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Material inertia and size effects in the Charpy V-notch test

机译:夏比V型缺口测试中的材料惯性和尺寸效应

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The effect of material inertia on the size dependence of the absorbed energy in the Charpy V-notch test is investigated. The material response is characterized by an elastic-viscoplastic constitutive relation for a porous plastic solid, with adiabatic heating due to plastic dissipation and the resulting thermal softening accounted for. The onset of cleavage is taken to occur when a critical value of the maximum principal stress is attained over a critical volume. Plane strain dynamic analyses are carried out for geometrically similar specimens of various sizes with all parameters adjusted so that a quasi-static analysis would predict a size independent response. Sizes ranging from 1/4 to 16 times the ASTM standard size are analyzed and two sets of material properties are considered. No size effect is seen below a critical specimen size. Above this limit, a monotonic increase with specimen size is found for the normalized lower shelf energy (LSE) and the normalized upper shelf energy (USE) for both sets of material properties. The ductile-to-brittle transition temperature (DBTT) is found to increase monotonically with specimen size for one set of material properties, but a non-monotonic variation is found for the other set of material properties.
机译:在夏比V型缺口试验中,研究了材料惯性对吸收能量的尺寸依赖性的影响。材料响应的特征在于多孔塑料固体的弹性-粘塑性本构关系,由于塑料耗散而发生绝热加热,并说明了由此产生的热软化。当在临界体积上达到最大主应力的临界值时,发生分裂的发生。对各种尺寸的几何相似的样本进行了平面应变动态分析,并调整了所有参数,以便准静态分析可以预测尺寸无关的响应。分析尺寸范围是ASTM标准尺寸的1/4到16倍,并考虑了两组材料性能。在临界样品尺寸以下没有看到尺寸影响。超过此限制,对于两组材料特性,均发现归一化下货架能量(LSE)和归一化上货架能量(USE)随样品尺寸的单调增加。对于一组材料属性,发现韧性到脆性转变温度(DBTT)随着样品尺寸单调增加,但是对于另一组材料属性,发现非单调变化。

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