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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >THE THERMAL STRESS GENERATED BY A MOVING ELLIPTICAL WELDPOOL IN THE WELDING OF THIN METAL SHEETS
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THE THERMAL STRESS GENERATED BY A MOVING ELLIPTICAL WELDPOOL IN THE WELDING OF THIN METAL SHEETS

机译:移动的椭圆形多酚在薄金属薄板焊接中产生的热应力

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摘要

In the welding of metal sheets by lasers or electric arcs, a problem of considerable interest and importance is the formation of stresses and strains in the material undergoing the welding process. This paper investigates the process making use of the linear theory of elasticity. The non-uniform heating of the metal is allowed for by the presence of an appropriate term in the stress tensor representing the temperature field. The weld pool is approximated by an elliptic region which is constant in cross sectional shape with depth. This paper calculates the stresses in metal outside the molten region in the frame of the laser using mainly analytical techniques and in its final stages evaluates these numerically for the cases of an unclamped as well as a clamped metal sheet. The results are found to be largely independent of the particular metal when the stresses are expressed in dimensionless form. The effects of welding the metal with a laser are essentially reversible in character when the analysis is restricted to linear elastic theory without phase changes. [References: 11]
机译:在通过激光或电弧焊接金属板时,引起人们极大关注和重视的问题是在进行焊接过程的材料中形成应力和应变。本文利用线性弹性理论研究了这一过程。通过在代表温度场的应力张量中存在适当的项,可以允许金属的不均匀加热。焊缝由椭圆形区域近似,该椭圆形区域的横截面形状随深度恒定。本文主要使用分析技术来计算激光框架中熔融区域外部的金属应力,并在最后阶段对未夹持和夹持金属板的情况进行数值评估。当应力以无量纲形式表示时,发现结果在很大程度上与特定金属无关。当分析仅限于线性弹性理论而没有相变时,用激光焊接金属的效果本质上是可逆的。 [参考:11]

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