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首页> 外文期刊>Results in Physics >Effects of strain rate and temperature on the mechanical behavior of carbon black reinforced elastomers based on butyl rubber and high molecular weight polyethylene
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Effects of strain rate and temperature on the mechanical behavior of carbon black reinforced elastomers based on butyl rubber and high molecular weight polyethylene

机译:应变速率和温度对基于丁基橡胶和高分子量聚乙烯的炭黑增强弹性体力学性能的影响

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摘要

The influence of the mechanical property and morphology of different blend ratio of Butyl rubber (IIR)/high molecular weight polyethylene (PE) by temperature and strain rate are performed. Special attention has been considered to a ductile–brittle transition that is known to occur at around 60?°C. The idea is to explain the unexpected phenomenon of brittleness which directly related to all tensile mechanical properties such as the strength of blends, modulus of elasticity of filled and unfilled IIR-polyethylene blends. In particular, the initial Young’s modulus, tensile strength and strain at failure exhibit similar dependency on strain rate and temperature. These quantities lowered and increased with an increment of temperature, whereas the increased with increasing of strain rate. Furthermore, the tensile strength and strain at failure decreases for all temperatures range with the increase of PE content in the blend, except Young’s modulus in reverse. The strain rate sensitivity index parameter of the examined polymeric materials is consistent with the micro-mechanisms of deformation and the behavior was well described by an Eyring relationship leading to an activation volume of ~1?nm3, except for the highest value of unfilled IIR ~8.45?nm3.
机译:进行了温度和应变速率对丁基橡胶(IIR)/高分子量聚乙烯(PE)不同配比的力学性能和形貌的影响。已经考虑了特别注意已知在60°C左右发生的韧性-脆性转变。这个想法是为了解释意想不到的脆性现象,该现象与所有拉伸机械性能直接相关,例如共混物的强度,填充和未填充的IIR-聚乙烯共混物的弹性模量。特别是,初始杨氏模量,拉伸强度和破坏应变对应变率和温度的依赖性相似。这些数量随着温度的增加而降低和增加,而随着应变率的增加而增加。此外,在整个温度范围内,拉伸强度和破坏应变都随共混物中PE含量的增加而降低,但杨氏模量相反。所检查的聚合物材料的应变速率敏感性指数参数与变形的微观机制相一致,并且行为由Eyring关系很好地描述,导致活化体积为〜1?nm3,除了最高的未填充IIR〜 8.45nm3。

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