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Experimental Analysis on the Frictional Behaviour of Drawbeads in Sheet Metal Forming

机译:钣金成形中拉延筋摩擦行为的实验分析

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摘要

In sheet metal forming, drawbeads are commonly used to control uneven material flow, which may cause defects such as wrinkles, fractures, surface distortion and springback. Although friction may not directly change the limiting strain of steel sheets, the tribological conditions in the contact zone between the sheet surface and the tool surface play an important role in determining the limits of the forming process. Friction in the drawbead contact zones affects the flow of the material in the tool and is used deliberately to control the stamping process. Therefore in this study, the frictional behaviour of drawbeads is experimentally investigated by the drawbead friction test. To characterize the effect of processing variables on the friction coefficients, tests are performed for various sheets, lubricants and bead materials suffering different surface treatments. The results obtained from the drawbead friction test show that the friction and drawing characteristics of deforming sheets were strongly influenced by the strength of sheet, viscosity of lubricant and hardness of bead surface.
机译:在金属板成型中,拉珠通常用于控制不均匀的材料流动,这可能会导致诸如皱纹,断裂,表面变形和回弹之类的缺陷。尽管摩擦可能不会直接改变钢板的极限应变,但是钢板表面和工具表面之间的接触区中的摩擦学条件在确定成形过程的极限方面起着重要作用。拉延筋接触区域中的摩擦会影响工具中材料的流动,并故意用于控制冲压过程。因此,在这项研究中,通过拉延筋摩擦试验对拉延筋的摩擦性能进行了实验研究。为了表征加工变量对摩擦系数的影响,对经受了不同表面处理的各种板材,润滑剂和胎圈材料进行了测试。从拉延筋摩擦试验获得的结果表明,变形板的摩擦和拉延特性受到板强度,润滑剂粘度和滚道表面硬度的强烈影响。

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