首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Study of dry sliding wear characteristics of stellite 6B versus AISI M2 steel at various sliding velocities
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Study of dry sliding wear characteristics of stellite 6B versus AISI M2 steel at various sliding velocities

机译:在各种滑动速度下Stellite 6B与AISI M2钢的干滑动磨损特性研究

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摘要

The wear performance of Stellite 6B versus AISI M2 steel in dry sliding at various sliding velocities (from 0.95 to 4.71 m/s) were systematically studied by pin-on-disc wear test and analysis of debris, tribo-layers and worn surfaces of both pin and disc. The mechanical performance of pin and disc were also studied by hot hardness test. The results showed that Stellite 6B underwent a severe-to-mild wear transition with the increase of sliding velocity in the Stellite 6B alloy/steel tribo-system. The temperature at worn surface increased with the increase of velocity and load, leading to the oxidation of the worn surface and the variation of mechanical strength of pin and disc. It was the surface state rather than the variation of the mechanical strength that impacted the wear transition. The critical transition sliding velocity for the Stellite 6B alloys was 2.51 m/s, which divided the sliding velocities into two regions. When the velocity was among 0.95-2.51 m/s, the wear mechanism turn from abrasive and delamination wear to adhesive wear gradually, resulting in the decrease of wear rate. While in the region that the sliding velocity was above 2.51 m/s, oxidative wear prevailed and the wear rate decreased due to the formation of mechanically mixed layer (MML).
机译:通过针对盘式磨损测试和分析碎片,摩擦层和两者磨损表面,系统地研究了在各种滑动速度(0.95至4.71米处的干燥滑动中的磨损6B与AISI M2钢的磨损性能。销和盘。还通过热硬度测试研究了销和盘的机械性能。结果表明,随着Stellite 6B合金/钢铁摩擦系统中的滑动速度的增加,恒星6B经历了严重耐磨性的磨损过渡。磨损表面的温度随着速度和负载的增加而增加,导致磨损表面的氧化和销和盘的机械强度的变化。它是表面状态而不是撞击磨损过渡的机械强度的变化。脱晶6B合金的临界过渡滑动速度为2.51米/秒,将滑动速度分成两个区域。当速度为0.95-2.51 m / s时,磨损机构从磨料和分层磨损转向粘性磨损,导致磨损率降低。而在该区域中,滑动速度高于2.51米/秒,持续氧化磨损并且由于机械混合层(MML)的形成而导致磨损率降低。

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