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首页> 外文期刊>Journal of Materials Engineering and Performance >Influence of Pre-strain on Very-Low-Cycle Stress-Strain Response and Springback Behavior
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Influence of Pre-strain on Very-Low-Cycle Stress-Strain Response and Springback Behavior

机译:菌株对极低循环应力应变反应和回弹行为的影响

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摘要

The influence of pre-strain on the very-low-cycle loading behavior as occurring, for example during roller leveling of sheet metals, is not yet fully understood. A key factor in this context is the stiffness of the material and its changes upon processing. To study the general mechanical property changes during low-cycle loading with small amplitudes for a wide variety of metals, sheet samples of mild steel DC01, pure copper CU-DHP and alpha-titanium are subjected to low-cycle tension-compression tests. The general influences of pre-strain and the applied strain amplitude are investigated regarding material hardening and changes in the elastic properties. It is shown that all tested materials feature changes in the Bauschinger behavior during cycling. The apparent elastic modulus of the materials decreases with increasing accumulated plastic strain, and the evolution depends on the strain amplitude and the pre-strain. For all three materials, changes in technical springback are present and depend on the loading history.
机译:预应变对极低循环加载行为的影响尚未完全理解,例如在金属板的辊矫直过程中。这种情况下的一个关键因素是材料的刚度及其在加工过程中的变化。为了研究各种金属在小振幅低周加载期间的一般机械性能变化,对低碳钢DC01、纯铜CU-DHP和α-钛薄板样品进行了低周拉伸压缩试验。研究了预应变和外加应变幅度对材料硬化和弹性性能变化的一般影响。结果表明,所有测试材料在循环过程中的鲍辛格行为都发生了变化。材料的表观弹性模量随累积塑性应变的增加而降低,其变化取决于应变幅值和预应变。对于所有三种材料,都存在技术回弹的变化,并取决于加载历史。

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