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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >High-energy particle impact wear resistance of hard coatings and their application in hydroturbines
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High-energy particle impact wear resistance of hard coatings and their application in hydroturbines

机译:硬质涂料的高能粒子冲击耐磨性及其在水轮机中的应用

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摘要

The problem of erosion due to silt in a number of Indian hydro power stations is found to he quite serious, especially in those located in the Himalayan region. Erosion is a function of different parameters such as silt size, hardness, concentration, quantity, shape, velocity and base material properties. In most cases, this can be minimised by controlling the above-mentioned parameters. During monsoon season, it becomes impossible to control these parameters which cause erosion. So, it is essential to know their effects. Wear, which occurs due to low and high-energy particle impact, can be controlled by velocity or by controlling silt size, shape and concentration. The low energy impact wear can also be controlled by providing suitable hard coatings. However, this becomes critical for high particle impact wear. An experimental study was undertaken for understanding its nature. In this study, hard coatings such as hard chrome plating, plasma nitriding, D-gun spraying and boronising were studied for high-energy impact wear resistance. Boronising appears to be excellent for this, followed by D gun sprayed WC + 12Co coating. Based on this experimental study, boronising is being field-tried on a component which is prone to erosion due to high-energy particle impacts.
机译:在印度的许多水力发电站中,由于淤泥引起的侵蚀问题非常严重,特别是在喜马拉雅地区。侵蚀是不同参数的函数,例如淤泥大小,硬度,浓度,数量,形状,速度和基础材料特性。在大多数情况下,可以通过控制上述参数将其最小化。在季风季节,无法控制这些导致侵蚀的参数。因此,了解它们的作用至关重要。由于低和高能粒子撞击而产生的磨损,可以通过速度或通过控制淤泥的大小,形状和浓度来控制。低能量冲击磨损也可以通过提供合适的硬质涂层来控制。但是,这对于高颗粒冲击磨损至关重要。为了理解其性质进行了实验研究。在这项研究中,研究了诸如高强度镀铬,等离子渗氮,D-gun喷涂和渗硼等硬质涂层的高能冲击耐磨性。硼化处理似乎是极好的选择,然后用D枪喷涂WC + 12Co涂层。根据这项实验研究,正在对由于高能粒子撞击而易于腐蚀的组件进行渗硼试验。

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