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Influence of microstructure composition on mechanical properties of austempered ductile iron

机译:组织组成对奥氏体球墨铸铁力学性能的影响

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Two austempered ductile iron (ADI) heats transformed at a temperature of 380 deg C in periods ranging from 2 minutes to 9 hours have been studied in detail, with emphasis on the relation between the microstructure matrix composition and mechanical properties. The matrix microstructure and mechanical properties of ADI are influenced especially by the dwell time (sometimes also referred to as holding time) at isothermal transformation temperature. ADI matrix called ausferrite consists primarily of acicular ferrite and stabilized austenite. However, for short dwells some amount of martensite can occur in the matrix, which degrades the mechanical properties of ADI. The ADI with optimal combination of mechanical properties was obtained for a transformation dwell 6f 60 minutes, when the maximum amount of stabilized austenite in the matrix microstructure was obtained.
机译:已经详细研究了两种奥氏体球墨铸铁(ADI)在380摄氏度的温度下在2分钟到9个小时的时间内转变的过程,并着重研究了显微组织基质组成与力学性能之间的关系。 ADI的基体组织和力学性能尤其受等温转变温度下的停留时间(有时也称为保持时间)的影响。称为奥氏体的ADI基质主要由针状铁素体和稳定的奥氏体组成。但是,对于短停留时间,基体中可能会出现一些马氏体,这会降低ADI的机械性能。当在基体微观结构中获得最大量的稳定奥氏体时,在6f 60分钟的转变停留时间内获得具有最佳机械性能组合的ADI。

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