A mobile inflatable bed with a sling

By setting limiting components and lifting components on the air bed, and using lifting parts and protective components with different elastic moduli, the problem of inconvenient slings during the use and movement of the air bed is solved, and a more stable and safer lifting operation is achieved.

CN224523458UActive Publication Date: 2026-07-21DONGGUAN CHENGFENG IND CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
DONGGUAN CHENGFENG IND CO LTD
Filing Date
2025-05-29
Publication Date
2026-07-21

AI Technical Summary

Technical Problem

Existing air mattresses suffer from problems such as inconvenient slings during use and movement, resulting in inconvenience and insufficient safety.

Method used

A mobile inflatable bed with slings was designed, including a limiting component and a lifting component. The elastic modulus of the lifting components are not equal. A protective component and multiple lifting components are set up. Combined with different colored coatings and multiple protective components, the stability and safety of the lifting process are ensured.

Benefits of technology

It improves the adaptability and reliability of the lifting operation, enhances the stability and safety of the bed, reduces wear, extends the service life of the equipment, and improves the convenience and safety of operation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to air bed technical field especially discloses a kind of mobile air beds with sling, including bed body, and bed body is the air bed of inside hollow setting;Limiting assembly and lifting assembly are set on bed body, limiting assembly and lifting assembly are respectively used to limit and to the load carrier on bed body and the load carrier on bed body and bed body are pulled and lifted, lifting assembly includes first lifting piece and second lifting piece, and the elastic modulus value of first lifting piece and second lifting piece is not equal, limiting assembly and lifting assembly are set, and the function of limiting and traction lifting is realized respectively.The elastic modulus value of first lifting piece and second lifting piece is not equal, so that in the pulling process, the lifting piece of different elastic modulus can produce different degrees of deformation according to stress condition, cooperate with each other, more stably and flexibly realize the traction lifting to bed body and load carrier, improve the adaptability and reliability of pulling operation.
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Description

Technical Field

[0001] This utility model relates to the field of air bed technology, and in particular discloses a mobile air bed with slings. Background Technology

[0002] In many scenarios, including medical emergency response, wilderness rescue, temporary shelter setup, and home care, inflatable beds play a vital role as a convenient and comfortable temporary rest and care device. They can be quickly inflated and deployed in a short time, providing a relatively stable resting environment for patients, the injured, or other users, making them particularly suitable for situations requiring rapid response and flexible deployment. However, existing inflatable beds face problems such as inconvenient slings during use and movement. Therefore, this paper proposes a mobile inflatable bed with slings. Utility Model Content

[0003] In order to overcome the shortcomings and deficiencies of the existing technology, the purpose of this utility model is to provide a mobile air bed with slings.

[0004] To achieve the above objectives, this utility model provides a mobile inflatable bed with slings, comprising a bed body, which is an inflatable bed with a hollow interior; the bed body is provided with a limiting component and a lifting component, which are used to limit the load on the bed body and to pull and lift the bed body and the load on the bed body, respectively. The lifting component includes a first lifting member and a second lifting member, and the elastic moduli of the first lifting member and the second lifting member are not equal.

[0005] Preferably, the bed frame is further provided with a first belt, and the second lifting member is set on the bed frame via the first belt. Both the first lifting member and the first belt are set on the end of the bed frame used to support the external load. The end face of the first lifting member on the bed frame used to support the external load is located between the first belt and the first lifting member. The first lifting member and the first belt are arranged collinearly on the bed frame. The second lifting member is set through the first belt, and the first lifting member and the first belt are set on the end that supports the external load. This layout makes the distribution of the lifting components on the bed frame more reasonable. When lifting the load, the force can be more effectively distributed, avoiding excessive local force, improving the overall stability and load-bearing capacity of the lifting components, and ensuring the safety of the load during the lifting process.

[0006] Preferably, the first belt body is further provided with a third lifting component and a fourth lifting component. The elastic modulus values ​​of the third and fourth lifting components are not equal to those of the second lifting component. The provision of the third and fourth lifting components on the first belt body, and the fact that their elastic modulus values ​​are not equal to those of the second lifting component, further enriches the elastic modulus combination of the lifting assembly. During the lifting process, the lifting components with different elastic moduli can play their respective roles according to the actual stress conditions, complementing each other, making the lifting force distribution more uniform, enhancing the adaptability of the lifting assembly to load-bearing bodies of different weights, and improving the accuracy and stability of the lifting operation.

[0007] Preferably, the surfaces of the first, second, third, and fourth lifting components are all coated with different colored coatings. Coating the surfaces of the lifting components with different colored coatings makes it easier for operators to quickly distinguish between different lifting components. In actual use, operators can quickly identify and select the appropriate lifting component based on the color, which improves the convenience and efficiency of operation and reduces the risk of misoperation.

[0008] Preferably, the bed frame is also equipped with a protective component, which is a bag made of two pieces of fabric sewn together. The protective component is placed between the lifting component and the end of the bed frame that supports the external load. The protective component has an opening to accommodate the lifting component. By placing the protective component between the lifting component and the end of the bed frame that supports the external load, and with the opening accommodating the lifting component, this design can provide a certain degree of protection for the lifting component and the load during the lifting process, preventing direct friction between the lifting component and the load or the bed frame, reducing wear, extending the service life of the equipment, and also avoiding damage to the load due to collisions or other reasons during the lifting process, thus improving the safety of use.

[0009] Preferably, multiple lifting components are provided, located at both ends of the bed frame in the width direction. The number of protective components is equal to the number of lifting components. By providing multiple lifting components at both ends of the bed frame in the width direction, and ensuring that the bed frame can be effectively lifted and protected in the width direction, multiple lifting components can distribute the lifting force, avoid excessive local stress, and improve the stability and load-bearing capacity of the lifting. The equal number of protective components can comprehensively protect the lifting components and the load-bearing body, ensuring the safety and reliability of the entire bed frame during lifting and use.

[0010] Preferably, the limiting component includes male and female straps disposed at both ends in the width direction of the first pad. The ends of the male and female straps are used to lock and limit the personnel carried on the first pad. The limiting component adopts male and female straps disposed at both ends in the width direction of the first pad. The locking of the ends of the male and female straps realizes the limitation of the personnel carried, which can prevent the personnel carried from moving freely on the bed and improve the safety of use. It is especially suitable for scenarios that require fixed personnel positions, such as medical care.

[0011] Preferably, the bed frame includes a first pocket area and a second pocket area. The second pocket area is provided with a chamfer, and a lifting component is provided on the chamfer, dividing the bed frame into the first pocket area and the second pocket area. The lifting component at the chamfer can conveniently lift the head part of the bed frame, making it easy to adjust the posture of the bed frame or move it, thus improving the flexibility and convenience of using the bed frame.

[0012] Preferably, the second pocket area is trapezoidal, and both the first and second pocket areas are provided with strip-shaped protrusions. The length direction of the protrusions is the width direction of the bed. The first and second pocket areas are provided with strip-shaped protrusions with the length direction of the bed width direction. On the one hand, this can increase the friction between the bed and the support body and improve the stability of the support body on the bed. On the other hand, the protrusions can also play a certain massage role and improve the comfort of use.

[0013] Preferably, an air inlet valve and an air outlet valve are located at the end of the bed body furthest from the second bladder area, facilitating inflation and deflation of the bed. This arrangement makes the inflation and deflation process smoother, allowing operators to more easily control the inflation status and air pressure of the bed, thus improving ease of use and operability.

[0014] The beneficial effects of this utility model are as follows: The limiting component and the lifting component respectively realize the limiting and traction lifting functions. The elastic moduli of the first and second lifting components are not equal, so that during the lifting process, the lifting components with different elastic moduli can deform to different degrees according to the force applied. They cooperate with each other to achieve a more stable and flexible traction lifting of the bed and the load-bearing body, improving the adaptability and reliability of the lifting operation. Attached Figure Description

[0015] Figure 1 This is a schematic diagram of the main body structure of this utility model;

[0016] Figure 2 This is a top view of the main body structure of this utility model;

[0017] Figure 3 This is a schematic diagram of the lifting component structure of this utility model;

[0018] Figure 4This is a schematic cross-sectional view of the lifting component of this utility model.

[0019] The reference numerals in the figures include:

[0020] 1. Bed frame; 2. Limiting assembly; 3. Lifting assembly; 4. Protective assembly; 11. First pocket area; 12. Second pocket area; 13. Chamfer; 21. Second belt body; 22. Third belt body; 31. First lifting component; 32. First belt body; 33. Second lifting component; 34. Third lifting component; 35. Fourth lifting component. Detailed Implementation

[0021] To facilitate understanding by those skilled in the art, the present invention will be further described below with reference to embodiments and accompanying drawings. The content mentioned in the embodiments is not intended to limit the present invention.

[0022] Please see Figures 1 to 4 As shown, the present invention discloses a mobile inflatable bed with slings, comprising a bed body 1, which is an inflatable bed with a hollow interior; a limiting component 2 and a lifting component 3 are provided on the bed body 1, which are used to limit the load on the bed body 1 and to pull and lift the bed body 1 and the load on the bed body 1, respectively. The lifting component 3 includes a first lifting member 31 and a second lifting member 33, and the elastic moduli of the first lifting member 31 and the second lifting member 33 are not equal.

[0023] Specifically, a limiting component 2 and a lifting component 3 are provided to realize the limiting and traction lifting functions, respectively. The elastic moduli of the first lifting component 31 and the second lifting component 33 are not equal, so that during the lifting process, the lifting components with different elastic moduli can produce different degrees of deformation according to the force conditions. They cooperate with each other to achieve more stable and flexible traction lifting of the bed body 1 and the carrier, thereby improving the adaptability and reliability of the lifting operation.

[0024] Specifically, in the second embodiment, a honeycomb reinforcing layer is provided at the bottom of the bed body 1. The reinforcing layer is composed of hexagonal honeycomb units with varying wall thicknesses. The wall thickness of the central region is twice that of the edge region. The reinforcing layer is seamlessly connected to the base layer of the bed body 1 through a high-frequency heat sealing process, and the honeycomb cells are filled with energy-absorbing foam material.

[0025] Specifically, the bed frame 1 is also provided with a first belt 32, and a second lifting member 33 is set on the bed frame 1 via the first belt 32. The first lifting member 31 and the first belt 32 are both set on the bed frame 1 at one end for supporting the external load. The end face of the first lifting member 31 on the bed frame 1 for supporting the external load is located between the first belt 32 and the first lifting member 31. The first lifting member 31 and the first belt 32 are set on the bed frame 1 in a collinear manner. The second lifting member 33 is set through the first belt 32, and the first lifting member 31 and the first belt 32 are set at one end for supporting the external load. This layout makes the distribution of the lifting assembly 3 on the bed frame 1 more reasonable. When lifting the load, the force can be more effectively distributed, avoiding excessive local force, improving the overall stability and load-bearing capacity of the lifting assembly 3, and ensuring the safety of the load during the lifting process.

[0026] Specifically, the first belt 32 is also provided with a third lifting component 34 and a fourth lifting component 35. The elastic modulus values ​​of the third lifting component 34 and the fourth lifting component 35 are not equal to those of the second lifting component 33. The provision of the third lifting component 34 and the fourth lifting component 35 on the first belt 32, and the fact that their elastic modulus values ​​are not equal to those of the second lifting component 33, further enriches the elastic modulus combination of the lifting assembly 3. During the lifting process, the lifting components with different elastic moduli can play their respective roles according to the actual stress conditions, complementing each other, making the lifting force distribution more uniform, enhancing the adaptability of the lifting assembly 3 to load-bearing bodies of different weights, and improving the accuracy and stability of the lifting operation.

[0027] Specifically, the surfaces of the first lifting component 31, the second lifting component 33, the third lifting component 34, and the fourth lifting component 35 are all coated with different colored coatings. Coating the surfaces of the lifting components with different colored coatings makes it easier for operators to quickly distinguish between different lifting components. In actual use, operators can quickly identify and select the appropriate lifting component based on the color, which improves the convenience and efficiency of operation and reduces the risk of misoperation.

[0028] Specifically, the bed frame 1 is also equipped with a protective component 4, which is a bag made of two pieces of fabric sewn together. The protective component 4 is placed between the lifting component 3 and the end of the bed frame 1 that carries the external load. The protective component 4 has an opening to accommodate the lifting component 3. By placing the protective component 4 between the lifting component 3 and the end of the bed frame 1 that carries the external load, and by accommodating the lifting component 3, this design can provide a certain degree of protection for the lifting component 3 and the load during the lifting process, preventing direct friction between the lifting component 3 and the load or the bed frame 1, reducing wear, extending the service life of the equipment, and also avoiding damage to the load due to collisions or other reasons during the lifting process, thus improving the safety of use.

[0029] Specifically, multiple lifting components 3 are provided, located at both ends of the bed frame 1 in the width direction. The number of protective components 4 is equal to that of the lifting components 3. By providing multiple lifting components 3 at both ends of the bed frame 1 in the width direction, and ensuring that the bed frame 1 can be effectively lifted and protected in the width direction, the multiple lifting components 3 can distribute the lifting force, avoid excessive local stress, and improve the stability and load-bearing capacity of the lifting. The equal number of protective components 4 can comprehensively protect the lifting components 3 and the load-bearing body, ensuring the safety and reliability of the entire bed frame 1 during lifting and use.

[0030] Specifically, the limiting component 2 includes male and female straps at both ends of the bed frame 1 in the width direction. The ends of the male and female straps are used to lock and limit the personnel carried on the bed frame 1. The limiting component 2 uses male and female straps at both ends of the bed frame 1 in the width direction. The locking of the ends of the male and female straps can limit the personnel carried, prevent the personnel carried from moving freely on the bed frame 1, improve the safety of use, and is especially suitable for scenarios that require fixed personnel positions, such as medical care.

[0031] Specifically, the ends of the mother and daughter straps are locked together with buckles or Velcro.

[0032] Specifically, the mother and daughter belts include a second belt body 21 and a third belt body 22. The second belt body 21 is fixedly installed at both ends in the width direction of the bed body 1. The end of the third belt body 22 is detachably connected to the second belt body 21. The end of the third belt body 22 is provided with a buckle 23, which cooperates with the locking hole 24 on the second belt body 21. Through the detachable connection and locking structure of the mother and daughter belts, the limit range can be easily adjusted according to the needs of different load-bearing personnel.

[0033] Specifically, the bed body 1 includes a first pocket area 11 and a second pocket area 12. The second pocket area 12 is provided with a chamfer 13, and a lifting component is provided on the chamfer 13, which divides the bed body 1 into the first pocket area 11 and the second pocket area 12. The lifting component is provided on the chamfer 13 of the second pocket area 12. The lifting component at the chamfer 13 can easily lift the head part of the bed body 1, which is convenient for adjusting the posture of the bed body 1 or moving it, thus improving the flexibility and convenience of using the bed body 1.

[0034] Specifically, the head area of ​​the bed 1 (i.e., the second bladder area 12) is equipped with a detachable neck support module. The module includes an arc-shaped airbag frame and an inflatable double-layer airbag structure. A fluid channel is provided between the double-layer airbags. The module is quickly connected to the main airbag of the bed through a Velcro interface.

[0035] Specifically, the second pocket area 12 is trapezoidal, and both the first pocket area 11 and the second pocket area 12 are provided with strip-shaped protrusions. The length direction of the protrusions is the width direction of the bed body 1. The first pocket area 11 and the second pocket area 12 are provided with strip-shaped protrusions with the length direction of the width direction of the bed body 1. On the one hand, this can increase the friction between the bed body 1 and the support body and improve the stability of the support body on the bed body 1. On the other hand, the protrusions can also play a certain massage role and improve the comfort of use.

[0036] Specifically, an air inlet valve and an air outlet valve are installed at the end of the bed body 1 furthest from the second bladder area 12, facilitating the inflation and deflation of the bed body 1. This layout makes the inflation and deflation process smoother, allowing operators to more easily control the inflation status and air pressure of the bed body 1, thus improving ease of use and operability.

[0037] Specifically, the first lifting member 31 and the second lifting member 33 have different cross-sectional shapes. The cross-section of the first lifting member 31 is circular, and the cross-section of the second lifting member 33 is elliptical. The ellipse is vertical. Both the first lifting member 31 and the second lifting member 33 are made of high-strength fiber woven tape. By combining different cross-sectional shapes with differences in elastic modulus, the traction and lifting effect on the bed body 1 and the load-bearing body is enhanced.

[0038] The above description is only a preferred embodiment of this utility model. For those skilled in the art, there will be changes in the specific implementation method and application scope based on the idea of ​​this utility model. The content of this specification should not be construed as a limitation of this utility model.

Claims

1. A mobile inflatable bed with slings, comprising a bed body (1), wherein the bed body (1) is an inflatable bed with a hollow interior; characterized in that: The bed (1) is provided with a limiting component (2) and a lifting component (3). The limiting component (2) and the lifting component (3) are used to limit the carrier on the bed (1) and to pull and lift the bed (1) and the carrier on the bed (1), respectively. The lifting component (3) includes a first lifting member (31) and a second lifting member (33). The elastic modulus values ​​of the first lifting member (31) and the second lifting member (33) are not equal.

2. The mobile air bed with slings according to claim 1, characterized in that: The bed body (1) is also provided with a first belt (32), and the second lifting member (33) is provided on the bed body (1) via the first belt (32). The first lifting member (31) and the first belt (32) are both provided on the bed body (1) to support one end of the external support body.

3. A mobile air bed with slings according to claim 2, characterized in that: The first belt (32) is also provided with a third lifting member (34) and a fourth lifting member (35), and the elastic modulus values ​​of the third lifting member (34) and the fourth lifting member (35) are not equal to those of the second lifting member (33).

4. A mobile air bed with slings according to claim 3, characterized in that: The surfaces of the first lifting component (31), the second lifting component (33), the third lifting component (34), and the fourth lifting component (35) are all coated with different colored coatings.

5. A mobile air bed with slings according to claim 1, characterized in that: The bed (1) is also provided with a protective component (4), which is a bag made by sewing two pieces of fabric. The protective component (4) is located between the lifting component (3) and the end of the bed (1) used to support the external carrier. The protective component (4) has an opening to accommodate the lifting component (3).

6. A mobile air bed with slings according to claim 5, characterized in that: Multiple lifting components (3) are provided, and multiple lifting components (3) are provided at both ends of the width direction on the bed (1). The number of protective components (4) is equal to that of lifting components (3).

7. A mobile air bed with slings according to claim 1, characterized in that: The limiting component (2) includes a male and female straps disposed at both ends in the width direction of the bed body (1), the ends of which are used to lock and limit the personnel carried on the bed body (1).

8. A mobile air bed with slings according to claim 1, characterized in that: The bed body (1) includes a first sac area (11) and a second sac area (12). A chamfer (13) is provided on the second sac area (12), and a lifting component is provided on the chamfer (13).

9. A mobile air bed with slings according to claim 8, characterized in that: The second sac area (12) is arranged in a trapezoidal shape. Both the first sac area (11) and the second sac area (12) are provided with strip-shaped protrusions. The length direction of the protrusions is the width direction of the bed body (1).

10. A mobile air bed with slings according to claim 8, characterized in that: An air inlet valve and an air outlet valve are provided at the end of the bed body (1) away from the second sac area (12).