首页> 外文会议>Society of Tribologists and Lubrication Engineers annual meeting amp; exhibition 2009 >FRICTION IN METAL FORMING PROCESSES - A STUDY USING EXPERIMENTS AND SIMULATION
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FRICTION IN METAL FORMING PROCESSES - A STUDY USING EXPERIMENTS AND SIMULATION

机译:金属成形过程中的摩擦-实验与模拟研究

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摘要

Surface texture of the die plays an important role on friction during metal forming. In the present study, unidirectional and random surface finishes were produced on hardened steel plate surfaces. To understand the influence of surface texture on the friction, experiments were conducted using Al-Mg alloy pins that slid against steel plates of different surface texture. In the sliding experiments, a high value of coefficient of friction was observed when the pins slid perpendicular to the sliding direction and a low value of friction occurred when the pins slid on the random surfaces. FE simulations were performed using the measured friction values to understand the stress and strain evolutions of various surface textures. The numerical results showed that the states of stress and strain rates are strongly influenced by friction at the interface, and hence would influence the final material microstructure. To substantiate the numerical results, laboratory compression tests were conducted. Surface textures on the die were attained so as to experience different friction values at different locations. A large variation in the microstructure at these locations was observed during experiments, verifying the hypothesis that surface texture and friction influence fundamental material behavior.
机译:模具的表面纹理对金属成型过程中的摩擦起重要作用。在本研究中,在硬化钢板表面上产生了单向和随机的表面光洁度。为了了解表面纹理对摩擦的影响,我们使用可在不同表面纹理的钢板上滑动的Al-Mg合金销进行了实验。在滑动实验中,当销垂直于滑动方向滑动时观察到较高的摩擦系数值,而当销在随机表面上滑动时则观察到较低的摩擦值。使用测得的摩擦值进行有限元模拟,以了解各种表面纹理的应力和应变演变。数值结果表明,应力和应变率的状态受界面摩擦的强烈影响,因此会影响最终的材料微观结构。为了证实数值结果,进行了实验室压缩测试。在模具上获得表面纹理,以便在不同位置经历不同的摩擦值。在实验过程中观察到了这些位置的微观结构的巨大变化,从而验证了表面纹理和摩擦影响基本材料行为的假设。

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