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Research on Tribological properties of Cast Iron at High-Speed Dry Sliding Condition

机译:高速干式滑动条件下铸铁摩擦学特性研究

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The friction and wear properties of cast iron with different graphite morphologies and matrix microstructure were investigated at high speed dry sliding against GCr15 steel on the MMS-1G high-speed tribometer apparatus. The various wear micro-mechanisms and tribo-metallographic phases were studied by using scanning electron microscopy. The results show that as friction material, vermicular iron exhibits excellent comprehensive tribological properties. The friction coefficient of cast iron sliding against GCr15 decreases while the wear rate increases with the increase of sliding speed, friction coefficient and wear rate decline with the increase of pearlite content. Under the experimental condition, the main wear mechanisms of flake iron are abrasive wear, of vermicular iron are abrasive wear and oxidative wear and of nodular iron are oxidative wear, abrasive wear and fatigue spalling.
机译:高速干燥对MMS-1G高速摩数计装置的高速干燥滑动,研究了不同石墨形态和基质微观结构的铸铁摩擦和磨损性能。通过使用扫描电子显微镜研究了各种磨损微机构和摩擦金相阶段。结果表明,作为摩擦材料,蠕虫铁表现出优异的综合性摩擦学特性。铸铁对GCR15滑动的摩擦系数降低,而随着珠光体含量的增加,磨损率随着滑动速度,摩擦系数和磨损率的增加而增加。在实验条件下,鳞片铁的主磨损机制是磨料的磨料磨料磨料磨损和氧化磨损和结节铁是氧化磨损,磨料磨损和疲劳剥落。

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