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Effect of ball milling time on microstructures and mechanical properties of mechanically-alloyed iron-based materials

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【作者】 刘东华刘咏赵大鹏王岩方京华温玉仁刘祖铭

【Author】 LIU Dong-hua,LIU Yong,ZHAO Da-peng,WANG Yan,FANG Jing-hua,WEN Yu-ren,LIU Zu-ming State Key Laboratory of Powder Metallurgy,Central South University,Changsha 410083,China

【机构】 State Key Laboratory of Powder Metallurgy,Central South University

【摘要】 The microstructures and mechanical properties of an iron-based alloy (Fe-13Cr-3W-0.4Ti-0.25Y-0.30O) prepared by mechanical alloying were investigated with scanning electron microscope,optical microscope,X-ray diffractometer and hardness tester.The results show that the particle size does not decrease with milling time because serious welding occurs at 144 h.The density of the alloy sintered at 1 523 K is affected by the particle size of the powder.Finer particles lead to a high sintered density,while the bulk density by using particles milled for 144 h is as low as 70%.In the microstructures of the annealed alloy,large elongated particles and fine equiaxed grains can be detected.The elongated particle zone has a higher microhardness than the equiaxed grain area in the annealed alloys due to the larger residual strain and higher density of the precipitated phase.

【Abstract】 The microstructures and mechanical properties of an iron-based alloy (Fe-13Cr-3W-0.4Ti-0.25Y-0.30O) prepared by mechanical alloying were investigated with scanning electron microscope,optical microscope,X-ray diffractometer and hardness tester.The results show that the particle size does not decrease with milling time because serious welding occurs at 144 h.The density of the alloy sintered at 1 523 K is affected by the particle size of the powder.Finer particles lead to a high sintered density,while the bulk density by using particles milled for 144 h is as low as 70%.In the microstructures of the annealed alloy,large elongated particles and fine equiaxed grains can be detected.The elongated particle zone has a higher microhardness than the equiaxed grain area in the annealed alloys due to the larger residual strain and higher density of the precipitated phase.

【基金】 Project(50634060) supported by the National Natural Science Foundation of China; Project(50721003) supported by the Creative Research Group of National Natural Science Foundation of China
  • 【文献出处】 Transactions of Nonferrous Metals Society of China ,中国有色金属学报(英文版) , 编辑部邮箱 ,2010年05期
  • 【分类号】TG113
  • 【被引频次】3
  • 【下载频次】74
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