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Effect of Plasma Nitriding Pretreatment on the Mechanical Properties of AlCrSiN-Coated Tool Steels

机译:等离子渗氮预处理对AlCrSiN涂层工具钢力学性能的影响

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摘要

Surface modification of steel has been reported to improve hardness and other mechanical properties, such as increase in resistance, for reducing plastic deformation, fatigue, and wear. Duplex surface treatment, such as a combination of plasma nitriding and physical vapor deposition, achieves superior mechanical properties and resistance to wear. In this study, the plasma nitriding process was conducted prior to the deposition of hard coatings on the SKH9 substrate. This process was done by a proper mixture of nitrogen/hydrogen gas at suitable duty cycle, pressure, and voltage with proper temperature. Later on, the deposition of gradient AlCrSiN coatings synthesized by a cathodic-arc deposition process was performed. During the deposition of AlCrSiN, CrN, AlCrN/CrN, and AlCrSiN/AlCrN were deposited as gradient interlayers to improve adhesion between the coatings and nitrided steels. A repetitive impact test (200k–400k times) was performed at room temperature and at high temperature (~500 °C) to assess impact resistance. The results showed that the tribological impact resistance for the synthesized AlCrSiN increased because of a progressive hardness support. The combination of plasma nitriding and AlCrSiN hard coatings is capable of increasing the life of molding dies and metal forging dies in mass production.
机译:据报道,对钢进行表面改性可改善硬度和其他机械性能,例如增加抵抗力,以减少塑性变形,疲劳和磨损。双重表面处理(例如等离子体氮化和物理气相沉积的结合)实现了卓越的机械性能和耐磨性。在这项研究中,先进行了等离子体氮化工艺,然后在SKH9基板上沉积了硬涂层。该过程是通过在适当的占空比,压力和电压以及适当的温度下,将氮气/氢气适当混合而成的。随后,进行了通过阴极电弧沉积工艺合成的梯度AlCrSiN涂层的沉积。在沉积AlCrSiN的过程中,沉积CrN,AlCrN / CrN和AlCrSiN / AlCrN作为梯度中间层,以改善涂层与氮化钢之间的附着力。在室温和高温(〜500°C)下进行了重复冲击试验(200k–400k次)以评估抗冲击性。结果表明,由于渐进的硬度支持,合成的AlCrSiN的耐磨耗性有所提高。等离子渗氮和AlCrSiN硬质涂层的结合能够延长批量生产中模具和金属锻造模具的寿命。

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