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全部资讯   / 抗静电织物设计实例

抗静电织物设计实例

2013-06-24 10:23:37

<p align="center"><img src="http://dayaotex-img.gz.bcebos.com/article/fffspic/tuxxfzpsj6-16.png"><img src="http://dayaotex-img.gz.bcebos.com/article/fffspic/tuxxfzpsj6-17.png"><img src="http://dayaotex-img.gz.bcebos.com/article/fffspic/tuxxfzpsj6-18.png"><img src="http://dayaotex-img.gz.bcebos.com/article/fffspic/tuxxfzpsj6-19.png"><img src="http://dayaotex-img.gz.bcebos.com/article/fffspic/tuxxfzpsj6-20.png"><img src="http://dayaotex-img.gz.bcebos.com/article/fffspic/tuxxfzpsj6-21.png"><img src="http://dayaotex-img.gz.bcebos.com/article/fffspic/tuxxfzpsj6-22.png"><img src="http://dayaotex-img.gz.bcebos.com/article/fffspic/tuxxfzpsj6-23.png"><img src="http://dayaotex-img.gz.bcebos.com/article/fffspic/tuxxfzpsj6-24.png"><img src="http://dayaotex-img.gz.bcebos.com/article/fffspic/tuxxfzpsj6-25.png"><img src="http://dayaotex-img.gz.bcebos.com/article/fffspic/tuxxfzpsj6-26.png"></p><section class="_135editor" data-role="paragraph" style="max-inline-size: 100%; margin: 0px; padding: 0px; border: 0px none; z-index: 0; overflow-wrap: break-word !important; outline: none 0px !important;"><p style="max-inline-size: 100%; margin-bottom: 0px; clear: both; min-height: 1em; cursor: text; line-height: 1.75em; overflow-wrap: break-word !important; outline: none 0px !important;">  其电阻值为10<span style="max-inline-size: 100%; margin: 0px; padding: 0px; cursor: text; font-size: 12px; overflow-wrap: break-word !important; outline: none 0px !important;">6</span>~10<span style="max-inline-size: 100%; margin: 0px; padding: 0px; cursor: text; font-size: 12px; overflow-wrap: break-word !important; outline: none 0px !important;">7</span>Ω*cm。基布的抗静电可用导电纤维与聚丙烯混纺制得抗静电基布。</p><p style="max-inline-size: 100%; margin-bottom: 0px; clear: both; min-height: 1em; cursor: text; overflow-wrap: break-word !important; outline: none 0px !important;"><br style="max-inline-size: 100%; margin: 0px; padding: 0px; overflow-wrap: break-word !important; outline: none 0px !important;"></p><p style="max-inline-size: 100%; margin-bottom: 0px; clear: both; min-height: 1em; cursor: text; line-height: 1.75em; overflow-wrap: break-word !important; outline: none 0px !important;">  由于背胶、基布的导电化,因此导电纤维在任何方法上都是连续的,没有间断。</p><p style="max-inline-size: 100%; margin-bottom: 0px; clear: both; min-height: 1em; cursor: text; overflow-wrap: break-word !important; outline: none 0px !important;"><br style="max-inline-size: 100%; margin: 0px; padding: 0px; overflow-wrap: break-word !important; outline: none 0px !important;"></p><p style="max-inline-size: 100%; margin-bottom: 0px; clear: both; min-height: 1em; cursor: text; line-height: 1.75em; overflow-wrap: break-word !important; outline: none 0px !important;">  以导电纤维法为基准,加入抗静电剂为辅,再加上电荷中和法,则效果更佳。</p><p style="max-inline-size: 100%; margin-bottom: 0px; clear: both; min-height: 1em; cursor: text; overflow-wrap: break-word !important; outline: none 0px !important;"><br style="max-inline-size: 100%; margin: 0px; padding: 0px; overflow-wrap: break-word !important; outline: none 0px !important;"></p><p style="max-inline-size: 100%; margin-bottom: 0px; clear: both; min-height: 1em; cursor: text; line-height: 1.75em; overflow-wrap: break-word !important; outline: none 0px !important;">  3.电荷泄漏法的抗静电界限  为确定抗静电地毯能达到的界限,可使用电阻极低的铜板和铅板,测定人体带电电位。</p><p style="max-inline-size: 100%; margin-bottom: 0px; clear: both; min-height: 1em; cursor: text; overflow-wrap: break-word !important; outline: none 0px !important;"><br style="max-inline-size: 100%; margin: 0px; padding: 0px; overflow-wrap: break-word !important; outline: none 0px !important;"></p><p style="max-inline-size: 100%; margin-bottom: 0px; clear: both; min-height: 1em; cursor: text; line-height: 1.75em; overflow-wrap: break-word !important; outline: none 0px !important;">  鞋底通常是绝缘体,与铝、铜等金属摩擦也会带电,鞋底表面的电荷在金属板上放电而消除,内部的电荷则流入人体积蓄起来,达到一定电位时,而瞬间放电,降低电位,测定所得结果则是达到某一平衡状态时人体的带电电位。当鞋底、袜子等导电性差时,地毯使用为良导体时,也不可避免地产生静电现象,但必须注意金属板与导电纤维消除静电机理是不相同的。</p><p style="max-inline-size: 100%; margin-bottom: 0px; clear: both; min-height: 1em; cursor: text; overflow-wrap: break-word !important; outline: none 0px !important;"><br style="max-inline-size: 100%; margin: 0px; padding: 0px; overflow-wrap: break-word !important; outline: none 0px !important;"></p><p style="max-inline-size: 100%; margin-bottom: 0px; clear: both; min-height: 1em; cursor: text; line-height: 1.75em; overflow-wrap: break-word !important; outline: none 0px !important;">  六、新型耐久性防静电织物设计</p><p style="max-inline-size: 100%; margin-bottom: 0px; clear: both; min-height: 1em; cursor: text; overflow-wrap: break-word !important; outline: none 0px !important;"><br style="max-inline-size: 100%; margin: 0px; padding: 0px; overflow-wrap: break-word !important; outline: none 0px !important;"></p><p style="max-inline-size: 100%; margin-bottom: 0px; clear: both; min-height: 1em; cursor: text; line-height: 1.75em; overflow-wrap: break-word !important; outline: none 0px !important;">  本工艺不采用高分子有机抗静电剂,也不采用金属或碳等导电纤维,而是采用一种能在织物整理过程中生成导电络合物的无机络合剂,赋予合纤织物以耐久的抗静电性能。这种方法成本低、工艺操作简便、生产效率高、适用于量大面广的涤棉混纺织物和纯涤纶织物。经此法整理后的织物,其抗静电作用不受环境温度条件的影响,防静电性能和耐久性检测均达到或超过了国家有关标准。同时,该法对织物的手感、风格及透气性等亦无任何不良影响。</p><p style="max-inline-size: 100%; margin-bottom: 0px; clear: both; min-height: 1em; cursor: text; overflow-wrap: break-word !important; outline: none 0px !important;"><br style="max-inline-size: 100%; margin: 0px; padding: 0px; overflow-wrap: break-word !important; outline: none 0px !important;"></p><p style="max-inline-size: 100%; margin-bottom: 0px; clear: both; min-height: 1em; cursor: text; line-height: 1.75em; overflow-wrap: break-word !important; outline: none 0px !important;">  (一)研制机理</p><p style="max-inline-size: 100%; margin-bottom: 0px; clear: both; min-height: 1em; cursor: text; overflow-wrap: break-word !important; outline: none 0px !important;"><br style="max-inline-size: 100%; margin: 0px; padding: 0px; overflow-wrap: break-word !important; outline: none 0px !important;"></p><p style="max-inline-size: 100%; margin-bottom: 0px; clear: both; min-height: 1em; cursor: text; line-height: 1.75em; overflow-wrap: break-word !important; outline: none 0px !important;">  1. 织物的前处理  织物前处理的目的是使涤纶纤维表面粗糙化、极性化、促进低分子物的扩散,使其易于吸附络合物,并增大结合的强度。同时,织物经前处理后可有效地去除不必要的油剂和杂质,这样,也有利于络合物被均匀地吸附。</p><p style="max-inline-size: 100%; margin-bottom: 0px; clear: both; min-height: 1em; cursor: text; overflow-wrap: break-word !important; outline: none 0px !important;"><br style="max-inline-size: 100%; margin: 0px; padding: 0px; overflow-wrap: break-word !important; outline: none 0px !important;"></p><p style="max-inline-size: 100%; margin-bottom: 0px; clear: both; min-height: 1em; cursor: text; line-height: 1.75em; overflow-wrap: break-word !important; outline: none 0px !important;">  织物的前处理是通过适当的碱处理来实现的;而碱处理的控制,主要是根据不同的织物选择不同的减量率。试验和生产实践都表明,织物的前处理对成品防静电性能的耐久性有重要的影响。若前处理不恰当,可导致成品的耐久性差。</p><p style="max-inline-size: 100%; margin-bottom: 0px; clear: both; min-height: 1em; cursor: text; overflow-wrap: break-word !important; outline: none 0px !important;"><br></p></section><p align="center"><img src="http://dayaotex-img.gz.bcebos.com/article/fffspic/tuxxfzpsj6-27.png"></p><p align="center"><img src="http://dayaotex-img.gz.bcebos.com/article/fffspic/tuxxfzpsj6-27.png"></p><p align="center"><br></p><p align="center"><br></p>

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