Fabrication of High Chromium White Iron Surface Layers on Ductile Cast Iron Substrate by Laser Surface Alloying

IF 1.2 4区 工程技术 Q3 ENGINEERING, MECHANICAL Strojniski Vestnik-Journal of Mechanical Engineering Pub Date : 2017-11-30 DOI:10.5545/SV-JME.2017.4379
D. Janicki
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引用次数: 14

Abstract

High chromium white iron surface layers (HWSLs) have been produced on a ductile cast iron EN-GJS-700-2 substrate by diode laser surface alloying with a direct injection of a pure chromium powder into the molten pool. The main objective of this study was to investigate the effect of laser alloying parameters on the microstructural evolution in the HWSLs. The composition of the uniformly alloyed HWSLs contained up to 14.4 wt.% Cr. Both hypoeutectic and eutectic high chromium white iron microstructures were obtained. The type and morphology of eutectic carbides are affected by both the chromium concentration in the molten pool and the solidification conditions. With increasing chromium content, the fraction of eutectic regions in the hypoeutectic HWSLs increases and the eutectic carbides become progressively smaller. The rodtype morphology of the M7C3 eutectic carbides was dominant in the eutectic HWSLs. An average hardness of the HWSLs was influenced by the size of carbide precipitations, and was 675 HV and 650 HV for hypoeutectic and eutectic compositions, respectively.
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激光表面合金化在球墨铸铁基体上制备高铬白口铁表面层
在球墨铸铁EN-GJS-700-2基体上,采用二极管激光表面合金化技术,在熔池中直接注入纯铬粉末,制备出了高铬白铁表面层。本研究的主要目的是研究激光合金化参数对HWSLs显微组织演变的影响。均匀合金化的高铬白铁合金的组成中Cr含量高达14.4 wt.%,同时获得了亚共晶和共晶高铬白铁组织。熔池中铬的浓度和凝固条件对共晶碳化物的类型和形态都有影响。随着铬含量的增加,亚共晶HWSLs中共晶区域的比例增加,共晶碳化物逐渐减少。共晶HWSLs中以M7C3共晶碳化物的棒状形态为主。合金的平均硬度受碳化物析出物大小的影响,亚共晶合金和共晶合金的平均硬度分别为675 HV和650 HV。
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来源期刊
CiteScore
3.00
自引率
17.60%
发文量
56
审稿时长
4.1 months
期刊介绍: The international journal publishes original and (mini)review articles covering the concepts of materials science, mechanics, kinematics, thermodynamics, energy and environment, mechatronics and robotics, fluid mechanics, tribology, cybernetics, industrial engineering and structural analysis. The journal follows new trends and progress proven practice in the mechanical engineering and also in the closely related sciences as are electrical, civil and process engineering, medicine, microbiology, ecology, agriculture, transport systems, aviation, and others, thus creating a unique forum for interdisciplinary or multidisciplinary dialogue.
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