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Practical Applicability and Limitations of the Elastic Modulus Degradation Technique for Damage Measurements in Ductile Metals

机译:弹性模量降解技术在球墨铸铁中损伤测量中的实用性和局限性

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摘要

The use of damage models require a number of material parameters the identification of which should be made, when possible, based on direct measures of the damage that develops in the material. Among the possible experimental techniques to measure the occurrence of ductile damage in metals, the measure of the damage through the degradation of the material Young's modulus has been indicated as one of the more effective technique and used by several authors. In this paper, this technique is critically reviewed highlighting the number of issues that may affect the measure of damage. In particular, the attention is focused in the case where damage process initiates at the onset necking and develops in the post-necking regime where stress, strain and damage are no longer uniform in the gauged section. Since geometry variations alter the reference base length for both stress and strain definition, a procedure based on the use of finite element simulation is proposed in order to account for this effect on the measure of the stiffness loss. The procedure has been applied to two class of metals: a high strength steel and high purity copper.
机译:损坏模型的使用需要使用许多材料参数,在可能的情况下,应基于对材料中发生的损坏的直接测量来对其进行识别。在测量金属中延性破坏发生的可能实验技术中,通过材料杨氏模量的降解来进行破坏的测量方法已被指示为一种更有效的技术,并已被多位作者使用。在本文中,对该技术进行了严格的审查,着重强调了可能影响损害程度的问题数量。尤其要注意的是,损坏过程始于颈缩开始,并在颈缩后阶段发展,在这种情况下应力,应变和损伤在测量区域不再均匀。由于几何形状的变化会改变应力和应变定义的参考基准长度,因此提出了一种基于有限元模拟的方法,以解决这种对刚度损失的影响。该程序已应用于两类金属:高强度钢和高纯度铜。

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