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Assessment of abrasive powder behaviour during impact-abrasive wear of PCD elements

机译:PCD元件冲击磨损期间磨料粉末行为的评估

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摘要

One of the most suitable renewable energy sources is geothermal energy (providing heating as well as electricity). In order to achieve a suitable depth of drilling (several kilometres), it is required to increase the wear resistance, durability and reliability of key components of the deep drills. The effect of abrasive powders on impact energy transmission and/or damping during wear of Polycrystalline Diamond (PCD) cutting elements was evaluated due to its highest resistance in abrasive conditions. The characteristic features of wear mechanism are presented and discussion is supported by SEM images and EDS maps. The strength of silica sand, quartzite, granite, basalt, marble, limestone, pumice is compared to the force transmitted through the contact zone, damping characteristics and stiffness of abrasive particles. It was found that the laboratory impact-abrasive device enables to initiate damage, characteristic for specific abrasive powder, imitating drilling of such mineral. The mechanism of wear of PCD elements in impact-abrasive conditions depends on the strength and shape of abrasive particles as well as on their behaviour during impact (impact energy damping). The wear of PCD elements in the impact-abrasive conditions was close to zero and their use in new generations of deep drills is expected.
机译:最合适的可再生能源之一是地热能(提供加热以及电力)。为了实现合适的钻孔深度(几公里),需要提高深钻头的耐磨损性,耐用性和可靠性。由于其在磨料条件的最高阻力,评估了磨料粉末对多晶金刚石(PCD)切割元件磨损期间的冲击能量传递和/或阻尼的影响。介绍磨损机制的特征,并通过SEM图像和EDS地图支持讨论。将二氧化硅砂,石英岩,花岗岩,玄武岩,大理石,石灰石,浮石的强度与通过接触区域,阻尼特性和磨料颗粒刚度的力进行比较。发现实验室冲击磨料装置能够启动损伤,特异性磨料粉末,模仿这种矿物质的钻孔。冲击磨损条件下PCD元件的磨损机制取决于磨料颗粒的强度和形状以及在冲击期间的行为(冲击能量阻尼)。冲击磨料条件下的PCD元件的磨损接近于零,预计它们在新一代深钻时使用。

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