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Enhanced densification of PM steels by liquid phase sintering with boron-containing master alloy

机译:通过含硼中间合金的液相烧结增强PM钢的致密化

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摘要

Reaching high density in PM steels is important for high-performance applications. In this study, liquid phase sintering of PM steels by adding gas-atomized Ni-Mn-B master alloy was investigated for enhancing the density levels of Fe- and Mo- prealloyed steel powder compacts. The results indicated that liquid formation occurs in two stages, beginning with the master alloy melting (LP-1) below and eutectic phase formation (LP-2) above 1373 K (1100 °C). Mo and C addition revealed a significant influence on the LP-2 temperatures and hence on the final densification behavior and mechanical properties. Microstructural embrittlement occurs with the formation of continuous boride networks along the grain boundaries, and its severity increases with carbon addition, especially for 2.5 wt pct of master alloy content. Sintering behavior, along with liquid generation, microstructural characteristics, and mechanical testing revealed that the reduced master alloy content from 2.5 to 1.5 wt pct (reaching overall boron content from 0.2 to 0.12 wt pct) was necessary for obtaining good ductility with better mechanical properties. Sintering with Ni-Mn-B master alloy enables the sintering activation by liquid phase formation in two stages to attain high density in PM steels suitable for high-performance applications. © 2017 The Author(s)
机译:在PM钢中达到高密度对于高性能应用很重要。在这项研究中,研究了通过添加气相雾化的Ni-Mn-B中间合金对PM钢进行液相烧结以提高Fe和Mo预合金钢粉末压坯的密度水平。结果表明,液体形成分两个阶段发生,首先是低于以下温度的中间合金熔化(LP-1)和高于1373 K(1100°C)的共晶相形成(LP-2)。 Mo和C的添加显示出对LP-2温度的显着影响,因此对最终的致密化行为和机械性能也产生了显着影响。沿晶界形成连续的硼化物网络会发生微结构脆化,并且其严重性会随着碳的添加而增加,特别是对于中间合金含量为2.5 wt%的情况。烧结行为以及液体生成,微观结构特征和机械测试表明,要获得具有良好机械性能的良好延展性,必须将中间合金含量从2.5 wt%降低至1.5 wt%(总硼含量从0.2 wt%降低至0.12 wt%)。使用Ni-Mn-B中间合金进行烧结可通过两阶段的液相形成激活烧结,从而在适用于高性能应用的PM钢中实现高密度。 ©2017作者

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