首页> 外文期刊>International journal of applied mechanics >ADAPTIVE INCREMENTAL FINITE ELEMENT PROCEDURE FOR SOLVING ELASTOPLASTIC FRICTIONAL CONTACT PROBLEMS SUBJECTED TO NORMAL AND TANGENTIAL LOADS
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ADAPTIVE INCREMENTAL FINITE ELEMENT PROCEDURE FOR SOLVING ELASTOPLASTIC FRICTIONAL CONTACT PROBLEMS SUBJECTED TO NORMAL AND TANGENTIAL LOADS

机译:求解法向力和切向力的弹塑性摩擦接触问题的自适应增量有限元程序

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This paper presents a numerical model for analyzing the stresses and displacements of deformable bodies in contact with the presence of friction and material nonlinearity. Based on the finite element method (FEM), the elastoplastic frictional contact problem is formulated as an incremental convex programming model (ICPM) under inequality contact constraints and friction conditions. The classical Coulomb's friction law and the Prandtl-Reuss flow rule with the von Mises yield criterion are used to simulate the interface friction conditions and the elastoplastic behavior of the contacting bodies, respectively. The Lagrange multiplier approach is adopted for imposing the contact constraints. Furthermore, an effective adaptive incremental procedure is developed for solving the elastoplastic frictional contact problems. Examples for the frictional contact having advancing and receding nature are analyzed. The obtained results prove the ability of the developed procedure to investigate the sequence of different events during monotonic application of external loads. In addition, the results elucidate the effect of external side force on the friction behavior in the presence of plastic deformation. Good agreement has been found with published results.
机译:本文提出了一个数值模型,用于分析在存在摩擦和材料非线性的情况下可变形体的应力和位移。基于有限元方法(FEM),在不平等接触约束和摩擦条件下,将弹塑性摩擦接触问题公式化为增量凸规划模型(ICPM)。经典的库仑摩擦定律和带有von Mises屈服准则的Prandtl-Reuss流动规则分别用来模拟接触体的界面摩擦条件和弹塑性行为。拉格朗日乘数法用于施加接触约束。此外,开发了一种有效的自适应增量过程来解决弹塑性摩擦接触问题。分析具有前进和后退性质的摩擦接触的实例。所获得的结果证明了所开发程序能够研究单调施加外部载​​荷期间不同事件的顺序。此外,结果阐明了在塑性变形存在下,外力对摩擦性能的影响。已找到与公开结果一致的结果。

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