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首页> 外文期刊>Faraday discussions >Why can TiAlCrSiYN-based adaptive coatings deliver exceptional performance under extreme frictional conditions?
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Why can TiAlCrSiYN-based adaptive coatings deliver exceptional performance under extreme frictional conditions?

机译:为什么基于TiAlCrSiYN的自适应涂层在极端摩擦条件下仍能提供出色的性能?

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摘要

Adaptive TiAlCrSiYN-based coatings show promise under the extreme tribological conditions of dry ultra-high-speed (500-700 m min~(-1)) machining of hardened tool steels. During high speed machining, protective sapphire and mullite-like tribo-films form on the surface of TiAlCrSiYN-based coatings resulting in beneficial heat-redistribution in the cutting zone. XRD and HRTEM data show that the tribo-films act as a thermal barrier creating a strong thermal gradient. The data are consistent with the temperature decreasing from ~1100-1200 °C at the outer surface to ~600 °C at the tribo-film/coating interface. The mechanical properties of the multilayer TiAlCrSiYN/TiAlCrN coating were measured by high temperature nanoindentation. It retains relatively high hardness (21 GPa) at 600 °C. The nanomechanical properties of the underlying coating layer provide a stable low wear environment for the tribo-films to form and regenerate so it can sustain high temperatures under operation (600 °C). This combination of characteristics explains the high wear resistance of the multilayer TiAlCrSiYN/TiAlCrN coating under extreme operating conditions. TiAlCrSiYN and TiAlCrN monolayer coatings have a less effective combination of adaptability and mechanical characteristics and therefore lower tool life. The microstructural reasons for different optimum hardness and plasticity between monolayer and multilayer coatings are discussed.
机译:适应性TiAlCrSiYN基涂层在干燥的超高速(500-700 m min〜(-1))硬化工具钢的极端摩擦条件下显示出良好的前景。在高速加工过程中,基于TiAlCrSiYN的涂层表面会形成保护性蓝宝石和莫来石状摩擦膜,从而在切削区域产生有益的热分布。 XRD和HRTEM数据表明,摩擦膜起着热屏障的作用,产生了很强的热梯度。数据与温度从外表面的约1100-1200°C降至摩擦膜/涂层界面的约600°C一致。通过高温纳米压痕法测量了多层TiAlCrSiYN / TiAlCrN涂层的机械性能。它在600°C时仍具有较高的硬度(21 GPa)。底层涂层的纳米机械性能为摩擦膜的形成和再生提供了稳定的低磨损环境,因此它可以在工作温度(600°C)下维持高温。这些特性的结合说明了多层TiAlCrSiYN / TiAlCrN涂层在极端工作条件下的高耐磨性。 TiAlCrSiYN和TiAlCrN单层涂层在适应性和机械特性方面的结合不太有效,因此刀具寿命较短。讨论了单层和多层涂层之间不同的最佳硬度和塑性的微观结构原因。

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