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Optimization of Process Parameters for Preparing Metallic Matrix Diamond Tool Bits by Microwave Pressureless Sintering Using Response Surface Methodology

机译:响应面法优化微波无压烧结制备金属基金刚石刀具的工艺参数

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摘要

The process of preparing metallic matrix diamond tool bits by microwave pressureless sintering (MPS) was exclusively studied in this paper. The effects of the sintering temperature, the cold pressure, and the holding time on the mechanical properties of the bit were determined by using the response surface methodology (RSM) with Box-Behnken Design (BBD). In addition, with RSM, the second-order polynomial equation of mechanical properties was obtained. The solutions were well matched with the experimental values. This indicates that major variations in mechanical properties of the sintered sample could be predicted by the models, which shows that the applied model is accurate. Conventional pressureless sintering (CPS) experiments were also conducted to make a comparison. The experimental results showed that the MPS can enhance the mechanical properties of sintered samples. A possible MPS mechanism is proposed in this work after analyzing all the experimental results.
机译:本文专门研究了微波无压烧结制备金属基金刚石刀具的工艺。烧结温度,冷压力和保持时间对钻头力学性能的影响是通过采用Box-Behnken Design(BBD)的响应面方法(RSM)确定的。另外,利用RSM,获得了力学性能的二阶多项式方程。该溶液与实验值很好地匹配。这表明通过该模型可以预测烧结样品的机械性能的主要变化,这表明所应用的模型是准确的。还进行了常规的无压烧结(CPS)实验以进行比较。实验结果表明,MPS可以增强烧结样品的力学性能。分析所有实验结果后,提出了一种可能的MPS机制。

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