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Effect of diamond-like carbon coating on corrosion rate of machinery steel HQ 805

机译:金刚石碳涂层对机械钢腐蚀速率的影响

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HQ 805 is known as a super strength alloys steel and widely applied in military equipment and, aircraft components, drilling device and so on. It is due to its excellent behavior in wear, fatigue, high temperature and high speed operating conditions. The weakness of this material is the vulnerablality to corrosion when employed in sour environments where hydrogen sulfide and chlorides are present. To overcome the problems, an effort should be made to improve or enhance the surface properties for a longer service life. There are varieties of coatings developed and used to improve surface material properties. There are several kinds of coating methods; chemical vapour deposition (CVD), physical vapour deposition (PVD), thermochemical treatment, oxidation, or plasma spraying. This paper presents the research result of the influence of Diamond-Like Carbon (DLC) coating deposited using DC plasma enhanced chemical vapor deposition (DC-PECVD) on corrosion rate (by potentiodynamic polarization method) of HQ 805 machinery steel. As a carbon sources, a mixture of argon (Ar) and methane (CH4) with ratio 76% : 24% was used in this experiment. The conditions of experiment were 400 °C of temperature, 1.2 mbar, 1.4 mbar, 1.6 mbar and 1.8 mbar of pressure of process. Investigated surface properties were hardness (microhardness tester), roughness (roughness test), chemical composition (Spectrometer), microstructure (SEM) and corrosion rate (potentiodynamic polarization). It has been found that the optimum condition with the lowest corrosion rate is at a pressure of 1.4 mbar with a deposition duration of 4 hours at a constant temperature of 400 °C. In this condition, the corrosion rate decreases from 12.326 mpy to 4.487 mpy.
机译:HQ 805被称为超强合金钢,广泛应用于军用设备,以及飞机部件,钻孔装置等。它是由于其磨损,疲劳,高温和高速操作条件的优异行为。当在存在硫化氢和氯化物的酸环境中使用时,这种材料的弱点是腐蚀的脆弱性。为了克服这些问题,应该努力改善或增强表面特性,以获得更长的使用寿命。有多种涂料开发并用于改善表面材料特性。有几种涂料方法;化学气相沉积(CVD),物理气相沉积(PVD),热化学处理,氧化或等离子体喷涂。本文介绍了使用DC等离子体增强的化学气相沉积(DC-PECVD)沉积的金刚石状碳(DLC)涂层对HQ 805机械钢的腐蚀速率(通过电位动力学偏振法)沉积的金刚石碳(DLC)涂层的影响。作为碳源,在该实验中使用比例76%:24%的氩(Ar)和甲烷(CH 4)的混合物。实验条件为400°C的温度,1.2毫巴,1.4毫巴,1.6毫巴和1.8毫巴的工艺压力。研究表面性质是硬度(显微硬度测试仪),粗糙度(粗糙度测试),化学成分(光谱仪),微观结构(SEM)和腐蚀速率(电位辐射极化)。已经发现,具有最低腐蚀速率的最佳条件是1.4毫巴的压力,沉积持续时间为4小时,恒定温度为400℃。在这种情况下,腐蚀速率从12.326 mpy降低到4.487 mpy。

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