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Numerical method coupling finite elements and boundary elements to model forming process tools

机译:将有限元和边界元耦合到模型形成过程工具的数值方法

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Nowadays, the simulation of forming process is rather well integrated in the industrial numerical codes. However, in order to take into account the possible modifications of the tool during rates of working, a dedicated numerical software is currently developed within the laboratory Roberval, this software allows to simulate forming process. The tool is discretized by boundary elements and the product, which is subjected to non-linearities, is discretized by finite elements. For the product, an isotrope law of behaviour is integrated, and the damage is taken into account by the uncoupled Rice and Tracey model. This paper deals with a contact algorithm, coupling boundary elements and finite elements, programmed in the software KSP. For that, friction is described by the Coulomb law and the resolution of contact problems is done by the penalty method. An adaptive step has been developed in order to increase the robustness of the contact algorithm.
机译:如今,成形过程的模拟已很好地集成在工业数字代码中。但是,为了考虑到在工作速率期间可能对工具进行的修改,目前在实验室Roberval内部开发了专用的数值软件,该软件可以模拟成型过程。该工具通过边界元素离散化,承受非线性的乘积通过有限元素离散化。对于该产品,综合了行为的各向同性定律,并且通过不相关的Rice和Tracey模型将损害考虑在内。本文讨论了在KSP软件中编程的接触算法,耦合边界元素和有限元。为此,摩擦用库仑定律描述,而接触问题的解决则用罚分法完成。为了增加接触算法的鲁棒性,已经开发了自适应步骤。

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