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Influence of Alloying and Heat Treatment on the Abrasive and Impact–Abrasive Wear Resistance of High-Manganese Steel

机译:合金化和热处理对高锰钢磨料和冲击磨损性的影响

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AbstractThe basic factors that affect the wear resistance of high-manganese steel are considered. The literature on this topic is reviewed. Conclusions are formulated regarding the materials used in existing studies. Research topics of interest to enterprises that manufacture and employ Hadfield steel are identified. Materials used in the machining of liquid steel are considered. Production technology for experimental high-manganese steel parts is discussed. The composition of the alloy employed as the base is analyzed. The procedure and equipment used to determine the cooling rate of alloys in the mold and to study the wear resistance in conditions of abrasive and impact–abrasive wear are outlined, as well as methods of thermal analysis. Results are presented for the alloying of Hadfield steel by nitrided ferroalloys and other alloys. The coefficients of abrasive and impact–abrasive wear resistance are plotted for different alloying conditions. In addition, the influence of the alloying elements on the wear resistance of high-manganese steel in different wear conditions is studied. The concentrations of the alloying elements corresponding to maximum abrasive and impact–abrasive wear resistance are established. In addition, the results of thermal analysis are presented. The heating of Hadfield steel castings prior to quenching is considered. The temperature ranges corresponding to processes such as excess-phase deposition, the solution of cementite in austenite, and complete solution of phosphide eutectic and metal carbides are established. The temperature limits of oxidation and decarburization of the steel are also determined. On the basis of the results, recommendations are made with a view to increasing the wear resistance of castings made from high-manganese steel for different operating conditions and also to selecting the heat-treatment temperature for such castings.]]>
机译:<![cdata [ <标题>抽象 ara>影响高锰钢耐磨性的基本因素。综述了这个主题的文献。关于现有研究中使用的材料的结论。鉴定了制造和采用Hadfield Steel的企业感兴趣的研究主题。考虑用于加工液钢的材料。讨论了实验性高锰钢部件的生产技术。分析了作为碱基的合金的组成。用于确定模具中合金冷却速率和研究磨料和冲击磨损条件下的耐磨性的程序和设备,以及热分析方法。通过氮化铁聚合金和其他合金的Hadfield钢合金化的结果提出。绘制磨料和冲击磨料耐磨性的系数用于不同的合金化条件。此外,研究了合金元素对不同磨损条件下高锰钢耐磨性的影响。建立了对应于最大磨料和冲击磨料耐磨性的合金元素的浓度。此外,提出了热分析结果。考虑了在淬火之前的Hadfield钢铸件的加热。建立了对应于多相沉积的方法,奥氏体中渗碳液溶液的温度范围,以及完全磷化磷化晶和金属碳化物的完全溶液。还确定了钢的氧化温度限制和脱碳。在结果的基础上,提出建议,以提高由高锰钢制成的铸件的耐磨性,以针对不同的操作条件以及选择这种铸件的热处理温度。 ]]]>

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