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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Impact-abrasive-corrosion wear of Fe-based alloys: Influence of microstructure and chemical composition upon wear resistance
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Impact-abrasive-corrosion wear of Fe-based alloys: Influence of microstructure and chemical composition upon wear resistance

机译:铁基合金的冲击磨蚀磨损:显微组织和化学成分对耐磨性的影响

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A wide range of heat treated iron-based alloys (steels and white cast irons) was subjected to wear test in laboratory mill with the aim of discovering the correlation between microstructure type and impact-abrasive wear resistance under corrosion. The role of microstructure and chemical composition was identified through analysis of wear behavior under a range of slurries (pH 1-14) and analysis of the worn surface. It was found that the best wear performance is achieved with martensitic structure in steels containing not less than 13 wt% Cr. The results showed that austenitic Cr-Ni, Cr-Mn and Mn-based steels do not demonstrate significant advantages in wear resistance over low-alloyed steels having martensitic microstructure. It was found that high-chromium white cast irons have average wear resistance because of embrittlement due to the presence of coarse eutectic carbides in the structure. It was also noted that wear resistance depends both on corrosive resistance and deformation resistance. Deformation resistance seems to play a more important role because it can largely compensate for the lack of corrosion resistance. It was concluded that low-alloyed hypereutectoid steel having "martensite-austenite-carbides free" microstructure could be considered the most effective alloy for use in wear application, taking into account its low cost.
机译:各种热处理过的铁基合金(钢和白铸铁)在实验室中进行了磨损测试,目的是发现显微组织类型与腐蚀下耐冲击磨耗性之间的关系。通过分析一系列浆料(pH 1-14)下的磨损行为并分析磨损的表面,可以确定微观结构和化学成分的作用。已经发现,在含有不少于13wt%的Cr的钢中,马氏体组织获得了最佳的磨损性能。结果表明,与具有马氏体组织的低合金钢相比,奥氏体Cr-Ni,Cr-Mn和Mn基钢在耐磨性方面没有表现出明显的优势。发现高铬白口铸铁由于组织中存在粗大的共晶碳化物而脆化,因此具有平均耐磨性。还注意到,耐磨性取决于耐腐蚀性和抗变形性。耐变形性似乎起着更重要的作用,因为它可以在很大程度上弥补耐蚀性的不足。结论是,考虑到其低成本,具有“无马氏体-奥氏体-碳化物”微结构的低合金过共析钢可被认为是用于磨损应用的最有效的合金。

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