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Relationship between Microstructure and Mechanical Properties of Sintered WC-FeAl Composites Prepared from Wet Powder Milling

机译:湿粉铣服烧结WC-FEAL复合材料微观结构与力学性能的关系

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The relationship between mechanical properties and microstructures in sintered WC-FeAl composite was investigated in this work. Milling time was used as the linking parameter of the mechanical properties and the microstructure. The change of milling time led to various microstructures consisting of WC and FeAl phases. Sizes of FeAl phases became smaller with increasing the milling time while WC grain sizes were not changed. Vickers hardness was improved with increasing the milling whereas indentation fracture toughness and transverse rupture strength kept almost constant. This size reduction of FeAl phases increased the hardness but did not influence the fracture toughness and strength unless there was no huge FeAl pool. It was concluded that the sizes of FeAl phases were very important for improving the hardness of a sintered WC-FeAl composite prepared from wet milling process.
机译:在这项工作中研究了烧结WC-FEAL复合材料中力学性能和微结构之间的关系。铣削时间用作机械性能的链接参数和微观结构。铣削时间的变化导致了由WC和Feal阶段组成的各种微观结构。随着铣削时间的增加而越来越多,FEAL阶段的尺寸变小,而WC晶粒尺寸没有改变。随着铣削的增加而改善了维力,而凹口断裂韧性和横向断裂强度几乎恒定。这种尺寸减小了芯片阶段的硬度,但没有影响骨折韧性和力量,除非没有巨大的FEAL游泳池。得出结论是,芯片阶段的尺寸对于改善由湿铣过程制备的烧结WC-FEAL复合物的硬度非常重要。

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