Lightweight and highly resilient pet supplies
The pet supply design addresses weight and resilience issues by using a layered structure with EPE pearl cotton and breathable TPU, ensuring lightweight, durable, and healthy pet products with improved scratch resistance and breathability.
Patent Information
- Authority / Receiving Office
- JP · JP
- Patent Type
- Utility models
- Current Assignee / Owner
- Filing Date
- 2026-01-13
- Publication Date
- 2026-03-16
AI Technical Summary
Existing pet supplies, such as pet nests and pads, face issues with heavy weight, low resilience, susceptibility to deformation, inadequate abrasion resistance, and poor breathability, leading to damage, contamination, and health hazards due to bacterial growth.
A pet supply design incorporating a surface layer, EPE pearl cotton rebound layer, bottom layer, and additional layers such as a scratch-resistant buffer layer and breathable TPU retina, utilizing materials like polyester and polyurethane for enhanced resilience, abrasion resistance, and breathability.
The design achieves lightweight, highly resilient pet supplies with improved scratch resistance, reduced risk of damage, and enhanced breathability, preventing bacterial growth and maintaining pet health.
Smart Images

Figure 0003255112000001_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of pet textiles, and specifically relates to lightweight and highly resilient pet supplies.
Background Art
[0002] With the increase in the pet breeding rate, the demand for the functionality and practicality of pet supplies has been further increasing. Especially in textile products used as underwear such as pet nests and pet pads, resilience, durability, and comfort have become the core attention indicators of consumers.
[0003] In existing pet supplies (such as pet nests, pet pads, pet sofas, etc.), sponges and ordinary cotton waddings are often used as the resilient filling materials. These materials are either too heavy or have a low resilience rate, and are prone to sinking and deformation after long-term use, making it difficult to maintain a comfortable supporting effect. Next, the material of the surface layer is often ordinary fabric, with insufficient abrasion resistance and snag resistance, and it is easy for the pet's claws to penetrate the surface layer, causing the internal filling material to be exposed and damaged, shortening the product life. Furthermore, dirt easily penetrates inside and contaminates the filling material, and it is difficult to discharge the sweat and moisture generated by the pet's activities, resulting in the breeding of bacteria and mold, generating unpleasant odors, and affecting the pet's health and usage experience.
Summary of the Invention
Problems to be Solved by the Invention
[0004] The purpose of this utility model is to provide lightweight and highly resilient pet supplies in order to solve the problems raised in the above background art.
Means for Solving the Problems
[0005] To achieve the above object, this utility model provides the following technical solution. The lightweight and highly resilient pet supplies include a surface layer, an EPE pearl cotton resilient layer, and a bottom layer, and the EPE pearl cotton resilient layer is disposed between the surface layer and the bottom layer.
[0006] In a preferred embodiment, the EPE pearl cotton rebound layer is made of highly foamed polyethylene, and the EPE pearl cotton in the EPE pearl cotton rebound layer is columnar EPE pearl cotton, block-shaped EPE pearl cotton, sheet-shaped EPE pearl cotton, or mesh-shaped EPE pearl cotton.
[0007] In a preferred embodiment, the mesh EPE pearl cotton is constructed by intersecting rod-shaped EPE pearl cotton with each other and fusing them together at the intersections, or by forming mesh holes on a sheet.
[0008] In a preferred embodiment, both the surface layer and the bottom layer are woven from one or more of the following: polyester, nylon, acrylic, polyurethane, polyethylene, vinylon, regenerated cellulose fibers, and cotton, linen, silk, and wool.
[0009] In a preferred embodiment, a breathable TPU retina is adhered to the upper surface of the bottom layer.
[0010] In a preferred embodiment, a scratch-resistant buffer layer is sewn between the surface layer and the EPE pearl cotton rebound layer, the scratch-resistant buffer layer is made of high-strength polyester short fiber needle-punched fabric, and a PU elastic coating is applied to the upper surface of the scratch-resistant buffer layer.
[0011] In a preferred embodiment, a moisture-absorbing and breathable layer is sewn between the EPE pearl cotton rebound layer and the bottom layer, and the moisture-absorbing and breathable layer has a mesh structure and is woven from one or more of the following: polyester, nylon, acrylic, polyurethane, polyethylene, vinylon, regenerated cellulose fibers, and cotton, linen, silk, and wool.
[0012] Compared to conventional technology, this utility model has the following beneficial effects.
[0013] This lightweight, highly resilient pet product incorporates an EPE pearl cotton rebound layer inside, reducing the weight of the product while maintaining a high rebound rate, thus achieving both lightness and high resilience.
[0014] These lightweight, highly resilient pet products feature a surface layer that enhances the abrasion resistance of the pet product's surface, making it less likely for pets' claws to pierce it. A scratch-resistant buffer layer is placed inside the surface layer, and the high-strength polyester short-fiber needle-punched fabric forms a dense fiber network to improve tear resistance. The addition of a PU elastic coating further enhances scratch and bite resistance, preventing claws from puncturing the EPE pearl cotton.
[0015] This lightweight, highly resilient pet product incorporates a breathable TPU retina, which prevents oil stains from penetrating from the bottom to the interior of the pet product, and a moisture-absorbing and breathable layer inside the pet product ensures ventilation. [Brief explanation of the drawing]
[0016] [Figure 1] This is the intended cross-sectional structure of this utility model. [Figure 2] This diagram illustrates the cross-sectional structure of the breathable TPU retina and PU elastic coating in this utility model. The diagram shows: 1. Surface layer; 2. EPE pearl cotton rebound layer; 3. Bottom layer; 31. Breathable TPU retina; 4. Scratch-resistant buffer layer; 41. PU elastic coating; 5. Moisture-absorbing and breathable layer. [Modes for carrying out the invention]
[0017] The utility model will be described in more detail below, with reference to the examples provided.
[0018] The embodiments described below are for illustrative purposes only and do not limit the scope of protection provided for this utility model. The conditions described in the embodiments can be further adjusted depending on the specific circumstances, and any minor modifications made to the method of this utility model, based on the concept of this utility model, also fall within the scope of protection provided for this utility model.
[0019] Referring to Figure 1-2, this utility model provides a lightweight, highly resilient pet product comprising a surface layer 1, an EPE pearl cotton resilience layer 2, and a bottom layer 3. The EPE pearl cotton resilience layer 2 is positioned between the surface layer 1 and the bottom layer 3, and all layers are joined to each other by a quilting method. The EPE pearl cotton of the EPE pearl cotton resilience layer 2 can be columnar EPE pearl cotton, block-shaped EPE pearl cotton, sheet-shaped EPE pearl cotton, or mesh-shaped EPE pearl cotton. Mesh-shaped EPE pearl cotton is constructed by intersecting rod-shaped EPE pearl cotton and fusing them together at the intersections, or by forming mesh holes on a sheet. By placing the EPE pearl cotton resilience layer 2 inside the pet product, the weight of the pet product is reduced, and it has a high resilience rate, achieving the effect of being lightweight and highly resilient.
[0020] As those skilled in the art know, EPE pearl cotton, also known as EPE pearl cotton, is a type of polyethylene foam, a novel environmentally friendly packaging material, and is manufactured by foaming high-pressure low-density polyethylene with the addition of various additives. For comparison, the sheet-like and mesh-like EPE pearl cotton used in this utility model are both obtained by foaming and extruding the following compositions using a single-screw extruder.
[0021] LDPE masterbatch: 100 parts by weight, Microsilica aerogel: 0.8 parts by weight, Nanosilica: 1.2 parts by weight, Talc: 3.0 parts by weight, Glycerin stearate: 3.0 parts by weight, n-butane: 26 parts by weight.
[0022] Specifically, both the surface layer 1 and the bottom layer 3 are composed of being woven from one or more of polyester, nylon, acrylic, polyurethane, polyethylene, vinylon, regenerated cellulose fiber, as well as cotton, hemp, silk, and wool, which enhances the abrasion resistance of the surface of the pet supplies and makes it difficult for the pet supplies to be pierced by the pet's claws. On the outer surface of the surface layer 1, a coating of fluorine-modified polysiloxane finishing agent is arranged, which reduces the infiltration of oil stains and facilitates the wiping and cleaning of the surface of the pet supplies.
[0023] Furthermore, a scratch-resistant buffer layer 4 is sewn between the surface layer 1 and the EPE pearl cotton rebound layer 2. The scratch-resistant buffer layer 4 is a high-strength polyester staple fiber needle-punched fabric, and a PU elastic coating 41 is applied on the upper surface of the scratch-resistant buffer layer 4. The scratch-resistant buffer layer 4 arranged inside the surface layer 1 forms a dense fiber network with the high-strength polyester staple fiber needle-punched fabric to improve the tear resistance. The addition of the PU elastic coating 41 further improves the scratch and bite resistance, avoiding the claws from piercing the EPE pearl cotton.
[0024] Specifically, a breathable TPU mesh 31 is adhered to the upper surface of the bottom layer 3. By adding the breathable TPU mesh 31, it is possible to prevent oil stains from penetrating from the bottom of the pet supplies to the inside.
[0025] Furthermore, a moisture-absorbing and breathable layer 5 is sewn between the EPE pearl cotton rebound layer 2 and the bottom layer 3. The moisture-absorbing and breathable layer 5 has a mesh structure and is composed of being woven from one or more of polyester, nylon, acrylic, polyurethane, polyethylene, vinylon, regenerated cellulose fiber, as well as cotton, hemp, silk, and wool. The moisture-absorbing and breathable layer 5 provided inside the pet supplies ensures the breathability inside the pet supplies.
[0026] The operating principle and usage flow of this utility model are as follows. First, by providing an EPE pearl cotton rebound layer 2 inside the pet product, the weight of the product can be reduced and it has a high rebound rate, achieving the effect of being lightweight and highly rebounding. The surface layer 1 enhances the abrasion resistance of the surface of the pet product, making it less likely for the pet product to be pierced by the pet's claws. The scratch-resistant buffer layer 4 placed inside the surface layer 1 allows the high-strength polyester short fiber needle-punched cloth to form a dense fiber network, improving tear resistance. The addition of the PU elastic coating 41 further improves scratch and bite resistance, preventing claws from piercing the EPE pearl cotton. The addition of the breathable TPU retina 31 prevents oil stains from penetrating from the bottom to the inside of the pet product. The moisture-absorbing and breathable layer 5 provided inside the pet product ensures breathability inside the pet product.
[0027] Although embodiments of this utility model have already been shown and described, those skilled in the art will understand that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of this utility model, and that the scope of this utility model is limited by the appended claims and their equivalents.
Claims
1. A lightweight, highly resilient pet product comprising a surface layer (1), an EPE pearl cotton resilience layer (2), and a bottom layer (3), wherein the EPE pearl cotton resilience layer (2) is positioned between the surface layer (1) and the bottom layer (3).
2. A lightweight, highly resilient pet product according to claim 1, characterized in that the EPE pearl cotton resilience layer (2) is made of highly foamed polyethylene, and the EPE pearl cotton of the EPE pearl cotton resilience layer (2) is columnar EPE pearl cotton, block-shaped EPE pearl cotton, sheet-shaped EPE pearl cotton, or mesh-shaped EPE pearl cotton.
3. A lightweight, highly resilient pet product according to claim 2, characterized in that the mesh-like EPE pearl cotton is composed of rod-shaped EPE pearl cotton that intersect with each other and are fused together at the intersections, or is composed of mesh holes formed on a sheet.
4. A lightweight, highly resilient pet product according to claim 1, characterized in that both the surface layer (1) and the bottom layer (3) are woven from one or more of the following: polyester, nylon, acrylic, polyurethane, polyethylene, vinylon, regenerated cellulose fiber, and cotton, linen, silk, and wool.
5. A lightweight, highly resilient pet product according to claim 1, characterized in that a breathable TPU retina (31) is bonded to the upper surface of the bottom layer (3).
6. A lightweight, highly resilient pet product according to claim 1, wherein a scratch-resistant buffer layer (4) is sewn between the surface layer (1) and the EPE pearl cotton resilience layer (2), the scratch-resistant buffer layer (4) is made of high-strength polyester short fiber needle-punched cloth, and a PU elastic coating (41) is applied to the upper surface of the scratch-resistant buffer layer (4).
7. A lightweight, highly resilient pet product according to claim 1, characterized in that a moisture-absorbing and breathable layer (5) is sewn between the EPE pearl cotton resilience layer (2) and the bottom layer (3), and the moisture-absorbing and breathable layer (5) has a mesh structure and is composed of one or more of the following: polyester, nylon, acrylic, polyurethane, polyethylene, vinylon, regenerated cellulose fiber, and cotton, linen, silk, and wool.