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添加纳米粉体对Fe基粉末冶金构件烧结温度的影响 被引量:2

Influence of Nano-powder Addition on Sintering Temperature of Fe-based Powder Metallurgy Component
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摘要 利用纳米粉末的特性,在纯铁粉中加入O.05wt%-3wt%的纳米Cu粉,先后进行混料、压制和烧结等制造工序,然后将得到的试样进行密度测定。结果表明,在达到要求的使用性能前提下,添加一定量纳米Cu粉可降低Fe基粉末冶金制件的烧结温度;当Cu的添加量在1%~3%时,纳米Cu粉末的添加量对烧结温度的降低趋势较为明显。 Taking use of the characteristics of nano-powder to add nano-Cu powder with 0.05wt%-3wt% into pure iron fine. The manufacturing processes of material mixing, pressing and sintering were conduct the and then the density and hardness of the sample was measured. The results show that the addition of certain amount of nano-Cu powder can decrease the sintering temperature of Fe-based powder metallurgy component at the premise of complying with required usability; when the dosage of Cu is between 1%-3%, the amount of nano-Cu powder can obviously reduce sintering temperature.
作者 李国勇 解芳
机构地区 南阳理工学院
出处 《热加工工艺》 CSCD 北大核心 2014年第2期37-39,共3页 Hot Working Technology
关键词 烧结温度 粉末冶金 纳米Cu粉 密度 硬度 sintering temperature powder metallurgy nano-Cu powder density hardness
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  • 1叶健,谭志强.粉末冶金热锻冲击块的研究[J].粉末冶金工业,2005,15(2):12-14. 被引量:1
  • 2中国机械工程学会塑性工程学会.锻压手册[M].北京:机械工业出版社,2007.
  • 3方树铭,雷霆,张玉林,李皓,周林,张家敏.旋锻法加工低塑性有色金属异型材的应用研究[J].锻压技术,2007,32(5):69-72. 被引量:13
  • 4GB/T228.1-2010金属材料拉伸试验第1部分:室温试验方法[S].北京:中国标准出版社,2011.
  • 5GB/T7314-2005,金属材料室温压缩试验方法[S].北京:中国标准出版社,2005.
  • 6Pavlygo T M,Sakhnenko A V,Sakhnenko S A,et al.Development of powder material hot forging in the Ukraine [J].Powder Metallurgy and Metal Ceramics,2000,39:183-197.
  • 7Duggirala R,Shivpuri R.Effects of processing parameters in P/M steel forging on part properties:a review part Ⅱ forging of sintered compact[J].JMEPEG,1992(1):505-516.
  • 8Thomas G.Grady.High density powder metallurgy design concepts for powder forging [J].Powder Metallurgy Design Concepts,1989(7):105-111.
  • 9Ilia E. The effect of copper precipitation on mechanicalproperties at operating temperature of the materials used to manufacture powder forged connecting rods [J]. International Journal of Powder Metallurgy,2014,50(4): 11-20.
  • 10MPIF standard 35 Materials standards for PM structural parts [S]. Princeton,New Jersey,U S A:Metal Powder Industries Federation ,2012.

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