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CAN A WELD IN WELDED STRUCTURE BE MADE WITH ZERO RESIDUAL STRESS?

机译:焊接结构中的残余应力可以达到零吗?

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While solving a sequence of seventeen optimization projects to predict the values of the side heater parameters that would be expected to minimize camber distortion in an edge welded bar, the design parameters that reduced distortion to effectively zero were not unique. This raised the question if any of the designs that minimized the distortion effectively to zero also minimized the residual stress. To answer this question three different measures of residual stress were evaluated for all 1451 designs. The Computational Weld Mechanics (CWM) optimization problem is to find the best point in the 4D space of side heater design parameters: flux, heated area, longitudinal and transverse distance from the weld such that the final residual stress is as low as possible (minimized). To evaluate the objective function for each point in the 4D design space, the associated 3D transient nonlinear thermal visco-elastic- plastic stress analyzes was solved. A FEM mesh with 6600 8-node brick elements and 9438 nodes was solved for 166 time steps in 10 minutes of single-core CPU time. In the seventeen optimization projects, 1451 weld analyses were solved in 75 quad-core CPU hours by one person in two calendar weeks. The residual stress was effectively reduced to zero in some designs. These designs also reduced distortion to effectively zero. Whether a design that effectively reduces the residual stress to zero is unique remains an open question.
机译:虽然解决了一系列十七个优化项目,以预测预期的侧加热器参数的值,这些值将最小化边缘焊接条中的弯曲变形,减小失真零的设计参数不是唯一的。这提出了问题,如果有效地减少失真的任何设计也会最小化残余应力。为了回答这个问题,为所有1451个设计评估了三种不同的残余压力措施。计算焊接力学(CWM)优化问题是在侧加热器设计参数的4D空间中找到最佳点:焊缝的磁通,加热区域,纵向和横向距离,使得最终的残余应力尽可能低(最小化)。为了评估4D设计空间中的每个点的目标函数,解决了相关的3D瞬态非线性热粘塑料应力分析。具有6600个8节点砖元件和9438个节点的FEM网格在10分钟的单核CPU时间内解决了166个时间步骤。在十七个优化项目中,在两个日历周内在75个四核CPU小时内解决了1451个焊接分析。在某些设计中,残余应力有效地减少到零。这些设计也降低了有效零的失真。有效地降低剩余压力为零的设计是独特的,仍然是一个打开的问题。

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