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首页> 外文期刊>Journal of manufacturing science and engineering: Transactions of the ASME >An Integrated Computational Welding Mechanics With Direct-Search Optimization for Mitigation of Distortion in an Aluminum Bar Using Side Heating
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An Integrated Computational Welding Mechanics With Direct-Search Optimization for Mitigation of Distortion in an Aluminum Bar Using Side Heating

机译:具有直接搜索优化功能的集成计算焊接力学,可通过侧面加热来减轻铝棒中的变形

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摘要

Using a computational weld mechanics (CWM) frame-work for exploring a design space, a recent direct-search algorithm from Kolda, Lewis and Torczon is modified to use a least-square approximation to improve the method of following a path to the minimum in the algorithm. To compare the original and modified algorithms, a CWM optimization problem on a 152 x 1220 x 12.5 mm bar of Aluminum 5052-H32 to minimize the weld distortion mitigated by a side heating technique is solved. The CWM optimization problem is to find the best point in the space of side heater design parameters: power, heated area, longitudinal and transverse distance from the weld such that the final distortion is as low as possible (minimized). This CWM optimization problem is constrained to keep the stress level generated by the side heaters, in the elastic region to avoid adding an additional permanent plastic strain to the bar. The number of iterations, size of design of experiments (DOE) matrix required and CPU time to find the minimum for the two algorithms are compared.
机译:使用计算焊接力学(CWM)框架来探索设计空间,最近对Kolda,Lewis和Torczon的直接搜索算法进行了修改,以使用最小二乘近似来改进将路径最小化的方法。算法。为了比较原始算法和修改后的算法,解决了在152 x 1220 x 12.5 mm的Al 5052-H32铝棒上进行CWM优化的问题,以最大程度地减少侧面加热技术减轻的焊接变形。 CWM优化问题是在侧面加热器设计参数的空间中找到最佳点:功率,加热区域,距焊缝的纵向和横向距离,以使最终变形尽可能小(最小化)。此CWM优化问题受到约束,以使侧面加热器产生的应力水平保持在弹性区域内,以避免对钢筋施加额外的永久塑性应变。比较了迭代次数,所需的实验设计(DOE)矩阵的大小以及为两种算法找到最小值的CPU时间。

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