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Influence of tribological parameters on S335 steel filing Ti-W-N in dry sliding wear: Prediction model and sliding condition optimization

机译:摩擦学参数对干滑动磨损S335钢锉TI-W-N的影响:预测模型及滑动条件优化

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摘要

In the present paper, dry sliding wear tests were performed on S335 steel coated with hard layer (Ti-W-N) with thickness at 2 mu m at different sliding velocities (2.5 and 5 cm/s), sliding distances (9.42 and 18.80 m), and applied loads (2 and 4 N). These tests have been studied using a pin-on-disc machine, and the results are presented. Mathematical models for dynamic friction coefficient, wear volume or volume loss, and total roughness were developed using the response surface methodology (RSM). Wear mechanisms for S335 steel were characterized by scanning electron microscopy. Two wear mechanisms have been identified irrespective of the applied load: crack wear occurs at the lowest sliding distances and delamination wear occurs at the highest. Also, results indicated that by increasing the sliding velocity and sliding distance, a transition from crack wear to delamination wear occurs with a corresponding maximum in the loss of volume due to wear.
机译:在本文中,在涂有硬层(Ti-Wn)的S335钢上进行干滑动磨损试验,厚度在不同的滑动速度(2.5和5cm / s),滑动距离(9.42和18.80米) ,并施加载荷(2和4 n)。 已经使用引脚盘机研究了这些测试,并提出了结果。 使用响应面方法(RSM)开发了动态摩擦系数,磨损体积或体积损失和总粗糙度的数学模型。 通过扫描电子显微镜表征S335钢的磨损机构。 已经识别了两种磨损机构,而不管施加的载荷如何:在最低滑动距离处发生裂缝磨损,并且最高发生分层磨损。 而且,结果表明,通过增加滑动速度和滑动距离,从磨损引起的体积损失的最大值发生从裂缝磨损到分层磨损的过渡。

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