Investigation into microstructure and mechanical properties of heavy section nickel alloyed austempered ductile iron in accordance with austempering parameters

Mohammad Ghoroghi, Nasser Varahram, Yasaman Perseh
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引用次数: 1

Abstract

Austempered ductile iron (ADI) is one of the most widely used types of ductile iron produced by austempering heat treatment. ADI heavy section parts are employed in different industries owing to their unique mechanical properties.

Cooling rate in thick parts is significantly low, so heavy section ductile iron parts should have an adequate austemperability for preventing pearlite formation in the middle of the casting. In order to achieve the proper austemperability and fully ausferritic structure, alloying elements like nickel are added to the melt.

The objective of this work is to study the role of austempering parameters on nickel alloyed ADI specimens fabricated from 75-mm-thick Y-block. Austempering temperature and time as main parameters in the austempering process are taken as the control variables. The heat treatment of austempering was performed at 320°C and 380°C for 60, 120, 180, and 240 min. It was possible to determine the best austempering conditions among those investigated in the paper, and the results showed that austempering at a higher temperature contributes to higher strength and hardness compared to lower austempering temperature. Furthermore, specimens that were austempered at 320°C for 120 min had better mechanical properties among other samples.

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根据等温回火参数对大断面镍合金球铁的组织和力学性能进行了研究
等温球铁(ADI)是通过等温热处理生产的最广泛使用的球墨铸铁类型之一。由于其独特的机械性能,ADI公司的大断面零件被应用于不同的行业。厚件的冷却速度明显较低,因此大断面球墨铸铁件应具有足够的耐高温性,以防止在铸造过程中形成珠光体。为了获得适当的奥氏体组织和完全的奥氏体组织,在熔体中加入了镍等合金元素。本研究的目的是研究等温淬火参数对75mm厚y型块制备的镍合金ADI试样的影响。在等温回火过程中,以温度和时间为主要参数作为控制变量。等温回火的热处理分别在320℃和380℃下进行60、120、180和240 min。结果表明,高温度的等温淬火比低温度的等温淬火具有更高的强度和硬度。另外,在320°C下等温回火120 min的试样具有较好的力学性能。
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