首页> 外文期刊>International Journal of Material Forming: Official Journal of the European Scientific Association for Material Forming - ESAFORM >From specified product tolerance to acceptable material and process scatter: an inverse robust optimization approach
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From specified product tolerance to acceptable material and process scatter: an inverse robust optimization approach

机译:从指定的产品公差从可接受的材料和过程散射:反向稳健的优化方法

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摘要

Production efficiency in metal forming processes can be improved by implementing robust optimization. In a robust optimization method, the material and process scatter are taken into account to predict and to minimize the product variability around the target mean. For this purpose, the scatter of input parameters are propagated to predict the product variability. Consequently, a design setting is selected at which product variation due to input scatter is minimized. If the minimum product variation is still higher than the specific tolerance, then the input noise must be adjusted accordingly. For example this means that materials with a tighter specification must be ordered, which often results in additional costs. In this article, an inverse robust optimization approach is presented to tailor the variation of material and process noise parameters based on the specified product tolerance. Both robust optimization and tailoring of material and process scatter are performed on the metamodel of an automotive part. Although the robust optimization method facilitates finding a design setting at which the product to product variation is minimized, the tighter product tolerance is only achievable by requiring less scatter of noise parameters. It is shown that the presented inverse approach is able to predict the required adjustment for each noise parameter to obtain the specified product tolerance. Additionally, the developed method can equally be used to relax material specifications and thus obtain the same product tolerance, ultimately resulting in a cheaper process. A strategy for updating the metamodel on a wider (noise) base is presented and implemented to obtain a larger noise scatter while maintaining the same product tolerance.
机译:通过实施稳健的优化,可以提高金属成形过程的生产效率。在稳健的优化方法中,考虑到材料和过程散射以预测并最小化围绕目标平均值的产品变异性。为此目的,传播输入参数的散射以预测产品变异性。因此,选择设计设置,在该设计设置,其中由于输入散射而被最小化。如果最小产品变化仍然高于特定公差,则必须相应地调整输入噪声。例如,这意味着必须订购具有更严格规范的材料,这通常会导致额外的成本。在本文中,提出了一种反向稳健的优化方法,以根据指定的产品公差来定制材料和过程噪声参数的变化。在汽车部件的元模型上执行鲁棒优化和剪裁材料和过程散射。尽管稳健的优化方法有助于找到产品对产品变化的设计设置最小化,但是仅通过需要较少的噪声参数散射来实现更紧凑的产品公差。结果表明,所提出的逆方法能够预测每个噪声参数的所需调整,以获得指定的产品公差。另外,开发方法可以同样用于放松材料规格,从而获得相同的产品耐受性,最终导致更便宜的过程。提出并实施了更新更广泛(噪声)基座上的元模型的策略,以获得更大的噪声散射,同时保持相同的产品容差。

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