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温压制备Fe-1.8Ni-0.5Mo-1.2Cu-0.2C粉末冶金齿轮的组织与性能
引用本文:蒋晓冬,刘子利,邹德华,刘伯路.温压制备Fe-1.8Ni-0.5Mo-1.2Cu-0.2C粉末冶金齿轮的组织与性能[J].机械工程材料,2012(4):46-49,57.
作者姓名:蒋晓冬  刘子利  邹德华  刘伯路
作者单位:南京航空航天大学材料科学与技术学院;江苏省常熟市华德粉末冶金有限公司
基金项目:2009年常熟市工业攻关项目(CC200913)
摘    要:以Fe-1.8Ni-0.5Mo-1.2Cu-0.2C预合金粉为原料,采用温压、烧结、渗碳、淬火与低温回火的工艺制备了粉末冶金齿轮,利用光学显微镜、扫描电子显微镜和硬度仪等研究了齿轮的组织与性能。结果表明:温压压坯的密度为7.35g.cm-3,相对密度为94.2%;烧结态齿轮的显微组织主要是珠光体和铁素体,硬度达到46~54HRA,密度为7.37g.cm-3,相对密度为94.5%,烧结态齿轮有轻微收缩现象,但其仍表现出良好的尺寸稳定性;热处理后齿轮渗碳层的组织主要由回火马氏体和少量残余奥氏体组成,齿轮断齿扳力为9.6kN,硬度提高至66~75HRA。

关 键 词:Fe-1.8Ni-0.5Mo-1.2Cu-0.2C合金粉  粉末冶金  温压技术

Microstructure and Properties of Fe-1.8Ni-0.5Mo-1.2Cu-0.2C Powders Metallurgy Gear Prepared by Warm Compaction
JIANG Xiao-dong,LIU Zi-li,ZOU De-hua,LIU Bo-lu.Microstructure and Properties of Fe-1.8Ni-0.5Mo-1.2Cu-0.2C Powders Metallurgy Gear Prepared by Warm Compaction[J].Materials For Mechanical Engineering,2012(4):46-49,57.
Authors:JIANG Xiao-dong  LIU Zi-li  ZOU De-hua  LIU Bo-lu
Affiliation:1(1.College of Material Science & Engineering,Nanjing University of Aeronautics and Astronautics,Nanjing 210016,China;2.Changshu Huade Powder Metallurgy Co.,Ltd,Changshu 215500,China)
Abstract:Taking Fe-1.8Ni-0.5Mo-1.2Cu-0.2C pre-alloy powder as raw material,a powder metallurgy gear was prepared by warm compaction,sintering,carburizing,quenching and low temperature tempering technologies.The microstructure and properties of the gear were studied by optical microscopy,scanning electron microscopy and hardness testing,etc.The results show that the warm compaction green density was 7.35 g·cm-3 and relative density was 94.2%.The microstructure of sintered gear mainly was pearlite and ferrite,the hardness,density,relative density of the sintered gear was 46-54 HRA,7.37 g·cm-3 and 94.5%,respectively.The slight shrinkage of sintered gear was found,but it still kept good dimensional stability.The microstructure of carburized layer after heat treatment mainly was tempered martensite and small amounts of retained austenite,and the teeth mechanical resistance was 9.6 kN and the hardness was increased to 66-75 HRA.
Keywords:Fe-1  8Ni-0  5Mo-1  2Cu-0  2C alloy powder  powder metallurgy  warm compaction technology
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