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首页> 外文期刊>Tribology in Industry >HfN Coating of ASSAB 17 Steel by PVD Method and its Effects on 6063-T5 Aluminum Alloy Turning
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HfN Coating of ASSAB 17 Steel by PVD Method and its Effects on 6063-T5 Aluminum Alloy Turning

机译:PVD法通过PVD方法HFN涂层ASSAB 17钢及其对6063-T5铝合金转弯的影响

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The industrial tool performance inspires the study of the machining of several materials with low production downtime. Aluminum is well-known for its high strength-to-weight ratio when compare both plastic and raft, thus making it advantageous for aerospace, construction and transport applications. However, aluminum machining damages the cutting tool with diverse wear mechanisms (adhesion, abrasion), thus suggesting a need for a new coating material. Previous studies show a high performance in abrasion resistance of Hafnium nitride [HfN] coated tools in turning of AISI1020 steel. This article evaluates the performance of [HfN] coated and uncoated burins (ASSAB 17) through roughing of Aluminum profiles by temperature sensing at the tool/material interface, workpiece roughness measurement and inspection of the cutting tool wear. Scanning electron microscopy and confocal microscopy were used to identify tool wear. A digital temperature sensing device displaying infrared long-wavelength was designed to examine the temperature due to its correlation on the tool wear. A significant improvement during aluminum roughing was observed with the use of [HfN] coatings, due to increase of the wear resistance of the ASSAB 17 burin, thus improving the surface finish.
机译:工业工具性能激发了几种材料加工的研究,生产了低生产停机时间。在比较塑料和筏子时,铝以其高强度重量比而闻名,从而有利于航空航天,建筑和运输应用。然而,铝加工损坏了具有多样化磨损机制(粘附,磨损)的切削工具,从而表明需要一种新的涂层材料。以前的研究表明,在AISI1020钢的转向转动中氮化铪涂层工具的耐磨性高性能。本文通过在工具/材料界面,工件粗糙度测量和切割工具磨损的检查中,通过温度传感粗加工来评估[HFN]涂层和未涂覆的生物蛋白(ASSAB17)的性能。扫描电子显微镜和共聚焦显微镜用于识别工具磨损。旨在显示红外线长波长的数字温度传感装置,以检查温度由于其对工具磨损的相关性。通过使用[HFN]涂层,观察到铝粗加工期间的显着改善,由于ASSAB17 BURIN的耐磨性的增加,因此改善了表面光洁度。

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