POLYETHYLENE FIBER
The product is hollow shape design, large specific surface area, can be in the fiber before melting part of the water vapor discharge, improve the drainage efficiency, speed up the heating speed. Hollow design can reduce the actual density of the product, to achieve the same pore rate can reduce the amount of explosion-proof fiber, saving the cost of adding. WY-105 type products all use imported raw materials, through the patented formula modulation spinning. The product softening point and melting point of 95C and 110 ± 10 , can be generated in a large number of water vapor quickly soften and melt to form a pore, so that water vapor smoothly discharged to prevent cracking. The product components contain organic dispersing components, can be fully dispersed in the mixture, to eliminate the phenomenon of agglomeration, knotting
Utilization
In order to make it mix evenly in the casting material, it should be added into the dry material, and it is better to add it into the coarse material and mix it well, and then mix it evenly with the fine material; the amount of additive should be controlled properly. The amount of additives should be controlled properly, usually 0.5~2% of the dry material should be added according to the thickness of masonry for refractory materials. Please use the product in time after opening the package, and pay attention to the fireproof and moisture-proof when storing the product. When storing the product, please pay attention to fireproof and moisture-proof, and keep away from heat source.
ES fiber is a sheath-core composite fiber obtained by successfully combining low-melting components and high-melting components on a single fiber. It has excellent thermal bonding properties. The low melting point component in ES fiber melts under heat treatment conditions higher than its melting point, and bond with other materials to form a binder-free environmentally and friendly non-woven fabric. ES fiber has various advantages such as soft, fluffy, low-temperature processing, heat-bonding, plasticity, non-toxic, non-irritating, and lightweight. It is mainly used to manufacture high-quality sanitary products such as sanitary napkins and diapers. And it is also high-quality materials used to make medical products such as medical protective cloth and medical protective masks, and so on. There are two main types of ES fibers. The first kind is a composite of PE and PP. Its sheath layer is PE (polyethylene, melting point 130�°C), and its core layer is PP (polypropylene, melting point 165�°C). The second kind is a composite of PE and PE. Its sheath layer is PE, and the core layer is PET (polyester, melting point 255â??), which is an upgraded version of PE/PP. ES is divided into EP and ET in terms of material and functionally divided into the hydrophilic, water-repellent, hydrophilic, and weak parent, single parent, multi-parent.In addition, it also can be divided into whitening, general whitening, high holding, medium holding, and low holding. The specifications are 1.5D38mm, 2D38mm, 4D51mm, and so on. In the future, the trend will gradually develop towards fine deniers. SPECIFICATION: PE+PET ES Fiber: Optical White & Super Hydrophile 2D*38mm, Optical White & Hydrophile 2D*38mmï¼? Optical White & Water Repellency 2D*38mmï¼? RAW White & Water Repellency 2D*38mmï¼? Optical White & Super Hydrophile 1.5D*38mmï¼? Optical White & Water Repellency 1.5D*38mmï¼? RAW White & Water Repellency 1.5D*38mï¼? Hydrophile 2D*38mmï¼? Water Repellency 2D*38mm PE+PP ES Fiber: Hydrophile (P2Q) 2D*38mm
Bicomponent fibers are defined as fibers produced by extruding two different polymers from the same spinneret, allowing both polymers to coexist within a single filament. This innovative structure provides unique properties that neither polymer could achieve on its own. A related term, "co-spun fiber," refers to filaments made from different polymers, with each filament containing only one component. In some regions, particularly in Asia, the term "conjugate fibers" is used interchangeably with bicomponent fibers. The primary goal of creating bicomponent fibers is to harness the distinct capabilities of each polymer to enhance performance and functionality. One notable example of bicomponent fibres is those constructed with a polyethylene sheath surrounding a polypropylene core. These fibers are crucial in the nonwoven fabric market, offering benefits such as improved durability, resilience, and thermal bonding properties.
Supplier: Coconut shell charcoals, coconut fiber, polypropylene, polyethylene
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