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Biocomposite from polylactic acid and lignocellulosic fibers: structure-property correlations

机译:聚乳酸和木质纤维素纤维的生物复合材料:结构-性质的相关性

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摘要

ABSTRACTudPLA biocomposites were prepared using three corncob fractions and a wood fiber as reference. The composites were characterized by tensile testing, scanning electron (SEM) and polarization optical (POM) microscopy. Micromechanical deformation processes were followed by acoustic emission measurements. The different strength of the components was proved by direct measurements. Two consecutive micromechanical deformation processes were detected in composites containing the heavy fraction of corncob, which were assigned to the fracture of soft and hard particles, respectively. The fracture of soft particles does not result in the failure of the composites that is initi-ated either by the fracture of hard particles or by matrix cracking. Very large particles debond easily from the matrix resulting in catastrophic failure at very low stresses. At sufficiently large shear stresses large particles break easily during compounding, thus reinforcement depending on interfacial adhesion was practically the same in all composites irrespectively of initial fiber characteristics.ud
机译:使用三种玉米芯馏分和木纤维作为参比物制备了抽象的PLA生物复合材料。通过拉伸测试,扫描电子(SEM)和偏振光学(POM)显微镜对复合材料进行了表征。微机械变形过程之后是声发射测量。通过直接测量证明了组件的不同强度。在包含大量玉米芯的复合材料中检测到两个连续的微机械变形过程,分别归因于软颗粒和硬颗粒的断裂。软颗粒的断裂不会导致复合材料的破坏,而复合材料的破坏不是由硬颗粒的断裂或基体开裂引起的。很大的颗粒很容易从基体上脱粘,从而在非常低的应力下导致灾难性的破坏。在足够大的剪切应力下,大颗粒在混合过程中很容易破裂,因此,取决于界面附着力的增强作用实际上在所有复合物中都是相同的,而与初始纤维特性无关。

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