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Durability and notch sensitivity analysis of environmental ageing induced glass fibre mat and kenaf fibre mat-reinforced composites

机译:环境老化诱导玻璃纤维垫和KENAF纤维垫加固复合材料的耐久性和缺口敏感性分析

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摘要

The durability of the notch and un-notch composites is mainly affected by environmental ageing, the condition of mechanical loading and mechanical ageing. Due to the dissimilarity of two components of fibre mat-reinforced thermosetting composites (e.g. fibre and resin), thermal stress and strain can be generated and raised by moisture, temperature variation, thermal ageing and mechanical ageing in any working environment. This study aims at investigating the effect of thermal ageing fatigue and mechanical ageing fatigue on the mechanical durability and notch sensitivity properties of glass fibre mat unsaturated polyester resin composites and kenaf fibre mat/unsaturated polyester composites. Tensile tests of smooth and notched specimens, low cycle tensile fatigue tests, dynamic mechanical analysis, stress distribution by point-stress failure criteria and notch sensitivity analysis were performed to both types of the specimens. Both composites were previously taken under up to 100 number of freeze-thaw ageing cycles (from −25 to + 58°C). It is found that the tensile modulus and un-notched strength of kenaf fibre mat/unsaturated polyester were decreased by 30 and 27%, respectively, which was more severe than that of glass fibre mat/unsaturated polyester composites. After the thermal ageing, notch (open hole) did not diminish the strength property of kenaf fibre mat/unsaturated polyester, and there was an absolute increase of characteristic distance (d_(0)) which indicates the lower notch sensitivity of kenaf fibre mat/unsaturated polyester. Although glass fibre mat/unsaturated polyester had superior mechanical properties, after thermal ageing, while kenaf fibre mat/unsaturated polyester presented stable low cycle fatigue property, better energy absorption and notch sensitivity properties.
机译:凹口和缺口复合材料的耐久性主要受环境衰老的影响,机械负荷和机械老化的条件。由于两种组分的纤维垫增强热固性复合材料(例如纤维和树脂),可以通过任何工作环境中的水分,温度变化,热老化和机械老化产生热应力和菌株。本研究旨在研究热老化疲劳和机械老化疲劳对玻璃纤维垫不饱和聚酯树脂复合材料和KENAF纤维垫/不饱和聚酯复合材料的机械耐久性和缺口敏感性的影响。对两种类型的标本进行了光滑和缺口疲劳试验,低循环拉伸疲劳试验,低循环拉伸疲劳试验,动态力学分析,应力分布,缺口敏感性分析。先前,两种复合材料在高达100个冻融衰老循环(从-25至+ 58℃下取出。结果发现,KENAF纤维垫/不饱和聚酯的拉伸模量和未缺乏的强度分别降低30%和27%,其比玻璃纤维垫/不饱和聚酯复合材料更严重。在热老化后,凹口(开孔)未降低KENAF纤维垫/不饱和聚酯的强度特性,并且存在特征距离的绝对增加(D_(0)),这表明keNAF纤维垫的较低缺口敏感性/不饱和聚酯。虽然玻璃纤维垫/不饱和聚酯具有优异的机械性能,但热老化后,keanaf纤维垫/不饱和聚酯呈现出稳定的低循环疲劳性能,更好的能量吸收和凹口敏感性。

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