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Heat treatment-microstructure- mechanical/tribological property relationships in austempered ductile iron

机译:奥氏体球墨铸铁的热处理-微观结构-力学/摩擦学特性关系

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Austempered Ductile Iron (ADI) can offer an excellent combination of low cost, design flexibility, good machinability, high strength-to-weight ratio, good toughness, good wear resistance and fatigue strength. Although ADI has found quite wide application in some industries, its use in automotive parts production has been limited. The properties of ADI can be tailored by changing the heat treatment schedule. In this research a Ni-Cu-Mo ADI was subjected to heat treatment schedules involving various austenitizing and austempering process times and temperatures. The mechanical (hardness, toughness) and tribological (scuffing) properties were determined and they were related to both the microstructures and the heat treatment procedures. The highest scuffing resistance is obtained in ADI with a feathery ausferrite microstructure. Such a microstructure also produces the highest toughness but hardness values are only at the Grade I or II levels.
机译:奥氏体球墨铸铁(ADI)可提供低成本,设计灵活性,良好的机加工性,高的重量重量比,良好的韧性,良好的耐磨性和疲劳强度的出色组合。尽管ADI已在某些行业中得到了广泛的应用,但其在汽车零件生产中的使用受到了限制。 ADI的属性可以通过更改热处理时间表进行调整。在这项研究中,对Ni-Cu-Mo ADI进行了热处理计划,其中涉及各种奥氏体化和奥氏体化工艺时间和温度。确定了机械性能(硬度,韧性)和摩擦学性能(擦伤性),它们与微观结构和热处理程序有关。在具有羽毛状奥氏体微结构的ADI中可获得最高的耐划伤性。这种微结构也可产生最高的韧性,但硬度值仅在I级或II级水平。

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