A reversible mattress based on a triple synergy spring system

CN224776414UActive Publication Date: 2026-09-22SHANGHAI METAPHYSICAL WOOD HOME DESIGN CO LTD
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Patent Information

Application Number
CN202522231086.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-22
Publication Date
2026-09-22
Estimated Expiration
2035-10-22

AI Technical Summary

Benefits of technology

[0016]1、本实用新型中,三重协同弹簧系统以分层结构构建力传递链,解决传统床垫硬则压迫和软则塌陷痛点:基座10cm床网配22个加粗蝴蝶M型支力杆,均匀承托体重、根除吊床效应并维持脊柱曲度;顶垫5cm床网凭细钢丝顺应性,贴合身体曲线分散压力;缓冲层消弭压力点。三重协同兼顾高体重者承托与轻体重者柔软需求,平衡健康支撑与舒适。

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Abstract

The utility model relates to the field of bed mattress discloses a kind of turnover bed mattress based on triple coordinated spring system, including base module, the upper surface of the base module is detachably installed with top pad module, the base module includes knitted fabric, the upper surface of the knitted fabric is fixedly connected with high resilience sponge d, the upper surface of the high resilience sponge d is fixedly connected with hot cotton b, and cm environmental protection glueless bed net is provided on the upper surface of the hot cotton b.The utility model discloses triple coordinated spring system constructs force transmission chain with layered structure, solves traditional bed mattress hard and soft and collapses pain point: base 10cm bed net is equipped with 22 thickened butterfly M type support rod, evenly supports body weight, eradicates hammock effect and maintains spinal curvature;Top pad 5cm bed net is fine steel wire compliance, adheres to body curve dispersion pressure;Buffer layer eliminates pressure point.Threefold coordinated spring system gives consideration to the support of high weight person and the soft demand of light weight person, balance health support and comfort.
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Description

Technical Field

[0001] This utility model relates to the field of mattresses, and more particularly to a flip-up mattress based on a triple synergistic spring system. Background Technology

[0002] As a core home furnishing product that ensures sleep quality and spinal health, mattresses are essential for users to meet the core needs of scientific support, comfort, and durability. However, existing mattresses have many technical limitations in structural design and functional implementation, making it difficult to meet the diverse needs of different groups of people and different scenarios.

[0003] However, traditional mattresses often use a single spring layer or simple filling structure, lacking a scientific force transmission design. If the springs are too rigid, it can easily lead to concentrated pressure on key areas such as the shoulders, neck, waist, and hips (especially noticeable when lying on your side), causing muscle soreness with long-term use. If the springs are too soft or the filling layer is too thick, the support is insufficient, which can easily cause spinal curvature and deformation, making it impossible to maintain the natural physiological curvature. Although some mattresses add filling layers to improve softness, they lack a layered cushioning structure, so the body weight cannot be distributed layer by layer. The central area is prone to collapse due to concentrated pressure, and the edges tend to curl up, further aggravating local pressure and uneven spinal stress. It is difficult to meet the dual needs of healthy support and comfortable fit. Therefore, a flip-up mattress based on a triple synergistic spring system is proposed to solve the above problems. Utility Model Content

[0004] To overcome the above shortcomings, this utility model provides a flip-up mattress based on a triple synergistic spring system, which aims to improve the problem that traditional mattresses in the prior art mostly use a single spring layer or a simple filling structure and lack a scientific force transmission design.

[0005] To achieve the above objectives, the present invention adopts the following technical solution: a flip-up mattress based on a triple synergistic spring system, including a base module, wherein a top pad module is detachably installed on the upper surface of the base module;

[0006] The base module includes a knitted fabric, on the upper surface of which a high-resilience sponge d is fixedly connected, and on the upper surface of the high-resilience sponge d a heat-dried cotton b is fixedly connected, and on the upper surface of the heat-dried cotton b a cm environmentally friendly glue-free bed net is provided.

[0007] As a further description of the above technical solution:

[0008] The top pad module includes a skin-friendly knitted fabric a, on the lower surface of which is fixedly connected Invista antibacterial cotton, on the lower surface of which is fixedly connected GM hydrophilic cotton, on the lower surface of which is fixedly connected cashmere cotton, on the lower surface of which is fixedly connected alpaca cotton, on the lower surface of which is fixedly connected a comfort-fitting spring layer, and on the lower surface of which is fixedly connected a white non-woven fabric.

[0009] As a further description of the above technical solution:

[0010] The lower surface of the white nonwoven fabric is fixedly connected to a high-resilience sponge a, the lower surface of the high-resilience sponge a is fixedly connected to a comfortable temperature-controlled cotton, the lower surface of the comfortable temperature-controlled cotton is fixedly connected to a skin-friendly knitted fabric b, the lower surface of the skin-friendly knitted fabric b is fixedly connected to a skin-friendly knitted fabric c, the lower surface of the skin-friendly knitted fabric c is fixedly connected to resin cotton, the lower surface of the resin cotton is fixedly connected to a high-resilience sponge b, the lower surface of the high-resilience sponge b is fixedly connected to a high-resilience sponge c, the lower surface of the high-resilience sponge c is fixedly connected to heat-dried cotton a, the lower surface of the heat-dried cotton a is fixedly connected to a cm environmentally friendly glue-free bed net, and the lower surface of the cm environmentally friendly glue-free bed net is fixedly connected to heat-dried cotton c.

[0011] As a further description of the above technical solution:

[0012] The cm environmentally friendly glue-free waterbed net is provided with multiple sets of butterfly M-shaped support rods near the outer surface, and spring nets are connected to the upper and lower sides of the multiple sets of butterfly M-shaped support rods. An ultrasonic heat-pressed bagged spring is provided at the center of the cm environmentally friendly glue-free waterbed net and is arranged in a rectangular array.

[0013] As a further description of the above technical solution:

[0014] The lower surface of the heat-dried cotton c is in contact with the upper surface of the cm environmentally friendly glue-free water bed net, the outer arc surface of the heat-dried cotton c is in contact with the inner side of the spring net of the cm environmentally friendly glue-free water bed net, and the lower surfaces of the skin-friendly knitted fabric b and the skin-friendly knitted fabric c are in contact with the ultrasonic heat-pressed bagged spring at the center of the cm environmentally friendly glue-free water bed net.

[0015] This utility model has the following beneficial effects:

[0016] 1. In this utility model, the triple-coordinated spring system constructs a force transmission chain with a layered structure, solving the problems of traditional mattresses: hard mattresses cause pressure and soft mattresses cause sagging. The 10cm base mesh is equipped with 22 thickened butterfly M-shaped support rods, which evenly support body weight, eliminate the hammock effect, and maintain spinal curvature. The 5cm top mesh, with its fine steel wires, conforms to the body's curves and distributes pressure. The buffer layer eliminates pressure points. The triple coordination caters to the needs of both heavy-weight individuals for support and light-weight individuals for softness, balancing health support and comfort.

[0017] 2. In this utility model, the flip-out dual sleeping feel and modular design enhance adaptability: the front and back layers of the top pad are adapted to the needs of winter softness and summer toughness, daily life and rehabilitation, respectively. Flipping can also distribute pressure evenly and extend lifespan; the modules are fixed by ropes, fit snugly without displacement and are easy to clean and maintain; the four corners of the base are reinforced with strong support to strengthen the edges, solve the problem of collapsing when sitting, fully adapt to diverse scenarios, and improve practicality and durability. Attached Figure Description

[0018] Figure 1 This is a schematic diagram of the overall three-dimensional structure of a flip-up mattress based on a triple synergistic spring system proposed in this utility model.

[0019] Figure 2 This is a schematic diagram of the overall partial cross-sectional structure of a flip-up mattress based on a triple synergistic spring system proposed in this utility model;

[0020] Figure 3 This is a schematic diagram of the overall exploded disassembly structure of a flip-up mattress based on a triple synergistic spring system proposed in this utility model;

[0021] Figure 4 This is a schematic diagram of the 10cm environmentally friendly glue-free bed net structure of a flip-up mattress based on a triple synergistic spring system proposed in this utility model.

[0022] Legend:

[0023] 1. Top Pad Module; 101. Skin-friendly knitted fabric a; 102. Invista antibacterial cotton; 103. GM40 hydrophilic cotton; 104. Wool cotton; 105. Alpaca cotton; 106. Comfortable and conforming spring layer; 107. White non-woven fabric; 108. High-resilience sponge a; 109. Comfortable temperature-controlled cotton; 110. Skin-friendly knitted fabric b; 111. Skin-friendly knitted fabric c; 112. Resin cotton; 113. High-resilience sponge b; 114. High-resilience sponge c; 115. Heat-dried cotton a; 116. 5cm environmentally friendly glue-free bed net; 117. Heat-dried cotton c; 2. Base Module; 201. Knitted fabric; 202. High-resilience sponge d; 203. Heat-dried cotton b; 204. 10cm environmentally friendly glue-free bed net. Detailed Implementation

[0024] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0025] Reference Figure 1 - Figure 3 The present invention provides an embodiment of a flip-up mattress based on a triple synergistic spring system, comprising a base module 2, a top pad module 1 detachably mounted on the upper surface of the base module 2, and the top pad module 1 being connected to the base module 2 by a wraparound binding rope fixing structure. Specifically, a first set of binding rope fixing members is provided on the two long sides of the base module 2, and a second set of binding rope fixing members is provided on the corresponding long side of the top pad module 1. By knotting and tightening, the two modules are tightly fitted together without significant relative displacement.

[0026] Reference Figure 2 - Figure 4The base module 2 includes a knitted fabric 201. A high-resilience sponge d202 is fixedly connected to the upper surface of the knitted fabric 201. A heat-dried cotton b203 is fixedly connected to the upper surface of the high-resilience sponge d202. The heat-dried cotton b203 is a component of the first buffer layer of the base module 2. This buffer layer is a high-density support foam layer covering the upper transition spring layer, which can further buffer and evenly distribute pressure. A 10cm environmentally friendly glue-free waterbed net 204 is set on the upper surface of the heat-dried cotton b203. Multiple sets of butterfly M-shaped support rods are installed near the outer surface of mesh 204, and spring meshes are connected to the upper and lower sides of these butterfly M-shaped support rods. These butterfly M-shaped support rods are the core of the interlayer reinforcement support system of the base module 2. The upper and lower spring meshes correspond to the lower foundation support spring layer, the 10cm environmentally friendly glue-free waterbed mesh 204, and the upper transition spring layer, the 5cm environmentally friendly glue-free waterbed mesh 116, respectively. The support rods are placed horizontally and fixed at both ends to the two layers of spring meshes, and are made of thickened steel wire with a diameter of 3.8mm bent. A total of 22 core pressure-bearing zones are set between the two layers of spring netting, forming a densely distributed support matrix to provide uniform support force and completely eliminate the hammock effect. Simultaneously, at each of the four corners of the two layers of spring netting, a reinforced turning butterfly support is installed, also made of thickened steel wire with bends, providing a larger support area. This is specifically designed to strengthen the weak points at the four corners, significantly improving edge support and resistance to deformation, solving the problem of sagging. The 10cm environmentally friendly glue-free 204 stainless steel bed netting has an ultrasonically heat-pressed bagged spring at its center, arranged in a rectangular array. The lower surface of the heat-dried cotton c117 is in contact with the upper surface of the 10cm environmentally friendly glue-free waterbed mesh 204, and the outer arc surface of the heat-dried cotton c117 is in contact with the inner side of the spring mesh of the 10cm environmentally friendly glue-free waterbed mesh 204. The heat-dried cotton c117 is another component of the first buffer layer, and together with the heat-dried cotton b203, it achieves the functions of buffering and uniform pressure distribution. The lower surfaces of the skin-friendly knitted fabric b110 and skin-friendly knitted fabric c111 are in contact with the ultrasonic heat-pressed bagged spring at the center of the 10cm environmentally friendly glue-free waterbed mesh 204.

[0027] Reference Figure 3The top pad module 1 includes a skin-friendly knitted fabric a101. An Invista antibacterial cotton 102 is fixedly connected to the lower surface of the skin-friendly knitted fabric a101. A GM40 hydrophilic cotton 103 is fixedly connected to the lower surface of the Invista antibacterial cotton 102. A cashmere cotton 104 is fixedly connected to the lower surface of the GM40 hydrophilic cotton 103. An alpaca cotton 105 is fixedly connected to the lower surface of the cashmere cotton 104. A comfort-fitting spring layer 106 is fixedly connected to the lower surface of the alpaca cotton 105. A white non-woven fabric 107 is fixedly connected to the lower surface of the comfort-fitting spring layer 106. A high-resilience sponge a108 is fixedly connected to the lower surface of the non-woven fabric 107. A comfortable temperature-regulating cotton 109 is fixedly connected to the lower surface of the high-resilience sponge a108. The high-resilience sponge a108 and the comfortable temperature-regulating cotton 109 together constitute the third comfort layer of the top pad module 1, located below the comfortable fit spring layer 106. The high-resilience sponge a108 has a thickness of 1.5 cm, a density of 25 kg / m³, a 40% indentation hardness of 145 N, and a surface hardness of 60 N. It is the core material of the top pad module 1, providing a resilient and supportive sleeping experience. The comfortable temperature-regulating cotton 109 is fixedly connected to the lower surface of the non-woven fabric 107. The surface is fixedly connected to a skin-friendly knitted fabric b110. The lower surface of skin-friendly knitted fabric b110 is fixedly connected to a skin-friendly knitted fabric c111. The lower surface of skin-friendly knitted fabric c111 is fixedly connected to resin cotton 112. The lower surface of resin cotton 112 is fixedly connected to a high-resilience sponge b113. The lower surface of high-resilience sponge b113 is fixedly connected to a high-resilience sponge c114. The lower surface of high-resilience sponge c114 is fixedly connected to heat-dried cotton a115. The lower surface of heat-dried cotton a115 is fixedly connected to a 5cm environmentally friendly glue-free bed. Net 116 is a bed net composed of multiple independent pocket springs, each 5cm high with a wire diameter of 2.1mm. It is designed to support the underlying base spring layer and provide initial support and force distribution based on the human body's curves. The smaller wire diameter allows for better conformability, and the 5cm height enables it to quickly respond to subtle body deformations, immediately conforming to the curves of the shoulders, neck, back, and hips, precisely dispersing localized pressure. It is especially suitable for shoulder and hip pressure when lying on one's side. The lower surface of the 5cm environmentally friendly, glue-free bed net 116 is fixedly connected to heat-dried cotton c117.

[0028] Working Principle: This mattress achieves its core function through the detachable combination of the top module 1 and the base module 2, and a triple-coordinated spring system. Firstly, it relies on a wraparound binding structure to ensure overall stability: skin-friendly knitted fabrics B110 and C111 are in close contact with the 10cm environmentally friendly glue-free water-repellent mesh 204 springs, while heat-dried cotton C117 adheres to the upper surface of the 10cm environmentally friendly glue-free water-repellent mesh 204, effectively preventing relative displacement between the two modules. The base module 2 provides layered support from bottom to top, with the bottom layer... Knitted fabric 201 provides abrasion-resistant protection, high-resilience sponge d202 provides initial cushioning, and 10cm environmentally friendly glue-free bed net 204 provides a foundation-like rigid support for the body weight, maintains the natural curvature of the spine, and provides elastic feedback. The interlayer reinforced support system has 22 thickened 3.8mm butterfly M-shaped support rods to prevent the central hammock effect, and the four corner reinforced turning butterfly support solves the problem of edge collapse. Combined with the first buffer layer composed of heat-dried cotton b203 and skin-friendly knitted fabric c111, the pressure is further evenly distributed.

[0029] Top pad module 1 is the core of the comfort experience. Its outer fabric layer ensures skin-friendly antibacterial properties and breathability. The comfortable and conforming spring layer 106 eliminates pressure points through micro-deformation. Wool cotton 104 and alpaca cotton 105 enhance softness, while resin cotton 112, high-resilience sponge b113, and high-resilience sponge c114 provide a cushioning transition. The front and back sides rely on the second comfort layer (Invista antibacterial cotton 102 + GM40 hydrophilic cotton 103) and the third comfort layer (high-resilience sponge a108 + comfortable temperature-regulating cotton 109) respectively to achieve a balance of softness and comfort. It provides both support and resilience for a comfortable sleeping experience. Regularly turning over can switch pressure areas, reduce localized aging of the filling and springs, and adjust the sleeping feel according to the season or physical condition. The triple-coordinated spring system constructs a scientific force transmission chain. The body weight is transmitted sequentially through the top padding filling layer, the comfortable and conforming spring layer 106, to the 5cm spring layer at the base, the first buffer layer, and finally supported by the 10cm spring layer. The support force transitions smoothly without stress concentration, satisfying the soft and conforming needs of lighter individuals while providing ample support for heavier individuals.

[0030] Finally, it should be noted that the above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Although the present utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A flip-up mattress based on a triple synergistic spring system, characterized in that: Includes a base module (2), on the upper surface of which a top pad module (1) is detachably mounted; The base module (2) includes a knitted fabric (201), and a high-resilience sponge d (202) is fixedly connected to the upper surface of the knitted fabric (201). A heat-dried cotton b (203) is fixedly connected to the upper surface of the high-resilience sponge d (202), and a 10cm environmentally friendly glue-free water bed net (204) is provided on the upper surface of the heat-dried cotton b (203).

2. A flip-up mattress based on a triple synergistic spring system according to claim 1, characterized in that: The top pad module (1) includes a skin-friendly knitted fabric a (101), on the lower surface of the skin-friendly knitted fabric a (101) is fixedly connected to Invista antibacterial cotton (102), on the lower surface of the Invista antibacterial cotton (102) is fixedly connected to GM40 hydrophilic cotton (103), on the lower surface of the GM40 hydrophilic cotton (103) is fixedly connected to wool cotton (104), on the lower surface of the wool cotton (104) is fixedly connected to alpaca cotton (105), on the lower surface of the alpaca cotton (105) is fixedly connected to a comfort-fitting spring layer (106), and on the lower surface of the comfort-fitting spring layer (106) is fixedly connected to a white non-woven fabric (107).

3. A flip-up mattress based on a triple synergistic spring system according to claim 2, characterized in that: The lower surface of the white nonwoven fabric (107) is fixedly connected to a high-resilience sponge a (108), the lower surface of the high-resilience sponge a (108) is fixedly connected to a comfortable temperature-controlled cotton (109), the lower surface of the comfortable temperature-controlled cotton (109) is fixedly connected to a skin-friendly knitted fabric b (110), the lower surface of the skin-friendly knitted fabric b (110) is fixedly connected to a skin-friendly knitted fabric c (111), and the lower surface of the skin-friendly knitted fabric c (111) is fixedly connected to a resin cotton (112). The lower surface of the resin cotton (112) is fixedly connected to a high-resilience sponge b (113), the lower surface of the high-resilience sponge b (113) is fixedly connected to a high-resilience sponge c (114), the lower surface of the high-resilience sponge c (114) is fixedly connected to a heat-dried cotton a (115), the lower surface of the heat-dried cotton a (115) is fixedly connected to a 5cm environmentally friendly glue-free waterbed net (116), and the lower surface of the 5cm environmentally friendly glue-free waterbed net (116) is fixedly connected to a heat-dried cotton c (117).

4. A flip-up mattress based on a triple synergistic spring system according to claim 1, characterized in that: The 10cm environmentally friendly glue-free waterbed net (204) has multiple sets of butterfly M-shaped support rods near its outer surface, and spring nets are connected to the upper and lower sides of the multiple sets of butterfly M-shaped support rods. An ultrasonic hot-pressed bag spring is set at the center of the 10cm environmentally friendly glue-free waterbed net (204) and is arranged in a rectangular array.

5. A flip-up mattress based on a triple synergistic spring system according to claim 3, characterized in that: The lower surface of the heat-dried cotton c (117) is in contact with the upper surface of the 10cm environmentally friendly glue-free water bed net (204), the outer arc surface of the heat-dried cotton c (117) is in contact with the inner side of the spring net of the 10cm environmentally friendly glue-free water bed net (204), and the lower surfaces of the skin-friendly knitted fabric b (110) and the skin-friendly knitted fabric c (111) are in contact with the ultrasonic heat-pressed bag spring at the center of the 10cm environmentally friendly glue-free water bed net (204).