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首页> 外文期刊>Surface & Coatings Technology >The effect of microstructure on abrasive wear of a Fe-Cr-C-Nb hardfacing alloy deposited by the open arc welding process
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The effect of microstructure on abrasive wear of a Fe-Cr-C-Nb hardfacing alloy deposited by the open arc welding process

机译:显微结构对通过电弧焊沉积的Fe-Cr-C-Nb堆焊合金磨粒磨损的影响

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摘要

The relationship between abrasive wear resistance and microstructure of a hardfacing alloy based on Fe-Cr-C-Nb system (CNO) was investigated. This material was developed for cladding, by an open arc welding technique, of components subjected to severe abrasive wear. The work undertaken included microstructural characterization and abrasion testing. Microstructural examinations of hardfaced layer showed that the microstructure of the alloy consisted of a large volume fraction of primary niobium carbides randomly dispersed in a eutectic matrix comprised of metastable austenite (gamma) and eutectic M7C3 carbides as well as a high volume fraction of primary M7C3. Abrasive wear tests, in low stress and high stress, showed that the developed Fe-Cr-C-Nb hardfacing alloy exhibited improved abrasive wear resistance in comparison with the conventional high carbon/high chromium hardfacing alloy with higher hardness and higher volume fraction of primary M7C3. Owing to its better wear resistance and its relatively low cost, the alloy CNO may be a successful replacement of the more conventional hardfacing material for the refurbishment of components subjected to severe abrasive wear in order to extend their service life. (C) 2015 Elsevier B.V. All rights reserved.
机译:研究了基于Fe-Cr-C-Nb系统(CNO)的堆焊合金的耐磨性与显微组织之间的关系。这种材料是通过明弧焊技术开发的,用于包覆严重磨损的部件。进行的工作包括微观结构表征和磨损测试。硬面层的显微组织检查表明,合金的显微组织由大量体积的原生碳化铌随机分布在由亚稳奥氏体(γ)和共晶M7C3碳化物组成的共晶基质中以及大量的原生M7C3组成。在低应力和高应力下的磨料磨损测试表明,与传统的高碳/高铬表面堆焊合金相比,开发的Fe-Cr-C-Nb堆焊合金具有更高的耐磨性和更高的初生体积分数,与传统的高碳/高铬堆焊合金相比,具有更高的耐磨性M7C3。由于其更好的耐磨性和相对较低的成本,合金CNO可以成功地替代更传统的表面堆焊材料,以翻新遭受严重磨蚀的部件,从而延长其使用寿命。 (C)2015 Elsevier B.V.保留所有权利。

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