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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >A novel method of assessing and predicting coated cutting tool wear during Inconel DA 718 turning
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A novel method of assessing and predicting coated cutting tool wear during Inconel DA 718 turning

机译:一种新的评估和预测涂层切削刀具磨损在DA 718转动期间的涂布方法

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摘要

This work investigates the wear characteristics of two different coating systems deposited on cemented carbide tools and used in the finish turning of an Inconel DA718 aerospace alloy. The two coatings were: (a) a new nanocomposite multilayer Ti25Al65Cr10N/Ti20Al52Cr22Si8N PVD coating, and (b) an AlTiN benchmark coating. Four different cutting speeds (60, 80, 100 and 120 m/min) were employed during this study. Wear behavior was characterized using three-dimensional volumetric wear progression, as well as flank wear progression, wear mechanism evaluation, and cutting force analysis. A tool life predictive model was created for this process based on both 3D and flank wear patterns. The tool with the nanocomposite coating outperformed the AlTiN benchmark coating under higher speed conditions, and both tools performed best under a surface speed of 80 m/min. The primary wear mechanisms responsible for the performance of these coatings differ in relation to the adaptive behavior of the nanocomposite coating. In addition, tool wear predictions modeled under different cutting conditions demonstrated an estimated accuracy of 93%.
机译:该工作研究了沉积在粘合硬质合金工具上的两种不同涂层系统的磨损特性,并用于DA718航空航天合金的结束转动。两种涂层是:(a)一种新的纳米复合材料多层Ti25Al65CR10N / Ti20Al52Cr22Si8N PVD涂层,以及(B)Altin基准涂层。在本研究期间采用四种不同的切割速度(60,80,100和120m / min)。使用三维体积磨损进展,以及侧面磨损进展,磨损机理评估和切割力分析,表征磨损行为。基于3D和侧面磨损图案为该过程创建了一种刀具寿命预测模型。具有纳米复合涂层的工具在更高的速度条件下优于Altin基准涂层,并且两种工具在80米/分钟的表面速度下最佳。负责这些涂层性能的主要磨损机制与纳米复合涂层的自适应行为有关。此外,在不同切削条件下建模的刀具磨损预测显示了93%的估计精度。

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