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首页> 外文期刊>Surface & Coatings Technology >Microstructure and hardness characterisation of laser coatings produced with a mixture of AlSI 420 stainless steel and Fe-C-Cr-Nb-B-Mo steel alloy powders
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Microstructure and hardness characterisation of laser coatings produced with a mixture of AlSI 420 stainless steel and Fe-C-Cr-Nb-B-Mo steel alloy powders

机译:AlSI 420不锈钢和Fe-C-Cr-Nb-B-Mo钢合金粉末混合物制成的激光涂层的组织和硬度表征

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Fe-C-Cr-Nb-B-Mo alloy powder and AlSI 420 SS powder are deposited using laser cladding to increase the hardness for wear resistant applications. Mixtures from 0 to 100 wt.% were evaluated to understand the effect on the elemental composition, microstructure, phases, and microhardness. The mixture of carbon, boron and niobium in the Fe-C-Cr-Nb-B-Mo alloy powder introduces complex carbides into a Fe-based matrix of AlSI 420 SS which increases its hardness. Hardness increased linearly with increasing Fe-C-Cr-Nb-B-Mo alloy, but substantial micro cracking was observed in the clad layer at additions of 60 wt.% and above; related to a transition from a hypoeutectic alloy containing alpha-Fe/alpha' dendrites with an (Fe,Cr)(2)B and gamma-Fe eutectic to primary and continuous carbo-borides M2B (where M represents Fe and Cr) and M-23(B,C)(6) carbides (where M represents Fe, Cr, Mo) with MC particles (where M represents Nb and Mo). The highest average hardness, for an alloy without micro cracking, of 952 HV was observed in a 40 wt.% alloy. High stress abrasive scratch testing was conducted on all alloys at various loads (500, 1500, 2500 N). Alloy content was found to have a strong effect on the wear mode and the abrasive wear rate, and the presence of micro-cracks was detrimental to abrasive wear resistance. (C) 2016 Elsevier B.V. All rights reserved.
机译:Fe-C-Cr-Nb-B-Mo合金粉末和AlSI 420 SS粉末使用激光熔覆沉积,以增加耐磨性的硬度。评估了0至100 wt。%的混合物,以了解其对元素组成,微观结构,相和显微硬度的影响。 Fe-C-Cr-Nb-B-Mo合金粉末中的碳,硼和铌的混合物将复杂的碳化物引入AlSI 420 SS的铁基基体中,从而增加了硬度。硬度随Fe-C-Cr-Nb-B-Mo合金的增加而线性增加,但在60%(重量)或以上时,在覆层中观察到明显的微裂纹;与从含有(Fe,Cr)(2)B和γ-Fe共晶的α-Fe/α'树突的亚共晶合金过渡到初级和连续碳硼化物M2B(其中M代表Fe和Cr)和M带有MC粒子(其中M表示Nb和Mo)的-23(B,C)(6)碳化物(其中M表示Fe,Cr,Mo)。在40%(重量)的合金中,观察到无微裂纹合金的最高平均硬度为952 HV。在所有负载(500、1500、2500 N)下对所有合金进行了高应力磨料刮擦测试。发现合金含量对磨损模式和磨料磨损速率具有强烈影响,并且微裂纹的存在不利于耐磨性。 (C)2016 Elsevier B.V.保留所有权利。

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