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The Influence of Loading Rate on the Ultimate Properties and Fracture Mechanism of Styrenic Thermoplastic Elastomers

机译:加载率对苯乙烯热塑性弹性体的最终性能和断裂机制的影响

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The influence of loading rate on the tensile fracture of polystyrene-polyisoprenepolystyrene (SIS) and polystyrene-poly(ethylene-co-butylene)-polystyrene (SEBS) has been investigated. The tensile strength of SIS initially increased with increasing strain rate, eventually reaching a plateau at elevated strain rates. In contrast, the tensile strength of SEBS was relatively unaffected by strain rate. The fracture surfaces of the tensile test specimens were examined by scanning electron microscopy. The fracture surface morphologies indicated that fracture initiated via cavitation, followed subsequently by void coalescence and catastrophic fracture. For both materials there was no qualitatively obvious change in fracture surface morphology with increasing strain rate. The results indicate that the ultimate strength of styrenic thermoplastic elastomers is governed by the nature of the dominant failure mechanism at the molecular scale; when chain scission dominates, the tensile strength is independent of the strain rate, but when chain pull-out dominates, the tensile strength increases with increasing strain rate.
机译:研究了加载率对聚苯乙烯 - 聚异戊二烯水溶液(SIS)和聚苯乙烯 - 聚(乙烯 - 丁烯)-Polystyrene(SEBB)的抗粘连性的影响。 SIS的拉伸强度最初随着应变率的增加而增加,最终以升高的应变率达到高原。相反,SEB的拉伸强度相对不受应变速率的影响。通过扫描电子显微镜检查拉伸试样的断裂表面。断裂表面形态表明,通过空化引发骨折,随后通过空隙聚结和灾难性的骨折。对于这两种材料,由于应变率的增加,骨折表面形态没有定性明显的变化。结果表明,苯乙烯热塑性弹性体的最终强度受到分子尺度的主要失效机制的性质的管辖;当链群主导地位时,拉伸强度与应变速率无关,但是当链拉出主导主导时,拉伸强度随着应变率的增加而增加。

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