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Finite element modelling of rubber cutting

机译:橡胶切割的有限元建模

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摘要

An explicit plane strain FE model using ABAQUS/Explicit was developed to analyze rubber cutting using high-speed steel (HSS) tools. The initial and deformed meshes, as the cutting reaches steady state condition, are first described. The Neo-Hookean constitutive model for the hyperelastic material considering the effective stress failure criterion is then introduced. The advantages of applying explicit method on the simulation of rubber cutting process over its implicit counterpart are discussed. The model was used to predict cutting forces, chip shape, stress and strain fields, and strain energy distribution in the chip and workpiece. Orthogonal cutting experiments were conducted for several rake angles and feeds to validate the FE model. Good agreement was found between the predicted and measured cutting forces. Favorable cutting conditions for formation of a smooth machined surface were identified by both simulations and experiments. The finite element model provides new insight into the chip formation process of rubber cutting.
机译:开发了使用ABAQUS / Explicit的显式平面应变有限元模型,以分析使用高速钢(HSS)工具进行的橡胶切割。首先描述当切割达到稳态时的初始网格和变形网格。然后介绍了考虑有效应力破坏准则的超弹性材料的新霍克本构模型。讨论了将显式方法应用于橡胶切割过程的模拟方法优于其隐式方法的优点。该模型用于预测切削力,切屑形状,应力和应变场以及切屑和工件中的应变能分布。对多个前角和进给进行了正交切削实验,以验证有限元模型。在预测和测量的切削力之间找到了很好的一致性。通过仿真和实验,确定了形成光滑加工表面的有利切削条件。有限元模型为橡胶切割的切屑形成过程提供了新的见识。

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