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Grain growth behavior of tungsten heavy alloys based on the master sintering curve concept

机译:基于主烧结曲线概念的钨重合金晶粒生长行为

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摘要

Time and temperature relationships for grain growth by Ostwald ripening are transformed into the master sintering curve (MSC) form. The resulting MSC equations are used to analyze grain size data obtained from W-Ni-Fe heavy alloys that were quenched from sintering temperatures ranging from 1200 °C to 1500 °C. Activation energies for grain growth during both solid-state and liquid-phase sintering are calculated and compared to experimental values for diffusion. The MSC equations are further modified to include the effect of the solid volume fraction on the grain growth constant. A sensitivity analysis of material properties and process variables shows that the grain growth rate constant is most affected by changes in the sintering temperature and activation energy.
机译:Ostwald熟化过程中晶粒生长的时间和温度关系转化为主烧结曲线(MSC)形式。所得的MSC方程用于分析由W-Ni-Fe重合金获得的晶粒度数据,这些重合金是从1200°C至1500°C的烧结温度淬火的。计算了固态和液相烧结过程中晶粒生长的活化能,并将其与扩散实验值进行了比较。进一步修改了MSC方程,以包括固体体积分数对晶粒生长常数的影响。对材料性能和工艺变量的敏感性分析表明,晶粒生长速率常数受烧结温度和活化能变化的影响最大。

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  • 来源
    《Metallurgical and Materials Transactions A》 |2006年第11期|3337-3346|共10页
  • 作者单位

    Center for Advanced Vehicular Systems Mississippi State University 39762 Mississippi State MS;

    Center for Innovative Sintered Products The Pennsylvania State University 16802 University Park PA;

    Breakthrough Technology Kennametal Inc. 15650 Latrobe PA;

    Center for Advanced Vehicular System Mississippi State University USA;

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