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Investigation on Tribological Behavior of Advanced High Strength Steels: Influence of Hot Stamping Process Parameters

机译:高强度高强度钢的摩擦学行为研究:热冲压工艺参数的影响

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摘要

In order to investigate the friction and wear behavior of high strength steel in hot stamping process, a hot strip drawing tribo-simulator is developed and the friction coefficient, which is an important parameter in the finite element modeling, is measured. The results have shown that the friction coefficient remains almost unchanged until temperature reaches 500℃. It then increases sharply as temperature is increased from 500 to 600℃. It has also been shown that the friction coefficient decreases as the drawing speed increases. The change in the dominate wear mechanism as the temperature and the drawing speed increases has been identified from SEM analyses of the worn surface. The dominate wear mechanism is the groove cutting at temperatures between room temperature and 500℃, which changes to the adhesive wear at temperatures above 500℃. The main wear mechanism is the adhesive wear at 25 mm/s, which changes to the slight groove cutting at 75 mm/s.
机译:为了研究高强度钢在热冲压过程中的摩擦磨损性能,开发了一种热轧带钢摩擦模拟器,并测量了摩擦系数,该系数是有限元建模中的重要参数。结果表明,摩擦系数在温度达到500℃之前几乎保持不变。然后随着温度从500℃升高到600℃而急剧增加。还已经表明,摩擦系数随着拉拔速度的增加而减小。从磨损表面的SEM分析可以确定随着温度和拉拔速度的增加,主要磨损机理的变化。主要的磨损机理是在室温至500℃之间的沟槽切割,而在高于500℃的温度下粘合剂会磨损。主要的磨损机理是粘合剂的磨损速度为25 mm / s,变为轻微的切槽速度为75 mm / s。

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