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The effect of vanadium on microstructure and mechanical properties of Fe-based high-strength alloys

机译:钒对铁基高强度合金组织和力学性能的影响

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In this paper, the microstructure and mechanical properties of FeCrMoVC high-speed steels fabricated using a rapid solidification technique were investigated. It was found that the alloy with free V content exhibited ultra-high fracture strength of 4900?MPa and large compression strain of 31.8%, but a lower yield strength of 1100?MPa. In contrast, with V content to 4 at%, the yield strength increased significantly to 3200?MPa. Micro-structure analysis revealed that the V addition plays an important role in promoting the formation of skeleton-like carbide (V6C5phase), which can hinder the rapid propagation of shear bands, resulting in a good mechanical property. This special hard and finely ramified carbide network throughout the overall specimen can be regarded as a specific structure signal for the excellent mechanical properties of FeCrMoVC alloys. This result of the alloy with good mechanical property is expected to be used in industry as a high strength tool steel.
机译:本文研究了采用快速凝固技术制备的FeCrMoVC高速钢的组织和力学性能。发现具有游离V含量的合金表现出4900ΩMPa的超高断裂强度和31.8%的大压缩应变,但是具有较低的1100MPa的屈服强度。相反,当V含量为4 at%时,屈服强度显着提高到3200?MPa。微观结构分析表明,添加V在促进骨架状碳化物(V6C5相)的形成中起着重要作用,这可能阻碍剪切带的快速传播,从而具有良好的机械性能。这种遍布整个试样的特殊硬质和细枝状碳化物网络可以看作是FeCrMoVC合金优异机械性能的特定结构信号。具有良好机械性能的合金的这一结果有望在工业上用作高强度工具钢。

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