Research on the friction properties of DP600 stainless steel as a function of bending angle and pin diameter

S. Sanchez-Caballero, M. A. Selles, R. Pla-Ferrando, J. Seguí, M. Peydro
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引用次数: 2

Abstract

: The rapid evolution of materials and manufacturing processes, driven by global competi-tion and new safety and environmental regulations has had an impact on automotive structures (Body In White; BIW) manufacturing. The need for lighter vehicles, with more equipment, that are safer and eco-friendly at the same time, relates to the entire life cycle of the car. Car and steelmakers agree that weight reduction is possible, and the solution involves the use of new advanced high-strength steels. Thinner and stronger materials lead to higher demands on stamping, the most used manufacturing in BIW parts. The use of advanced high-strength steels raises new challenges, especially concerning the lubrication between the die and the sheet. To study the lubrication conditions of the stamping process, a sheet metal forming a simulator was developed. The simulator consists of two cylinders that pull the strip of steel and a pin in between. The angle between the cylinders can be adjusted from 0 to 90 degrees, which allows analysis of the effect of the stamping angle. The pull force and velocity can be set and measured, and the peripheric pin velocity, the strain, and the strain velocity can be measured as well. In this work, the tribological properties of Dual-Phase 600 stainless steel using different processing conditions have been analyzed. To this end, a factorial experiments design with twelve parameters that compare the behavior of different angles and diameters was run. The results showed that the friction coefficient increases by increasing the bending angle and decreases with pin diameter.
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DP600不锈钢摩擦性能随弯曲角和销径的变化规律研究
在全球竞争和新的安全和环境法规的推动下,材料和制造工艺的快速发展对汽车结构产生了影响(白车身;BIW)制造。对更轻、装备更多、同时更安全、更环保的车辆的需求关系到汽车的整个生命周期。汽车和钢铁制造商一致认为,减轻重量是可能的,解决办法包括使用新型先进的高强度钢材。更薄和更强的材料导致对冲压的更高要求,这是白车身零件中最常用的制造方法。先进的高强度钢的使用提出了新的挑战,特别是关于模具和板之间的润滑。为研究冲压成形过程中的润滑条件,研制了板料成形模拟器。模拟器由两个拉动钢带的圆柱体和中间的一个销钉组成。气缸之间的角度可以从0到90度调整,从而可以分析冲压角度的影响。可以设置和测量拉力和速度,还可以测量外周销速度、应变和应变速度。本文对双相600不锈钢在不同加工条件下的摩擦学性能进行了分析。为此,进行了12个参数的析因试验设计,比较了不同角度和直径的行为。结果表明:摩擦系数随弯曲角的增大而增大,随销径的增大而减小;
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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