Inflatable pillow, inflatable pillow and inflatable pillow assembly
By designing an air-blowing pillow and an air-blowing pillow group, and using a small amount of air for support and clamping force on body parts, the problem of existing neck pillows being unable to provide temporary support and insufficient adaptability is solved, and the effect of flexible adaptability and portable storage is achieved.
Patent Information
- Application Number
- CN201811510486.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2018-12-11
- Publication Date
- 2025-09-16
- Estimated Expiration
- 2038-12-11
AI Technical Summary
Existing neck pillows cannot meet the needs of temporary or small-part support, cannot adapt to changes in different usage positions and supports, and require a large amount of air to inflate, making them inconvenient to use.
An air-blowing pillow and an air-blowing pillow group are designed. They adopt a small air volume support method, fill with air through the mouth, and fix the position by the clamping force between body parts or objects. They are equipped with detachable blowing components and connecting components to adapt to different support needs.
It achieves flexible adaptation to local support needs, reduces inflation requirements, facilitates storage and carrying, improves usage efficiency, and is suitable for use by multiple people and support from different objects.
Smart Images

Figure CN111297134B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of pillows and cushions, and further relates to an air-blowing pillow, an air-blowing pillow and an air-blowing pillow assembly. Background Art
[0002] Neck pillows are a common resting aid in daily life. Most existing neck pillows are filled with elastic or granular materials and fashioned into a custom shape, such as a U-shape. While elastic fillings offer a soft feel, they are also difficult to store and carry.
[0003] On this basis, inflatable neck pillows gradually appeared. Inflatable neck pillows can be inflated to form a state for people to use. When they are not needed, the gas in the neck pillow can be released to make the neck pillow smaller and easier to store.
[0004] Whether it is an elastic-filled pillow or an inflatable pillow, the shape of the neck pillow is based on the need to support the neck, so that the shape of the neck pillow can surround the neck more. For example, the neck pillow is made into a U-shape, leaving only one opening for the neck to extend into the neck pillow, while most of the area around the neck can be surrounded by it, so that the neck can be supported when it is tilted at multiple angles, such as backward and to the sides.
[0005] Back to actual usage needs, people have various support needs in daily life, especially for the head and neck, which are parts of the body that can be flexibly rotated. However, existing neck pillows are based on the need to support the neck, and their shape is compatible with the neck. They do not consider supporting other parts of the body and have a fixed structure.
[0006] There are many temporary or small-area support needs in usage requirements. For example, when the head tilts once, sometimes only a small part of the neck is needed for support, and sometimes a small area of support is needed between the head and the object being supported. Existing neck pillows cannot meet these needs.
[0007] Existing neck pillows are based on the need to support the neck. On the one hand, they need to surround the neck more, and on the other hand, they need to be able to be worn on the neck and can be stably placed on the shoulders without the need for external force. These requirements make the structure of the neck pillow tend to be close to the neck or surround the neck.
[0008] Furthermore, based on the need to support the neck and surround the neck more, the volume of the neck pillow has also increased. For example, an inflatable neck pillow needs to be filled with a large amount of air to prop it up, but the large amount of air required for users to use it is high.
[0009] In addition, in some support situations, the support needs are related to the object the user leans on, such as whether the user needs to lean their head against the side wall or the backrest, such as the wall or the back of the seat. As for seats, they come in various shapes, such as whether the back is flat or curved, and whether there is a head support at the top of the backrest. These different structures make the auxiliary support needs of users different when sitting. Fixed-structure neck pillows cannot adapt to these changes in needs.
[0010] The statements herein merely provide background information related to the present disclosure and do not necessarily constitute prior art. Summary of the Invention
[0011] An object of the present invention is to provide an inflatable pillow, an inflatable pillow and an inflatable pillow set thereof, wherein the inflatable pillow is suitable for supporting a small area of the head or neck.
[0012] One object of the present invention is to provide an inflatable pillow, an inflatable pillow and an inflatable pillow group thereof, wherein the inflatable pillow is suitable for a user to predetermine a usage position and provide support at a predetermined position.
[0013] One object of the present invention is to provide an inflatable pillow, an inflatable pillow and an inflatable pillow group thereof, wherein the inflatable pillow uses external force to determine its relative position to a body part and does not need to form a wearing structure to determine its position to the body.
[0014] One object of the present invention is to provide an inflatable pillow, an inflatable pillow and an inflatable pillow group thereof, wherein the inflatable pillow adopts a small amount of air support method, which is suitable for users to blow air with their mouths and can be fully inflated with just a small amount of air.
[0015] One object of the present invention is to provide an inflatable pillow, an inflatable pillow and an inflatable pillow assembly, wherein the inflatable pillow can be flexibly clamped between a body part requiring support and a support object.
[0016] One object of the present invention is to provide an inflatable clamping pillow, an inflatable pillow and an inflatable pillow group thereof, wherein the inflatable pillow can adapt to the directional support requirements of the neck, and while supporting the neck, the inflatable pillow is stably placed by virtue of the clamping force between the head and the shoulders when the head is tilted.
[0017] One object of the present invention is to provide an inflatable pillow, an inflatable pillow and an inflatable pillow assembly, wherein the inflatable pillow can be folded along opposite sides to form a regular square storage structure when not inflated, so as to be conveniently placed in a clothing pocket.
[0018] One object of the present invention is to provide an inflatable pillow and an inflatable pillow and an inflatable pillow group thereof, wherein the inflatable pillow is equipped with an inflating assembly for filling the inflatable pillow by mouth blowing without the need for additional tools for inflation.
[0019] One object of the present invention is to provide an inflatable pillow and an inflatable pillow and an inflatable pillow assembly thereof, wherein the inflatable assembly automatically seals the inflated gas, thereby improving the user's blowing efficiency and quickly filling the inflatable pillow.
[0020] One object of the present invention is to provide an air-blowing pillow and an air-blowing pillow and an air-blowing pillow group thereof, wherein when the air-blowing component is pressed, the gas in the air-blowing pillow can flow out in a controlled manner, thereby adjusting the amount of gas in the air-blowing pillow.
[0021] One object of the present invention is to provide an air-blowing pillow and an air-blowing pillow and an air-blowing pillow group thereof, wherein the air-blowing component is detachably arranged on the air-blowing pillow, so that the air-blowing pillow body and the air-blowing component are independent of each other, which is convenient for subsequent separate processing, such as separate cleaning and separate recycling, and convenient for the combined use of different air-blowing pillows and air-blowing components.
[0022] One object of the present invention is to provide an inflatable pillow, an inflatable pillow and an inflatable pillow group, wherein one of the inflatable pillow bodies can be detachably configured with multiple inflatable components so that the inflatable pillow can be shared by multiple people, and different people can use different inflatable components for inflating and filling.
[0023] One object of the present invention is to provide an inflatable pillow, an inflatable pillow and an inflatable pillow group thereof, wherein the inflatable pillow is configured with a connecting component, and the connecting component can assist in determining the position of the inflatable pillow and the object being supported.
[0024] One object of the present invention is to provide an inflatable clip pillow, an inflatable pillow and an inflatable pillow group thereof, wherein the auxiliary component can assist a plurality of the inflatable pillows to form an inflatable pillow group to match different objects of support.
[0025] One aspect of the present invention provides an inflatable pillow comprising:
[0026] An inflatable pillow, characterized by comprising:
[0027] an inflatable pillow body having an inflatable chamber; and
[0028] A blowing assembly is configured on the inflatable pillow body and connected to the inflatable chamber so that the inflatable pillow body can be filled with air by mouth blowing. The inflatable pillow body includes a main body and two end parts, and the two end parts and the main body are arranged roughly in a straight line to provide local support for body parts.
[0029] According to some embodiments of the inflatable pillow, the inflatable pillow body includes a sealing line, and the sealing line seals the edges of the main body and the two end portions to form the inflatable pillow.
[0030] According to some embodiments of the inflatable pillow, the sealing line includes an outer edge and an inner edge, the outer edge and the inner edge are located on both sides of the main body, and the inner edge is arc-shaped.
[0031] The inflatable pillow according to some embodiments, wherein the outer edge is a straight line.
[0032] According to some embodiments of the air-blown pillow, the sealing line includes two side edges, the two side edges are respectively located at the two end portions, and the two end portions are arc-shaped to connect the inner edge and the outer edge.
[0033] According to some embodiments of the inflatable pillow, the arc-shaped curvature directions of the two side edges are opposite to each other.
[0034] According to some embodiments of the inflatable pillow, the inflatable pillow body includes a first surface layer and a second surface layer, and the first surface layer and the second surface layer are stacked to form the inflatable chamber.
[0035] According to some embodiments of the present invention, the blowing pillow comprises a sealing line, wherein the sealing line seals the edges of the first surface layer and the second surface layer to form the blowing chamber with closed edges.
[0036] According to some embodiments of the inflatable pillow, the first surface layer includes a base layer and a gas barrier layer, the base layer is a flexible breathable material, and the gas barrier layer is attached to the base layer to prevent gas from passing through.
[0037] In the inflatable pillow according to some embodiments, the first surface layer and the second surface layer are elastic.
[0038] According to the inflatable pillow body described in some embodiments, the inflatable assembly includes a inflatable body and a sealing mounting ring, the sealing mounting ring is fixed to the inflatable pillow body, and the inflatable body is sealed and detachably mounted on the sealing mounting ring so that the inflatable pillow body can be blown or deflated by mouth through the inflatable body.
[0039] According to some embodiments of the blowing pillow, the sealing mounting ring includes a ring body and an extension edge, the ring body forms a mounting hole to seal the blowing body, and the extension edge extends horizontally outward from the top of the ring body.
[0040] According to some embodiments of the blowing pillow, the blowing body includes a top edge, which extends horizontally outward from the top of the blowing body. The top edge of the blowing body and the extended edge of the sealing mounting ring cooperate to provide installation force points respectively to quickly press the blowing body into the sealing mounting ring.
[0041] According to some embodiments of the blowing pillow, the height of the blowing body is greater than the height of the sealing mounting ring, so that the blowing body protrudes from the bottom of the sealing mounting ring when installed on the sealing mounting ring, and the protruding part of the blowing body cooperates with the extended edge of the sealing mounting ring to provide separation force points respectively, so as to quickly push the blowing body out of the sealing mounting ring.
[0042] According to some embodiments of the blowing pillow, the blowing body includes a bracket and a closing membrane, the bracket has a through hole, and the closing membrane is movably mounted on the bracket to close or connect the through hole and the blowing chamber. When gas is blown into the blowing body, the closing membrane is pushed at least partially away from the bracket, and the gas enters the blowing chamber through the through hole.
[0043] According to some embodiments of the blowing pillow, the blowing body includes a pressing component, which is movably mounted on the bracket. When the pressing component is pressed, the pressing component pushes the closing membrane to partially deform, so that the through hole connects the blowing chamber and the external space.
[0044] According to some embodiments of the inflatable pillow, the length of the inflatable pillow body is 20 cm to 27 cm.
[0045] According to some embodiments of the inflatable pillow, the width of the inflatable pillow body ranges from 8 cm to 15 cm.
[0046] According to some embodiments of the inflatable pillow, the volume of the inflatable pillow body ranges from 400 ml to 1100 ml.
[0047] According to some embodiments of the inflatable pillow, the volume of the inflatable pillow ranges from 850 ml to 950 ml.
[0048] According to some embodiments of the present invention, the inflatable pillow fixes the support position by means of a clamping force between body parts or between a body part and a support.
[0049] According to some embodiments of the blown pillow, the sealing line is formed by heat pressing.
[0050] According to some embodiments of the inflatable pillow, the outer edge and the inner edge of the inflatable pillow are folded inward and then folded in half along the center line to form a roughly square structure.
[0051] Another aspect of the present invention provides an inflatable pillow, comprising:
[0052] An air-blowing pillow; and
[0053] A connecting component is configured on the inflatable pillow so as to fix the inflatable pillow to a supporting object through the connecting component.
[0054] According to some embodiments of the inflatable pillow, the connecting assembly includes a first connecting member and a second connecting member, the first connecting member and the second connecting member are respectively arranged at the two ends, the first connecting member and the second connecting member are detachably connected to form a closed loop with the inflatable pillow and fixed to a support.
[0055] An inflatable pillow assembly, characterized in that it comprises:
[0056] A plurality of said inflatable pillows; and
[0057] A connecting component is respectively configured on the plurality of the blowing pillows to connect the plurality of the blowing pillows.
[0058] According to the inflatable pillow set described in some embodiments, when the inflatable pillow set is in a connected state, two adjacent inflatable pillows form a vacant area, and the vacant area cooperates with a support object to provide support for the user. BRIEF DESCRIPTION OF THE DRAWINGS
[0059] Figure 1A 、 1B 1 is a schematic diagram of an inflatable pillow in an uninflated state according to a first embodiment of the present invention.
[0060] Figure 2A 2 is a schematic diagram of the rolling process of the inflatable pillow according to the first embodiment of the present invention.
[0061] Figure 2B 2 is a schematic diagram of the folding process of the inflatable pillow according to the first embodiment of the present invention.
[0062] Figure 3 Schematic diagram of the inflated state of the inflatable pillow according to the first embodiment of the present invention.
[0063] Figure 4 FIG1 is a schematic cross-sectional view of an inflated state of an air pillow according to a first embodiment of the present invention.
[0064] Figure 5A 、 5B Schematic diagram of the inflatable pillow according to the first embodiment of the present invention.
[0065] Figure 6A 、 6B 2 is a schematic diagram of deflation of an inflatable pillow according to the first embodiment of the present invention.
[0066] Figure 71 is an exploded schematic diagram of an inflatable pillow according to a first embodiment of the present invention.
[0067] Figure 8 1 is an exploded schematic diagram of an air blowing assembly of an air-blowing pillow according to a first embodiment of the present invention.
[0068] Figure 9A 、 9B 1 is a schematic diagram of the disassembly process of the blowing assembly of the inflatable pillow according to the first embodiment of the present invention.
[0069] Figure 10A 、 10B It is a schematic diagram of the installation process of the blowing assembly of the inflatable pillow according to the first embodiment of the present invention.
[0070] Figure 11 This is a schematic diagram of an inflatable pillow in use according to the first embodiment of the present invention.
[0071] Figure 12 2 is a schematic diagram of another usage state of the inflatable pillow according to the first embodiment of the present invention.
[0072] Figure 13 Schematic diagram of an inflatable pillow according to a modified implementation of the first embodiment of the present invention.
[0073] Figure 14 Schematic diagram of the use of an inflatable pillow according to a modified implementation of the first embodiment of the present invention.
[0074] Figure 15 2 is a schematic diagram of an inflatable pillow according to a second embodiment of the present invention.
[0075] Figure 16 This is a schematic diagram of a usage state of an inflatable pillow according to the second embodiment of the present invention.
[0076] Figure 17 2 is a schematic diagram of an inflatable pillow assembly according to a third embodiment of the present invention.
[0077] Figure 18 2 is a schematic diagram of the use of an inflatable pillow assembly according to a third embodiment of the present invention. DETAILED DESCRIPTION
[0078] The following description is intended to disclose the present invention so that those skilled in the art can implement the present invention. The preferred embodiments described below are for illustrative purposes only, and those skilled in the art will readily appreciate other obvious variations. The basic principles of the present invention defined in the following description may be applied to other embodiments, variations, improvements, equivalents, and other technical solutions that do not depart from the spirit and scope of the present invention.
[0079] Those skilled in the art should understand that, in the disclosure of the present invention, the terms "longitudinal", "transverse", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside" and the like to indicate orientations or positional relationships are based on the orientations or positional relationships shown in the accompanying drawings, which are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation. Therefore, the above terms should not be understood as limiting the present invention.
[0080] It is to be understood that the term "one" should be understood as "at least one" or "one or more", that is, in one embodiment, the number of an element may be one, while in another embodiment, the number of the elements may be multiple, and the term "one" should not be understood as a limitation on the quantity.
[0081] Refer to Figures 1 to Figure 12 According to an embodiment of the present invention, an inflatable pillow 100 is described. The inflatable pillow 100 includes an inflatable pillow body 10 and an air blowing assembly 20. The air blowing assembly 20 is configured to the inflatable pillow body 10 so as to blow air to fill the inflatable pillow body 10 or release the gas in the inflatable pillow body 10.
[0082] The inflatable pillow 100 is suitable for supporting a portion of a user's head or neck. The inflatable pillow 100 can be clamped between portions of a body part, or can be used to clamp and support a body part and a support object W. The inflatable pillow 100 uses the clamping force between body parts or the clamping force between a body part and a support object W to determine the position of the inflatable pillow 100.
[0083] The inflatable pillow body 10 has an inflatable chamber 101 , and the inflatable assembly 20 is configured to communicate with the inflatable chamber 101 so that the gas in the inflatable chamber 101 is controlled by the inflatable assembly 20 .
[0084] The inflatable pillow body 10 has an uninflated state 110 . In the uninflated state 110 , the inflatable pillow body 10 is a flexible plane, which is convenient for rolling up or folding for storage.
[0085] The inflatable pillow 100 has an inflated state 120. In this inflated state 120, the inflatable chamber 101 is filled with gas, and the inflatable assembly 20 seals the gas therein, thereby propping up the inflatable pillow body 10. In other words, in this inflated state 120, the volume of the inflatable pillow 110 increases, and the inflatable pillow body 100 is suitable for providing spaced support between parts of a person's body or between a part of a person's body and an object.
[0086] Furthermore, in the inflated state 120, the inflatable pillow 100 is suitable for supporting a partial area of the head. For example, the inflatable pillow 100 is suitable for being placed on the shoulder, and when the head tilts to the side, a partial area of the user's head is supported by the inflatable pillow, and the inflatable pillow 100 is fixed to the shoulder by means of the clamping force between the head and the shoulder. In the inflated state 120, the inflatable pillow 100 is suitable for being supported between a partial area of the head and a support. For example, when the user wants to lean his head on a support W, the inflatable pillow 100 is placed between the head and the support W, and the position of the inflatable pillow 100 is determined by means of the leaning force of the head. That is, while the inflatable pillow 100 is used for support, its position is determined by means of the force between the two sides being supported.
[0087] The inflatable pillow body 10 includes two end portions 12 and a main body portion 11, and the two end portions 12 are integrally connected to the main body portion 11. The two end portions 12 are located on opposite sides of the main body portion 11. Furthermore, the two end portions 12 and the main body portion 11 are arranged roughly in a straight line, so that the inflatable pillow 100 is directly supported on the part that needs support without forming a full support structure, such as a full support structure that surrounds most areas of the neck without forming a U-shaped structure. In other words, the inflatable pillow 100 only needs to form a partial support structure for a partial area, and the required support structure is simplified and the volume is reduced. It is worth mentioning that the inflatable pillow 100 is supported in a small area or a local area that needs support in a gas-supported manner. Therefore, when the user blows air to fill it, the amount of gas required to be filled is relatively small, and the user can conveniently use it by blowing air with his mouth. And because the inflatable pillow 100 is filled with a small amount of air, it has a small weight and can be flexibly clamped and supported at a part that needs to be supported without falling, such as being clamped between the head and shoulders or between the head and a support W of the body.
[0088] Furthermore, the main body 11 extends roughly linearly, and the two end portions 12 are arc-shaped structures, so that the inflatable pillow 100 forms a shape similar to a pea or a capsule, so that it can be flexibly supported in a position that needs to be supported in the form of a small supporting body.
[0089] Furthermore, the inflatable pillow 100 is arranged approximately symmetrically about a height centerline, so that the inflatable pillow 100 can be conveniently folded in half for storage or rolled up for storage along the length direction.
[0090] refer to Figure 2AWhen the air-blowing pillow 100 is rolled up along the length direction, one of the end portions 12 is wound around the other end portion 12 along the length extension direction of the air-blowing pillow 100, and the air-blowing pillow 100 is rolled into a smaller stacked column, and the height of the column is determined by the maximum width of the air-blowing pillow 100.
[0091] refer to Figure 2B When the inflatable pillow 100 is folded, the two side edges 153 are folded inward along the length direction of the inflatable pillow 100, and the two sides of the inflatable pillow 100 are folded inside, and then folded along the height direction of the inflatable pillow 100. The inflatable pillow 100 is folded into a smaller, roughly square structure, which can be conveniently carried in a clothing pocket. Therefore, the inflatable pillow 100 can also be called a pocket pillow.
[0092] refer to Figures 1A-4 The inflatable pillow body 10 includes a first surface layer 13 and a second surface layer 14. The first surface layer 13 and the second surface layer 14 are arranged opposite each other to form the inflatable chamber 101. In other words, the space between the first surface layer 13 and the second surface layer 14 is filled with gas. In other words, the amount of gas that can be filled in the inflatable chamber 101 is determined by the area of the first surface layer 13 and the second surface layer 14.
[0093] The inflatable pillow body 10 includes a sealing line 15, which seals the edges of the main body and the two end portions to form the inflatable chamber. In other words, the sealing line 15 seals the edges of the first surface layer 13 and the second surface layer 14 to form the enclosed inflatable chamber 101. That is, the edges of the first surface layer 13 and the second surface layer 14 are combined by the sealing line 15, so that the gas can be sealed between the first surface layer 13 and the second surface layer 14. The sealing line 15 can be formed by hot pressing or by gluing. For example, during manufacturing, the first surface layer 13 and the second surface layer 14 are stacked and placed, and hot pressing is performed at predetermined positions of the first surface layer 13 and the second surface layer 14, thereby forming the sealing line 15, that is, forming the inflatable chamber 101 between the first surface layer 13 and the second surface layer 14.
[0094] Furthermore, according to one embodiment of the present invention, the first surface layer 13 and the second surface layer 14 are made of flexible elastic materials. When gas is blown into the blowing chamber 101, the first surface layer 13 and the second surface layer 14 can undergo a small elastic deformation, so that a sufficient amount of gas can be filled between the first surface layer 13 and the second surface layer 14 for support. In other words, when the natural expansion area of the first surface layer 13 and the second surface layer 14 is relatively small, they can accommodate a relatively large amount of gas after elastic deformation, thereby providing greater support strength. Furthermore, the elasticity of the first surface layer 13 and the second surface layer 14 can withstand a predetermined gas pressure, so that the blowable pillow 100 can withstand a predetermined pressure after being blown and filled, that is, it can provide a predetermined support force.
[0095] According to some embodiments of the present invention, the first surface layer 13 and the second surface layer 14 may be two independent layers before manufacturing, and the blowing chamber 101 is formed by sealing all the opposing edges of the first surface layer 13 and the second surface layer 14. In other words, the sealing line 15 itself forms a closed loop to seal the first surface layer 13 and the second surface layer 14.
[0096] In particular, according to one embodiment of the present invention, the first surface layer 13 and the second surface layer 14 are two layers of identical shape. That is, when the first surface layer 13 and the second surface layer 14 are cut from raw materials, the first surface layer 13 and the second surface layer 14 can be formed by overlapping two layers of raw materials and cutting them together in a single operation. When the inflatable pillow 100 is in the inflated state 120, the first surface layer 13 and the second surface layer 14 can provide relatively consistent support conditions. In other words, the support configurations of the first surface layer 13 and the second surface layer 14 are consistent, so that when in use, there is no need to clearly distinguish between the front and back sides.
[0097] In another embodiment of the present invention, the first surface layer 13 and the second surface layer 14 can be formed by folding a single layer of raw material. For example, the raw material is folded in half to form the first surface layer 13 and the second surface layer 14, and then the separated area between the first surface layer 13 and the second surface layer 14 is sealed to form the sealing line 15. In other words, the sealing line 15 cooperates with the fold line of the first surface layer 13 and the second surface layer 14 to seal the first surface layer 13 and the second surface layer 14.
[0098] The first blowing assembly 20 is disposed on the first surface layer 13 and / or the second surface layer 14. In other words, the first surface layer 13 and / or the second surface layer 14 provide a mounting location for the blowing assembly 20. In this embodiment of the present invention, the blowing assembly 20 is disposed on the first surface layer 13.
[0099] refer to Figure 4 The first surface layer 13 includes a first base layer 131 and a first gas barrier layer 132. The first gas barrier layer 132 is attached to the first base layer 131 to isolate the interior of the first surface layer 13 from the atmosphere. The outer surface of the first base layer 131 faces the external environment, and the first gas barrier layer 132 is attached to the inner surface of the first base layer 131. The first base layer 131 can be made of a breathable material such as fabric.
[0100] It's worth noting that the first base layer 131 of the first surface layer 13 of the inflatable pillow may come into direct contact with parts of the body. The breathable, flexible material of the first base layer 131 provides a soft touch to the user and protects the skin from harm. The inner surface of the first base layer 131 needs to retain air to maintain a supportive configuration. The impermeable first gas barrier layer 132 prevents air from passing through the first gas barrier layer 132 and escaping through the first surface layer 13, thus meeting the support requirements. The first gas barrier layer 132 can be a glue layer, a plastic film layer, or other impermeable film layer. The first gas barrier layer 132 can be formed on the first base layer 131 during the manufacturing process. For example, a colloid material can be coated on the first gas barrier layer 132 to form a thin layer on the inner surface of the first base layer 131. For example, a plastic film can be directly pressed onto the inner surface of the first base layer 131. The first gas barrier layer 132 can also be adhesively fixed to the first base layer 131.
[0101] Similarly, the second surface layer 14 may include a second base layer and a second gas barrier layer. The second gas barrier layer is attached to the second base layer to isolate the interior of the second surface layer 14 from the gases. The outer surface of the second base layer faces the external environment, and the second gas barrier layer is attached to the inner surface of the second base layer. In other words, the first gas barrier layer 132 and the second gas barrier layer form the blowing chamber 101 for enclosing gas. The second base layer may be a breathable material such as fabric.
[0102] It is worth mentioning that the second base layer of the second surface layer 14 of the inflatable pillow may come into direct contact with body parts. The breathable flexible material of the second base layer provides the user with a flexible touch and protects the skin from being hurt. The inner surface of the second base layer needs to retain gas to maintain a supported shape, and the second airtight gas barrier layer prevents the gas from passing through the second gas barrier layer and out through the second surface layer 14, thus meeting the support conditions. The second gas barrier layer can be a glue layer or a plastic film layer, or other airtight film layer. The second gas barrier layer can be formed on the second base layer during the manufacturing process, such as coating the second gas barrier layer with a colloidal material to form a thin layer of the second gas barrier layer on the inner surface of the second base layer, such as directly pressing a plastic film on the second gas barrier layer to the inner surface of the second base layer. The second gas barrier layer can also be adhesively fixed to the second base layer.
[0103] It is also worth mentioning that the shape of the sealing line 15 determines the shape of the blowing chamber 101 , that is, the shape of the sealing line 15 affects the support form that the inflatable pillow body 10 can form.
[0104] The sealing line 15 includes an outer edge 151, an inner edge 152, and two side edges 153. The outer edge 151, the inner edge 152, and the two side edges 153 are connected to each other to form the blowing chamber 101. In other words, the outer edge 151, the inner edge 152, and the two side edges 153 are connected to each other to form a closed loop.
[0105] refer to Figures 1A-3 The outer edge 151 and the inner edge 152 are located on opposite sides, and the two side edges 153 are opposite to each other.
[0106] Furthermore, the outer edge 151 and the inner edge 152 are located in the direction of length extension, and the two side edges 153 are arranged in the direction of width extension. The two side edges 153 form the two opposite end portions 12. The outer edge 151 and the inner edge 152 form the extended main body portion 11.
[0107] Furthermore, the outer edge 151 extends in a generally straight line, and the inner edge 152 extends in a small arc. That is, when the inflatable pillow 100 is in the inflated state 120, different support conditions are formed on the outer edge 151 side and the inner edge 152 side. The outer edge 151 side is adapted to support planar requirements, and the inner edge 152 side is adapted to support arcuately. For example, when the inflatable pillow is in the inflated state and is used, the inflatable pillow can be flexibly applied between the user and a support object W. For example, when the user is leaning against a wall or the inner wall of a vehicle, the inflatable pillow can be clamped between the user's head and the support object W, while the outer edge 151 side is suitable for supporting a flat support object W, such as the inner wall of a vehicle, and the inner edge 152 side is suitable for supporting an arc-shaped body part, such as the head.
[0108] When the inflatable pillow 100 is in the inflated state 120, a curved recess 105 is formed on one side of the inner edge 152. The curved recess 105 is adapted to positionally support a part of the user's body. For example, the curved recess 105 is adapted to positionally support a small part of the user's head, or the curved recess 105 is adapted to positionally support a small part of the user's neck.
[0109] The inner edge 152 has a smaller curvature, so that the outer edge 151 and the inner edge 152 have relatively consistent shapes, and the shape of the inflatable pillow 100 is relatively regular, and can be conveniently folded inward or rolled along one side.
[0110] The two side edges 153 are respectively located at the two end portions 12, and the two side edges 153 extend in an arc shape, that is, the two side edges are arc-shapedly connected between the outer edge 151 and the inner edge 152, so that the inflatable pillow 100 does not have obvious sharp corners, and the overall edges are soft arcs. While meeting the support needs of small areas or local areas, the edges of the inflatable pillow are safer and will not make the user's body parts uncomfortable due to the presence of sharp corners.
[0111] The curvature of the side edges 153 is greater than the curvature of the inner edge 152. The side edges 153 are used to connect the outer edge 151 and the inner edge 152 in an arc shape. That is, the side edges 153 primarily serve a sealing connection, while the inner edge 152, in addition to its sealing function, also needs to support body parts, particularly portions of the body parts, and therefore requires a smaller curvature. Furthermore, this curvature coordination allows the blown pillow 100 to be connected in an arc shape without requiring excessive height, and reduces the material required for the two end portions 12. The blown pillow 100 can be folded in half and cut during production. Furthermore, the arcs of the side edges 152 are curved in opposite directions. The two side edges 153 curve outward on the same straight line, meaning they are symmetrical about the center. The two end portions 12 can be folded in half and overlapped. When manufacturing the blown pillow 100, the raw material can be folded in half and cut in one go to produce the curved end portions 12.
[0112] When the inflatable pillow 100 is in the uninflated state 110, it can be rolled up in the direction of the outer edge 151, and axially rolled up from one end to the other end, thereby forming a rolled-up state with a very small rolled-up volume. When the inflatable pillow 100 is in the uninflated state 110, the outer edge 151 and the outer edge 151 can be folded inward, for example, after folding, the inner edge 152 and the outer edge 151 are connected, and then the inflatable pillow 100 is folded in half along the center line, thereby obtaining a roughly square folded state. That is, when the inflatable pillow 100 is in the uninflated state 110, it can be folded or rolled up into a very small volume in different ways, which is very convenient to carry, such as directly placing it in a clothing pocket.
[0113] The inflatable pillow 100 has a relatively small size in both the uninflated state 110 and the inflated state 120 to meet local support needs and small air volume support needs. In the uninflated state 110, the length L of the inflatable pillow 100 is less than 30 cm, and the width W of the inflatable pillow 100 is less than 20 cm. Preferably, the length L of the inflatable pillow 100 is selected in the range of 20 cm to 27 cm, and the width of the inflatable pillow 100 is selected in the range of 8 cm to 15 cm, so that the inflatable pillow 100 can be smaller in size while meeting the support needs. The arc length of the inner edge 152 can be in the range of 5 cm to 11 cm.
[0114] For example, the volume of the blowing chamber 101 of the inflatable pillow 100 ranges from 400ml to 2000ml. Optionally, the volume of the blowing chamber 101 of the inflatable pillow 100 ranges from 400ml to 1100ml. Preferably, the volume of the blowing chamber 101 of the inflatable pillow 100 ranges from 850ml to 950ml. It is understood that a normal user, such as a normally developed male or female, can fill the blowing chamber 101 of the inflatable pillow body 10 of the inflatable pillow 100 in one breath under normal pressure. In short, the inflatable pillow 100 can be filled from the uninflated state 110 to the inflated state in one breath by a normal user. It is worth mentioning that the lung capacity of an average adult male is about 3500 ml, and that of a female is about 2500 ml. The lung capacity of a middle-aged person is the largest, while that of a young person and an elderly person is smaller. However, their lung capacity is basically much larger than the volume of the inflatable pillow 100 of the embodiment of the present invention. That is to say, for the user, when blowing in one breath, it can be filled without even much effort, so that it can be used very conveniently.
[0115] The blowing assembly 20 is detachably disposed on the blowing pillow 100. That is, when the blowing pillow 100 is in the uninflated state 110, the blowing pillow body 10 and the blowing assembly 20 can be separated from each other.
[0116] refer to Figure 4-10B The blowing assembly 20 includes a blowing body 21 and a sealing mounting ring 22. The sealing mounting ring 22 is fixed to the blowing pillow body 10. The blowing body 21 is detachably and sealingly mounted on the sealing mounting ring 22. In other words, the blowing body 21 is detachably mounted on the blowing pillow body 10. The blowing body 21 is sealingly inserted into the sealing mounting ring 22. In other words, when the blowing body 21 is inserted into the sealing mounting ring 22, the joint between the sealing body and the sealing mounting ring 22 is sealed.
[0117] The sealing mounting ring 22 has a ring body 221 and forms a mounting hole 202 , and the blowing body 21 is suitable for being inserted into the mounting hole 202 . The ring body 221 forms the mounting hole 202 .
[0118] The sealing mounting ring 22 includes an extended edge 222 that extends horizontally outward from one end of the ring body 221. For example, the extended edge 222 is a planar annular shape. The first surface layer 13 of the inflatable pillow body 10 is secured to the extended edge 222. In other words, the extended edge 222 provides a fixed position for the sealing mounting ring 22 to be secured to the first surface layer 13.
[0119] The lower end of the blowing body 21 protrudes from the lower end of the sealing mounting ring 22 , so that the structure of the blowing body 21 and the structure of the sealing mounting ring 22 match each other, facilitating the installation and removal of the blowing body 21 .
[0120] The blowing body 21 has a top edge 212 extending horizontally outward from the upper end of the blowing body 21. When the blowing body 21 is inserted into the sealing mounting ring 22, the top edge 212 is confined to the extending edge 222 of the sealing mounting ring 22.
[0121] It is worth mentioning that the blowing body 21 needs to be sealed and installed on the sealing mounting ring 22. The blowing body 21 is fitted with an interference fit to ensure good air tightness between the blowing body 21 and the sealing mounting ring 22. At the same time, when installing or removing the blowing body 21, a large operating force is required. The matching structure between the blowing body 21 and the sealing mounting ring 22 provides a force point for installing and removing the blowing body 21, so that the blowing body 21 can be easily installed or removed.
[0122] For example, when the blowing body 21 needs to be inserted into the sealing mounting ring 22, the top edge 212 of the blowing body 21 and the extended edge 222 of the sealing mounting ring 22 respectively provide force points on both sides. When the user's fingers are respectively located on the upper part of the top edge 212 of the blowing body 21 and the lower part of the extended edge 222 of the sealing mounting ring 22, the top edge 212 of the blowing body 21 is pressed downward and the extended edge 222 of the sealing mounting ring 22 is pushed upward. Under the interaction force, the blowing body 21 and the sealing mounting ring 22 can easily approach each other, so that the blowing body 21 is easily sealed and installed on the sealing mounting ring 22, and the blowing body 21 is quickly pressed into the sealing mounting ring 22.
[0123] When the blowing body 21 needs to be separated from the blowing pillow body 10, the bottom end of the blowing body 21 and the extended edge 222 of the sealing mounting ring 22 provide two points of force. When the user's fingers are located at the bottom end of the blowing body 21 and the top of the extended edge 222 of the sealing mounting ring 22, respectively, they push the bottom end of the blowing body 21 upward and press the extended edge 222 of the sealing mounting ring 22 downward. Under the interaction force, the blowing body 21 and the sealing mounting ring 22 can be easily separated, and the blowing body 21 is quickly ejected from the sealing mounting ring 22.
[0124] The blowing body 21 and the sealing mounting ring 22 have different hardnesses. In other words, the blowing body 21 and the sealing mounting ring 22 enhance gas sealing performance through the matching of their material hardnesses. The sealing mounting ring 22 has a greater material hardness than the blowing body 21, thereby providing sufficient mounting strength. When the blowing body 21 is squeezed and inserted into the sealing mounting ring 22, a small elastic deformation occurs, thereby ensuring that the blowing body 21 is sealedly mounted within the sealing mounting ring 22. By way of example, but not limitation, the sealing mounting ring 22 is made of TPU (Thermoplastic polyurethanes), and the blowing body 21 is made of TPE (Thermoplastic Elastomer).
[0125] It is worth mentioning that the inflatable pillow 100 can meet the support requirements with a small amount of air, so the user can inflate it conveniently and quickly. During use, it may be necessary to inflate and deflate it many times, but after long-term use or a period of time, the inflatable pillow needs to be cleaned to ensure the healthy and hygienic use of the inflatable pillow 100. According to the inflatable pillow 100 of the embodiment of the present invention, the inflatable body 21 and the sealing mounting ring 22 can be easily disassembled and installed, so when cleaning, the inflatable pillow body 10 and the inflatable body 21 can be cleaned separately. For example, the inflatable pillow body 10 can be cleaned by washing with water, and the inflatable body 21 can be cleaned with disinfectant liquids such as alcohol, so that different materials and different functional components can achieve good cleaning effects. In particular, for the inflatable component 20, the user needs to use his mouth to blow the component. In this way, better sanitary conditions can be provided for the user, and it is also more hygienic and safe for children to use.
[0126] In one embodiment of the present invention, reference Figure 13-14A single inflatable pillow 100 can be configured with multiple inflatable bodies 21, allowing for easy sharing of the inflatable pillow 100. That is, when needed, different people can insert different inflatable bodies 21 into the sealing mounting ring 22 to inflate the pillow 100. It's worth noting that the inflatable pillow 100 provides support with a small amount of air, allowing users to blow air into it as desired. However, some people, especially those who prioritize hygiene, may become concerned about hygiene issues after using it for a while, such as concerns about catching a cold. The detachable configuration of the multiple inflatable bodies 21 in this embodiment of the present invention allows users to swap between different inflatable bodies 21 when using the same pillow, keeping the area contacted by the user's mouth clean. When shared by multiple people, different people can use different inflatable bodies 21, ensuring that each individual inflatable body 21 is independent. This allows the inflatable pillow 100 to be used multiple times or shared among multiple people with greater ease and comfort.
[0127] refer to Figure 4-10B The blowing body 21 includes a bracket 211, a sealing membrane 213, and a pressing component 214. The sealing membrane 213 is detachably mounted on the bracket 211. The bracket 211 has a connecting hole 2103, and the sealing membrane 213 is used to seal the connecting hole 2103. When gas is blown into the blowing body 21, the sealing membrane 213 elastically deforms under the action of the gas. The connecting hole 2103 connects to the blowing chamber 101 of the blowing body 21, allowing gas to enter the blowing chamber 101. The pressing component 214 is movably connected to the blowing body 21 to push the sealing membrane 213 to deform. When the blowing clamp is in the inflated state 120, pressing the pressing component 214 causes the sealing membrane 213 to deform due to the thrust. The connecting hole 2103 connects the blowing chamber 101 with the external space, and the gas in the blowing chamber 101 is released.
[0128] The bracket 211 includes a ring body 2111 and a base frame 2112. The base frame 2112 is disposed at the bottom of the ring body 2111. The pressing member 214 is movably disposed on the base frame 2112. The communication hole 2103 is disposed on the base frame 2112. The sealing membrane 213 is sealably disposed on the bottom side of the base frame 2112 to seal or connect the communication hole 2103. The pressing member 214 movably promotes the elastic deformation.
[0129] The ring body 2111 is inserted into the sealing mounting ring 22 to sealably connect the blowing body 21 and the sealing mounting ring 22. The ring body 2111 is taller than the sealing mounting ring 22, creating a height difference between the blowing body 21 and the sealing mounting ring 22. The protruding portion of the ring body 2111 provides a force application point when the blowing body 21 needs to be disassembled.
[0130] The top edge 212 of the blowing body 21 is formed by extending outward from the top of the ring body 2111 .
[0131] In this embodiment of the present invention, the base frame 2112 is provided with a plurality of the communicating holes 2103 , and the closing film 213 covers each of the communicating holes 2103 , so that the gas can fill the inflatable pillow body 10 more quickly.
[0132] For example but not limited to, the bracket 211 and the sealing mounting ring 22 of the blowing body 21 are respectively manufactured by injection molding of different materials.
[0133] The base frame 2112 has a membrane hole 2101 for mounting the sealing membrane 213. The sealing membrane 213 includes a membrane body 2132 and a protruding head 2131. The protruding head 2131 protrudes from the membrane body 2132 and is used to squeeze into the membrane hole 2101 of the base frame 2112, so that the membrane body 2132 covers the bottom of the base frame 2112 to close the communication hole 2103.
[0134] The base frame 2112 has a movable hole 2102, and the movable hole 2102 is used to movably install the pressing component 214. That is, when the pressing component 214 is pressed, the pressing component 214 movably pushes the closing membrane 213 downward to deform, so that the connecting hole 2103 connects the blowing chamber 101 and the external space, thereby deflation.
[0135] The pressing member 214 includes a pressing cap 2141 and a spring 2142. The pressing cap 2141 has an extension column 21411 that extends through the spring 2142 and into the movable hole 2102 to elastically press. In other words, when the pressing cap 2141 is pressed, the extension column 21411 moves downward along the movable hole 2102 and pushes at least a portion of the sealing membrane 213, causing the membrane body 2132 of the sealing membrane 213 to partially separate from the base frame 2112, thereby connecting the connecting hole 2103 to the blowing chamber 101 and the external component space. When gas exists in the blowing chamber 101, the gas in the blowing chamber 101 can be squeezed out of the blowing chamber 101, thereby completely deflating the inflatable pillow body 10.
[0136] When the pressing member 214 is operated, for example, pressed, the gas in the blowing chamber 101 can be released. When not pressed, the sealing membrane 213 is sealed by the internal air pressure, and the gas is retained inside the blowing chamber 101. In other words, the amount of gas in the blowing pillow body 10 can be controlled by operating the pressing member 214, that is, the supporting condition of the blowing pillow 100 can be controlled. For example, when the amount of gas in the blowing chamber 101 is large, a stronger supporting force can be provided, and when the amount of gas in the blowing chamber 101 is small, a relatively soft supporting force can be provided.
[0137] The base frame 2112 may further include a protruding wall 21122 surrounding the movable hole 2102 to facilitate positioning of the spring 2142. Specifically, the spring 2142 is mounted inside the quick-search protruding wall 21122, and the extension column 21411 passes through the spring 2142 and enters the movable hole 2102 to elastically press the sealing membrane 213.
[0138] The base frame 2112 includes a reinforcing rib 21121 that protrudes from the base frame 2112 to enhance the support strength of the base frame 2112. The blowing body 21 includes an outer cover 215 that can be movably covered by the bracket 211 to shield the interior of the blowing body 21. The outer cover 215 is partially and detachably inserted into the ring body 211 and stably covers the ring body 2111.
[0139] Reference Figure 15-16 , an air-blowing pillow 100 according to a second embodiment of the present invention is described.
[0140] In this embodiment of the present invention, the inflatable pillow 100 includes a connecting component 30, which is arranged on the inflatable pillow body 10 of the inflatable pillow 100 so as to fix the inflatable pillow 100 to the support W through the connecting component 30.
[0141] Furthermore, the connection assembly 30 includes a first connection member 31 and a second connection member 32, which are disposed at the two ends 12 of the inflatable pillow. The first connection member 31 and the second connection member 32 can be connected to each other to form a closed loop with the inflatable pillow body 10, thereby securing the inflatable pillow 100 to the object W. The first connection member 31 and the second connection member 32 can have plug-in connectors to facilitate end-to-end securement.
[0142] Reference Figure 16 When using the inflatable pillow 100, the inflatable pillow 100 can be fixed to the backrest position through the connecting component 30, so that when the user leans on it, the inflatable pillow 100 can stably support the lower part of the user's head. In this case, the user does not need to wear it like a U-shaped pillow, thus reducing the pressure on the user. At the same time, it only needs to support the part where the head is leaning, and does not need to support other parts. It has a small volume, a small amount of inflation, and a light weight. Therefore, it can be stably fixed to the object W through the connecting piece, and it will not be difficult to fix the position due to its own weight.
[0143] Reference Figure 17 and 18 A third embodiment of an inflatable pillow assembly according to the present invention is described. In this embodiment, the inflatable pillow assembly includes at least two inflatable clamping pillows 100 and a connecting assembly 30. The connecting assembly 30 is respectively provided on each of the inflatable clamping pillows 100 so that the plurality of inflatable clamping pillows 100 can be combined to form a desired support configuration.
[0144] Furthermore, the connecting assembly 30 includes a first connecting member 31 and a second connecting member 32, each of which is disposed at one end of the two blown pillows 100. The first connecting member 31 and the second connecting member 32 are interconnected to connect the two blown pillows 100. When the connecting assemblies 30 are interconnected to form the blown pillow assembly, they form a vacant area 301, i.e., an unsupported area between the two blown pillows 100.
[0145] It's worth noting that some seating devices, such as those in cars or airplanes, have a headrest—a protruding portion of the backrest near the head—to provide head support. However, only the back of the head is supported, while the neck is not secured or supported. Therefore, when a user leans their head against the headrest, their head naturally tilts to the left or right, making it difficult to maintain a good posture. Furthermore, existing neck pillows all have a roughly uniform support thickness. If used on a seat with a headrest, the neck pillow would further encroach on the space between the back and the seat, making it uncomfortable for the user. In this embodiment of the present invention, the two inflatable pillows 100 are connected by the connecting component 30, and the overall support form of the two inflatable pillows 100 is adjusted, which can also meet the support methods required for some special requirements. For example, it can be coordinated with a seat with a headrest. The position of the connecting component 30, that is, the vacant area 301 corresponds to the headrest, which does not need to provide additional support. The headrest of the seat can support the back of the user's head, and the two inflatable pillows 100 of the inflatable pillow body 10 group can be located at the shoulder position respectively to support the remaining unsupported areas, such as the neck area on both sides of the shoulders, so that when the user tilts his head to either side of the shoulder during use, the inflatable pillow 100 can provide support to relieve the stress and bending degree of the user's neck and maintain a good neck posture.
[0146] The connection distance between the first connecting member 31 and the second connecting member 32 can be adjusted to adjust the distance between the two blowing pillows 100, that is, to adjust the position that does not need support.
[0147] Those skilled in the art will appreciate that the embodiments of the present invention described above and shown in the accompanying drawings are intended to be illustrative only and are not intended to limit the present invention. The objectives of the present invention have been fully and effectively achieved. The functional and structural principles of the present invention have been demonstrated and illustrated in the embodiments. Any variations or modifications may be made to the embodiments of the present invention without departing from the principles described.
Claims
1. An inflatable pillow set, characterized in that: include: A plurality of inflatable pillows and a connecting assembly, wherein the connecting assembly is respectively configured on the plurality of inflatable pillows to connect the plurality of inflatable pillows; when the inflatable pillow group is in a connected state, two adjacent inflatable pillows form an empty area, and the empty area cooperates with a support to provide support for the user; the inflatable pillow comprises: an inflatable pillow body having an inflatable chamber; and an air blowing assembly, the air blowing assembly being configured on the air-blowing pillow body and communicating with the air-blowing chamber so as to facilitate filling the air-blowing pillow body by blowing air from the mouth, the air-blowing pillow body comprising a main body portion and two end portions, the two end portions and the main body portion being arranged substantially in a straight line so as to provide local support for a body part; The inflatable pillow body includes a sealing line, which seals the edges of the main body and the two end portions to form the inflatable chamber; the sealing line includes an outer edge and an inner edge, the outer edge and the inner edge are located on both sides of the main body, the inner edge is arc-shaped, and the outer edge is straight; The blowing assembly includes a blowing body and a sealing mounting ring, wherein the sealing mounting ring is fixed to the blowing pillow body, and the blowing body is sealed and detachably mounted on the sealing mounting ring so that the blowing pillow body can be blown or deflated by mouth through the blowing body; wherein the lower end portion of the blowing body protrudes from the lower end portion of the sealing mounting ring; and the material hardness of the sealing mounting ring is greater than the material hardness of the blowing body.
2. The inflatable pillow assembly according to claim 1, wherein the sealing line includes two side edges, the two side edges are respectively located at the two end portions, and the two end portions are arc-shaped to connect the inner edge and the outer edge.
3. The inflatable pillow assembly according to claim 2, wherein the arc-shaped curvature directions of the two side edges are opposite to each other.
4. The inflatable pillow assembly according to claim 1, wherein the inflatable pillow body comprises a first surface layer and a second surface layer, and the first surface layer and the second surface layer are stacked to form the inflatable chamber. 5 . The inflatable pillow assembly according to claim 4 , wherein the inflatable pillow comprises a sealing line, wherein the sealing line seals edges of the first surface layer and the second surface layer to form the inflatable chamber with closed edges.
6. The inflatable pillow assembly according to claim 4, wherein the first surface layer comprises a base layer and a gas barrier layer, the base layer is a flexible breathable material, and the gas barrier layer is attached to the base layer to prevent gas from passing through. The inflatable pillow assembly according to claim 4 , wherein the first surface layer and the second surface layer are elastic.
8. The inflatable pillow assembly according to claim 1, wherein the sealing mounting ring comprises a ring body and an extension edge, the ring body forms a mounting hole for sealingly mounting the inflatable body, and the extension edge extends horizontally outward from the top end of the ring body.
9. The inflatable pillow assembly according to claim 8, wherein the inflatable body includes a top edge, the top edge extending horizontally outward from the top end of the inflatable body, the top edge of the inflatable body and the extended edge of the sealing mounting ring cooperate to provide installation force points respectively to quickly press the inflatable body into the sealing mounting ring.
10. The inflatable pillow assembly according to claim 8, wherein the height of the inflatable body is greater than the height of the sealing mounting ring, so that the inflatable body protrudes from the bottom of the sealing mounting ring when installed on the sealing mounting ring, and the protruding portion of the inflatable body cooperates with the extended edge of the sealing mounting ring to provide separation force points, respectively, so as to quickly push the inflatable body out of the sealing mounting ring.
11. The inflatable pillow assembly according to claim 1, wherein the inflatable body comprises a bracket and a closing membrane, the bracket having a through hole, the closing membrane being movably mounted on the bracket to close or connect the through hole and the inflatable chamber, and when gas is blown into the inflatable body, the closing membrane is pushed at least partially away from the bracket, and the gas enters the inflatable chamber through the through hole.
12. The inflatable pillow assembly according to claim 11, wherein the inflatable body comprises a pressing component, and the pressing component is movably mounted on the bracket, and when the pressing component is pressed, the pressing component pushes the closing membrane to partially deform, so that the through hole connects the inflatable chamber and the external space.
13. The inflatable pillow assembly according to claim 1, wherein the length of the inflatable pillow body is 20 cm to 27 cm.
14. The inflatable pillow assembly according to claim 1, wherein the width of the inflatable pillow body is in the range of 8 cm to 15 cm.
15. The inflatable pillow assembly according to claim 1, wherein the volume of the inflatable pillow body ranges from 400ml to 1100ml.
16. The inflatable pillow assembly according to claim 1, wherein the volume of the inflatable pillow ranges from 850ml to 950ml.
17. The inflatable pillow assembly according to claim 1, wherein the inflatable clamp pillow is fixed in a supporting position by means of a clamping force between body parts or between a body part and a support.
18. The inflatable pillow assembly according to any one of claims 1 and 5 to 7, wherein the sealing line is formed by heat pressing.
19. The inflatable pillow assembly according to any one of claims 1 to 7, wherein the outer edge and the inner edge of the inflatable pillow are folded inward and then folded in half along the center line to form a roughly square structure.
Citation Information
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