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Microstructure and Properties of the AlCrSi(O)N Tool Coatings by Arc Ion Plating

机译:弧离子电镀铝罐(O)N工具涂层的组织及性质

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Aluminum rich nitride coatings are often used to protect cutting tools and prolong their service life. In this work, a preoxidation technique and duplex coating design were combined to further improve the bearing capacity and heat resistance of cutting tools. The Al-Cr-Si-N, Al-Cr-Si-O-N, and Al-Cr-Si-N/Al-Cr-Si-O-N duplex coatings were developed by arc ion plating, respectively. The morphology, phase constituents, mechanical and tribological properties of the coatings were characterized and tested by SEM, XRD, a micro-hardness tester, scratch tester, and tribometer. The results showed the coating became more compact and smoother after oxygen doping. However, the Al-Cr-Si-N coating presented the best mechanical properties and tribological behaviors. Its hardness and critical load showed the highest values, which were about 4000 HV and 81 N, respectively. A friction coefficient of 0.67 and wear rate of 1.4 × 10?3 μm3/N·mm were also the lowest values in the study. The three coatings were deposited on the same solid carbide end mills and performed the cutting tests under same conditions. By comparison, the Al-Cr-Si-N coated tool presented the longest tool life and minimum cutting force when cutting C1045 medium-carbon steel. After 90 min of dry milling, the width of the flank wear band (VB) of the AlCrSiN coated tool reached 135 μm, which was much lower than that of the other two coated tools.
机译:富含富含氮化铝涂层通常用于保护切割工具并延长其使用寿命。在这项工作中,结合了预氧化技术和双面涂层设计,进一步提高了切削刀具的承载力和耐热性。通过电弧离子镀层显影Al-Cr-Si-N,Al-Cr-Si-O-N和Al-Cr-Si-N / Al-Cr-Si-O-N双链体涂层。通过SEM,XRD,微硬度测试仪,划痕测试仪和摩擦计来表征和测试涂层的形态,相成分,机械和摩擦学性质。结果表明,涂​​料在氧气掺杂后涂层变得更加紧凑且更光滑。然而,Al-Cr-Si-N涂层呈现了最佳的机械性能和摩擦学行为。其硬度和临界负荷显示出最高值,分别为约4000HV和81n。摩擦系数为0.67,磨损率为1.4×10?3μm3/ n·mm也是该研究中最低的值。将三个涂层沉积在相同的固体碳化物端铣刀上,并在相同条件下进行切割测试。相比之下,在切割C1045中碳钢时,Al-Cr-Si-N涂层工具呈现最长的工具寿命和最小切割力。在干铣削90分钟后,腹腔涂层工具的侧面磨损带(VB)的宽度达到135μm,远低于另外两个涂覆的工具。

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