Textile hair and ball removing eraser

Through the three-dimensional porous structure and the special materials of the micro-toothed blade, the applicability and damage problems of the existing textile wool removal technology are solved, and efficient, low-cost and safe textile wool removal effect is achieved.

CN120425534APending Publication Date: 2025-08-05曹雪岩
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Patent Information

Application Number
CN202510504353.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-22
Publication Date
2025-08-05

AI Technical Summary

Technical Problem

The existing textile wool removal technology cannot be applied to all textiles and wool ball types, and is prone to damage original textiles, with high cost, prone to failure and short service life.

Method used

It adopts a three-dimensional three-dimensional porous structure of various sizes, with a special material of micro-toothed blades on the surface. The fluffy ball is pulled or cut through the pores and micro-toothed blades, allowing textile fibers to pass through. The material has self-lubricity and appropriate hardness to protect the textile from damage.

Benefits of technology

It realizes effective removal of all textiles and fluffy balls, reduces production and maintenance costs, avoids damage to textiles, improves safety and service life, and is environmentally friendly and energy-saving.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to a brand-new textile hair and ball removing eraser, which is characterized in that through monomer three-dimensional porous structures with various sizes, the pore surfaces and the structural sections are provided with micro tooth blades, while pores with various sizes form an integral supporting structure, the micro tooth blades with small-size and section pores can filter and block loose hair ball fibers with various diameters, so that the hair and ball removing effect is improved, and the hair and ball removing effect is improved. When the fluff and pompon rubbing agent rubs the surface of the textile, firm fibers of the original textile can pass through the pores, and loose fluff and pompon fibers can be pulled (or cut) to be broken by the multiple micro tooth blades, so that the fluff and pompon fibers are separated from the original textile. The self-lubricity and hardness of the material are lower than those of original textile fibers and higher than those of fluff and pompon fibers, the original textile cannot be damaged while fluff and pompon are removed, for example, when the material is in damaged contact with the original textile, the touch part can be automatically broken to form fine particles to be separated, and therefore the original textile is protected. And the touch point can form a new miniature tooth blade on the broken section, so that a new operation structure is automatically formed.
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Description

Technical field:

[0001] The invention relates to a lint and pilling wiping device for textiles, in particular to a device for removing pilling from textiles by wiping the linting and pilling textiles with the three-dimensional porous special material of various sizes. Background technology:

[0002] Textile fuzzing is a natural phenomenon whereby the ends of fibers protrude from the surface after friction. Almost all fiber materials experience fuzzing, and even pilling, during daily use. Existing textile de-fuzzing and pilling technologies are not suitable for all textiles and fuzz types; they cannot completely prevent secondary damage to the original textile, resulting in limited effectiveness, high costs, susceptibility to failure, and a short service life.

[0003] According to relevant information, current research and application of textile depilation and pilling can be basically divided into two categories: the first is electric depilation and pilling trimmers, which use a principle similar to a razor to cut off the fluff and pilling that passes through the filter with an electric blade to achieve the purpose of depilation and pilling. However, if the fluff is too long or the diameter of the pilling is too large to enter the filter, the blade cannot completely remove the pilling. If the filter aperture is expanded, the original textile itself will enter the blade's cutting range, causing damage to the original textile. In addition, because there are moving parts and an electric drive is required, it will also lead to high production and maintenance costs and easy failure. The second type is metal scrapers, which have strong scraping power but are prone to excessive removal of surface fluff, which will scratch the original textile. In addition, the blade itself hooks the fibers of most highly elastic textiles, not only failing to remove pilling, but also causing secondary damage to the textile. Summary of the invention:

[0004] Purpose of the invention: The present invention is aimed at the problems existing in the research on depilling and pilling of textiles mentioned above. While removing hair and pilling more effectively, it provides a depilling and pilling application that is applicable to all textiles, all types of pilling, requires no maintenance or repair, and will not damage the original textiles.

[0005] Technical solution: The present invention is a three-dimensional porous structure with pores of various sizes. The surface pores and structural cross-sections have micro-toothed edges. The overall shape is any shape that is suitable for holding by hand or can be fixed on a mechanical operating device, usually a rectangular parallelepiped. The working surface is a flat special material. When the working surface is rubbed against pilling textiles, the small-sized pores and micro-toothed edges will pull (or cut) the fluff and pilling, while the arched pores of various sizes on the working surface will allow the undamaged fibers of the original textile to pass safely, thereby achieving the purpose of not damaging the original textile and removing the fluff and pilling.

[0006] The various pore sizes are various micro-tooth blades and pore diameter sizes ranging from 5 to 3000 microns, corresponding to various textile fibers, velvet ball fiber diameter sizes, textile structures and the support structure of the present invention.

[0007] The three-dimensional porous structure is a material composed of micron and millimeter levels, and its internal pores are distributed in three-dimensional space and arranged regularly or irregularly. The pores are interconnected to form a three-dimensional network framework.

[0008] The micro tooth blade is a micron-level irregular sawtooth structure on the pore surface and the structural section.

[0009] The specially formulated material has a hardness of 300-750g as measured by a texture analyzer. It is self-lubricating and has a coefficient of friction of 0.08-0.35, corresponding to the strength and material of various consumer and industrial textiles. During the wiping process, any damaging contact will automatically break off the material as particles. Beneficial effects:

[0010] Improved performance: The size of the pores and micro-tooth blades covers the fiber diameters and textile structures of all textile fuzz balls. With full-contact, zero-omission wiping operation, it can remove all textiles and various types of fuzz balls, and the effect is greatly improved.

[0011] Reduce costs: There are no moving parts, no electric devices, no assemblies, and no fine metal processing parts, which greatly reduces production costs; the use effect is achieved only by the characteristics of the material itself and the fixed monomer structure, without trouble, no need for repair, and no need to replace parts, which greatly reduces maintenance costs; the three-dimensional porous structure is the entire operating structure. After the part consumed by use is detached, the structural section will automatically form a new working surface. The parts will not lose function due to long-term wear and deformation, which greatly reduces the cost of use.

[0012] Improved safety: No metal parts and no sharp structures, which prevent users from being accidentally cut or scratched during use, especially children, who will not be injured when playing with it in their hands; the special limits of hardness and self-lubrication will not harm the original textiles during the wiping operation. If there is a damaging touch (such as: there are hard objects such as sand under the textiles during operation), the touched parts will break off by themselves to form small particles and detach, thereby protecting the original textiles.

[0013] Easy to use: Just wipe it on the textile, no need to touch switches or other devices, no need to perform fine control of force and angle, no need to avoid sharp edges to avoid accidental damage to textiles, no fragile or weak parts or locations, and no need to be careful to avoid them during operation.

[0014] Energy saving and environmental protection: The present invention adopts additive or equal material processing during production, which will not generate production waste and industrial garbage. From production raw materials, production equipment to production process and use process, it is environmentally friendly and pollution-free; some processes and production links in the present invention can utilize the surrounding natural environment temperature for production, without the need for additional energy consumption, and no electricity is required during use, which greatly reduces energy consumption.

[0015] Promoting industrial development: This invention is a brand-new technology for removing pilling from textiles, a world first. There is no production line that can be directly applied or indirectly modified. It requires a brand-new production line and production personnel. While promoting the technological upgrading and development of related industries, it will inevitably create new market demand and employment opportunities. Description of the drawings: Figure 1 This is a schematic diagram of the structure of the textile depilatory and pilling rub of the present invention. 1: Structural cross section 2: Support structure 3: Micro-tooth blades on the pore surface 4: Pores of various sizes Figure 2 Schematic diagram of the local structure of the structural section 1-1: Micro-tooth blades in the structural section 1-2: Pores in the structural section Specific implementation: The present invention is described below with reference to the accompanying drawings.

[0016] The present invention is a monomer three-dimensional porous structure, the pore surface and the structural section ( Figure 1 →1, Figure 2 ) with micro-toothed blades ( Figure 1 →3, Figure 2 →1-1), pores of various sizes ( Figure 1 →4) In forming the overall support structure ( Figure 1 →2) while small size and cross-sectional aperture ( Figure 2 →1-2) micro-tooth blade ( Figure 2 →1-1) will filter and block loose fuzzy fibers of various diameters. When they pass over the surface of textiles, the fuzzy fibers and fuzzy balls will form a certain angle (non-parallel) with the original textile fiber direction and the structure is loose. The pores of various sizes will allow the strong fibers of the original textile to pass through, while the loose fuzzy and fuzzy ball fibers will be trapped by the multiple micro-tooth blades ( Figure 1 →3, Figure 2 →1-1) Pull (or cut) it off to separate it from the original textile.

[0017] The self-lubricating property of the material of the present invention makes it smooth and easy to operate when wiping the fluff and pompoms on the surface of textiles; and its hardness is lower than the strength of the original textile fiber, but higher than the strength of the fluff and pompom fibers, so that while removing the fluff and pompoms, it will not cause damage to the original textile. For example, when damaging contact with the original textile occurs (such as: during operation, there are hard objects such as sand under the textile), the touched part will break off by itself to form small particles and detach, thereby protecting the original textile. The touch point will form a new micro-tooth edge on the broken section, thereby forming a new operating structure by itself. Due to its three-dimensional porous structure, while it has the above-mentioned hardness, it also ensures that it has sufficient structural strength.

[0018] The present invention adopts a brand-new technical approach, and uses the self-lubrication of special materials, limited hardness and the integrated technical solution of micro-tooth blades attached to a three-dimensional porous structure to achieve a new breakthrough in the current field of textile depilling and depilling, and greatly improves the function and effect of removing any type of pilling from all textiles.

Claims

1. A textile depilatory wiper, which is a three-dimensional porous structure (1) of various sizes and has micro-toothed edges on the pore surface and structural cross-section. The wiper can remove the pilling of the textile.

2. The pores of various sizes of the hair and ball remover according to claim 1 are regular or irregular shapes with a pore diameter of 5-3000 microns.

3. The hardness characteristic of the material according to claim 1 is that the hardness tested by a texture analyzer is 300-750g.

4. The self-lubricating characteristic of the material according to claim 1 is a friction coefficient of 0.08-0.

35.

5. According to claim 1, the material characteristic is that when damaged and touched, it will fall off in the form of particles and separate from the main body, and a new operating surface will be formed on the falling section.