首页> 外文期刊>Journal of Materials Science >Influence of martensite volume fraction and tempering time on tensile properties of partially austenitized in the (alpha plus gamma) temperature range and quenched plus tempered ferritic ductile iron
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Influence of martensite volume fraction and tempering time on tensile properties of partially austenitized in the (alpha plus gamma) temperature range and quenched plus tempered ferritic ductile iron

机译:马氏体体积分数和回火时间对(α+γ)温度范围内部分奥氏体化和淬火加回火铁素体球墨铸铁的拉伸性能的影响

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In the present study, the effect of martensite volume fraction and tempering time on the tensile properties of ferritic ductile iron with dual matrix structure was investigated. For this purpose, specimens were intercritically annealed ( partially austenitized) in the two phase region (alpha + gamma) at various temperatures of 795 and 815 degrees C for 20 min and then quenched into oil held at 100 degrees C to obtain different martensite volume fractions. Some specimens were also conventionally heat treated (austenitized at 900 degrees C and then quenched + tempered) for a comparison reason. The results showed that a structure having proeutectoid ferrite plus martensite has been developed and volume fraction of proeutectoid ferrite and martensite can be controlled to influence the strength and ductility. Specimens quenched from the (alpha + gamma) temperature range exhibited much greater ductility than conventionally heat treated specimens. The tensile strength increased and ductility decreased with increasing martensite content. By increasing the tempering time, the yield and UTS decreased and ductility increased. The specimens tempered for 3 h and having 62% martensite volume fraction (MVF) exhibited the best combination of high strength and ductility. The tensile and proof stress of this material is much higher than pearlitic grades and ductility is lower than ferritic grades. The specimen tempered for 3 h and having similar to 25% MVF exhibited the best combination of high strength and ductility compared to ferritic grades. However its strength is slightly lower but the ductility is almost three times higher than pearlitic grades. (c) 2005 Springer Science + Business Media, Inc.
机译:在本研究中,研究了马氏体体积分数和回火时间对具有双基体结构的铁素体球铁的拉伸性能的影响。为此,将样品在两相区(α+γ)中于795和815摄氏度的不同温度下进行临界退火(部分奥氏体化)20分钟,然后淬火至保持在100摄氏度的油中以获得不同的马氏体体积分数。出于比较的原因,一些标本还进行了常规热处理(在900摄氏度下进行奥氏体化,然后淬火+回火)。结果表明,已经开发了具有共析铁素体和马氏体的结构,并且可以控制共析铁素体和马氏体的体积分数以影响强度和延展性。从(α+γ)温度范围淬灭的样品比常规热处理的样品具有更大的延展性。随着马氏体含量的增加,抗拉强度增加,延展性降低。通过延长回火时间,产量和UTS降低,延展性提高。回火3 h且马氏体体积分数(MVF)为62%的样品表现出高强度和延展性的最佳组合。这种材料的拉伸应力和屈服强度远远高于珠光体等级,而延展性低于铁素体等级。回火3小时且MVF接近25%的样品与铁素体钢种相比,表现出高强度和延展性的最佳组合。但是,它的强度略低,但延展性几乎是珠光体等级的三倍。 (c)2005年Springer Science + Business Media,Inc.

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