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Innovative Testing Machines and Methodologies for the Mechanical Characterization of Materials

机译:用于材料机械表征的创新测试机和方法

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This paper is focused on the development of innovative testing machines and methodologies for the characterization of materials in working conditions similar to those found in mechanical processing of materials. Special emphasis is given to the design, fabrication, and instrumentation of a flexible drop weight testing machine, an electromagnetic compressive Hopkinson bar, and an electromagnetic cam-driven compression testing machine that are capable of performing the mechanical characterization of materials under medium- and high rates of loading. The fundamentals of plastic flow in selected forming and cutting processes are utilized to assess the validity and reliability of the proposed testing machines and associated experimental methodologies. Experimental data with technical pure Lead allows understanding the combined influence of strain, strain rate, and strain rate versus strain loading paths in the overall stress response of the materials. Results also show that the new proposed electromagnetic cam-driven compression testing machine equipped with a root type or logistic cam profile can successfully replicate the operating conditions of the two other testing machines.
机译:本文致力于开发创新的测试机器和方法,以在类似于材料机械加工的工作条件下表征材料。尤其着重于能够在中高压力下对材料进行机械表征的柔性落锤试验机,电磁压缩霍普金森棒和电磁凸轮驱动压缩试验机的设计,制造和仪表。加载速率。利用所选成形和切割过程中塑性流动的基本原理来评估所提出的试验机和相关实验方法的有效性和可靠性。采用纯铅技术的实验数据可以了解应变,应变速率和应变速率与应变加载路径在材料整体应力响应中的综合影响。结果还表明,新提出的配备根型或后勤凸轮轮廓的电磁凸轮驱动压缩试验机可以成功复制其他两台试验机的运行条件。

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