Silica gel slow-rebound memory sponge
By designing a porous silicone foam with embedded holes and a multi-layered sponge structure in the slow-rebound memory foam, the problem of existing sponges being unable to be adjusted is solved, achieving a user-adjustable and comfortable fit.
Patent Information
- Application Number
- CN202423221771.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-25
- Publication Date
- 2025-11-25
- Estimated Expiration
- 2034-12-25
AI Technical Summary
Existing slow rebound memory foam deforms and collapses in similar ways during use, making it impossible to adjust according to user needs and thus failing to provide adequate support and comfort to the neck.
A composite slow-rebound memory foam is designed, which has through or non-through symmetrical openings of porous silicone foam tape embedded in the interior. By combining different layers of foamed slow-rebound sponge, the user's adjustment function is enhanced, and local deformation effect is achieved.
By combining porous foam tape and multiple layers of sponge, users can adjust the deformation of the sponge according to their needs to achieve a better neck fit and comfortable support.
Smart Images

Figure CN223585595U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of silica gel slow rebound memory sponge, especially a silica gel slow rebound memory sponge. BACKGROUND
[0002] The existing slow rebound memory sponge is mostly used in memory pillow products, but the size structure of the product cannot be changed, so the deformation and collapse of each part are similar when in use, which is not conducive to better fitting the neck to form more comfortable support.
[0003] The present case is proposed to improve and optimize the above problems or deficiencies. INVENTION CONTENTS
[0004] A silica gel slow rebound memory sponge, comprising a composite slow rebound memory sponge and a plurality of strip-shaped silica gel porous foam belts, wherein a silica gel porous foam belt embedded hole that is symmetrical left and right or not is arranged in the composite slow rebound memory sponge, and the silica gel porous foam belt is inserted and filled in the silica gel porous foam belt embedded hole.
[0005] Preferably, a chemical fiber belt is embedded and fixed in the silica gel porous foam belt, the two ends of the silica gel porous foam belt inserted into the composite slow rebound memory sponge are flush with the side surface of the composite slow rebound memory sponge, and the chemical fiber belt is exposed outside the composite slow rebound memory sponge, so as to facilitate pulling out the silica gel porous foam belt.
[0006] Preferably, at least two layers of silica gel porous foam belt embedded holes are arranged at intervals.
[0007] Preferably, the foam pores of the silica gel porous foam belt are larger than the foam pores of the composite slow rebound memory sponge, the silica gel porous foam belt is used for reinforcing the filling effect, and users can pull out the silica gel porous foam belt at the specified position according to their own needs, so as to make the composite slow rebound memory sponge form a deformation effect that fits the pillow part better.
[0008] Preferably, the composite slow rebound memory sponge is composed of a first-level foamed slow rebound sponge body, a second-level foamed slow rebound sponge body and a third-level foamed slow rebound sponge body from inside to outside, wherein the silica gel porous foam belt embedded hole is arranged in the second-level foamed slow rebound sponge body, and the wall thickness of the second-level foamed slow rebound sponge body is greater than the wall thickness of the third-level foamed slow rebound sponge body, which is greater than the thickness of the first-level foamed slow rebound sponge body.
[0009] Preferably, the foaming pores of the primary foaming slow-rebound sponge are larger than the foaming pores of the secondary foaming slow-rebound sponge, and the foaming pores of the secondary foaming slow-rebound sponge are larger than the foaming pores of the tertiary foaming slow-rebound sponge, so that the secondary foaming slow-rebound sponge can be accelerated to inhale or exhale after the silica gel porous foaming belt is pulled out, thereby forming a more comfortable deformation effect.
[0010] The utility model discloses the advantages and positive effects are:
[0011] 1. Through the structural design of primary foaming slow-rebound sponge, secondary foaming slow-rebound sponge, tertiary foaming slow-rebound sponge and the design of silica gel porous foaming belt, more adjustment functions are provided for users, and the necks of different people can be more closely fitted. BRIEF DESCRIPTION OF DRAWINGS
[0012] The utility model will be further described below in connection with the drawings and examples.
[0013] Fig. 1 It is the structure schematic diagram of the utility model;
[0014] Fig. 2 It is the cross section structure schematic diagram of the utility model after pulling out silica gel porous foaming belt 11.
[0015] Mark in the drawing: 10, composite slow-rebound memory sponge;11, silica gel porous foaming belt;12, chemical fiber belt;13, silica gel porous foaming belt embedded hole;14, primary foaming slow-rebound sponge;15, secondary foaming slow-rebound sponge;16, tertiary foaming slow-rebound sponge. DETAILED DESCRIPTION
[0016] The utility model will be further described below in connection with the drawings and examples.
[0017] The utility model embodiment will be further described below in connection with the drawings:
[0018] As Figs. 1-2 The utility model discloses a silica gel slow-rebound memory sponge, including a composite slow-rebound memory sponge 10 and a plurality of strip-shaped silica gel porous foaming belts 11, the silica gel porous foaming belt embedded hole 13 of penetrating or non-penetrating left-right symmetry opening is equipped in the composite slow-rebound memory sponge 10, and the silica gel porous foaming belt 11 is filled and inserted in the silica gel porous foaming belt embedded hole 13.
[0019] Preferably, the silica gel porous foaming belt 11 is embedded and fixed with a chemical fiber yarn belt 12, both ends of the silica gel porous foaming belt 11 are flush with the side of the composite slow-rebound memory sponge 10 after being inserted into the composite slow-rebound memory sponge 10, and the chemical fiber yarn belt 12 is exposed outside the composite slow-rebound memory sponge 10, so as to facilitate pulling out the silica gel porous foaming belt 11.
[0020] Preferably, the silica gel porous foaming belt embedded hole 13 is spaced by at least two layers from top to bottom.
[0021] Preferably, the foaming pore of the silica gel porous foaming belt 11 is larger than the foaming pore of the composite slow-rebound memory sponge 10, and the silica gel porous foaming belt 11 is used for reinforcing the filling effect, and users can pull out the silica gel porous foaming belt 11 at a specified position according to their own needs, so as to make the composite slow-rebound memory sponge 10 form a more conforming deformation effect on the pillow part.
[0022] Preferably, the composite slow-rebound memory sponge 10 is composed of a first foaming slow-rebound sponge body 14, a second foaming slow-rebound sponge body 15 and a third foaming slow-rebound sponge body 16 from inside to outside, wherein the silica gel porous foaming belt embedded hole 13 is arranged in the second foaming slow-rebound sponge body 15, and the wall thickness of the second foaming slow-rebound sponge body 15 is greater than the wall thickness of the third foaming slow-rebound sponge body 16, which is greater than the thickness of the first foaming slow-rebound sponge body 14.
[0023] Preferably, the foaming pore of the first foaming slow-rebound sponge body 14 is larger than the foaming pore of the second foaming slow-rebound sponge body 15, and the foaming pore of the second foaming slow-rebound sponge body 15 is larger than the foaming pore of the third foaming slow-rebound sponge body 16, so that the second foaming slow-rebound sponge body 15 can speed up the air intake or air exhaust after the silica gel porous foaming belt 11 is pulled out under the cooperation of the inner wall surface of the silica gel porous foaming belt embedded hole 13, thereby forming a more comfortable deformation effect.
[0024] It should be emphasized that the embodiments of the present application are illustrative rather than restrictive, and thus the present application is not limited to the embodiments described in the specific embodiments, and any other embodiments derived by those skilled in the art from the technical solution of the present application also belong to the scope of protection of the present application.
Claims
1. A slow rebounding memory foam of silica gel, characterized in that: The composite slow-rebound memory sponge (10) is provided with a plurality of strip-shaped silica gel porous foam strips (11) embedded in the silica gel porous foam strip embedding holes (13) penetrating or not penetrating the left-right symmetrical openings in the composite slow-rebound memory sponge (10).
2. A slow-rebound silicone memory foam according to claim 1, wherein: The silica gel porous foam strip (11) is embedded and fixed with a chemical fiber strip (12), and after the silica gel porous foam strip (11) is inserted into the composite slow-rebound memory sponge (10), the two ends are flush with the side surface of the composite slow-rebound memory sponge (10), and the chemical fiber strip (12) is exposed outside the composite slow-rebound memory sponge (10), which facilitates pulling out the silica gel porous foam strip (11).
3. A slow-rebound silicone memory foam according to claim 2, wherein: The silica gel porous foam strip embedding holes (13) are spaced at least two layers.
4. The slow-rebound silicone memory foam of claim 3, wherein: The foaming pores of the silica gel porous foam strip (11) are larger than the foaming pores of the composite slow-rebound memory sponge (10), and the silica gel porous foam strip (11) is used for strengthening the filling effect, and users can pull out the silica gel porous foam strip (11) at the specified position according to their own needs, thereby making the composite slow-rebound memory sponge (10) form a more conforming deformation effect on the pillow part.
5. A slow-rebound silicone memory foam according to claim 4, wherein: The composite slow-rebound memory sponge (10) is composed of a first-level foaming slow-rebound sponge body (14), a second-level foaming slow-rebound sponge body (15), and a third-level foaming slow-rebound sponge body (16) from inside to outside, wherein the silica gel porous foam strip embedding holes (13) are arranged in the second-level foaming slow-rebound sponge body (15), and the wall thickness of the second-level foaming slow-rebound sponge body (15) is greater than the wall thickness of the third-level foaming slow-rebound sponge body (16), which is greater than the thickness of the first-level foaming slow-rebound sponge body (14).
6. A slow-rebound silicone memory foam according to claim 5, wherein: The foaming pores of the first-level foaming slow-rebound sponge body (14) are larger than the foaming pores of the second-level foaming slow-rebound sponge body (15), and the foaming pores of the second-level foaming slow-rebound sponge body (15) are larger than the foaming pores of the third-level foaming slow-rebound sponge body (16), which makes the second-level foaming slow-rebound sponge body (15) accelerate air intake or exhaust after the silica gel porous foam strip (11) is pulled out under the cooperation of the inner wall surface of the silica gel porous foam strip embedding hole (13), thereby forming a more comfortable deformation effect.