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Thermal and microstructural characterization of a novel ductile cast iron modified by aluminum addition

机译:铝加入改性新型延性铸铁的热和微观结构

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摘要

In high-temperature applications, like exhaust manifolds, cast irons with a ferritic matrix are mostly used. However, the increasing demand for higher-temperature applications has led manufacturers to use additional expensive materials such as stainless steels and Ni-resist austenitic ductile cast irons. Thus, in order to meet the demand while using low-cost materials, new alloys with improved high-temperature strength and oxidation resistance must be developed. In this study, thermodynamic calculations with Thermo-Calc software were applied to study a novel ductile cast iron with a composition of 3.5wt% C, 4wt% Si, 1wt% Nb, 0-4wt% Al. The designed compositions were cast, and thermal analysis and microstructural characterization were performed to validate the calculations. The lowest critical temperature of austenite to pearlite eutectoid transformation, i.e., A(1), was calculated, and the solidification sequence was determined. Both calculations and experimental data revealed the importance of aluminum addition, as the A(1) increased by increasing the aluminum content in the alloys, indicating the possibility of utilizing the alloys at higher temperature. The experimental data validated the transformation temperature during solidification and at the solid state and confirmed the equilibrium phases at room temperature as ferrite, graphite, and MC-type carbides.
机译:在高温应用中,如排气歧管,主要使用具有铁素体矩阵的铸造铁磁。然而,对更高温度应用的需求不断增加,LED制造商使用额外的昂贵材料,例如不锈钢和Ni-Dirce奥氏体铸铁。因此,为了满足使用低成本材料的同时,必须开发具有改善的高温强度和抗氧化性的新合金。在这项研究中,应用了热钙软件的热力学计算,用于研究一种新型延性铸铁,其组合物为3.5wt%c,4wt%si,1wt%Nb,0-4wt%Al。施放设计的组合物,进行热分析和微观结构表征以验证计算。计算奥氏体至珠光体共析转化的最低临界温度,即(1),测定凝固序列。计算和实验数据都揭示了铝的重要性,因为通过增加合金中的铝含量来增加A(1),表明在更高温度下利用合金的可能性。实验数据在固化过程中验证了转化温度,并在固态处验证,并在室温下确认平衡相,作为铁氧体,石墨和MC型碳化物。

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