A left and right partitioned multi-sleep feeling non-adhesive mattress
Patent Information
- Application Number
- CN202522652791.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-12-12
- Publication Date
- 2026-08-21
- Estimated Expiration
- 2035-12-12
AI Technical Summary
[0003]为解决现有睡感可调的床垫缺乏左右分区,不能满足双人床同时为两个人提供不同软硬度睡感体验的技术问题,本实用新型提供了一种左右分区的多睡感无胶床垫,为两个人提供不同软硬度的睡感体验,床垫可以在不用胶水黏贴的情况下,通过多个独立垫层采用灵活的拆卸拼接,组合成有左右两个分区的床垫,各分区可以自由组合各垫层调节软硬度和睡感,满足双人使用对软硬度的不同要求
[0014]本实用新型的有益技术效果:将原本一整张软硬度不可调的舒适层改成左右两个独立的分区,每个分区都可以通过内部的层叠拼装结构独立调节软硬度,进而形成各种不同的睡感,满足双人使用对睡感的差异化需求;层叠拼装的各材料层之间通过简单的拉链或魔术贴绑带实现定位连接,支撑层采用无胶水的超声焊接袋装弹簧床芯,环保健康,床垫长期使用也不会散发出刺激性的胶水气味。
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Figure CN224654982U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of mattresses, and in particular to a multi-feel, glue-free mattress with left and right partitions. Background Technology
[0002] Existing adjustable multi-feel mattresses achieve this by layering multiple different comfort layers inside the mattress, changing the position of each layer to alter the feel and firmness, or by using a two-piece mattress with the inner and outer parts to adjust the feel and firmness. However, these two solutions only allow for adjustment of the firmness and feel of the entire mattress. When used on a double bed, they cannot meet the diverse needs of two people with different requirements for feel and firmness. Utility Model Content
[0003] To address the technical problem that existing adjustable mattresses lack left and right partitions and cannot provide different firmness experiences for two people in a double bed, this invention provides a multi-feel, glue-free mattress with left and right partitions. This mattress can be assembled into a mattress with left and right partitions by flexibly disassembling and splicing multiple independent padding layers without the need for glue. Each partition can freely combine its padding layers to adjust the firmness and feel, meeting the different firmness requirements of two people.
[0004] The technical solution adopted by this utility model to solve the technical problem is as follows: a multi-feel, glue-free mattress with left and right partitions, including an outer cover and two stacked comfort and support layers inside it. The outer cover can be opened to remove the comfort and support layers. The key feature is that the comfort layer has two partitions, left and right, and the firmness of each partition can be independently adjusted through an internal stacked assembly structure. This utility model changes the original single, non-adjustable comfort layer into two partitions, each of which can have its firmness adjusted independently through the internal stacked assembly structure, creating different sleeping sensations to meet user needs. The firmness adjustment is achieved through the internal stacked assembly structure, without the use of glue, making it environmentally friendly and healthy.
[0005] As a further improvement and supplement to the above technical solution, this utility model adopts the following technical measures: The stacked assembly structure is formed by stacking two or more material layers with different hardnesses. Each material layer includes an openable and closable inner sleeve and a gasket enclosing it. The inner sleeves of each material layer are vertically spliced, and the gaskets in each material layer are made of materials with different hardnesses. The hardness of the left and right partitions can be adjusted by adjusting the vertical position of the gaskets. The stacked assembly structure is formed by stacking two or more material layers with different hardnesses. Each material layer includes an openable and closable inner sleeve and a removable gasket enclosing it. The inner sleeves of each material layer are vertically spliced, and the hardness of each partition can be adjusted by adjusting the vertical position of each gasket. When it is necessary to adjust the hardness, the inner sleeve can be opened, the vertical position relationship of the gaskets in each inner sleeve can be readjusted, the gaskets in different positions of the inner sleeve can be changed, and then the inner sleeve can be closed to achieve the adjustment of the hardness of the partition. The adjustment of hardness can be achieved by changing the vertical position of each gasket. Each inner sleeve contains a gasket, or only some inner sleeves are filled with gaskets, and some inner sleeves do not contain gaskets. The inner sleeve can be opened and closed using existing technologies such as zippers and Velcro.
[0006] The inner sleeve is equipped with a detachable structure for splicing. The detachable structure enables vertical splicing between the upper and lower inner sleeves.
[0007] The detachable structure can be a zipper, Velcro, or strap. Zippers, Velcro, or straps allow for quick and easy splicing or disassembly of the two inner sleeves.
[0008] When the detachable structure is a zipper, the inner sleeve has zippers on all edges; when the detachable structure is Velcro, the inner sleeve has Velcro on both sides; when the detachable structure is a strap, the inner sleeve has multiple straps around its perimeter. The positions of the zippers / Velcro / straps on the inner sleeve are defined to facilitate vertical splicing of the upper and lower inner sleeves.
[0009] The inner sleeve has hook-and-loop fasteners on both the top and bottom sides, and hook-and-loop fasteners on the bottom side, respectively. Because the inner sleeve has hook-and-loop fasteners on both sides, when splicing the inner sleeves of different material layers, a simple flipping is all that's needed to find the appropriate side for splicing. Furthermore, the opposite characteristics of the hook-and-loop fasteners on both sides reduce the likelihood of errors during production. There's no need to worry about special processes where both sides are hook-and-loop or both sides are rough, or about errors caused by identical fasteners on both sides preventing subsequent splicing. The positions of the top and bottom sides of the inner sleeve are interchangeable; flipping the inner sleeve allows the top side to become the bottom side, and vice versa.
[0010] The inner sleeve has a handle with Velcro on the side, allowing for a detachable lateral connection between adjacent inner sleeves in the left and right sections via the Velcro on the handle. The Velcro on the handle further limits the lateral connection between the material layers.
[0011] The layered assembly structure consists of two or more pads of different hardness stacked together and then encased in a sleeve. The sleeve has an openable / closable opening for removing and placing the pads. The hardness is adjusted by changing the stacking order of the pads within the sleeve. Alternatively, the layered assembly structure can also consist of a sleeve combined with multiple pads of different hardness. Opening the sleeve allows the pads to be removed, their stacking order rearranged, and then the sleeve can be closed to set the shape. The sleeve can be made with common zippers, Velcro, or straps to create the openable / closable opening for removing and placing the pads and adjusting the stacking order.
[0012] The two sections of the mattress can be detachably or fixedly connected in the horizontal direction. Whether detachably or fixedly connected, the purpose is to provide horizontal connection limits between the two sections, thereby forming a complete flat comfort layer for two people to lie on the mattress. The two sections can be detachably connected using zippers or Velcro, or fixedly connected by sewing, as long as the connection between the two sections does not interfere with the opening and closing of the mattress.
[0013] The support layer is a pocket spring mattress core, and the spring pockets are made by ultrasonic welding. Ultrasonic welding of the spring pockets does not contain glue, making the resulting pocket spring mattress core environmentally friendly and healthy. Even after long-term use, the mattress will not emit any irritating glue odor.
[0014] The beneficial technical effects of this utility model are as follows: the original single, non-adjustable comfort layer is changed into two independent zones on the left and right. Each zone can independently adjust its firmness through its internal layered assembly structure, thereby creating various different sleeping sensations to meet the differentiated sleeping needs of two people. The layers of materials are connected and positioned by simple zippers or Velcro straps. The support layer uses a glue-free ultrasonically welded pocket spring core, which is environmentally friendly and healthy, and the mattress will not emit an irritating glue odor even after long-term use. Attached Figure Description
[0015] Figure 1 Example 1: Structural diagram.
[0016] Figure 2 : Diagram showing the use of zippers in layered assembly.
[0017] Figure 3 : Schematic diagram of the left and right partitions of the comfort layer.
[0018] Figure 4 : Diagram showing the use of Velcro on both sides of the material layer.
[0019] Figure 5 Diagram of a strap with Velcro.
[0020] Figure 6 Example 2: Structural diagram.
[0021] In the picture: 1. Outerwear, 1-1. Outerwear top layer, 1-2. Outerwear bottom layer, 2. Comfort layer, 3. Support layer, 3-1. Spring pocket, 4-1. Memory foam, 4-2. 3D material, 4-3. Latex, 5. Hook and loop fastener, 6. Fleece fastener, 7. Zipper, 8. Handle, 9. Cover, 10. Inner cover, 11. Hook and loop fastener, 12. Fleece fastener. Detailed Implementation
[0022] The present invention will be further described below with reference to the accompanying drawings and specific embodiments.
[0023] like Figure 1 and Figure 2 As shown, Embodiment 1 is a multi-feel, glue-free mattress with left and right partitions, including an outer cover 1 and two comfort layers 2 and a support layer 3 stacked inside it. The outer cover 1 can be opened to remove the comfort layer 2 and the support layer 3. The upper and lower sides of the outer cover 1 are the upper layer 1-1 and the lower layer 1-2, respectively. The two layers can be made of the same material or different materials. Flipping the outer cover allows the upper and lower layers to be interchanged. The outer cover also has a zipper that can be opened to remove the comfort layer 2. The support layer 3 is a pocket spring core. The spring pockets 3-1 of the spring core are made by ultrasonic welding without glue. The comfort layer 2 has two partitions, left and right. The softness and firmness of the comfort layer 2 in the two partitions can be independently adjusted through the internal stacking structure. The layered assembly structure in this embodiment is formed by stacking two or more material layers with different hardness. Each material layer includes an openable and closable inner sleeve 10 and a removable pad encased within it. The inner sleeves of each material layer are vertically joined, and the pads within each material layer are made of materials with different hardness. The hardness of the left and right sections is adjusted by changing the vertical position of the pads. This embodiment uses three material layers in each of the left and right sections as an example. As shown in the figure, the pads in the three material layers are memory foam 4-1, 3D material 4-2, and latex 4-3, respectively. The inner sleeve is opened and closed by installing a zipper for taking out and putting in the inner pads.
[0024] In use, both the left and right sections allow independent adjustment of the vertical position of the three pads within each section to regulate firmness. To adjust firmness, unzip the inner covers, remove the pads, reposition them, adjust their vertical position, change the material of the pads, and then zip the inner covers closed. The change in the vertical position of the three pads will create different firmness levels, providing differentiated sleeping experiences for double mattresses. Firmness adjustment for each section can be achieved by changing the vertical position of each pad, such as… Figure 3Both partitions shown use memory foam 4-1, 3D material 4-2, and latex 4-3 arranged vertically, with a pad in each inner sleeve. Alternatively, some inner sleeves can be filled with pads, while others may not. Since the left and right partitions have the same structure, the six pads in total can be flexibly combined. For example, two 3D materials can be assembled in one partition, resulting in a combination of two layers of 3D material and one layer of latex; the other partition can use a combination of two layers of memory foam and one layer of latex.
[0025] Furthermore, such as Figure 2 As shown, the inner sleeve 10 has a detachable structure for splicing, which can be a zipper, Velcro, or strap, etc. In this embodiment, a zipper 7 is preferred. The inner sleeve with zippers on the upper and lower edges of the center are used to splice with the upper and lower adjacent inner sleeves. The other two inner sleeves only have zippers on the edge of the corresponding splicing side.
[0026] like Figure 4 As shown, when the detachable structure uses Velcro, the inner sleeve 10 has Velcro on both its top and bottom surfaces. The figure shows the inner sleeve 10 cut open and laid flat for illustration. The Velcro on the two sides of the inner sleeve is hook-and-loop Velcro 6 and loop Velcro 7, respectively. Alternatively, the detachable structure can also be multiple straps around the perimeter of the inner sleeve.
[0027] To further perform lateral positioning on the two adjacent material layers in the left and right partitions, such as Figure 5 The inner sleeve shown can also be provided with a Velcro handle 8 on the side. The two adjacent inner sleeves 10 of the left and right sections can be detachably connected horizontally through the Velcro of the handle 8. The Velcro of the handle 8 of the two adjacent inner sleeves are respectively a matching hook-and-loop fastener 11 and a hook-and-loop fastener 12. The Velcro of the handle makes the inner sleeve also have a connection limit in the horizontal direction, so that each inner sleeve has a connection limit with the adjacent inner sleeve in both the horizontal and vertical directions.
[0028] The stacked assembly structure in Example 1 can also be modified as follows: Figure 6 Another structure is the multi-feel, glue-free mattress with left and right partitions, as shown in Example 2. The layered assembly structure in Example 2 consists of two or more pads of different firmness stacked together and then covered by an outer sleeve 9. The sleeve 9 has a zippered opening for taking out and putting in the inner pads. The firmness of the left and right partitions is adjusted by changing the stacking order of the pads within the sleeve. This example uses a sleeve 9 containing three layers of pads: memory foam 4-1, 3D material 4-2, and latex 4-3. Unzipping the sleeve allows adjustment of the stacking order of these three layers, thereby adjusting the firmness of the left and right partitions and providing different sleeping experiences for double users. Furthermore, the sleeves 9 of the left and right partitions can be detachably connected horizontally using Velcro or zippers, or the two sleeves 9 can be directly sewn together.
Claims
1. A multi-sleep feel glue-free mattress with left and right partitions, comprising an outer cover (1) and a comfort layer (2) and a support layer (3) stacked inside the outer cover, wherein the outer cover (1) can be opened to remove the comfort layer (2) and the support layer (3), characterized in that... The comfort layer (2) has two partitions, left and right, and the softness and hardness of the comfort layer (2) where the two partitions are located can be independently adjusted through the internal stacked assembly structure.
2. The multi-sleep feel glue-free mattress with left and right zones according to claim 1, characterized in that: The stacked assembly structure is formed by stacking two or more material layers with different hardness. The material layer includes an openable and closable inner sleeve (10) and a removable gasket wrapped inside. The inner sleeves of each material layer are spliced vertically. The gaskets in each material layer are made of materials with different hardness. The hardness of the left and right partitions can be adjusted by adjusting the up and down position of the gaskets.
3. The multi-sleep feel glue-free mattress with left and right zones according to claim 2, characterized in that: The inner sleeve (10) is provided with a detachable structure for splicing.
4. The multi-sleep feel glue-free mattress with left and right zones according to claim 3, characterized in that: The detachable structure is a zipper, Velcro, or strap.
5. The multi-sleep feel glue-free mattress with left and right zones according to claim 4, characterized in that: When the detachable structure is a zipper, the inner sleeve (10) is provided with zippers on all edges; when the detachable structure is a Velcro, the inner sleeve (10) is provided with Velcro on both sides; when the detachable structure is a strap, the inner sleeve (10) is provided with multiple straps around the perimeter.
6. The multi-sleep feel glue-free mattress with left and right zones according to claim 5, characterized in that: The hook and loop fasteners on the top and bottom sides of the inner sleeve (10) are hook and loop fasteners (6) and loop fasteners (7), respectively.
7. The multi-sleep feel glue-free mattress with left and right zones according to claim 3, characterized in that: The inner sleeve (10) is provided with a handle (8) with Velcro on the side, and the adjacent inner sleeves (10) of the left and right sections can be detachably connected laterally by the Velcro of the handle (8).
8. The multi-sleep feel glue-free mattress with left and right zones according to claim 1, characterized in that... The stacked assembly structure is formed by stacking two or more pads of different hardness and then covering them with an outer sleeve (9). The sleeve (9) has an openable opening for taking out and putting in the pads. The hardness of the partition is adjusted by adjusting the stacking order of the pads in the sleeve.
9. The multi-sleep feel glue-free mattress with left and right zones according to claim 8, characterized in that: The two wrappers (9) of the left and right sections can be detachably or fixedly connected in the horizontal direction.
10. The multi-sleep feel glue-free mattress with left and right zones according to any one of claims 1 to 9, characterized in that... The support layer (3) is a bagged spring bed core, and the spring bag of the spring bed core is made by ultrasonic welding.