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鐵粉表面硫化處理制備高密度Fe-Cu-C合金

楊芳 隋延力 郭志猛 李普明 袁勇 李平

楊芳, 隋延力, 郭志猛, 李普明, 袁勇, 李平. 鐵粉表面硫化處理制備高密度Fe-Cu-C合金[J]. 工程科學學報, 2017, 39(2): 232-237. doi: 10.13374/j.issn2095-9389.2017.02.010
引用本文: 楊芳, 隋延力, 郭志猛, 李普明, 袁勇, 李平. 鐵粉表面硫化處理制備高密度Fe-Cu-C合金[J]. 工程科學學報, 2017, 39(2): 232-237. doi: 10.13374/j.issn2095-9389.2017.02.010
YANG Fang, SUI Yan-li, GUO Zhi-meng, LI Pu-ming, YUAN Yong, LI Ping. Sulfurizing treatments on the surface of iron powder for preparing high density Fe-Cu-C alloys[J]. Chinese Journal of Engineering, 2017, 39(2): 232-237. doi: 10.13374/j.issn2095-9389.2017.02.010
Citation: YANG Fang, SUI Yan-li, GUO Zhi-meng, LI Pu-ming, YUAN Yong, LI Ping. Sulfurizing treatments on the surface of iron powder for preparing high density Fe-Cu-C alloys[J]. Chinese Journal of Engineering, 2017, 39(2): 232-237. doi: 10.13374/j.issn2095-9389.2017.02.010

鐵粉表面硫化處理制備高密度Fe-Cu-C合金

doi: 10.13374/j.issn2095-9389.2017.02.010
基金項目: 

國家高技術研究發展計劃資助項目(2013AA031104)

詳細信息
  • 中圖分類號: TF124

Sulfurizing treatments on the surface of iron powder for preparing high density Fe-Cu-C alloys

  • 摘要: 突破常規鐵基粉末合金的制備工藝,設計出一種制備高密度Fe-Cu-C合金的新工藝.通過對鐵粉表面進行硫化處理,Fe與S反應合成FeS,均勻包覆在Fe粉顆粒表面,形成一層FeS潤滑薄膜,有利于降低壓制摩擦力.通過X射線衍射、掃描電鏡、和場發射掃描電鏡分析研究材料的物相、元素分布和顯微組織.研究結果表明:包覆在鐵粉顆粒表面的FeS薄膜,有利于提高壓坯密度,活化燒結.當S質量分數為0.5%時,硫化處理的Fe-2Cu-0.8C合金的力學性能優異,壓坯密度7.31 g·cm-3,硬度78.6 HRB,抗拉強度485 MPa;當S質量分數達到0.8%時,多余的FeS占壓制體積分數,導致試樣的壓坯密度降低,力學性能降低.

     

  • [5] Dhanasekaran S, Gnanamoorthy R. Dry sliding friction and wear characteristics of Fe-C-Cu alloy containing molybdenum di sulphide. Mater Des, 2007, 28(4):1135
    [6] Xiao Z Y, Ke M Y, Fang L, et al. Die wall lubricated warm compacting and sintering behaviors of pre-mixed Fe-Ni-Cu-Mo-C powders. J Mater Process Technol, 2009, 209(9):4527
    [9] Babakhani A, Haeruan A, Ghambari M. On the combined effect of lubrication and compaction temperature on properties of iron-based P/M parts. Mater Sci Eng A, 2006, 437(2):360
    [12] Zhu L N, Li G L, Wang H D, et al. Comparative characterization to the three kinds of solid-shape FeS. Mater Lett, 2008, 62(1):163
    [15] McMahon C J Jr. Hydrogen-induced intergranular fracture of steels. Eng Fracture Mech, 2001, 68(6):773
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  • 被引次數: 0
出版歷程
  • 收稿日期:  2016-05-03

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