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Oxidation and Wear Mechanisms of FeCoCrNiMnAlx Cladding Layers at High-Temperature Condition

机译:高温条件下Fecocrnimnalx覆层层的氧化与磨损机制

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FeCoCrNiMnAlx high-entropy alloy (HEA) cladding layers were successfully fabricated on H13 steel by laser cladding. The microstructure and properties of the FeCoCrNiMnAlx HEA cladding layers were systematically studied. The influence of Al content on high-temperature wear resistance of HEAs was investigated by depth-of-field microscopy, XRD, SEM and EDS. Addition of Al element affected the mechanism of oxidation and strengthening of the cladding layers, and effectively promoted its anti-oxidant and abrasion resistance. Compared with the FeCoCrNiMn cladding layer, the FeCoCrNiMnAl0.75 cladding layer enhanced the anti-plastic deformation capacity by 7.1% and reduced oxidation weight gain and total wear weight loss at high temperature by 36.79% and 79.0%, respectively. The wear mechanisms of the cladding layer at high temperature were mainly oxidation wear and abrasive wear, while adhesive wear took a backseat.
机译:通过激光包层在H13钢上成功制造了Fecocrnimnalx高熵合金(Hea)覆层层。系统地研究了FecOrdnimnalx Hea覆层层的微观结构和性质。通过近场显微镜,XRD,SEM和EDS研究了Al含量对HEA的高温耐磨性的影响。添加Al元素影响覆覆层的氧化机理,并有效地促进其抗氧化剂和耐磨性。与Fecocrnimn包层层相比,FecOrdnimnal0.75包层的覆层层将抗塑性变形容量增强7.1%并降低氧化重量增益和高温的总磨损重量损失36.79%和79.0%。在高温下包层层的磨损机构主要是氧化磨损和磨料磨损,而粘合剂磨损则磨损。

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