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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Effect of roughness geometry on friction during micro V-die bending by using finite element method
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Effect of roughness geometry on friction during micro V-die bending by using finite element method

机译:有限元法研究粗糙度几何形状对微型V型模弯曲时摩擦的影响

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摘要

Interfacial conditions such as friction and roughness tend to be the dominant process characteristics when simulating sheet metal forming processes. Therefore, accurately modeling the tool workpiece interface is essential. Additionally, the accuracy of conventional methods of modeling the interface is insufficient for microforming. This work presents a novel approach for describing friction by modeling the geometric roughness of the tool surface instead of using the conventional friction coefficient or factor in dry contact. This finite element-based model was validated in terms of loads and metal flow in two cases of micro V-die bending processes. One process modeled a conventional flat tool surface with a friction coefficient. Another process modeled a rough tool surface described as roughness geometry with zero friction. In addition to elucidating how the roughness geometry of a tool surface affects friction during microforming, this work provides fundamental information about the interfacial conditions of the contact surface as well as improved accuracy and flexibility compared to conventional friction models. Another important application of the friction calculation results in this study is in microforming applications.
机译:在模拟钣金成形过程时,诸如摩擦和粗糙度之类的界面条件往往是主要的过程特征。因此,准确建模工具工件界面至关重要。另外,传统的界面建模方法的精度不足以进行微成型。这项工作提出了一种新颖的方法来描述摩擦,方法是通过对工具表面的几何粗糙度建模,而不是使用干摩擦中的常规摩擦系数或系数。这个基于有限元的模型在两种微型V型模头弯曲工艺的情况下在载荷和金属流动方面得到了验证。一种方法是模拟具有摩擦系数的常规平面工具表面。另一种方法是将粗糙的工具表面建模为零摩擦的粗糙几何形状。除了阐明工具表面的粗糙度几何形状如何影响微成型过程中的摩擦力之外,这项工作还提供了有关接触面界面条件的基本信息,以及与常规摩擦模型相比提高的精度和柔韧性。这项研究中摩擦计算结果的另一个重要应用是微成型应用。

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