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首页> 外文期刊>Tribology Transactions >Ultrananocrystalline Diamond Film as a Wear-Resistant and Protective Coating for Mechanical Seal Applications
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Ultrananocrystalline Diamond Film as a Wear-Resistant and Protective Coating for Mechanical Seal Applications

机译:用于机械密封应用的耐磨和保护性涂层的超纳米晶金刚石膜

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Mechanical shaft seals used in pumps are critically important to the safe operation of the paper, pulp, and chemical process industry, as well as petroleum and nuclear power plants. Specifically, these seals prevent the leakage of toxic gases and hazardous chemicals to the environment and final products from the rotating equipment used in manufacturing processes. Diamond coatings have the potential to provide negligible wear, ultralow friction, and high corrosion resistance for the sliding surfaces of mechanical seals, because diamond exhibits outstanding tribological, physical, and chemical properties. However, diamond coatings produced by conventional chemical vapor deposition (CVD) exhibit high surface roughness (R{sub}a ≥ 1 μm), which results in high wear of the seal counterface, leading to premature seal failure. To avoid this problem, we have developed an ultrananocrystalline diamond (UNCD) film formed by a unique CH{sub}4/Ar microwave plasma CVD method. This method yields extremely smooth diamond coatings with surface roughness R{sub}a = 20-30 nm and an average grain size of 2-5 nm. We report the results of a systematic test program involving uncoated and UNCD-coated SiC shaft seals. Results confirmed that the UNCD-coated seals exhibited neither measurable wear nor any leakage during long-duration tests that took 21 days to complete. In addition, the UNCD coatings reduced the frictional torque for seal rotation by five to six times compared with the uncoated seals. This work promises to lead to rotating shaft seals with much improved service life, reduced maintenance cost, reduced leakage of environmentally hazardous materials, and increased energy savings. This technology may also have many other tribological applications involving rolling or sliding contacts.
机译:泵中使用的机械轴封对于造纸,纸浆和化学加工行业以及石油和核电厂的安全运行至关重要。具体而言,这些密封件可防止有毒气体和有害化学物质从制造过程中使用的旋转设备泄漏到环境和最终产品中。金刚石涂层具有为机械密封的滑动表面提供微不足道的磨损,超低摩擦和高耐腐蚀性的潜力,因为金刚石具有出色的摩擦学,物理和化学性能。然而,通过常规化学气相沉积(CVD)产生的金刚石涂层表现出高的表面粗糙度(R {sub}a≥1μm),这导致密封配合面的高磨损,导致过早的密封失效。为避免此问题,我们开发了一种通过独特的CH {sub} 4 / Ar微波等离子体CVD方法形成的超纳米晶金刚石(UNCD)膜。该方法产生极其光滑的金刚石涂层,其表面粗糙度R a = 20-30nm,平均晶粒尺寸为2-5nm。我们报告了涉及未涂层和UNCD涂层SiC轴封的系统测试程序的结果。结果证实,在经过21天才能完成的长时间测试中,涂有UNCD的密封件没有可测量的磨损,也没有泄漏。此外,与未涂层的密封件相比,UNCD涂层将密封件旋转的摩擦扭矩降低了五到六倍。这项工作有望使旋转轴密封件具有更长的使用寿命,更低的维护成本,减少对环境有害的材料的泄漏并提高节能效果。该技术还可能具有涉及滚动或滑动接触的许多其他摩擦学应用。

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