A double-support bionic partitioned spine-protecting mattress
By using a dual-support bionic zone mattress structure, and employing Coolex materials and high-density foam inserts, the problem of existing mattresses being unable to adapt to the physiological curvature of the human body is solved. This achieves precise lumbar support and multi-part conformity, improving sleep comfort and spinal health.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- FUJIAN GENEROUS SLEEP TECH CO LTD
- Filing Date
- 2025-09-29
- Publication Date
- 2026-07-21
AI Technical Summary
Existing mattresses cannot provide differentiated support based on the force characteristics and physiological curvature of different parts of the body, especially in the lumbar region where they cannot fill the gaps, leading to uncomfortable sleep and potentially causing spinal health problems. Furthermore, they cannot adapt to the lumbar spine characteristics of different people.
It adopts a dual-support bionic partition structure, including a comfort layer, a support layer, and a second support block. The comfort layer and the support layer are made of Coolux Seamless Technology Cotton and Coolux Support Cotton, respectively. The support layer has a groove in the waist area to embed a high-density hardened sponge block to fill the gap in the waist and form additional support.
It provides precise support for the lower back, maintains the natural physiological curve, improves sleep comfort, adapts to the sleep needs of different groups, and reduces the risk of lower back muscle tension and spinal abnormalities.
Smart Images

Figure CN224522762U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of mattress technology, and in particular to a dual-support bionic zoned spine-protecting mattress. Background Technology
[0002] With the increasing demand for healthy living in modern society, the link between sleep quality and spinal health is receiving growing attention. As the core component of the sleep environment, the mattress's support performance and ergonomic fit have become key technological challenges. Currently, most mainstream mattresses on the market use a single piece of cotton material laid flat as a single unit. While this design provides basic support, it has significant technological limitations:
[0003] From an ergonomic perspective, the human spine exhibits natural physiological curves when lying down (such as the S-shaped curves of cervical lordosis, thoracic kyphosis, and lumbar lordosis). Furthermore, the weight distribution and support requirements of different parts of the body, such as the head, neck and shoulders, lower back, hips, and legs, vary significantly. Existing one-piece molded mattresses cannot provide differentiated support based on the pressure characteristics and physiological curvature of different parts of the body, resulting in insufficient conformity between the body and the mattress when lying down. This is especially true in the lumbar region, where, due to the physiological structure of the lumbar lordosis, most users experience a 2-3cm gap between their lower back and the mattress surface when lying down. This gap cannot be filled by the one-piece cotton structure of traditional mattresses, and long-term use can easily cause continuous tension in the lower back muscles, affecting sleep comfort and potentially leading to abnormal spinal curvature, increasing the risk of lower back pain, lumbar muscle strain, and other problems.
[0004] In terms of flexibility in adapting to different groups, users of different ages, weights, and body types have individual differences in lumbar curvature and lumbar gap size (such as the different lumbar elasticity between teenagers and middle-aged and elderly people, and the different lumbar pressure requirements between obese and thin people). The support strength and structure of existing mattresses are fixed and cannot be adapted to the physiological characteristics of the lumbar spine of different groups, making it difficult to meet the diverse needs for spinal protection.
[0005] In addition, some mattresses that claim to have zoned functions only achieve simple differentiation of firmness by adjusting the density of local cotton, without designing a special support structure for the lumbar region, which is a core area for spinal protection. They still cannot solve the technical problems of filling gaps in the lumbar region and achieving dynamic fit, resulting in limited overall spinal protection effects.
[0006] In summary, existing mattress products have technical shortcomings in terms of adaptability to human physiological curvature, lumbar support, and individualized adaptation. There is an urgent need for a spinal support mattress structure that can accurately fill the gaps in the lumbar region, provide multi-part support, and adapt to the lumbar spine characteristics of different groups of people, in order to solve the problem that current products cannot meet the needs of spinal health care. Utility Model Content
[0007] To overcome the technical defects of the existing technology, this utility model provides a dual-support bionic zoned spinal support mattress, which can improve the overall support for the user's waist.
[0008] The technical solution adopted by this utility model is: a dual-support bionic zoned spine-protecting mattress, which includes a comfort layer, a support layer and a second support block arranged from top to bottom;
[0009] The comfort layer is made of Coolermax's non-feeling technology cotton, which is laid over a large area to provide soft support and actively distribute the lateral and vertical pressure on the human body.
[0010] The support layer is made of Cooler support cotton and is laid entirely under the comfort layer. The support layer has grooves in the area corresponding to the waist of the human body.
[0011] The second support insert is made of high-density, hardened sponge material, adapted to the physiological curvature of the lumbar spine when the human body is in a lying position. It is embedded in the groove of the support layer. The height of the second support insert is 2-3cm. It is used to fill the gap between the waist and the mattress when the human body is in a lying position, forming an additional support force in addition to the basic support, so that the human spine maintains its natural physiological curve.
[0012] Preferably, the height of the second support block is 2.5cm, and the cross-section is arc-shaped, which fits the curvature of the human lumbar spine.
[0013] Preferably, the groove depth of the support layer is matched with the height of the second support block, so that after the second support block is installed, its top surface is flush with or slightly higher than the top surface of the support layer.
[0014] Preferably, the thickness of the comfort layer is 2-4cm, the thickness of the support layer is 4-6cm, and the comfort layer, the support layer and the second support block work together to form a support structure that adapts to the human head, neck and shoulders, waist, hips and legs, so as to achieve multiple parts fitting the mattress.
[0015] Preferably, the grooves in the support layer can be adjusted in terms of density or depth to change the overall firmness and softness of the mattress in some areas, thus adapting to the sleeping needs of different people.
[0016] Preferably, the surface of the comfort layer is further provided with a partitioned groove design, which corresponds to the shoulder and hip areas of the human body, to further improve the local pressure distribution effect.
[0017] The beneficial effects of this invention are as follows: This device provides softer support through a comfort layer and a support layer, actively dispersing body pressure and providing cushioning when lying down. While assisting in dispersing body pressure, it also provides solid support. The second support insert layer, through a memory foam cutting process, removes part of the cotton from the support layer and combines with the normal physiological curve of the waist in a lying position to actively fill the 2-3cm gap in the waist, providing additional support in addition to the basic support layer, as well as traction and guiding force for the body. The support for the shoulders, waist, hips and lower back is more ergonomic. Attached Figure Description
[0018] Figure 1 This is a schematic diagram of the overall structure of this utility model.
[0019] Figure 2 This is a schematic diagram of the shape of the linear second support block of this utility model.
[0020] Explanation of reference numerals in the attached diagram: 1. Comfort layer; 2. Support layer; 3. Secondary support block; 4. Groove; 5. Zoned groove. Detailed Implementation
[0021] The present invention will be further described below with reference to the accompanying drawings:
[0022] like Figures 1-2 As shown, this embodiment provides a dual-support bionic zoned spinal support mattress, which includes a comfort layer 1, a support layer 2, and a second support block 3 arranged sequentially from top to bottom;
[0023] Comfort layer 1 is made of Coolex Seamless Technology Cotton, which is laid over a large area to provide soft support and actively distribute the lateral and vertical pressure on the human body;
[0024] The support layer 2 is made of Cooler support cotton and is laid under the comfort layer 1. The support layer 2 has a groove 4 in the area corresponding to the waist of the human body.
[0025] The second support block 3 is made of high-density, hardened sponge material, which is adapted to the physiological curvature of the lumbar spine when the human body is in a lying position. It is embedded in the groove 4 of the support layer 2. The height of the second support block 3 is 2-3cm. It is used to fill the gap between the waist and the mattress when the human body is in a lying position. It should be noted that the second support block 3 can form an additional support force in addition to the basic support, so that the human spine can maintain its natural physiological curve.
[0026] like Figure 1As shown, the second support block 3 has a height of 2.5cm and a circular arc cross-section, which fits the curvature of the human lumbar spine. The depth of the groove 4 in the support layer 2 matches the height of the second support block 3, so that after the second support block 3 is installed, its top surface is flush with or slightly higher than the top surface of the support layer 2. It should be noted that, as Figure 2 As shown, the cross-section of the second support block 3 can also be set to be straight or irregular, and its height can be adjusted to be greater than 2.5cm to adapt to different waist gap sizes of human bodies.
[0027] like Figure 1 As shown, the comfort layer 1 is 2-4cm thick, and the support layer 2 is 4-6cm thick. The comfort layer 1, support layer 2, and second support block 3 work together to form a support structure that adapts to the head, neck, shoulders, waist, hips, and legs of the human body, achieving a close fit between multiple parts and the mattress. It should be noted that the grooves 4 in the support layer 2 can be adjusted in terms of density or depth to change the overall and local areas of the mattress firmness, adapting to the sleeping needs of different people. A partitioned groove 5 is added below the support layer 2 to support the shoulders and hips of the human body, further improving the local pressure distribution effect.
[0028] The foregoing has shown and described the basic principles and main features of this invention, as well as its advantages. Those skilled in the art should understand that this invention is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of this invention. Various changes and modifications can be made to this invention without departing from its spirit and scope. All such changes and modifications fall within the scope of this invention as defined by the appended claims and their equivalents.
Claims
1. A dual-support bionic zoned spinal support mattress, characterized in that: It includes a comfort layer (1), a support layer (2), and a second support block (3) arranged from top to bottom. The comfort layer (1) is made of Cooler's non-feeling technology cotton material, which is laid over a large area to provide soft support and actively disperse the lateral and vertical pressure of the human body; The support layer (2) is made of Cooler support cotton and is laid under the comfort layer (1). The support layer (2) has a groove (4) in the area corresponding to the waist of the human body. The second support block (3) is made of high-density hardened sponge material, which is adapted to the physiological curvature of the lumbar spine when the human body is in a lying position. It is embedded in the groove (4) of the support layer (2). The height of the second support block (3) is 2-3cm, which is used to fill the gap between the waist and the mattress when the human body is in a lying position.
2. The dual-support bionic zoned spinal support mattress according to claim 1, characterized in that: The second support block (3) has a height of 2.5cm and a circular arc cross-section, which fits the curvature of the human lumbar spine.
3. The dual-support bionic zoned spinal support mattress according to claim 1, characterized in that: The depth of the groove (4) of the support layer (2) matches the height of the second support block (3), so that after the second support block (3) is installed, its top surface is flush with or slightly higher than the top surface of the support layer (2).
4. The dual-support bionic zoned spinal support mattress according to claim 1, characterized in that: The comfort layer (1) has a thickness of 2-4cm, and the support layer (2) has a thickness of 4-6cm. The comfort layer (1), the support layer (2), and the second support block (3) work together to form a support structure that fits the head, neck, shoulders, waist, hips, and legs of the human body, so as to achieve the fit of multiple parts with the mattress.
5. The dual-support bionic zoned spinal support mattress according to claim 1, characterized in that: The support layer (2) is provided with a partitioned groove (5) below it to support the human shoulder and hip.