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研究了Mn13铸钢在高应力状态下,冲击角为90°和60°时的冲击腐蚀磨损特性及机理,结果表明:冲击角为90°时,冲击腐蚀磨损特性曲线较平缓,磨损失效机制为浅层剥落,裂纹起源于亚表层中接近表面处,并平行于表面扩展;冲击角为60°时,合金磨损量显著增加,裂纹起源于表层,并向亚表层深处扩展,磨损失效机制为深层剥落.

参考文献

[1] Sundstrom A.;Olsson M.;Rendon J. .Wear behaviour of some low alloyed steels under combined impact/abrasion contact conditions[J].Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear,2001(1):744-754.
[2] Tylcak J H.Friction,lubrication and wear technology[A].,1992:940-946.
[3] Olson D L;Cross C E.Friction and wear in the mining and mineral industries[A].ASM International,1992:958-966.
[4] J. D. Gates .Two-body and three-body abrasion: A critical discussion[J].Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear,1998(1):139-146.
[5] 丁厚福,卢书媛,崔方明,陈翌庆.冶金矿山湿式磨机衬板钢冲击腐蚀磨损行为的研究[J].兵器材料科学与工程,2003(06):31-35.
[6] Chenje T W;Simbi D J;Navara E .Relationship between microstructure,hardness,impact toughness and wear performance of selected grinding media for mineral ore milling operations[J].Materials & Design,2004,25:11-18.
[7] Fiset M;Huard G;Grenier C.There-body impactabrasion laboratory testing for grinding ball materials[J].Wear,1998(217):271-275.
[8] Heidemeyer J .Influence of the plastic deformation of metals duringmixed-friction on their chemical reaction rate[J].Wear,1981,66(06):379-381.
[9] Suh N P .An overreview of the delamination theory of wear[J].Wear,1977,44:1-16.
[10] 黄明志;石德珂;金志浩.金属力学性能[M].西安:西安交通大学出版社,1986:91-94.
[11] Smith J O et al.Stresses due to tangential and normal loads or a elastic solid with application to some contact stress problems[J].ASME Transactions,1953,75:157-165.
[12] 刘家浚.材料的磨损原理及其耐磨性[M].北京:清华大学出版社,1993:144-117.
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