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首页> 外文期刊>Journal of Composite Materials >Effect of microstructure on the tensile and fracture properties of sisal fiber/starch-based composites
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Effect of microstructure on the tensile and fracture properties of sisal fiber/starch-based composites

机译:显微结构对剑麻纤维/淀粉基复合材料拉伸和断裂性能的影响

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In this study, the effect of microstructure on the tensile and fracture properties of injection molded biocomposites consisting of starch-based matrix and short sisal fibers has been investigated. Tensile tests are carried out on samples cut in longitudinal (L) and transverse (T) directions with respect to the melt flow direction. An increasing trend in Young's modulus and tensile strength with fiber content is found, irrespective of the sample orientation. In addition, this reinforcing effect is more pronounced for L samples with many fibers mainly oriented longitudinally to the loading direction. Quasistatic fracture tests are also performed on SENB specimens with cracks propagating both parallel and perpendicular to the melt flow direction. The stress intensity factor is found to increase with fiber content, and it also depends on fiber orientation. The observed trend in fracture toughness with fiber content and microstructure is explained in terms of the fiber pullout mechanism. Puncture tests are carried out for all compositions. Injection molded composites exhibit higher values of total fracture energy than neat matrix. Furthermore, fiber orientation induces different patterns in the damage zone. Finally, several theoretical models are used in this study to predict the elastic properties of these composites.
机译:在这项研究中,研究了微观结构对由淀粉基基质和短剑麻纤维组成的注射成型生物复合材料的拉伸和断裂性能的影响。对相对于熔体流动方向沿纵向(L)和横向(T)切割的样品进行拉伸测试。发现杨氏模量和拉伸强度随纤维含量的增加而增加的趋势,与样品的取向无关。另外,对于具有许多主要沿加载方向纵向取向的纤维的L样品,这种增强效果更加明显。还对SENB试样进行了准静态断裂试验,该试样的裂纹与熔体流动方向平行和垂直。发现应力强度因子随纤维含量的增加而增加,并且还取决于纤维的取向。观察到的断裂韧性随纤维含量和微观结构的变化趋势用纤维拉拔机理解释。对所有组合物进行穿刺试验。注塑复合材料比纯基质具有更高的总断裂能值。此外,纤维取向在损伤区域中引起不同的图案。最后,本研究使用了几种理论模型来预测这些复合材料的弹性性能。

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