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首页> 外文期刊>Journal of Materials Science >Viscoelastic interpretations of erosion performance of short aramid fibre reinforced vinyl ester resin composites
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Viscoelastic interpretations of erosion performance of short aramid fibre reinforced vinyl ester resin composites

机译:短芳纶纤维增强乙烯基酯树脂复合材料腐蚀性能的粘弹性解释

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摘要

Short aramid fibre reinforced vinyl ester resin based isotropic composites are fabricated with varying fibre weight fractions (20-50 wt%). The composites were evaluated for their erosion performance under a dynamic set of variables such as impingement angle (30°-90°), impact velocity (43-76 m/s), erodent size (250-600 lm) and standoff distance (55-85 mm) following design of experiments (DOE) based on Taguchi analysis approach. The thermomechanical attributes such as storage modulus, loss modulus and damping properties as viscoelastic responses of the composites were investigated in the temperature range of 0-180 °C for their possible interpretations regarding reinforcement efficiency and energy dissipation aspects relevant to erosion process. An interrelation between the full-width half-maxima (FWHM) of loss modulus peak and erosion rate has emerged indicating the erosion to be mainly controlled by the fibre-matrix interfacial characteristics. The eroded surface morphology investigation by scanning electron microscopy (SEM) revealed the nature of wear-craters, material damage mode and other qualitative attributes responsible in facilitating erosion of the composites.
机译:短芳族聚酰胺纤维增强的乙烯基酯树脂基的各向同性复合材料具有变化的纤维重量分数(20-50 wt%)。在一系列动态变量(例如冲击角(30°-90°),冲击速度(43-76 m / s),腐蚀尺寸(250-600 lm)和对峙距离(55))下评估复合材料的腐蚀性能-85毫米)以下基于Taguchi分析方法的实验设计(DOE)。在0-180°C的温度范围内研究了复合材料的热机械属性,如储能模量,损耗模量和阻尼特性(作为粘弹性响应),以解释与侵蚀过程有关的增强效率和能量耗散方面。损耗模量峰值的全宽半最大值(FWHM)与腐蚀速率之间已经出现了相互关系,表明腐蚀主要由纤维-基质界面特性控制。通过扫描电子显微镜(SEM)进行的腐蚀表面形态研究表明,磨损坑的性质,材料损坏模式和其他有助于促进复合材料腐蚀的定性属性。

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