由逐层堆焊引起的热弹性圆柱体中的残余应力

S. Lychev, M. Fekry
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引用次数: 1

摘要

本文研究了热弹性圆柱体中由于材料在其侧表面逐层沉积而产生的残余应力。残余应力被定义为在工艺过程中产生的内应力的极限值。内应力是由不相容的变形引起的,这些变形是由于连接不同温度的部件而在体内积累的。为了分析内应力,构造了逐层生长圆柱的轴对称准静态热弹性问题的解析解。结果表明,堆焊过程中残余应力的分布与堆焊工艺条件有关。在这种情况下,向生长体提供额外的热量可以显著降低温度场的不均匀性,降低残余应力的强度。最有效的是不均匀加热,这可以实现,例如,通过一个可调励磁频率的交流电的作用。用构造的解析解进行的计算说明了这一点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
RESIDUAL STRESSES IN A THERMOELASTIC CYLINDER RESULTING FROM LAYER-BY-LAYER SURFACING
The article investigates the residual stresses arising in a thermoelastic cylinder as a result of layer-by-layer deposition of material on its lateral surface. Residual stresses are defined as the limiting values of internal stresses developing during the technological process. Internal stresses are caused by incompatible deformations that accumulate in the body as a result of joining parts with different temperatures. For the analysis of internal stresses, an analytical solution of the axisymmetric quasi-static problem of thermoelasticity for a layer-by-layer growing cylinder is constructed. It is shown that the distribution of residual stresses dependson the scenario of the surfacing process. In this case, the supply of additional heat to the growing body can significantly reduce the unevenness of the temperature fields and reduce the intensity of residual stresses. The most effective is uneven heating, which can be realized, for example, by the action of an alternating current with a tunable excitation frequency. This is illustrated by the calculations performed using the constructedanalytical solution.
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