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首页> 外文期刊>Materials transactions >Microstructural Evolution and Mechanical Properties of a Three-Phase Alloy in the Cr-Mo-Nb System
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Microstructural Evolution and Mechanical Properties of a Three-Phase Alloy in the Cr-Mo-Nb System

机译:CR-MO-NB系统三相合金的微观结构演化与力学性能

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A new three-phase alloy of 50Cr-30Mo-20Nb (at%) was studied based on the Cr-Mo-Nb ternary phase diagram, and was composed of a Cr-rich BCC1 phase, a Mo-rich BCC2 phase and a NbCr2 Laves phase after heat treatment at around 1523K or lower. A supersaturated BCC single-phase solid solution alloy obtained by homogenization at 1973K for 1 h underwent microstructural evolution during heat treatment at 1473 K. Intragranular precipitation of the Cr-rich BCC1 phase occurred, which led to the formation of an alternating BCC1/BCC2 two-phase microstructure through a discontinuous precipitation process, followed by precipitation of the Laves phase at the BCC1/BCC2 interphase boundaries. At a higher temperature of 1523 K, a similar microstructure was observed, with increased BCC decomposition and Laves precipitation rates, while the alloy consisted of BCC and Laves phases at 1773 K. The mechanical properties of alloys heat treated at 1473K for various periods after the solid-solution treatment were also investigated. A maximum fracture strength of 1493 MPa and a minimum hardness of 773 +/- 7 HV were obtained for an alloy aged for 24 h, where the BCC1/BCC2 two-phase microstructure dominated. The Vickers hardness of an alloy aged for 72 h, which had a fine-grained microstructure that included the Laves phase, was 839 +/- 8 HV under a load of 0.5 kgf, and no obvious microcracks were observed.
机译:基于Cr-Mo-Nb三元相图研究了50cr-30mO-20nb(以%)的新三相合金,并由CR富含CR富含CR的BCC1相,富含MO的BCC2相和NBCR2来组成热处理后的疏浚阶段约为1523K或更低。通过1973K在1973K的均质化获得的超饱和BCC单相固体固体溶液合金在1473K的热处理过程中进行1小时的微观结构演化。发生Cr的BCC1相口腔沉淀,导致了交替的BCC1 / BCC2 2的形成 - 通过不连续沉淀过程的间显微结构,然后在BCC1 / BCC2间隔边界处沉淀疏浚阶段。在较高温度的1523K的温度下,观察到类似的微观结构,增加了BCC分解和疏浚灌注速率,而合金由BCC和Laves阶段组成,在1773K中。在1473K的合金热处理的合金热处理的机械性能还研究了固溶处理。获得1493MPa的最大断裂强度和773 +/- 7 HV的最小硬度,用于24小时的合金,其中BCC1 / BCC2两相微观结构占主导地位。 72小时的合金的维氏硬度,其具有包含疏浚阶段的细粒度微观结构,在0.5kgf的载荷下为839 +/- 8hv,并且没有观察到明显的微裂纹。

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