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首页> 外文期刊>Journal of the Brazilian Society of Mechanical Sciences and Engineering >An energy-based fatigue life estimation and optimization of an electric mining dump truck welded frame
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An energy-based fatigue life estimation and optimization of an electric mining dump truck welded frame

机译:基于能量的电动矿用自卸车焊接车架疲劳寿命估算与优化

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In consideration of uncertainties of material fatigue characteristics caused by the dimension size and manufacturing process, an interval strain energy density method for assessing fatigue life of welded structure was presented in this paper. Based on the limit experimental data, the data sequence was expanded by the least squares method to obtain the upper and lower strain energy density life curves of welded joints. Then, the cyclic stress and strain were calculated through the nonlinear finite element analysis for the electric mining dump truck welded frame structure, whose accuracy was testified by the mine road surface test data. The interval fatigue life at possible fatigue failure positions was estimated. In order to extend the life span of the frame and achieve its lightweight, a multi-objectives optimization design was conducted, based on the Kriging surrogate model. The optimal solution was acquired by the non-dominated sorting genetic algorithm. The results showed that the lower bound lifetime of welded frame was bettered from 5.63 years to 14.97 years while its weight reduced by 12.58.
机译:针对尺寸和制造工艺对材料疲劳特性的不确定性,提出了一种评估焊接结构疲劳寿命的区间应变能密度方法。基于极限试验数据,采用最小二乘法对数据序列进行扩展,得到焊接接头的应变能密度寿命曲线上下。然后,通过非线性有限元分析计算了电矿自卸车焊接框架结构的循环应力和应变,并通过矿井路面试验数据证明了其准确性。估计了可能疲劳失效位置的间期疲劳寿命。为了延长车架的使用寿命,实现车架的轻量化,基于Kriging代理模型进行了多目标优化设计。通过非支配排序遗传算法获得最优解。结果表明:焊接框架的寿命下限由5.63年提高到14.97年,重量减轻了12.58%;

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