首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Structural optimization of an automotive door using the kriging interpolation method
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Structural optimization of an automotive door using the kriging interpolation method

机译:使用克里格插值法的汽车门结构优化

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Weight reduction of automobile components has been sought to achieve fuel efficiency and energy conservation. There are two approaches for weight reduction: use of materials lighter than steel and structural redesign. The latter has been performed by adopting hydroforming, tailor-welded blank (TWB) technology, optimization, etc. In this research, the kriging interpolation method and a simulated annealing algorithm are applied in the design of a front door made by TWB technology. The design variables were the thicknesses of the parts and the positions of the parting lines. A thickness set, considered as a candidate design of each part, is not arbitrarily determined, but selected from the thicknesses of standard products, and so it is a discrete set. This research presents the discrete and continuous structural optimization of an automotive door design.
机译:已经寻求减轻汽车部件的重量以实现燃料效率和节能。有两种减轻重量的方法:使用比钢材轻的材料和重新设计结构。后者是通过采用液压成形,拼焊毛坯(TWB)技术,优化等方法进行的。在这项研究中,将克里格插值法和模拟退火算法应用于TWB技术制成的前门的设计中。设计变量是零件的厚度和分型线的位置。厚度集被认为是每个零件的候选设计,不是任意确定的,而是从标准产品的厚度中选择的,因此是离散集。这项研究提出了汽车门设计的离散和连续结构优化。

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