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首页> 外文期刊>Materials transactions >Modeling of Densification during Hot Pressing of Fe-Cu-Co-Ni-W-Sn Powder Mixture
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Modeling of Densification during Hot Pressing of Fe-Cu-Co-Ni-W-Sn Powder Mixture

机译:Fe-Cu-Co-Ni-W-Sn粉末混合物热压过程中的致密化模型

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摘要

The master sintering curve (MSC) is an effective method to predict densification during sintering or hot pressing. In MSC, the sintered density is a unique function of the integral of a temperature function over time, irrespective of the heating path. As a practical application of the MSC, the Fe-based powder mixture consisting of 6 different metallic materials was used since it is one of the most common soft metal-bonds of the diamond tool industry. The effective activation energy of sintering was found to be 200.2 kJ/mol. It suggests that the dominant densification mechanism for the present metallic powder was the diffusion of Cu since the effective activation energy was in good agreement with that of self diffusion in Cu from literature. Three data sets having different heating rates merged onto a single curve when the density was plotted as a logarithmic function of Θ, the integral of temperature function over time. Thus, the density versus Θ profile can be used to predict the final density of Fe-based metallic powder at a given pressure regardless of heating history. The study was also extended to a range of pressures from 9.7MPa to 58.1 MPa to generate the pressure-assisted master sintering surface (PMSS).
机译:主烧结曲线(MSC)是预测烧结或热压过程中致密化的有效方法。在MSC中,烧结密度是温度函数随时间变化的积分的唯一函数,与加热路径无关。作为MSC的实际应用,使用了由6种不同金属材料组成的铁基粉末混合物,因为它是金刚石工具行业中最常见的软金属结合剂之一。发现烧结的有效活化能为200.2kJ / mol。这表明目前金属粉末的主要致密化机理是铜的扩散,因为有效活化能与文献中铜在铜中的自扩散具有很好的一致性。当将密度绘制为Θ的对数函数(温度函数随时间的积分)时,具有不同加热速率的三个数据集合并到一条曲线上。因此,无论加热历史如何,密度与θ的关系曲线可用于预测给定压力下铁基金属粉末的最终密度。该研究还扩展到了9.7MPa至58.1 MPa的压力范围,以生成压力辅助主烧结表面(PMSS)。

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