首页> 外文会议>ASME international mechanical engineering congress and exposition >MECHANICAL PROPERTY AND DEGRADATION IN HOT WATER OF INJECTION MOLDED GLASS SHORT FIBER/WOOD POWDER/POLYPROPYLENE HYBRID COMPOSITES
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MECHANICAL PROPERTY AND DEGRADATION IN HOT WATER OF INJECTION MOLDED GLASS SHORT FIBER/WOOD POWDER/POLYPROPYLENE HYBRID COMPOSITES

机译:注塑玻璃短纤维/木粉/聚丙烯复合材料的力学性能及在热水中的降解

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As well known, natural fibers absorb water easily that will affect the mechanical property considerably and there exists a problem of incompatibility which leads the weak interfacial adhesion between the fiber and the resin matrix because of the hygroscopic nature of natural fibers. Therefore, conducting hot water immersion and tensile test is necessary to study the mechanical property and degradation. In this study, glass fiber/wood powder/pp. hybrid composites were prepared by injection molding process at a fixed reinforcement to matrix ratio of 51:49. 3 kinds of hybrid specimens with glass fiber/wood powder ratios of 51:0, 21:30, and 0:51 were fabricated. The hydrothermal aging performance was investigated during the 80 °C hot water immersion experiment with a series of immersion time and the effect of hot water immersion on the mechanical properties of composites have been evaluated based on the tensile test. Results showed that both the strength and modulus of hybrid composite decrease obviously as the immersion time increase, which can be considered that the hydroscopic property of natural fiber would decrease the durability of composite in humidity environment. And the skin-core structure comes from injection molded process contributes to the better hydrothermal aging property of Glass/PP composite.
机译:众所周知,天然纤维容易吸收水,这将极大地影响机械性能,并且由于天然纤维的吸湿性,存在不相容的问题,这导致纤维与树脂基体之间的弱界面粘合。因此,进行热水浸泡和拉伸试验是研究机械性能和降解的必要条件。在这项研究中,玻璃纤维/木粉/ pp。混合复合材料是通过注模工艺以固定的增强材料与基体之比为51:49制备的。制作了3种混合样品,玻璃纤维/木粉比例为51:0、21:30和0:51。在80°C的热水浸泡实验中,通过一系列的浸泡时间研究了其水热老化性能,并在拉伸试验的基础上评估了热水浸泡对复合材料力学性能的影响。结果表明,混杂复合材料的强度和模量均随着浸渍时间的增加而明显降低,这可以认为天然纤维的吸湿性会降低复合材料在潮湿环境中的耐久性。而且皮芯结构来自注塑工艺,有助于改善Glass / PP复合材料的水热老化性能。

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