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Optimizing the Sintering Parameter of Metal Injection Molding Compact Using Robust Engineering Technique

机译:使用鲁棒工程技术优化金属注塑成型紧凑型烧结参数

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Sintering is a key step in the metal injection molding (MIM) process, which affects the mechanical properties of the sintered part. The mechanical properties of the sintered compacts are resulted from tremendous sintered part densification. This work utilizes robust engineering technique in optimizing sintering parameters of metal injection molding compacts. Three quality characteristics; shrinkage, density and flexure strength is optimized using Taguchi method-based grey analysis. The modified algorithm adopted here was successfully used for both detraining the optimum setting of the process parameters and for combining multiple quality characteristics into one integrated numerical value called grey relational grade. The sintering parameters investigated are: sintering temperature, sintering time, and heating rate. The result concluded that sintering time is the most significant for the combination of the quality characteristics.
机译:烧结是金属注射成型(MIM)工艺的关键步骤,其影响烧结部分的机械性能。烧结块的机械性能由巨大的烧结部分致密化导致。这项工作利用鲁棒工程技术在优化金属注射成型块的烧结参数方面。三种质量特征;采用基于Taguchi方法的灰色分析优化了收缩,密度和挠曲强度。此处采用的修改算法已成功地用于降低过程参数的最佳设置,并将多种质量特征与一个名为灰色关系等级的一个集成数值相结合。调查的烧结参数是:烧结温度,烧结时间和加热速率。结果得出结论,烧结时间对于质量特征的组合是最重要的。

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