这些织物使用的纤维有:聚丙烯、烯烃、涤纶、尼龙以及丙烯腈纤维。
These fabrics are made of such fibers as polypropylene, olefin, polyester, nylon, and acrylic.
象尼龙、涤纶、丙烯腈、烯烃等人造纤维,具有疏水的表面,有聚积大量电荷的倾向。
Man -made fibers, such as nylon, polyester, acrylic and olefin, with hydrophobic surfaces, have a greater tendency to retain high electric charges.
所述织物组合物包括烯烃嵌段互聚物或均匀支化的乙烯聚合物或它们的组合的纤维。
Said fabric compositions comprise fibers of olefin block interpolymers or homogeneous branched ethylene polymers or a combination thereof.
采用等离子体对聚烯烃合成纤维纸改性后,进行丙烯酸接枝,使之适用于电池隔膜。
The paper described modification of Polyolefine paper with acrylic acid induced by plasma. Grafted Polyolefine paper can be used as battery separator.
这些织物使用的纤维有:聚丙烯、烯烃、涤纶、尼龙以及丙烯膊纤维。
These fabrics are made of such fibers as polypropylene, olefin, polyester, nylon, and acrylic.
本文采用高取代度季铵型阳离子淀粉、氨基烯烃聚合物以及紫外线吸收剂BP - 4接枝氨基烯烃聚合物作为阳离子化试剂对棉纤维进行物理改性,用于活性染料无盐竭染。
Cationic starch of quaternary ammonium type with high DS, polyamines and polyamines grafted with UV-absorber BP-4 were applied as cationic agents of cotton in salt-free dyeing of reactive dyes.
聚丙烯接枝马来酸酐(MPP)和聚烯烃弹性体接枝马来酸酐(MPOE)均可改善生物质纤维与PP的相容性,提高复合材料的力学性能。
Maleated polypropylene (MPP) and maleated polyolefin elastomer (MPOE) can be used to improve the compatibility between bio-fiber and PP, and thus strengthen the mechanical properties of composites.
目的通过对医用连续碳纤维增强聚烯烃复合材料的生物力学测试,了解其作为硬组织修复材料的力学性能。
Objective The purpose of this study is to evaluate biomechanical character of continuous carbon-fiber reinforced polyolefin composites as hard tissue repair material.
采用聚烯烃增韧与玻璃纤维共混,在保持复合材料拉伸强度和模量的同时,较大地提高了冲击强度,获得了综合力学性能优异的纤维增强聚酰胺材料。
Composites with well general mechanical properties, such as unchanged tensile strength and modulus and higher impact strength were obtained by adopting technologies of polyolefin and glass-fiber.
采用聚烯烃增韧与玻璃纤维共混,在保持复合材料拉伸强度和模量的同时,较大地提高了冲击强度,获得了综合力学性能优异的纤维增强聚酰胺材料。
Composites with well general mechanical properties, such as unchanged tensile strength and modulus and higher impact strength were obtained by adopting technologies of polyolefin and glass-fiber.
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