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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Experimental investigation of the tribological behavior and wear mechanisms of tool steel grades in hot stamping of a high-strength boron steel
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Experimental investigation of the tribological behavior and wear mechanisms of tool steel grades in hot stamping of a high-strength boron steel

机译:高强度硼钢热冲压工具钢牌号的摩擦学行为和磨损机理的实验研究

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摘要

In this study, the high temperature wear behavior of hot forming tool steel grades is investigated by successive sliding of a pre-alloyed Usibor1500P strip heated at high temperature. Experimental tests are performed at high temperature on an instrumented Deep-Drawing Process Simulator (DDPS). This laboratory pilot is employed to rank different steel grades used as tool materials in the hot-stamping process. The wear damage of the tool (die radius) is characterized by profilometry and SEM observations, and three quantitative criteria are determined from 2D profile measurements to assess adhesive and abrasive wear. Under examined conditions at high temperature, a predominant transfer mechanism is observed, while abrasive wear appears as minor damage. When the surface hardness of the tool material is not great enough, the sub-surface of the die radius can exhibit a plastic shear deformation of about 10 μm in depth. This leads to emission of wear debris coming from the cumulated cyclic plastic deformation of the sub-surface. In contrast, for high surface hardness, the adhesive wear rapidly reaches an asymptotic state.
机译:在这项研究中,通过在高温下加热的预合金Usibor1500P钢带的连续滑动,研究了热成形工具钢种的高温磨损行为。实验测试是在仪器深度拉伸过程模拟器(DDPS)上在高温下进行的。该实验室的飞行员被用来对热冲压过程中用作工具材料的不同钢种进行排名。刀具的磨损损伤(模具半径)通过轮廓测量和SEM观察来表征,并根据2D轮廓测量确定了三个定量标准,以评估粘合剂和磨料的磨损。在高温条件下,观察到主要的传递机理,而磨料磨损表现为较小的损坏。当工具材料的表面硬度不够高时,模具半径的子表面可表现出约10μm深度的塑性剪切变形。这导致了由于次表面累积的周期性塑性变形而产生的磨损碎屑。相反,对于高表面硬度,粘合剂的磨损迅速达到渐近状态。

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