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Development of Impact Energy Distribution of Various Abrasives during Cyclic Impact/Abrasion Testing

机译:循环冲击/磨耗试验中各种磨料的冲击能分布的发展

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In heavy industries like mining or steel production vast amounts of loose materials need to be transported, relocated or otherwise processed. During these routines severe stresses are applied on heavy machinery components such as excavator grabs and clamshells, which ultimately lead to excessive wear. The dominant wear mechanisms under such conditions are impact and abrasion. The focus of this paper is to investigate the fracture behaviour of various abrasives as experienced under real application in the steel industry. Breaking events of abrasive particles affect the impact energies on tool equipment. The Cyclic Impact/Abrasion Test rig (CIAT) was applied to investigate the stability and fracture behaviour of the abrasives. Rotating counter bodies made of martensitic quenched and tempered steel were used to generate impact events on loose abrasive particles. After certain time intervals the abrasives were screened and particle size fractions documented. Impact energy is strongly dependent on size and density, as well as fragility and cracking of particles. As fracturing events diminish particle dimensions and shift size distributions to lower size fractions, each abrasive showed a distinctive impact energy distribution over the course of the test duration. Impact energy distributions of abrasives were correlated to wear rates of the steel samples for each abrasive used. The results indicate a distinct behaviour of each abrasive, yielding certain impact energy distributions. Depending on processing specific abrasive goods in actual applications, impact energies and associated wear loss can differ significantly.
机译:在采矿或钢铁生产等重工业中,需要运输,搬迁或以其他方式处理大量松散物料。在这些例行程序中,严重的压力会施加在重型机械部件上,例如挖掘机抓斗和翻盖,这最终会导致过度磨损。在这种情况下,主要的磨损机制是冲击和磨损。本文的重点是研究各种磨料在钢铁行业实际应用中的断裂行为。磨料颗粒的破裂事件会影响工具设备上的冲击能。循环冲击/磨蚀试验台(CIAT)用于研究磨料的稳定性和断裂行为。由马氏体淬火和回火钢制成的旋转计数器用于产生对松散磨料颗粒的冲击事件。在一定的时间间隔后,筛选磨料并记录粒度分数。冲击能量在很大程度上取决于尺寸和密度,以及颗粒的脆性和破裂。随着压裂事件减小颗粒尺寸和将尺寸分布转移到较低的尺寸分数,每种磨料在测试过程中均显示出独特的冲击能量分布。磨料的冲击能分布与所用每种磨料的钢样品的磨损率相关。结果表明每种磨料的不同行为,产生一定的冲击能量分布。根据实际应用中加工特定磨料的不同,冲击能和相关的磨损量可能会有很大差异。

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