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Sliding wear behavior of a duplex stainless steel

机译:双相不锈钢的滑动磨损行为

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Duplex stainless steels contain similar amounts of austenite y and ferrite a. This two-phase microstructure leads to an excellent combination of mechanical properties and corrosion resistance. However, there are few works dealing with the wear behaviour of these steels. This paper aims to determine the sliding wear mechanisms of a duplex stainless steel type 2205. In order to do it, three different sliding velocities (0.2, 0.7 and 1.2 m/s) and six sliding distances (500, 1000, 2000, 3000, 4000 and 5000 m) were selected. The results show that wear rate depends on both sliding velocity and sliding distance. The wear mechanisms detected were plowing, microcracking and microcutting (typical mechanisms of fatigue wear). These mechanisms evolve according to sliding velocity and sliding distance, highlighting a transition zone in which wear rate is reduced.
机译:双相不锈钢含有类似量的奥氏体Y和铁氧体a。该两相微观结构导致机械性能和耐腐蚀性的优异组合。然而,处理这些钢的磨损行为的作品很少。本文旨在确定双面不锈钢2205型滑动磨损机制。为了做到这一点,三种不同的滑动速度(0.2,0.7和1.2米/秒)和六个滑动距离(500,1000,2000,3000,选择了4000和5000米)。结果表明,磨损率取决于滑动速度和滑动距离。检测到的磨损机构耕作,微裂化和微包(疲劳磨损的典型机制)。这些机构根据滑动速度和滑动距离而发展,突出显示磨损率降低的过渡区。

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