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Determination of Stress Strain State Components of Butt Welded Joint with Mild Interlayer Subjected to Elasto-Plastic Tension

机译:弹塑性拉伸轻度夹层对接焊缝应力应变状态分量的确定

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摘要

Determination of stress strain state components of butt welded joint with a mild inter-layer at elasto-plastic tension is presented in this paper. Function of normal transverse stresses distribution on the thickness of mild interlayer and equations for determination of the stress intensity maximum value in hard metal at elasto-plastic deforming are proposed. The longitudinal stresses of mild and hard metals at elasto-plastic loading are determined from their integral equilibrium condition to mean value of external load by estimating equality of hard and mild metal longitudinal strains on their contact plane. Algorithm of stress strain state components calculation in separate zones of this model is presented. The strength of butt welded joint with a mild interlayer and longitudinal strain distribution at static and cyclic elasto-plastic loading on its surface calculated analytically is verified by the results of experimental investigations.
机译:本文提出了一种具有中等夹层的对接焊缝在弹塑性拉伸下的应力应变状态分量的确定方法。提出了正向横向应力分布对缓和夹层厚度的作用,以及确定弹塑性变形时硬质合金中应力强度最大值的公式。通过估算硬质和软质金属在其接触面上的纵向应变的相等性,可以根据它们的整体平衡条件,将低碳和硬金属在弹塑性载荷下的纵向应力确定为外载荷的平均值。提出了该模型不同区域的应力应变状态分量计算算法。通过实验研究的结果验证了对接焊缝的强度,该对接焊缝具有适度的中间层和在表面静态和循环弹塑性载荷下的纵向应变分布,通过分析计算得出。

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