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2023-03-14 10:18:29
<section data-role="outer" class="article135" label="edit by 135editor"><section class="_135editor" data-tools="135编辑器" data-id="123780"><section style="margin: 10px auto;"><section style="margin: 0 0 -15px;"><section class="assistant" style="width: 30px;"><img class="assistant" style="vertical-align: inherit; width: 100%; display: block; max-width: 100% !important;" src="https://bcn.135editor.com/files/images/editor_styles/2a453fa62fcb008142778289fbafa5ff.png" data-width="100%" draggable="false"></section></section><section style="background-color: rgb(255, 249, 249); border-radius: 10px; padding: 8px; margin: 0px 6px;"><section data-autoskip="1" class="135brush" style="text-align: justify; line-height: 1.75em; letter-spacing: 1.5px; color: rgb(51, 51, 51); background-color: rgb(255, 255, 255); padding: 10px 15px; border: 1px dashed rgb(251, 100, 141); border-radius: 10px;"><p style="line-height:1.75em"><span style="font-size: 19px; color: #000000;">常见的导电纤维的制备方法主要包括原位制备法、表面处理法、碳处理法。<br></span></p><section class="_135editor" data-tools="135编辑器" data-id="123779"><section style="margin: 10px auto;"><section class="box-edit" style="margin: 0 0 20px;"><section style="display: flex;justify-content: flex-start;margin: 0 0 10px;align-items: center;"><section style="flex-shrink: 0;transform-style: preserve-3d"><section class="assistant" style="width: 35px; transform: translateZ(5px);"><img class="assistant" style="vertical-align: inherit; width: 100%; display: block; max-width: 100% !important;" src="https://bcn.135editor.com/files/images/editor_styles/e09617ffbfac630067a22d26eb1c3e54.png" data-width="100%" draggable="false" data-ratio="0.9512195121951219" data-w="82"></section><section style="margin: -34px 0 0;transform: translateZ(10px);transform: translateZ(10px);-webkit-transform: translateZ(10px);-moz-transform: translateZ(10px);-ms-transform: translateZ(10px);-o-transform: translateZ(10px);"><section style="font-size: 16px; color: rgb(255, 255, 255); width: 35px; text-align: center; height: 35px; display: flex; justify-content: center; align-items: center;"><p style="font-size: 19px; line-height: 1.75em;"><span style="color:#000"><strong>0</strong><strong class="autonum" data-original-title="" title="" data-num="2">2</strong></span></p></section></section></section><section style="font-size: 16px; color: rgb(66, 59, 59); text-align: left; padding: 0px 10px;"><p style="line-height:1.75em"><span style="font-size: 19px; color: #000000;"><strong class="135brush" data-brushtype="text">原位制备法</strong></span></p></section></section><section data-autoskip="1" class="135brush" style="line-height: 1.75em; background-color: rgb(255, 249, 249); padding: 10px 15px; border-radius: 6px;"><p style="line-height:1.75em"><span style="font-size: 19px; color: #000000;">原位制备法包括直接纺丝法、掺杂纺丝法和复合纺丝法。其中,复合纺丝法制备的纤维不仅有良好的力学电学性能,而且易与其他纤维抱合,易混纺或交织。</span></p></section></section><section class="box-edit" style="margin: 0 0 20px;"><section style="display: flex;justify-content: flex-start;margin: 0 0 10px;align-items: center;"><section style="flex-shrink: 0;transform-style: preserve-3d"><section class="assistant" style="width: 35px; transform: translateZ(5px);"><img class="assistant" style="vertical-align: inherit; width: 100%; display: block; max-width: 100% !important;" src="https://bcn.135editor.com/files/images/editor_styles/e09617ffbfac630067a22d26eb1c3e54.png" data-width="100%" draggable="false" data-ratio="0.9512195121951219" data-w="82"></section><section style="margin: -34px 0 0;transform: translateZ(10px);transform: translateZ(10px);-webkit-transform: translateZ(10px);-moz-transform: translateZ(10px);-ms-transform: translateZ(10px);-o-transform: translateZ(10px);"><section style="font-size: 16px; color: rgb(255, 255, 255); width: 35px; text-align: center; height: 35px; display: flex; justify-content: center; align-items: center;"><p style="font-size: 19px; line-height: 1.75em;"><span style="color:#000"><strong>0</strong><strong class="autonum" data-original-title="" title="" data-num="3">3</strong></span></p></section></section></section><section style="font-size: 16px; color: rgb(66, 59, 59); text-align: left; padding: 0px 10px;"><p style="line-height:1.75em"><span style="font-size: 19px; color: #000000;"><strong class="135brush" data-brushtype="text">表面处理法</strong></span></p></section></section><section data-autoskip="1" class="135brush" style="line-height: 1.75em; background-color: rgb(255, 249, 249); padding: 10px 15px; border-radius: 6px;"><p style="line-height:1.75em"><span style="font-size: 19px; color: #000000;">表面处理法是指通过对合成纤维进行表面处理,主要包括物理浸渍涂覆、镀层、共聚接枝等在基体表面包覆导电物质或形成导电薄膜制备导电纤维。<br></span></p></section></section><section class="box-edit" style="margin: 0 0 20px;"><section style="display: flex;justify-content: flex-start;margin: 0 0 10px;align-items: center;"><section style="flex-shrink: 0;transform-style: preserve-3d"><section class="assistant" style="width: 35px; transform: translateZ(5px);"><img class="assistant" style="vertical-align: inherit; width: 100%; display: block; max-width: 100% !important;" src="https://bcn.135editor.com/files/images/editor_styles/e09617ffbfac630067a22d26eb1c3e54.png" data-width="100%" draggable="false" data-ratio="0.9512195121951219" data-w="82"></section><section style="margin: -34px 0 0;transform: translateZ(10px);transform: translateZ(10px);-webkit-transform: translateZ(10px);-moz-transform: translateZ(10px);-ms-transform: translateZ(10px);-o-transform: translateZ(10px);"><section style="font-size: 16px; color: rgb(255, 255, 255); width: 35px; text-align: center; height: 35px; display: flex; justify-content: center; align-items: center;"><p style="font-size: 19px; line-height: 1.75em;"><span style="color:#000"><strong>0</strong><strong class="autonum" data-original-title="" title="" data-num="4">4</strong></span></p></section></section></section><section style="font-size: 16px; color: rgb(66, 59, 59); text-align: left; padding: 0px 10px;"><p style="line-height:1.75em"><span style="font-size: 19px; color: #000000;"><strong class="135brush" data-brushtype="text">碳处理法</strong></span></p></section></section><section data-autoskip="1" class="135brush" style="line-height: 1.75em; background-color: rgb(255, 249, 249); padding: 10px 15px; border-radius: 6px;"><p style="line-height:1.75em"><span style="font-size: 19px; color: #000000;">利用目前的碳化处理技术深度处理纤维,由于纤维的主链碳原子较多,提高了纤维的导电能力。但同时模量高,缺乏韧性,适用范围有限。</span></p></section></section></section></section></section></section><section style="display: flex;justify-content: flex-end;margin: -22px 0 0;"><section class="assistant" style="width: 30px;"><img class="assistant" style="vertical-align: inherit; width: 100%; display: block; max-width: 100% !important;" src="https://bcn.135editor.com/files/images/editor_styles/bfafaa1b781660c88fc361c1c23a0ac6.gif" data-width="100%" draggable="false"></section></section></section></section><section class="_135editor" data-role="paragraph"><p><br></p></section></section>