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Effect of ball milling time on microstructure and properties of Laves phase NbCr2 alloys synthesized by hot pressing

机译:球磨时间对热压法合成Laves相NbCr2合金组织和性能的影响

摘要

Laves phase NbCr2 alloys with a composition of Nb-66.7Cr (molar fraction, %) were prepared by mechanical alloying and hot pressing. The microstructures and properties of the Laves phase NbCr2 alloys, prepared from elemental niobium and chromium powders under various ball milling time by hot pressing at 1 250 ?XC for 0.5 h, were investigated. The results indicate that if the ball milling time is longer than 40 h, the synthesizing reaction of Laves phase NbCr2 can be accomplished much sufficiently. Then the nearly full-dense Laves phase NbCr2 alloys can be prepared by hot pressing from ball milled powders with more than 40 h. The hot pressing sample with homogeneous and fine microstructure made from 40 h ball milled powders has the optimum microstructure and properties. It has a relative density of 98.1%, Vickers hardness of 11.4 GPa, compress strength of 1 981 MPa and fracture toughness of 4.82 MPa?Pm1/2. The effect of fine grain toughening is fully realized.
机译:通过机械合金化和热压制备具有Nb-66.7Cr(摩尔分数,%)组成的Laves相NbCr2合金。研究了由铌和铬元素粉末在不同的球磨时间,在1250℃×0.5小时的热压下制备的Laves相NbCr2合金的组织和性能。结果表明,如果球磨时间大于40 h,则可以充分完成Laves相NbCr2的合成反应。然后可以通过热压从球磨粉末中经过40个小时以上来制备接近致密的Laves相NbCr2合金。由40 h球磨粉制成的具有均匀且精细的微观结构的热压样品具有最佳的微观结构和性能。其相对密度为98.1%,维氏硬度为11.4 GPa,抗压强度为1981 MPa,断裂韧性为4.82 MPa·Pm1 / 2。充分实现了晶粒细化的效果。

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