首页> 外文会议>Advances in powder metallurgy particulate materials - 2009 >PROCESS MODELING: USE OF UNCERTAINTY, SENSITIVITY AND OPTIMIZATION TECHNIQUES FOR IMPROVED UNDERSTANDING OF COMPACTION MODEL OUTPUTS
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PROCESS MODELING: USE OF UNCERTAINTY, SENSITIVITY AND OPTIMIZATION TECHNIQUES FOR IMPROVED UNDERSTANDING OF COMPACTION MODEL OUTPUTS

机译:过程建模:不确定性,灵敏度和优化技术的使用,用于改进压实模型输出的理解

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Math-based models developed by the MSU/CAVS team have considered both the compaction and sintering processes. Due to the very large number of input variables for the compaction model it is helpful to understand how sensitive the model output is to small changes in these input variables in order to better apply the model to real world processes. Using numerical methods both uncertainty and sensitivity analysis can be applied to the model and the most significant terms identified. Through further numerical analysis the output of the compaction model can be optimized for one or more output parameters, e.g. least density variation, lowest mass, minimal part thickness. These techniques will be illustrated using a well-established automotive PM product, the main bearing cap.
机译:MSU / CAVS团队开发的基于数学的模型已经考虑了压实和烧结过程。由于压实模型的输入变量非常多,因此有助于了解模型输出对这些输入变量的微小变化的敏感程度,以便更好地将模型应用于实际过程。使用数值方法,可以将不确定性和敏感性分析都应用于模型,并确定最重要的项。通过进一步的数值分析,压实模型的输出可以针对一个或多个输出参数(例如,输出参数)进行优化。最小的密度变化,最低的质量,最小的零件厚度。这些技术将使用成熟的汽车PM产品(主轴承盖)进行说明。

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