论文标题

具有增量电势配方的弹性杆上滑动环的动态建模

Dynamic modeling of a sliding ring on an elastic rod with incremental potential formulation

论文作者

Huang, Weicheng, Xu, Peifei, Liu, Zhaowei

论文摘要

刚性环和柔性电缆之间的机械相互作用在日常生活(吊衣服)和工程系统(关闭系绳网)中都可以找到广泛的应用。提出了用于在可变形的一维(1D)杆状对象上滑动环动态分析的减小阶方法。与将关节环离散为多个节点和边缘进行触点检测和数值模拟的传统方法相反,单个点用于减少模型的顺序。为了确保滑动环和柔性杆不会偏离所需位置,使用增量电位理论制定新的屏障功能。随后,通过延迟的耗散方法获得切线摩擦力之间的相互作用。所提出的屏障功能和相关的摩擦功能是C2连续的,因此可以通过隐式时间稳定的时间稳定方案来求解非线性弹性动力系统。数值框架最初应用于可用于验证的分析解决方案的简单示例。然后,考虑了多个复杂的实践工程示例来展示所提出方法的有效性。简化的环形 - 统计相互作用模型具有增强图像动画中视觉效果的现实性的能力,同时促进了用于空间碎片删除系统设计的优化。

Mechanical interactions between rigid rings and flexible cables find broad application in both daily life (hanging clothes) and engineering systems (closing a tether-net). A reduced-order method for the dynamic analysis of sliding rings on a deformable one-dimensional (1D) rod-like object is proposed. In contrast to the conventional approach of discretizing joint rings into multiple nodes and edges for contact detection and numerical simulation, a single point is used to reduce the order of the model. To ensure that the sliding ring and flexible rod do not deviate from their desired positions, a new barrier function is formulated using the incremental potential theory. Subsequently, the interaction between tangent frictional forces is obtained through a delayed dissipative approach. The proposed barrier functional and the associated frictional functional are C2 continuous, hence the nonlinear elastodynamic system can be solved variationally by an implicit time-stepping scheme. The numerical framework is initially applied to simple examples where the analytical solutions are available for validation. Then, multiple complex practical engineering examples are considered to showcase the effectiveness of the proposed method. The simplified ring-to-rod interaction model has the capacity to enhance the realism of visual effects in image animations, while simultaneously facilitating the optimization of designs for space debris removal systems.

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