论文标题
使用非线性模式对摩擦抑制系统的可靠性优化
Reliability optimization of friction-damped systems using nonlinear modes
论文作者
论文摘要
提出了一种用于设计具有摩擦接口的机械结构的新型概率方法。目标函数定义为实现强制振动响应的指定性能度量的可能性,但要受参数不确定性的影响。该方法在大量所需的设计评估中的实用性与非线性动态分析的计算效率严格有关。因此,提议基于非线性振动模式采用最近开发的参数降低订单模型(ROM),这可以促进计算负担减少几个数量级。该方法应用于带有下划线摩擦阻尼器的叶片圆盘的旋转周期性组件。与确定性方法相比,最佳阻尼器设计的鲁棒性显着提高,考虑到摩擦系数,激发水平和线性阻尼的不确定性。此外,证明了分段线性接触约束的量表不变性,这对于减少该系统分析的数值工作非常有用。
A novel probabilistic approach for the design of mechanical structures with friction interfaces is proposed. The objective function is defined as the probability that a specified performance measure of the forced vibration response is achieved subject to parameter uncertainties. The practicability of the approach regarding the extensive amount of required design evaluations is strictly related to the computational efficiency of the nonlinear dynamic analysis. Therefore, it is proposed to employ a recently developed parametric reduced order model (ROM) based on nonlinear modes of vibration, which can facilitate a decrease of the computational burden by several orders of magnitude. The approach was applied to a rotationally periodic assembly of a bladed disk with underplatform friction dampers. The robustness of the optimum damper design was significantly improved compared to the deterministic approach, taking into account uncertainties in the friction coefficient, the excitation level and the linear damping. Moreover, a scale invariance for piecewise linear contact constraints is proven, which can be very useful for the reduction of the numerical effort for the analysis of such systems.