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首页> 外文期刊>Metallurgical and Materials Transactions A >Starch Consolidation as a New Process for Manufacturing Powder Metallurgy High-Speed Steels
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Starch Consolidation as a New Process for Manufacturing Powder Metallurgy High-Speed Steels

机译:淀粉固结是制造粉末冶金高速钢的新工艺

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摘要

The development of a new method called “starch consolidation,” suitable for the production of powder metallurgy (P/M) high-speed steel (HSS) components has been studied. Samples have been consolidated using 1.5, 3.5, and 5vol pct starch and up to 60vol pct powder. The high solid loading was achieved by stabilizing the repulsive forces with a small addition (0.01wt pct) of a dispersant (polyacrylic acid) that resulted in accurate fluidity and consolidation of the prepared slurries. After shaping of the samples, the bending strength of the green bodies was evaluated. Debinding cycles were optimized by comparing carbon and oxygen content in argon, in N2-5H2, and in pure hydrogen. The three atmospheres showed no significant differences in carbon elimination. To determine the influence of H2 in a nitrogen-rich atmosphere during sintering, tests were performed at 1230°C in a N2-5H2 and in a nitrogen atmosphere. Pure nitrogen resulted in a microstructure formed by smaller carbides. Heat treatments were performed on the samples with the compositions that gave the best combination of properties. A hardness of 800HV and a bending strength of 1475MPa were obtained.
机译:研究了一种适用于粉末冶金(P / M)高速钢(HSS)零件生产的称为“淀粉固结”的新方法的开发。样品已使用1.5、3.5和5vol pct淀粉以及最高60vol pct粉末进行了固结。通过添加少量分散剂(聚丙烯酸)(0.01重量%)来稳定排斥力,从而实现了高固含量,从而确保了所制备浆料的精确流动性和固结性。样品成​​形后,评估生坯的弯曲强度。通过比较氩气,N2 -5H2 和纯氢中的碳和氧含量,优化了脱脂循环。这三个大气压在碳消除方面没有显着差异。为了确定H2 在烧结过程中在富氮气氛中的影响,在N2 -5H2 和氮气氛中于1230°C进行了测试。纯氮导致由较小碳化物形成的微观结构。用具有最佳性能组合的组合物对样品进行热处理。获得了800HV的硬度和1475MPa的弯曲强度。

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  • 来源
    《Metallurgical and Materials Transactions A》 |2007年第1期|159-168|共10页
  • 作者单位

    Department of Material Science Universidad Carlos III E-28911 Madrid Leganés Spain;

    Department of Material Science Universidad Carlos III E-28911 Madrid Leganés Spain;

    Department of Material Science Universidad Carlos III E-28911 Madrid Leganés Spain;

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