首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Wear performance of (nc-AlTiN)/(a-Si_3N_4) coating and (nc-AlCrN)/(a-Si_3N_4) coating in high-speed machining of titanium alloys under dry and minimum quantity lubrication (MQL) conditions
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Wear performance of (nc-AlTiN)/(a-Si_3N_4) coating and (nc-AlCrN)/(a-Si_3N_4) coating in high-speed machining of titanium alloys under dry and minimum quantity lubrication (MQL) conditions

机译:在干和最小量润滑(MQL)条件下高速加工钛合金时(nc-AlTiN)/(a-Si_3N_4)涂层和(nc-AlCrN)/(a-Si_3N_4)涂层的磨损性能

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摘要

Dry machining and minimum quantity lubrication (MQL) machining which are two types of green manufacturing processes have vast potentials for machining of titanium alloys. Tool coating is one key factor to realize high speed machining and green manufacturing. However, the tool coatings used presently in machining of titanium alloys cannot meet with the requirement of high speed machining and green manufacturing processes. The nanocomposite coatings can be alternativly applied in high-speed machining of α+β phase titanium alloy Ti-6Al-4V. In this research, the wear rate, wear pattern and wear mechanism of two kinds of nanocomposite coatings, (nc-AlTiN)/(a-Si_3N_4) and (nc-AlCrN)/(a-Si_3N_4), in dry and MQL conditions were investigated. Results showed that (1) MQL condition, which has cooling and lubricating effects, was found to have more significant influence in improving the tool life as compared to dry condition. Furthermore, the (nc-AlTiN)/(a-Si_3N_4) coated tool was confirmed to be more suitable for machining of titanium alloy than (nc-AlCrN)/(a-Si_3N_4) coated tool under MQL condition, which emphasizes the significance of matching between cutting fluids and coating materials. (2) The slower wear rate of (nc-AlTiN)/(a-Si_3N_4) coated tool in MQL condition was obtained than that of the (nc-AlCrN)/(a-Si_3N_4) coated tool. As a result, MQL condition can greatly prolong the tool life of (nc-AlTiN)/(a-Si_3N_4) coated tool while has minor influence on improving the tool life of (nc-AlCrN)/(a-Si_3N_4) coated tool. (3) Adhesive wear was observed to be the main wear type. The MQL technique not only has cooling and lubricating effects on nanocomposite coated tool, but also helps to form powerful protective layer. In addition, in MQL condition, the (nc-AlTiN)/(a-Si_3N_4) coated tool only suffered adhesive wear while the (nc-AlCrN)/(a-Si_3N_4) coated tool suffered adhesive, diffusion and oxidation wear. In contrast, when turning tests were performed under dry cutting condition, adhesive wear and oxidation wear might be the main wear types for the two coated carbide tools.
机译:干式加工和最小量润滑(MQL)加工是绿色制造过程的两种类型,具有加工钛合金的巨大潜力。工具涂层是实现高速加工和绿色制造的关键因素。但是,目前用于钛合金加工的工具涂层不能满足高速加工和生坯制造工艺的要求。该纳米复合涂层可以替代性地应用于α+β相钛合金Ti-6Al-4V的高速加工中。在这项研究中,在干燥和MQL条件下,两种纳米复合材料涂层(nc-AlTiN)/(a-Si_3N_4)和(nc-AlCrN)/(a-Si_3N_4)的磨损率,磨损模式和磨损机理分别为调查。结果表明:(1)与干燥条件相比,具有冷却和润滑作用的MQL条件对改善工具寿命具有更大的影响。此外,在MQL条件下,证实(nc-AlTiN)/(a-Si_3N_4)涂层的刀具比(nc-AlCrN)/(a-Si_3N_4)涂层的刀具更适合加工钛合金。切削液和涂料之间的匹配。 (2)获得的(nc-AlTiN)/(a-Si_3N_4)涂层刀具在MQL条件下的磨损速率比(nc-AlCrN)/(a-Si_3N_4)涂层刀具的磨损速率慢。结果,MQL条件可以大大延长(nc-AlTiN)/(a-Si_3N_4)涂层刀具的刀具寿命,而对提高(nc-AlCrN)/(a-Si_3N_4)涂层刀具的刀具寿命影响很小。 (3)观察到粘着磨损是主要的磨损类型。 MQL技术不仅对纳米复合涂层工具具有冷却和润滑作用,而且还有助于形成强大的保护层。此外,在MQL条件下,(nc-AlTiN)/(a-Si_3N_4)涂层的工具仅遭受粘合剂磨损,而(nc-AlCrN)/(a-Si_3N_4)涂层的工具遭受粘合,扩散和氧化磨损。相反,在干切削条件下进行车削测试时,粘合剂磨损和氧化磨损可能是两种涂层硬质合金刀具的主要磨损类型。

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