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首页> 外文期刊>International Polymer Processing: The Journal of the Polymer Processing Society >Melt Processing of Wood Cellulose Tissue and Ethylene-Acrylic Acid Copolymer Composites
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Melt Processing of Wood Cellulose Tissue and Ethylene-Acrylic Acid Copolymer Composites

机译:木材纤维素组织和乙烯-丙烯酸共聚物复合材料的熔融加工

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摘要

The difficulty of feeding cellulose fibers together with the polymer into the melt processing equipment is a serious disadvantage for the production of cellulose-containing composites on a large scale. In the present work, a continuous method of feeding cellulose in the form of a tissue into a twin-screw extruder through an opening downstream of the extruder cylinder was studied. With this method, composites with different fiber contents were obtained. The tissues used were one made mainly of softwood fibers and another mainly of hardwood fibers. In order to better understand how to improve the fiber dispersion by melt mixing, a second extrusion was performed with a single screw extruder with a barrier-flighted screw and also with the twin-screw used to compound the tissue with the polymer. The compounds produced were then injection molded into test bars. The test bars containing the softwood tissue exhibited some fiber aggregates also after a second extrusion, whereas no fiber aggregates were observed in samples made with the tissue containing hardwood fibers and two passes through the twin screw. The fiber length was in general reduced by each melt processing stage and the shortest fiber length was observed after two extrusions with the twin-screw and injection molding. The tensile modulus increased with increasing fiber content. A higher stiffness was obtained with more softwood fibers in the tissue whereas more hardwood fibers gave a higher tensile strength and greater elongation at break.
机译:将纤维素纤维与聚合物一起进料到熔融加工设备中的困难是大规模生产含纤维素复合材料的严重缺点。在当前的工作中,研究了一种连续的方法,该方法通过挤压机筒下游的开口将组织形式的纤维素供给到双螺杆挤压机中。通过这种方法,获得了具有不同纤维含量的复合材料。所使用的薄纸是一种主要由软木纤维制成的纸巾,另一种主要由硬木纤维制成的纸巾。为了更好地理解如何通过熔融混合来改善纤维分散性,第二次挤出是使用单螺杆挤出机和壁障螺杆进行的,并且还使用了双螺杆将组织与聚合物复合。然后将产生的化合物注塑到测试棒中。包含针叶木组织的测试棒在第二次挤出后也显示出一些纤维聚集,而在用包含硬木纤维且两次通过双螺杆的组织制成的样品中未观察到纤维聚集。通常在每个熔体加工阶段都减少了纤维长度,并且在双螺杆和注塑成型两次挤出后观察到最短的纤维长度。拉伸模量随纤维含量的增加而增加。在组织中使用更多的软木纤维可获得更高的刚度,而更多的硬木纤维则具有更高的拉伸强度和更大的断裂伸长率。

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