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MultOpt plus plus : a fast regression-based model for the development of compositions with high robustness against scatter of element concentrations

机译:Multopt Plus Plus:基于快速回归的模型,用于开发具有高稳健性对元素浓度的高稳健性

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摘要

Alloys-by-design is a term used to describe new alloy development techniques based on numerical simulation. These approaches are extensively used for nickel-base superalloys to increase the chance of success in alloy development. During alloy production of numerically optimized compositions, unavoidable scattering of the element concentrations occurs. In the present paper, we investigate the effect of this scatter on the alloy properties. In particular, we describe routes to identify alloy compositions by numerical simulations that are more robust than other compositions. In our previously developed alloy development program package MultOpt, we introduced a sensitivity parameter that represents the influence of alloying variations on the final alloy properties in the post-optimization process, because the established sensitivity calculations require high computational effort. In this work, we derive a regression-based model for calculating the sensitivity that only requires one-time calculation of the regression coefficients. The model can be applied to any function with nearly linear behavior within the uncertainty range. The model is then successfully applied to the computational alloys-by-design work flow to facilitate alloy selection using the sensitivity of a composition owing to the inaccuracies in the manufacturing process as an additional minimization goal.
机译:合金设计是一种用于描述基于数值模拟的新合金开发技术的术语。这些方法广泛用于镍基超合金,以增加合金发育成功的机会。在数值优化组合物的合金生产期间,发生元素浓度的不可避免的散射。在本文中,我们研究了散射对合金性质的影响。特别是,我们描述了通过比其他组合物更稳健的数值模拟来识别合金组合的路线。在我们以前开发的合金开发计划包装中,我们介绍了一种灵敏度参数,该参数表示合金化变化对优化后过程中最终合金特性的影响,因为建立的敏感性计算需要高计算工作。在这项工作中,我们得出了一种基于回归的模型,用于计算仅需要一次性计算回归系数的灵敏度。该模型可以应用于在不确定性范围内具有几乎线性行为的任何功能。然后,该模型被成功地应用于计算合金 - 逐设计的工作流程,以便于由于制造过程中的不准确性,使用组合的灵敏度作为额外的最小化目标来促进合金选择。

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