massage assembly. Detailed Implementation

[0022] The essential features of this utility model will be further described below with reference to the accompanying drawings and specific embodiments.

[0023] like Figure 1 and 2The massage pillow shown includes a pillow body 1, a neck clamping assembly 2, a massage assembly 16, and a control box 3 externally mounted on the pillow body 1. The neck clamping assembly 2 is located at the front edge of the top sac of the pillow body 1. The neck clamping assembly 2 includes a support sac 4 and clamping sacs 5 symmetrically arranged on both sides of the top surface of the support sac 4. The neck clamping assembly 2 switches between an expanded state and a contracted state by inflating and deflating. When the control box 3 controls the neck clamping assembly 2 to switch to the expanded state, the clamping sacs 5 inflate and clamp the supported object by moving towards each other. The neck clamping assembly 2 includes a support sac 4 and clamping sacs 5. The support sac 4 inflates and drives the clamping sacs 5 to rise upwards, allowing the clamping sacs 5 to fit closely to the user's neck. The clamping sacs 5 inflate and clamp the user's neck, further improving the tightness of the fit between the clamping sacs 5 and the user's neck, effectively increasing the clamping force, improving the clamping effect, and enhancing the user experience.

[0024] In actual operation, the neck clamping assembly 2 includes a rectangular plate-shaped support bladder 4 and two clamping bladders 5 disposed on the support bladder 4. The clamping bladders 5 are V-shaped and their openings face away from each other, so that when switched to the expanded state, the clamping bladders 5 can clamp the user's neck by engaging the opposing swinging parts 7.

[0025] In actual operation, the clamping bladder 5 includes a fixed part 6 that fits against the top surface of the support bladder 4 and a swinging part 7 that is swingably disposed on the fixed part 6. The connecting end of the swinging part 7 is fixed to the corresponding end edge of the fixed part 6, so that the swinging end of the swinging part 7 can swing around its connecting end as the center. The support bladder 4, the fixed part 6, and the swinging part 7 are interconnected. The control box 3 switches the neck clamping assembly 2 between an expanded state and a contracted state by inflating and deflating the neck clamping assembly 2. Specifically:

[0026] When the neck clamping assembly 2 is inflated and switches to the expanded state, the support bladder 4 inflates and lifts the clamping bladder 5, so that the clamping bladder 5 moves upward and vertically fits against the bottom surface of the user's neck. The fixed part 6 and the swinging part 7 in the clamping bladder 5 are inflated at the same time. This increases the thickness of the connecting end of the swinging part 7 and the corresponding edge of the fixed part 6, thereby increasing the angle between the swinging part 7 and the fixed part 6 due to mutual compression. This causes the swinging parts 7 located on both sides of the support bladder 4 to move towards each other and clamp the user's neck horizontally. It also increases the air pressure inside the swinging part 7 to improve its deformation resistance, effectively maintain the plate-like structure, and transmit the force generated by the swinging of the swinging part 7 to the user's neck, effectively improving the clamping force on the user's neck.

[0027] When the neck clamp assembly 2 deflates and switches to a retracted state (e.g.) Figure 3As shown, the support pouch 4 deflates and the height of the clamping pouch 5 is lowered so that the clamping pouch 5 is disengaged from the user's neck. The fixed part 6 and the swinging part 7 in the clamping pouch 5 deflate at the same time. The connecting end of the swinging part 7 and the corresponding edge of the fixed part 6 will deform due to the deflation and contraction, resulting in a smaller angle between the swinging part 7 and the fixed part 6. The swinging part 7 will also soften due to the decrease in air pressure and stick to the fixed part 6. The fixed part 6 will also become thinner due to the decrease in air pressure and stick to the support pouch 4. This makes the swinging part 7, the fixed part 6 and the support pouch 4 thinner and stacked from top to bottom. The foreign body sensation is eliminated by reducing the thickness of the neck clamping assembly 2.

[0028] In actual operation, the support bladder 4 is provided with unit cavities 10 corresponding to the clamping bladders 5 one by one. The bottom of each unit cavity 10 is provided with an air nozzle 11 that communicates with the outside. The unit cavity 10 is connected to the control box 3 through the corresponding air nozzle 11, and also to the corresponding fixing part 6 through the lower through hole 9. The fixing part 6 is connected to the corresponding swinging part 7 through the upper through hole 8, thereby ensuring that the swinging part 7, the fixing part 6, and the unit cavity 10 arranged sequentially from top to bottom are connected to the control box 3 through the corresponding air nozzle 11 (e.g., Figure 5 As shown), this ensures that the air pressure inside the three can be adjusted synchronously. Two air nozzles 11 are provided on both sides of the support bladder 4, each communicating with a corresponding unit cavity 10, so that the control box 3 can independently control the two separately positioned support bladders 4 through the unit cavities 10 located on both sides of the support bladder 4, facilitating the independent or combined use of the clamping bladder 5.

[0029] In actual operation, both the top surface of the fixed part 6 and the bottom surface of the swing part 7 are provided with upper through holes 8 near the connecting end. These upper through holes 8 are aligned and bonded together by peripheral welding to ensure communication between the fixed part 6 and the swing part 7. The placement of the upper through holes 8 near the connecting end on the top surface of the fixed part 6 and the bottom surface of the swing part 7 ensures communication and synchronous air pressure adjustment between the fixed part 6 and the swing part 7, and also eliminates the influence on the swing of the swing part 7 by reducing the distance between the upper through holes 8 and the connecting end. The upper through holes 8 are vertically aligned and bonded together by peripheral overlapping welding to ensure a sealed connection between the fixed part 6 and the swing part 7.

[0030] In actual operation, the vertical projection of the clamping bladder 5 falls completely into the corresponding unit cavity 10. A lower through hole 9 is provided between the bottom surface of the fixing part 6 and the top surface of the supporting bladder 4. The fixing part 6 is stacked on the supporting bladder 4, and the lower through holes 9 are aligned and welded together around their periphery to ensure communication between the fixing part 6 and the supporting bladder 4. Multiple sets of corresponding lower through holes 9 can be provided between the bottom surface of the fixing part 6 and the top surface of the unit cavity 10. This increases the airflow rate by increasing the number of lower through holes 9, facilitating rapid adjustment of the air pressure inside the clamping bladder 5. Furthermore, welding together the corresponding periphery of the lower through holes 9 ensures a secure connection between the fixing part 6 and the supporting bladder 4.

[0031] In actual operation, the support bladder 4, the fixed part 6, and the swing part 7 are all plate-shaped and have a double-layer sheet stacked structure (e.g., Figure 4 As shown, the sheets are stacked and fixed by peripheral welding. Sheets of different sizes are pre-processed in batches and then stacked, welded, and bonded to form support bladders 4, fixed parts 6, and swing parts 7 of different sizes. This facilitates mass production, reduces processing costs, and effectively improves processing efficiency.

[0032] In actual operation, the pillow body 1 includes a pillow core 12 and an inner pillowcase 13 that wraps around the pillow core 12. The neck clamping assembly 2 is located at the top front edge of the pillow core 12. The top front edge of the inner pillowcase 13 is provided with a heating plate 14 covering the neck clamping assembly 2. The neck clamping assembly 2 switches to the expanded state and drives the heating plate 14 to fit against the supported object. The inner pillowcase 13 covers the pillow core 12 and the neck clamping assembly 2, so that the two sides of the heating plate 14 are respectively positioned above the corresponding swing parts 7. When the neck clamping assembly 2 switches to the expanded state, the swing parts 7 tilt up and move towards each other. The sides of the heating plate 14 can tilt up under the drive of the corresponding swing parts 7 and fit closely against the user's neck. The heat generated by the heating plate 14 provides a heat therapy service to the user's neck. The close fit between the heating plate 14 and the neck is conducive to heat transfer and effectively improves the comfort of the heat therapy. The neck clamping component 2 can maintain an expanded state for a long time and provide clamping operation for the user's neck, ensuring that the heating plate 14 fits tightly with the user's neck. It can also switch back and forth between the expanded and contracted states and perform massage operation on the user's neck. All of these should be regarded as specific embodiments of this utility model.

[0033] In actual operation, the pillow body 1 includes an outer pillowcase 15 that covers the inner pillowcase 13 and the massage component 16. The outer pillowcase 15 serves to protect the massage component 16, the pillow core 12 and the inner pillowcase 13, making it easy to disassemble and clean. It also serves to cover the massage component 16 and the inner pillowcase 13, improving the aesthetics.

Claims

1. A massage pillow, comprising a pillow body (1), a massage component (16), and a control box (3) externally disposed on the pillow body (1), characterized in that, A neck clamping assembly (2) is provided on the pillow body (1). The neck clamping assembly (2) is located at the front edge of the top sac of the pillow body (1). The neck clamping assembly (2) includes a support sac (4) and clamping sacs (5) symmetrically arranged on both sides of the top surface of the support sac (4). The neck clamping assembly (2) switches between an expanded state and a contracted state by inflating and deflating air. When the control box (3) controls the neck clamping assembly (2) to switch to the expanded state, the clamping sacs (5) inflate and clamp the object by moving towards each other.

2. A massage pillow according to claim 1, characterized in that, The clamping bladder (5) is V-shaped, and the openings of the clamping bladder (5) are arranged opposite to each other so that the clamping bladder (5) can clamp and support the object when switched to the expanded state.

3. A massage pillow according to claim 2, characterized in that, The clamping pouch (5) includes a fixed part (6) that is fitted to the top surface of the support pouch (4) and a swing part (7) that is swingably disposed on the fixed part (6). The connecting end of the swing part (7) is fixed to the corresponding end edge of the fixed part (6) so that the swing end of the swing part (7) can swing with its connecting end as the center.

4. A massage pillow according to claim 3, characterized in that, When the neck clamping assembly switches to the retracted state, the swing part (7) moves closer to the fixed part (6) to reduce the height of the neck clamping assembly (2).

5. A massage pillow according to claim 3, characterized in that, Both the top surface of the fixed part (6) and the bottom surface of the swing part (7) near the connecting end are provided with upper through holes (8). The upper through holes (8) are aligned and bonded together by peripheral welding so that the fixed part (6) and the swing part (7) are connected. Alternatively, both the bottom surface of the fixed part (6) and the top surface of the support bladder (4) are provided with lower through holes (9). The fixed part (6) is stacked on the support bladder (4). The lower through holes (9) are aligned and bonded together by peripheral welding so that the fixed part (6) and the support bladder (4) are connected.

6. A massage pillow according to claim 3, characterized in that, The support bladder (4), the fixed part (6) and the swing part (7) are all plate-shaped and have a double-layer sheet stacked structure. The stacked sheets are fixed by peripheral welding.

7. A massage pillow according to any one of claims 1-6, characterized in that, The support bladder (4) has a unit cavity (10) that corresponds to the clamping bladder (5) one by one, and the bottom of the unit cavity (10) has an air nozzle (11) that communicates with the outside.

8. A massage pillow according to claim 7, characterized in that, The vertical projection of the clamping pouch (5) falls completely into the corresponding unit cavity (10).

9. A massage pillow according to any one of claims 1-6, characterized in that, The pillow body (1) includes a pillow core (12) and an inner pillowcase (13) that wraps the pillow core (12). The neck clamping assembly (2) is disposed on the front edge of the top of the pillow core (12). The front edge of the top of the inner pillowcase (13) is provided with a heating plate (14) that covers the neck clamping assembly (2). The neck clamping assembly (2) switches to an expanded state and drives the heating plate (14) to fit against the object being supported.

10. A massage pillow according to claim 9, characterized in that, The pillow body (1) includes an outer pillowcase (15) that wraps the inner pillowcase (13) and the heating element (14).