首页> 外文会议>Conference on Fracture of Polymers, Composites and Adhesives >THE STRAIN RATE DEPENDENCE OF DEFORMATION AND FRACTURE BEHAVIOUR OF ACRYLONITRILE-BUTADIENE-STYRENE (ABS) COPOLYMER IN IMPACT TEST
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THE STRAIN RATE DEPENDENCE OF DEFORMATION AND FRACTURE BEHAVIOUR OF ACRYLONITRILE-BUTADIENE-STYRENE (ABS) COPOLYMER IN IMPACT TEST

机译:丙烯腈 - 丁二烯 - 苯乙烯(ABS)共聚物在冲击试验中的变形和断裂行为的应变率依赖性

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The impact properties and fracture characteristics of acrylonitride-butadiene-styrene (ABS) copolymer are investigated by using a servo-hydraulic machine and a compressive split-Hopkinson bar at room temperature over a strain-rate range of 10~(-3) s~(-1) to 4 x 10~3 s~(-1). The effects of strain rate on the stress-strain response, Young's modulus, strain-rate sensitivity and thermal activation volume are evaluated. Scanning electron micrographs (SEM) of the fractured specimens are presented to illustrate the damage initiation and fracture mechanisms. It is found that the deformation and fracture behaviour of ABS are very sensitive to the applied strain rate. There is a significant increase in Young's modulus, flow stress and yield strength as the strain rate increases. By contrast, increasing strain rates lead to decreasing fracture strains. It is also found that the strain-rate sensitivity increases with an increasing range of strain rate, but decreases with strain in large strain-rate ranges due to the development of deformation heat. An inverse phenomenon is observed for activation volume. SEM examination reveals that damage is a complex process and occurs initially at two separate sites: 1) as microvoids and microcracks radiating from the center of the specimen; 2) as microcracks parallel to the specimen axis, starting at the equatorial midline of the cylindrical wall. Rapid microcracking as well as microvoid formation, growth and coalescence lead to final failure. The damaged specimens twist in a catastrophic manner as high strain-rate impact loadings are imposed.
机译:通过在室温下在室温下在10〜(3)的应变速率范围内,通过使用伺服液压机和压缩分流霍普金森棒来研究丙烯腈 - 丁二烯 - 苯乙烯 - 苯乙烯(ABS)共聚物的冲击性能和断裂特性。 (-1)至4 x 10〜3 s〜(-1)。评估应变率对应力 - 应变响应,杨氏模量,应变率灵敏度和热活化体积的影响。提出了扫描电子显微照片(SEM)以说明损伤引发和断裂机制。发现ABS的变形和断裂行为对所应用的应变速率非常敏感。随着应变速率的增加,杨氏模量,流量应力和屈服强度显着增加。相比之下,增加应变率导致骨折菌株降低。还发现应变速率灵敏度随着应变率的增加而增加,但由于变形热量的发展,随着大应变率范围的菌株减少。观察到活化体积的反向现象。 SEM检查表明,损伤是一种复杂的过程,最初发生在两个单独的位置:1)作为从标本中心辐射的微侵和微裂纹; 2)作为与标本轴平行的微裂纹,从圆柱形壁的赤道中线开始。快速微裂纹以及微脂糖形成,生长和聚结导致最终失效。损坏的标本以灾难性的方式扭曲为高应变率冲击载荷。

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