The Influence of Wall Thickness and Mould Temperature on Structure and Properties of Thin Wall Ductile Iron Castings

IF 0.6 Q4 METALLURGY & METALLURGICAL ENGINEERING Archives of Foundry Engineering Pub Date : 2023-11-06 DOI:10.24425/AFE.2019.127116
M. Górny, M. Kawalec, G. Witek, A. Rejek
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引用次数: 2

Abstract

The excellent property combination of thin wall ductile iron castings (TWDI), including thin wall alloyed cast iron (e.g. austenitic TWDI) has opened new horizons for cast iron to replace steel castings and forgings in many engineering applications with considerable cost benefits. TWDI is considered as a potential material for the preparation of light castings with good mechanical and utility properties, the cost of which is relatively low. In this study, unalloyed and high Ni-alloyed (25% Ni) spheroidal graphite cast iron, with an austenitic metallic matrix were investigated. The research was conducted for thin-walled iron castings with 2, 3 and 5mm wall thickness, using different mould temperature (20°C, and 160°C) to achieve various cooling rates. The metallographic examinations i.e. characteristic of graphite nodules, metallic matrix, and primary grains of austenite dendrites (in high-nickel NTWDI) and mechanical properties were investigated. The study shows that homogeneity of the casting structure of thin-walled castings varies when changing the wall thickness and mould temperature. Finally, mechanical properties of thin-walled ductile iron castings with ferritic-pearlitic and austenitic metallic matrix have been shown.
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壁厚和结晶器温度对薄壁球墨铸铁件组织和性能的影响
薄壁球墨铸铁(TWDI)的优异性能组合,包括薄壁合金铸铁(如奥氏体TWDI),为铸铁在许多工程应用中取代钢铸件和锻件开辟了新的领域,具有可观的成本效益。TWDI被认为是制备轻质铸件的潜在材料,具有良好的机械性能和实用性能,其成本相对较低。本研究研究了奥氏体基体的非合金和高镍合金(25% Ni)球墨铸铁。对壁厚为2,3和5mm的薄壁铸铁件进行了研究,使用不同的模具温度(20°C和160°C)来实现不同的冷却速度。研究了高镍NTWDI中奥氏体枝晶的石墨结节、金属基体和初生晶粒特征及其力学性能。研究表明,随着壁厚和模具温度的变化,薄壁铸件组织的均匀性发生变化。最后,研究了铁素体-珠光体和奥氏体金属基体薄壁球墨铸铁件的力学性能。
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来源期刊
Archives of Foundry Engineering
Archives of Foundry Engineering METALLURGY & METALLURGICAL ENGINEERING-
CiteScore
1.10
自引率
16.70%
发文量
0
期刊介绍: Thematic scope includes scientific issues of foundry industry: Theoretical Aspects of Casting Processes, Innovative Foundry Technologies and Materials, Foundry Processes Computer Aiding, Mechanization, Automation and Robotics in Foundry, Transport Systems in Foundry, Castings Quality Management, Environmental Protection. Why subscribe and read
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