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Effect of Single and Duplex Thin Hard Film Coatings on the Wear Resistance of 1.2343 Tool Steel

机译:单双工薄硬膜涂层对1.2343工具钢耐磨性的影响

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摘要

In aluminum extrusion process, tool steels used as die materials suffer from mechanical, thermal and tribological stresses causing plastic deformation, wear and heat checking during hot metal flow. Thin hard film coatings like TiN, (Ti,Al)N and CrN are preferred in order to improve the surface properties of the tools. These coatings can reduce the friction force, minimize the adhesive interaction between the die and billet pairs and decrease the plastic deformation of the tool. In this study, effect of single (CrN and AlTiN) and duplex (CrN + AlTiN) thin hard films on the hot wear behavior of DIN 1.2343 tool steel was investigated. Wear tests were performed both at room temperature and elevated temperature to simulate the conditions of aluminum extrusion process. Based on the evaluation of coefficient of friction values, specific wear rates and worn surface examinations, the duplex coating, which had the best performance in the RT wear test showed good resistance to high temperature wear under the simulated aluminum extrusion conditions.
机译:在铝挤出工艺中,用作模具材料的工具钢患有机械,热和摩擦力的压力,导致热金属流动期间的塑性变形,磨损和热检查。薄膜涂层如锡,(Ti,Al)N和CrN是优选的,以改善工具的表面性质。这些涂层可以减少摩擦力,最小化模具和坯料对之间的粘合剂相互作用,并降低工具的塑性变形。在本研究中,研究了单(CRN和ALTIN)和双链体(CRN + ALTIN)薄硬膜对DIN 1.2343工具钢的热磨损行为的影响。在室温和升高的温度下进行磨损试验,以模拟铝挤出过程的条件。基于对摩擦系数的评价,特定磨损率和表面检查,双相涂层在RT磨损试验中具有最佳性能的双层涂层在模拟铝挤出条件下表现出对高温耐磨的良好抵抗力。

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