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On the non-uniqueness of friction forces and the systematic computation of dynamic response boundaries for turbine bladed disks with contacts

机译:摩擦力的非唯一性及触头涡轮叶片磁盘动态响应边界的系统计算

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摘要

Turbine bladed disks with friction contacts may have a large scattering of dynamic response amplitudes in laboratory conditions even for two consecutive tests. The non-repeatability of experimental studies might directly be related to a physical phenomenon associated with an uncertainty in contact forces. This observation has also been computationally shown in many studies with non-unique contact forces and multiple responses obtained for the same set of inputs. This study presents a numerical aspect and a deeper insight for understanding the variability observed in the periodic vibration analysis of turbine bladed disks with friction damping. A novel method based on an optimization algorithm is proposed to systematically detect the nonlinear dynamic response boundaries. The main idea of the developed approach is to minimize the system loss factor which ultimately determines the damping ability of the structure. In the meanwhile, algebraic set of dynamic balance equations are simultaneously imposed as the nonlinear constraints to be satisfied. In this way, two cases with the minimum values of the positive and negative loss factor determine the upper and the lower boundaries, respectively. The method is validated and demonstrated on a realistic turbine bladed disk with friction interfaces on the shrouds and on the blade-disk interface. Several case studies are performed on different cases by using the state of the art 2D friction model with varying normal load. The results show that the limits of the variability range can be successfully captured by utilizing the offered optimization algorithm. The great contribution of the study is also discussed with some accompanying numerical drawbacks.
机译:具有摩擦触点的涡轮叶片磁盘可以在实验室条件下具有大的动态响应幅度散射,即使是两个连续的测试。实验研究的不可重复性可能与与接触力的不确定性相关的物理现象直接相关。这种观察结果也在计算上显示在许多具有非独特接触力的研究中,以及获得相同一组输入的多个响应。该研究提出了一个数字方面,更深入地了解在具有摩擦阻尼的涡轮机叶片磁盘的周期性振动分析中观察到的变异性。提出了一种基于优化算法的新方法来系统地检测非线性动态响应边界。开发方法的主要思想是最大限度地减少最终确定结构阻尼能力的系统损耗因素。同时,作为满足的非线性约束,同时施加代数的动态平衡方程。以这种方式,两种情况下,正负损失因子的最小值分别确定上边界和下边界。该方法在逼真的涡轮机叶片上验证并在护罩上和刀片磁盘接口上摩擦接口。通过使用具有不同正常负载的技术2D摩擦模型的状态对不同情况进行几种情况研究。结果表明,可以通过利用所提供的优化算法来成功捕获可变性范围的限制。该研究的巨大贡献也与一些伴随的数值缺点进行了讨论。

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