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Experimental Study of Fiber Length and Orientation in Injection Molded Natural Fiber/Starch Acetate Composites

机译:注射成型天然纤维/淀粉醋酸酯复合材料纤维长度和取向的实验研究

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摘要

Composite compounds based on triethyl citrate plasticized starch acetate and hemp and flax fibers were prepared by melt processing. Plasticizer contents from 20 to 35 wt% and fiber contents of 10 and 40 wt% were used. The compounded composites were injection molded to tensile test specimens. The effect of processing, melt viscosity and fiber type on the fiber length was investigated. The lengths of fully processed fibers were determined by dissolving the matrix and measuring the length of the remaining fibers by microscope analysis. A clear reductive effect of the processing on the fiber length was noticed. A reduction of fiber length along the increasing fiber content and the decreasing plasticizer content was also detected. This reduction originated from the increasing shear forces during compounding, which again depended on the increased viscosity of the material. Hemp fibers were shown to remain longer and fibrillate more than flax fibers, leading to higher aspect ratio. Thus, the reinforcement efficiency of hemp fibers by the processing was improved, in contrast with flax fibers. In addition, the analysis of fiber dispersion and orientation showed a good dispersion of fibers in the matrix, and a predominant orientation of the fibers in the melt flow direction.
机译:通过熔融加工制备了基于柠檬酸三乙酯增塑的乙酸淀粉酯和大麻和亚麻纤维的复合化合物。使用的增塑剂含量为20至35 wt%,纤维含量为10和40 wt%。将复合的复合材料注塑成拉伸试样。研究了加工,熔体粘度和纤维类型对纤维长度的影响。通过溶解基质并通过显微镜分析测量剩余纤维的长度来确定完全加工的纤维的长度。注意到加工对纤维长度的明显还原作用。随着纤维含量的增加和增塑剂含量的减少,纤维长度也减少了。这种降低源自配混过程中剪切力的增加,这又取决于材料粘度的增加。大麻纤维显示比亚麻纤维保留更长的时间和更多的原纤化,从而导致更高的长宽比。因此,与亚麻纤维相比,通过加工提高了大麻纤维的增强效率。另外,对纤维分散和取向的分析表明,纤维在基质中具有良好的分散性,并且纤维在熔体流动方向上具有主要的取向。

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