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首页> 外文期刊>Carbohydrate Polymers: Scientific and Technological Aspects of Industrially Important Polysaccharides >Bulk cellulose plastic materials from processing cellulose powder using back pressure-equal channel angular pressing
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Bulk cellulose plastic materials from processing cellulose powder using back pressure-equal channel angular pressing

机译:使用背压-等通道角向压制加工纤维素粉而制成的大块纤维素塑料材料

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Bulk cellulose plastic materials with a continuous morphology were successfully processed from cellulose powder through back pressure-equal channel angular pressing (BP-ECAP) at 150 °C without using any additives. The strong shear deformation during the process caused an efficient deformation of cellulose granular and crystalline structures, resulting in effective chain penetration and strong intermolecular interactions throughout the whole material. The mechanical behaviour of the cellulose plastics was comparable to those of polymer/cellulose composites. Ball milling the cellulose powder prior to processing disrupted the crystalline structures thus resulting in more significant modifications of the molecular motions of the cellulose. The outcome of this research provides a potential methodology for manufacturing renewable and biodegradable bulk materials from cellulose-based agricultural waste.
机译:在不使用任何添加剂的情况下,通过150℃的背压-等通道角压(BP-ECAP),成功地从纤维素粉末加工了具有连续形态的块状纤维素塑料材料。在此过程中,强烈的剪切变形导致纤维素颗粒和晶体结构发生有效变形,从而导致有效的链渗透和整个材料中强烈的分子间相互作用。纤维素塑料的机械性能与聚合物/纤维素复合材料的机械性能相当。在加工之前对纤维素粉末进行球磨会破坏晶体结构,从而导致纤维素分子运动的更显着变化。这项研究的结果提供了一种潜在的方法,可以从基于纤维素的农业废料制造可再生和可生物降解的散装材料。

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