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首页> 外文期刊>Archive for Rational Mechanics and Analysis >Time-Stepping Approximation of Rigid-Body Dynamics with Perfect Unilateral Constraints. I: The Inelastic Impact Case
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Time-Stepping Approximation of Rigid-Body Dynamics with Perfect Unilateral Constraints. I: The Inelastic Impact Case

机译:具有完美单边约束的刚体动力学的时步逼近。一:无弹性影响案例

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摘要

We consider a discrete mechanical system with a non-trivial mass matrix, subjected to perfect unilateral constraints described by the geometrical inequalities. We assume that the transmission of the velocities at impact is governed by Newton's Law with a coefficient of restitution e = 0 (so that the impact is inelastic). We propose a time-discretization of the second order differential inclusion describing the dynamics, which generalizes the scheme proposed in Paoli (J Differ Equ 211:247-281, 2005) and, for any admissible data, we prove the convergence of approximate motions to a solution of the initial-value problem.
机译:我们考虑具有非平凡质量矩阵的离散机械系统,该系统要经受由几何不等式描述的完美单边约束。我们假设撞击时的速度传递受牛顿定律控制,恢复系数为e = 0(因此撞击是无弹性的)。我们提议对描述动力学的二阶微分包含项进行时间离散化,从而推广了Paoli中提出的方案(J Differ Equ 211:247-281,2005),并且对于任何可接收的数据,我们证明了近似运动的收敛性。初值问题的解决方案。

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