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Effects of Moisture on Dynamic Mechanical Properties of Wood Fiber Composites Studied by Dynamic FT-IR Spectroscopy

机译:动态FT-IR光谱研究水分对木纤维复合材料动态力学性能的影响

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摘要

Wood fiber reinforced polylactide is a biodegradable composite where both fibers and matrix are from renewable resources.In the development of such new materials,information on mechanical behavior on the macroscopic and the molecular level is useful.In this study,dynamic Fourier transform infrared(FT-IR)spectroscopy is used to measure losses at the molecular level during cyclic tensile loading for bonds that are characteristic of the cellulosic fibers and the polylaclid matrix.This molecular behavior is compared with measured macroscopic hysteresis losses for different moisture levels.The results show that moisture ingress will transfer the load from the fibers to the matrix,and that a more efficient fiber-matrix interface would diminish mechanical losses.Although the dynamic FT-IR spectroscopy method is still qualitative,this investigation shows that it can provide information on the stress transfer of the constituents in wood fiber reinforced plastics.
机译:木纤维增强聚丙交酯是一种可生物降解的复合材料,纤维和基质均来自可再生资源。在开发这种新材料时,宏观和分子水平的力学行为信息是有用的。 -IR)光谱法用于测量循环拉伸载荷过程中在分子水平上的纤维素纤维和聚漆脂基质特征键的损失,并将这种分子行为与不同湿度水平下的宏观磁滞损耗进行了比较,结果表明:水分的进入将把载荷从纤维转移到基体上,并且更有效的纤维-基体界面将减少机械损耗。尽管动态FT-IR光谱法仍然是定性的,但这项研究表明它可以提供有关应力的信息。木纤维增强塑料中成分的转移。

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