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Densification and strength evolution in solid-state sintering Part I Experimental investigation

机译:固态烧结的致密化和强度演变第一部分实验研究

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摘要

Prealloyed bronze (Cu-10Sn) powder and a mixed elemental steel (Fe-2Ni-0.9C) powder were evaluated for strength evolution during sintering. For the bronze powder, test samples were fabricated using a loose powder casting method, while the steel powder was formed by injection molding. In situ strength during sintering was measured using a bending fracture test. Primary focus was on measuring the effects of sintering temperature and time on in situ strength evolution. Sintering temperature had the most significant effect, but the strength underwent significant gains prior to densification. The results are explained by the competition among interparticler neck growth, densification, and thermal softening. Sinter strengthening is initially governed by interparticle bonding, followed by a contribution from densification at high temperatures. However, high temperatures also lead to significant strength degradation due to thermal softening. Densification is favored by the declining in situ strength associated with thermal softening at high temperatures.
机译:评价了预合金的青铜(Cu-10Sn)粉末和混合元素钢(Fe-2Ni-0.9C)粉末在烧结过程中的强度发展。对于青铜粉,使用散装粉末铸造法制造测试样品,而钢粉通过注塑成型形成。使用弯曲断裂试验测量烧结期间的原位强度。主要重点是测量烧结温度和时间对原位强度演变的影响。烧结温度的影响最大,但在致密化之前,强度得到了显着提高。结果通过颗粒间颈部生长,致密化和热软化之间的竞争来解释。烧结体的强化最初是通过颗粒间的结合来控制的,其次是高温下的致密化。但是,高温也会由于热软化而导致强度明显下降。与高温下的热软化相关的原位强度下降有利于致密化。

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  • 来源
    《Journal of Materials Science 》 |2002年第3期| 567-575| 共9页
  • 作者单位

    Center for Innovative Sintered Products P/M Lab Pennsylvania State University;

    Center for Innovative Sintered Products P/M Lab Pennsylvania State University;

    Center for Innovative Sintered Products P/M Lab Pennsylvania State University;

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  • 正文语种 eng
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