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A FRAMEWORK FOR DESIGNER-DRIVEN EXPLORATION OF COMPUTATIONAL WELD MECHANICS DESIGN SPACE

机译:计算焊接力学设计空间的设计师驱动探索框架

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This paper demonstrates a framework for analyzing multiple analyses of welds and welded structures as a single run. For each point in the design space a 3D transient thermal-stress analyses is solved for the weld and/or a welded structure. This enables the designer to explore the design state space for the design points specified in a Design of Experiments (DOE) matrix. This makes it simpler and quicker for a human to set up tens or hundreds of analyses. Also the CPU time to solve each analysis must be sufficiently short. Examples of DOE matrices created for Computational Weld Mechanics (CWM) optimization analyses are presented; i) a discontinuous combinatorial optimization of the weld sequence to minimize distortion in a girth weld, ii) a continuous optimization to mitigate distortion of an edge welded bar using side heaters, pre-bending with prescribed deflections at isolated points and pre-bending with a smooth prescribed displacement function.
机译:本文演示了一个框架,可在一次运行中对焊缝和焊接结构进行多种分析。对于设计空间中的每个点,都针对焊接和/或焊接结构解决了3D瞬态热应力分析。这使设计人员能够探索实验设计(DOE)矩阵中指定的设计点的设计状态空间。这使人们可以轻松,快捷地进行数十或数百次分析。同样,解决每个分析所需的CPU时间必须足够短。给出了为计算焊接力学(CWM)优化分析创建的DOE矩阵的示例; i)对焊接顺序进行不连续的组合优化,以最大程度地减少环焊缝的变形; ii)使用侧加热器,对连续焊接进行优化,以减轻边缘焊条的变形,在孤立点处以规定的挠度进行预弯曲,并通过a平滑的指定位移函数。

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