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首页> 外文期刊>Optics & Laser Technology >Laser surface alloying of FeCoCrAlNi high-entropy alloy on 304 stainless steel to enhance corrosion and cavitation erosion resistance
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Laser surface alloying of FeCoCrAlNi high-entropy alloy on 304 stainless steel to enhance corrosion and cavitation erosion resistance

机译:FeCoCrAlNi高熵合金在304不锈钢上的激光表面合金化以增强耐腐蚀和抗气蚀性

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摘要

FeCoCrAINi high -entropy alloy coating was synthesized with premixed high -purity Co, Cr, Al and Ni powders on 304 stainless steel by laser surface alloying, aiming at improving corrosion and cavitation erosion resistance. Phase constituents, microstructure and microhardness were investigated using XRD, SEM, and microhardness tester, respectively. The cavitation erosion and electrochemical corrosion behavior of FeCoCrAINi coating in 3.5% NaCl solution were also evaluated using an ultrasonic vibrator and potentiodynamic polarization measurement Experimental results showed that with appropriate laser processing parameters, FeCoCrAINi coating with good metallurgical bonding to the substrate could be achieved. FeCoCrAINi coating was composed of a single BCC solid solution. The formation of simple solid solutions in HEAs was the combined effect of mixing entropy (Delta S-mix), mixing enthalpy (Delta H-mix), atom size difference (delta) and valence electron concentration (VEC), and the effect of Delta S-mix was much larger than that of the other factors. The microhardness of the FeCoCrAINi coating was similar to 3 times that of the 304 stainless steel. Both the corrosion and cavitation erosion resistance of the coating were improved. The cavitation erosion resistance for FeCoCrAINi HEA coating was similar to 7.6 times that of 304 stainless steel. The corrosion resistance was also improved as reflected by a reduction in the current density of one order of magnitude as compared with 304 stainless steel. (C) 2016 Elsevier Ltd. All rights reserved.
机译:FeCoCrAINi高熵合金涂层是通过激光表面合金化将高纯度Co,Cr,Al和Ni粉末预混合后在304不锈钢上合成的,目的是提高耐蚀性和抗气蚀性。分别使用XRD,SEM和显微硬度测试仪研究了相成分,显微组织和显微硬度。还使用超声振动器和电势极化测量评估了FeCoCrAINi涂层在3.5%NaCl溶液中的空化腐蚀和电化学腐蚀行为。实验结果表明,通过适当的激光加工参数,可以实现与基材具有良好冶金结合的FeCoCrAINi涂层。 FeCoCrAINi涂层由单一的BCC固溶体组成。在HEA中简单固溶体的形成是混合熵(Delta S-mix),混合焓(Delta H-mix),原子尺寸差(delta)和价电子浓度(VEC)的综合作用,以及Delta的影响S-mix比其他因素大得多。 FeCoCrAINi涂层的显微硬度约为304不锈钢的3倍。涂层的耐腐蚀性和抗气蚀性均得到改善。 FeCoCrAINi HEA涂层的抗气蚀性约为304不锈钢的7.6倍。与304不锈钢相比,电流密度降低了一个数量级,这反映出耐腐蚀性也得到了提高。 (C)2016 Elsevier Ltd.保留所有权利。

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