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首页> 外文期刊>Polymer engineering and science >Effect of Strain Rate on the Fracture Toughness of Some Ductile Polymers Using the Essential Work of Fracture (EWF) Approach
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Effect of Strain Rate on the Fracture Toughness of Some Ductile Polymers Using the Essential Work of Fracture (EWF) Approach

机译:使用断裂基本功(EWF)方法研究应变速率对某些韧性聚合物断裂韧性的影响

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摘要

The plane strain fracture toughness of two ductile polymers, ultra high molecular weight polyethylene (UHMWPE) and acrylonitrile-butadiene-styrene (ABS), was measued by using the essential work of fracture approach. Truly plane strain fracture toughness (W_Ie) was measured for ABS at quasi-static and impact rates of loading. For UHMWPE, the measured values were only "near" plane strain values (W_Ie~*). It was confirmed bith W_Ie~* and W_Ie were independent of specimen type but dependent on strain rate. For UHMWPE, there was a negative strain rate effect, i.e., W_Ie~* decreased with increasing loading rate. At low quasi-static loading rate (v<=10 mm/min), W_Ie~* was constant at 55 kJ/m~2. It then decreased to 15 kJ/m~2 when the loading rate was increased to 100 mm/min, and remained at that value even up to impact rate of loading (v = 3.7 m/s). For ABS, a mild positive strain rate effect was observed. W_Ie increased from 13 kJ/m~2 at v = 10 mm/min to 17 kJ/m~2 at v = 3.7 m/s.
机译:利用断裂方法的基本功,测量了两种可延展聚合物的超高分子量聚乙烯(UHMWPE)和丙烯腈-丁二烯-苯乙烯(ABS)的平面应变断裂韧性。在准静态载荷和冲击速率下测量了ABS的真实平面应变断裂韧性(W_Ie)。对于UHMWPE,测量值仅是“接近”的平面应变值(W_Ie〜*)。可以确定,咬合位W_Ie〜*和W_Ie与样品类型无关,但与应变率有关。对于UHMWPE,存在负应变速率效应,即,W_Ie〜*随着加载速率的增加而降低。在低准静态加载速率(v <= 10 mm / min)下,W_Ie〜*恒定为55 kJ / m〜2。然后,当加载速率提高到100 mm / min时,它降低到15 kJ / m〜2,甚至在达到加载冲击速率时(v = 3.7 m / s)都保持在该值。对于ABS,观察到轻微的正应变率效应。 W_Ie从v = 10 mm / min时的13 kJ / m〜2增加到v = 3.7 m / s时的17 kJ / m〜2。

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