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Optimization of pressure-less microwave sintering of Ti6Al4V by response surface methodology

机译:响应表面方法的优化Ti6Al4V的减压微波烧结

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Pressure-less microwave sintering of titanium alloy (Ti6Al4V) is an economical and viable solution for obtaining near net shape fabrication of complex shapes. Input process parameters such as sintering temperature (St), heating rate (Hr), and holding (Ht) were optimized in this work for maximal compressive yield strength, maximal density, and minimal volumetric shrinkage by response surface methodology (RSM). The individual and interactive influence/effects of the process parameters on each of the responses were studied. A statistical model was developed to predict each of the output responses. Analysis by X-ray diffractometry indicates the presence of alpha and beta phase Ti6Al4V. The optimal sintering parameters identified were: St of 1280 degrees C, Hr of 8 degrees C/minute, and Ht of 78 minutes. At the optimized parameters, a compressive yield strength of 541.34 +/- 48.81 MPa, density of 4022.59 +/- 87.38 kg/m(3), and volumetric shrinkage of 16.86 +/- 5% were obtained. The results of this study will help rapidly manufacture higher-strength titanium customized components using pressure-less microwave sintering method.
机译:钛合金(Ti6Al4V)的减压微波烧结是一种经济和可行的溶液,用于获得复杂形状的近净形状。在这项工作中,优化了烧结温度(ST),加热速率(HR),加热速率(HR)和保持(HT)的输入处理参数,以获得最大压缩屈服强度,最大密度和响应表面方法(RSM)的最小体积收缩。研究了过程参数对每个反应的个体和交互式影响/效应。开发了一种统计模型来预测每个输出响应。 X射线衍射测定分析表明存在α和β相Ti6Al4V。确定的最佳烧结参数为:ST为1280℃,HR为8摄氏度/分钟,HT为78分钟。在优化参数下,压缩屈服强度为541.34 +/- 48.81MPa,密度为4022.59 +/- 87.38 kg / m(3),并获得16.86 +/- 5%的体积收缩。本研究的结果将有助于使用减压微波烧结方法快速制造更高强度的钛定制部件。

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