Bedding with built-in air bag structure
The durability and portability of the bedding is solved through a built-in airbag structure mattress and pillows, combined with inflation and heating devices, providing comfort and heating functions.
Patent Information
- Application Number
- CN202422097971.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-28
- Publication Date
- 2025-08-19
- Estimated Expiration
- 2034-08-28
AI Technical Summary
Existing bedding such as palm mattresses have poor durability and are prone to collapse, the spring mattresses are heavy and difficult to carry, and the pillows are not easy to store and carry.
The mattress and pillow with built-in airbag structure are designed to adjust the airbag's inflation and deflation through the inflatable device, and combined with the heating device to provide heating function in cold seasons.
It realizes the comfort adjustment and convenient storage of bedding, meets different usage needs, and provides heating functions in cold seasons.
Smart Images

Figure CN223232431U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of daily bedding, in particular to a bedding with a built-in airbag structure. Background Art
[0002] Bedding used in daily life mainly includes mattresses and pillows. Commonly used mattresses include palm mattresses and spring mattresses. Palm mattresses are made of palm fibers and are generally hard, or hard with a slightly soft texture. However, the mattress has poor durability, is prone to collapse and deformation, has poor supporting performance, and is prone to insect damage or mold if not maintained properly. Spring mattresses are the most widely used. The core of a spring mattress is made of springs, which has good elasticity, good supporting performance, and is relatively durable; however, spring mattresses are heavy and difficult to bend, making them difficult to carry. Pillows are generally filled with cotton or grain husks, which also have the problem of being difficult to store and carry. Therefore, in order to solve the above problems, the utility model discloses an inflatable bedding with a built-in airbag structure that is easy to store and carry. Utility Model Content
[0003] The purpose of the utility model is to provide a bedding with a built-in airbag structure to solve the technical problems mentioned in the above background technology.
[0004] In order to solve the above technical problems, the present invention adopts the following technical solutions:
[0005] The utility model discloses a bedding with a built-in air bag structure, comprising a mattress, a plurality of pillows and an inflating device.
[0006] The mattress includes a mattress cover, and a plurality of mattress air bags are evenly arranged inside the mattress cover along its length direction. One end of each mattress air bag is respectively provided with a mattress air bag air inlet pipe connected thereto, and each mattress air bag air inlet pipe extends to the outside of the mattress cover.
[0007] Each of the pillows comprises a pillowcase, a pillow airbag is arranged inside the pillowcase, and a pillow airbag air inlet pipe is arranged on each of the pillow airbags, and the pillow airbag air inlet pipe extends to the outside of the corresponding pillowcase.
[0008] The inflation device includes an air compressor, the output end of the air compressor is connected to one end of a T-shaped air supply pipe, and the other two ends of the air supply pipe are respectively connected to the mattress air supply pipe and the pillow air supply pipe. The mattress air supply pipe and the pillow air supply pipe are respectively provided with a first on-off valve at the position close to the air supply pipe. The mattress air supply pipe is connected to one end of each mattress air bag air inlet pipe located outside the mattress cover, and the pillow air supply pipe is connected to one end of each pillow air bag air inlet pipe located outside the pillow cover.
[0009] Furthermore, a mattress airbag exhaust pipe communicating with the interior of each mattress airbag is provided at the side end of the other end of each mattress airbag, and each mattress airbag exhaust pipe extends to the outside of the mattress cover and is provided with a mattress airbag exhaust valve.
[0010] Furthermore, the end of each pillow airbag is respectively provided with a pillow airbag exhaust pipe connected to the interior thereof, and each pillow airbag exhaust pipe extends to the outside of the pillowcase and is respectively provided with a pillow airbag exhaust valve.
[0011] Furthermore, it also includes a heating device for heating the internal gas of each mattress airbag.
[0012] Furthermore, the heating device includes a heat exchanger, which is provided with an air inlet and an air outlet connected to the interior thereof; the interior of the heat exchanger is provided with spiral deflection blades and a plurality of electric heating rods penetrating the spiral deflection blades are evenly and fixedly arranged along the circumference; the air inlet is connected to one end of the heat exchanger inlet pipe, and the other end of the heat exchanger inlet pipe is connected to one end of each mattress air bag away from the mattress air bag inlet pipe; the air outlet is connected to one end of the heat exchanger outlet pipe, and the other end of the heat exchanger outlet pipe is connected to the mattress air supply pipe, and a second on-off valve is respectively provided on the heat exchanger inlet pipe and the heat exchanger outlet pipe.
[0013] Furthermore, each mattress airbag is provided with a mattress airbag outlet pipe at one end away from the mattress airbag air inlet pipe, and the other end of each mattress airbag outlet pipe extends to the outside of the mattress cover and is commonly connected to the heat exchanger air inlet pipe.
[0014] Furthermore, a micro air pump is provided on the air inlet pipe of the heat exchanger.
[0015] Compared with the prior art, the beneficial technical effects of the present invention are:
[0016] The mattress and pillow of the present invention both have built-in airbag structures. To inflate each mattress airbag, the on-off valve on the mattress air supply pipe is opened, allowing an air compressor to fill the interior of each mattress airbag with air. Once inflation is complete, the on-off valve on the mattress air supply pipe is closed to meet user needs. Furthermore, each mattress airbag is equipped with a mattress airbag exhaust pipe. By opening the mattress airbag exhaust valve on the mattress airbag exhaust pipe, the air inside the mattress airbag can be discharged. This allows the height and pressure of the mattress airbag in each part of the mattress to be adjusted, ensuring the mattress meets user comfort. To inflate each pillow airbag, the on-off valve on the pillow air supply pipe is opened, allowing the air compressor to fill the interior of each pillow airbag with air. Once inflation is complete, the on-off valve on the pillow air supply pipe is closed to meet user needs. Furthermore, each pillow airbag is equipped with a pillow airbag exhaust pipe. By opening the pillow airbag exhaust valve on the pillow airbag exhaust pipe, the air inside the mattress airbag can be discharged. This makes the pillows easy to store and carry, and allows for adaptive adjustment of pillow height and firmness. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] The present invention will be further described below with reference to the accompanying drawings.
[0018] Figure 1 This is a schematic diagram of the overall structure of the utility model;
[0019] Figure 2 This is a schematic diagram of the internal structure of the heat exchanger of the present utility model;
[0020] Explanation of the accompanying symbols: 1. Mattress cover; 2. Mattress airbag; 3. Mattress airbag air inlet pipe; 4. Mattress airbag exhaust pipe; 5. Mattress airbag exhaust valve; 6. Pillowcase; 7. Pillow airbag; 8. Pillow airbag air inlet pipe; 9. Pillow airbag exhaust pipe; 10. Pillow airbag exhaust valve; 11. Air compressor; 12. Air supply main pipe; 13. Mattress air supply pipe; 14. Pillow air supply pipe; 15. First on-off valve; 16. Heat exchanger; 17. Air inlet; 18. Air outlet; 19. Spiral deflection blade; 20. Electric heating rod; 21. Heat exchanger air inlet pipe; 22. Mattress airbag outlet pipe; 23. Micro air pump; 24. Heat exchanger outlet pipe; 25. Second on-off valve. DETAILED DESCRIPTION
[0021] like Figure 1-Figure 2 As shown, a bedding with a built-in air bag structure includes a mattress, multiple pillows and an inflating device.
[0022] The mattress includes a mattress cover 1, which has multiple airbags 2 evenly spaced along its length. Each airbag 2 is connected to an airbag inlet pipe 3 at one end, extending to the exterior of the cover 1. Each airbag exhaust pipe 4 is connected to the interior of the cover 2 at its other end, extending to the exterior of the cover 1 and equipped with an exhaust valve 5.
[0023] Each pillow includes a pillowcase 6, with a pillow airbag 7 disposed inside the pillowcase 6. Each pillow airbag 7 is provided with a pillow airbag air inlet pipe 8 communicating with the interior thereof, and the pillow airbag air inlet pipe 8 extends to the exterior of the corresponding pillowcase 6. Each end of the pillow airbag 7 is provided with a pillow airbag exhaust pipe 9 communicating with the interior thereof, and each pillow airbag exhaust pipe 9 extends to the exterior of the pillowcase 6 and is equipped with a pillow airbag exhaust valve 10.
[0024] In this embodiment, each of the mattress airbags 2 and each of the pillow airbags 7 are made of flexible material.
[0025] The inflation device includes an air compressor 11. The output end of the air compressor 11 is connected to one end of a T-shaped air supply pipe 12. The other ends of the air supply pipe 12 are connected to a mattress air supply pipe 13 and a pillow air supply pipe 14, respectively. First on-off valves 15 are installed near the mattress air supply pipe 13 and the pillow air supply pipe 14. The mattress air supply pipe 13 is connected to the end of each mattress airbag inlet pipe 8 located outside the mattress cover 1, and the pillow air supply pipe 14 is connected to the end of each pillow airbag inlet pipe 8 located outside the pillow cover 6.
[0026] The mattress and pillow of the present invention both have built-in airbag structures. To inflate each mattress airbag, the on-off valve on the mattress air supply pipe is opened, allowing an air compressor to fill the interior of each mattress airbag with air. Once inflation is complete, the on-off valve on the mattress air supply pipe is closed to meet user needs. Furthermore, each mattress airbag is equipped with a mattress airbag exhaust pipe. By opening the mattress airbag exhaust valve on the mattress airbag exhaust pipe, the air inside the mattress airbag can be discharged, thereby adjusting the height and pressure of each mattress airbag to meet user comfort. To inflate each pillow airbag, the on-off valve on the pillow air supply pipe is opened, allowing an air compressor to fill the interior of each pillow airbag with air. Once inflation is complete, the on-off valve on the pillow air supply pipe is closed to meet user needs. Furthermore, each pillow airbag is equipped with a pillow airbag exhaust pipe. By opening the pillow airbag exhaust valve on the pillow airbag exhaust pipe, the air inside the mattress airbag can be discharged, making the pillows convenient to store and carry, and enabling adaptive adjustment of pillow height and firmness.
[0027] In addition, as a further improvement to the present invention, the present invention further includes a heating device for heating the internal gas of each mattress airbag 2.
[0028] The heating device includes a heat exchanger 16, which is provided with an air inlet 17 and an air outlet 18 connected to the interior thereof; a spiral deflecting blade 19 is fixedly installed inside the heat exchanger 16 and a plurality of electric heating rods 20 are fixedly installed uniformly along the circumference and pass through the spiral deflecting blade 19.
[0029] The air inlet 17 is connected to one end of a heat exchanger inlet pipe 21, the other end of which is connected to the end of each mattress airbag 2 remote from the mattress airbag inlet pipe 8. Specifically, each mattress airbag 2 is provided with a mattress airbag outlet pipe 22 at one end remote from the mattress airbag inlet pipe 8. The other end of each mattress airbag outlet pipe 22 extends to the exterior of the mattress cover 1 and is collectively connected to the heat exchanger inlet pipe 21. Furthermore, a micro air pump 23 is mounted on the heat exchanger inlet pipe 21. The air outlet 18 is connected to one end of a heat exchanger outlet pipe 24, the other end of which is connected to the mattress air supply pipe 13. A second on-off valve 25 is mounted on each of the heat exchanger inlet pipe 21 and the heat exchanger outlet pipe 24.
[0030] With the above arrangement, when the mattress is used in cold seasons, after the inflation of each mattress airbag is completed, the first on-off valve on the mattress air supply pipe is closed, the second on-off valves on the heat exchanger air inlet pipe and the heat exchanger air outlet pipe are opened, and the micro air pump is started to form a circulating air path between each mattress airbag, the heat exchanger air inlet pipe, the heat exchanger, the heat exchanger air outlet pipe and the mattress air supply pipe. The gas inside each mattress airbag enters the heat exchanger through the heat exchanger air inlet pipe to be heated, and then returns to the mattress airbag through the heat exchanger air outlet pipe and the mattress air supply pipe, thereby maintaining the entire mattress at a suitable temperature and meeting the heating needs of people when using an inflatable mattress.
[0031] The embodiments described above are merely preferred embodiments of the present invention and are not intended to limit the scope of the present invention. Without departing from the spirit of the present invention, various modifications and improvements to the technical solutions of the present invention made by ordinary technicians in this field should fall within the scope of protection determined by the claims of the present invention.
Claims
1. A bedding with a built-in airbag structure, characterized by: Includes mattress, multiple pillows, and inflatable device; The mattress includes a mattress cover, wherein a plurality of mattress airbags are evenly arranged inside the mattress cover along the length thereof, and a mattress airbag air inlet pipe is provided at one end of each mattress airbag and connected thereto, and each mattress airbag air inlet pipe extends to the outside of the mattress cover; Each of the pillows includes a pillowcase, a pillow airbag is provided inside the pillowcase, and each of the pillow airbags is provided with a pillow airbag air inlet pipe, and the pillow airbag air inlet pipe extends to the outside of the corresponding pillowcase; The inflation device includes an air compressor, the output end of the air compressor is connected to one end of a T-shaped air supply pipe, and the other two ends of the air supply pipe are respectively connected to the mattress air supply pipe and the pillow air supply pipe. The mattress air supply pipe and the pillow air supply pipe are respectively provided with a first on-off valve at the position close to the air supply pipe. The mattress air supply pipe is connected to one end of each mattress air bag air inlet pipe located outside the mattress cover, and the pillow air supply pipe is connected to one end of each pillow air bag air inlet pipe located outside the pillow cover.
2. The bedding with a built-in airbag structure according to claim 1, characterized in that: The side end of the other end of each mattress airbag is respectively provided with a mattress airbag exhaust pipe connected to the interior thereof, and each mattress airbag exhaust pipe extends to the outside of the mattress cover and is respectively provided with a mattress airbag exhaust valve.
3. The bedding with a built-in airbag structure according to claim 1, characterized in that: The end of each pillow airbag is respectively provided with a pillow airbag exhaust pipe connected with the interior thereof, and each pillow airbag exhaust pipe extends to the outside of the pillowcase and is respectively provided with a pillow airbag exhaust valve.
4. The bedding with a built-in airbag structure according to claim 1, characterized in that: The invention also includes a heating device for heating the internal gas of each mattress airbag.
5. The bedding with a built-in airbag structure according to claim 4, characterized in that: The heating device includes a heat exchanger, which is provided with an air inlet and an air outlet connected to the interior thereof; the interior of the heat exchanger is provided with spiral deflection blades and a plurality of electric heating rods penetrating the spiral deflection blades are fixedly and evenly arranged along the circumference; the air inlet is connected to one end of the heat exchanger air inlet pipe, and the other end of the heat exchanger air inlet pipe is connected to one end of each mattress air bag away from the mattress air bag air inlet pipe; the air outlet is connected to one end of the heat exchanger air outlet pipe, and the other end of the heat exchanger air outlet pipe is connected to the mattress air supply pipe, and a second on-off valve is respectively provided on the heat exchanger air inlet pipe and the heat exchanger air outlet pipe.
6. The bedding with a built-in airbag structure according to claim 5, characterized in that: One end of each mattress airbag away from the mattress airbag air inlet pipe is respectively provided with a mattress airbag outlet pipe, and the other end of each mattress airbag outlet pipe respectively extends to the outside of the mattress cover and is commonly connected to the heat exchanger air inlet pipe.
7. The bedding with a built-in airbag structure according to claim 5, characterized in that: A micro air pump is provided on the air inlet pipe of the heat exchanger.