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MICROSTRUCTURE AND MECHANICAL PROPERTIES OF PM STEELS ALLOYED WITH SILICON AND VANADIUM

机译:硅钒钒合金永磁钢的微观组织和力学性能

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The effects of silicon and vanadium additions on the mechanical properties and microstructures of PM alloy steels have been investigated. It has been demonstrated that the addition of these two elements increases the strength in both the sintered and heat treated conditions. With a pearlitic microstructure silicon strengthens the pearlite by solid solution strengthening of the ferrite while vanadium increases the strength of the pearlite by precipitation hardening of the ferrite. In addition, vanadium limits grain growth during austentitizing prior to oil quenching. By limiting austenite grain growth, the precipitates result in significant improvement in both strength and ductility. The effects of silicon and vanadium on hardenability were investigated by performing Jominy end quench tests and metallographic analysis. The addition of silicon and vanadium to high carbon (>0.8 w/o) PM steels suppresses the formation of grain-boundary carbides which permits carbon levels that are higher than those commonly used for commercial PM applications.
机译:研究了硅和钒的添加对PM合金钢的力学性能和组织的影响。已经证明,这两种元素的添加在烧结和热处理条件下均提高了强度。具有珠光体的微观结构,硅通过固溶强化铁素体来增强珠光体,而钒则通过铁素体的沉淀硬化来提高珠光体的强度。另外,钒在油淬火之前限制了奥氏体化过程中的晶粒长大。通过限制奥氏体晶粒的生长,析出物可显着提高强度和延展性。通过进行Jominy端淬试验和金相分析,研究了硅和钒对淬透性的影响。在高碳(> 0.8 w / o)PM钢中添加硅和钒会抑制晶界碳化物的形成,从而使碳含量高于商业PM应用中通常使用的碳含量。

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