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P/M Valve Seat Inserts: Air Quenching and Characterization

机译:P / M阀座插页:空气淬火和表征

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This work consists of evaluating the influence of heat treatment on sintered valve seat insert (VSI) obtained with two different high-speed steels powders and one tool steel: AISI M3:2, AISI M2 and AISI D2, respectively. The high-speed / tool steel powders were mixed with iron powders and additives such as manganese sulphide, zinc stearate, graphite and niobium carbide. All the high-speed / tool steel powders had its particle size distribution and morphology analyzed. The heat treatment of the VSI consisted of air quenching followed by double tempering it in seven different and equidistant temperatures, ranging from 100 °C until 700 °C. A data acquisition system with a thermocouple type k attached to the samples was used to determine the air-quenching cooling rate. The mechanical and physical properties measurements were carried out, i.e., apparent density, apparent hardness and crush radial strength. The microstructural evaluation consisted of etching the VSI and then analyzing it using scanning electron microscopy (SEM) and energy dispersive spectroscopy (EDS). The results showed that the VSI obtained with the AISI M3:2 and M2 high-speed steel powders mixtures showed the best results regarding its apparent hardness and crush radial strength after air quenching and double tempering it at 600 °C.
机译:这项工作包括评估热处理对用两种不同的高速钢粉末和一个工具钢的烧结阀座插入件(VSI)的影响:AISI M3:2,AISI M2和AISI D2。高速/工具钢粉与铁粉和添加剂如硫化锰,硬脂酸锌,石墨和铌碳化物混合。所有高速/工具钢粉末都有其粒度分布和形态学分析。 VSI的热处理由空气淬火组成,然后在七个不同且等距的温度下进行两次回火,从100℃直至700℃。使用附着在样品上的热电偶型K的数据采集系统来确定空气淬火冷却速率。进行机械和物理性能测量,即表观密度,表观硬度和挤压径向强度。微观结构评估包括蚀刻VSI,然后使用扫描电子显微镜(SEM)和能量分散光谱(EDS)分析。结果表明,用AISI M3:2和M2高速钢粉混合物获得的VSI显示出在空气淬火和在600℃下进行双重回火后的表观硬度和压碎径向强度的最佳结果。

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