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DECREASING BLADED DISK RESPONSE WITH DAMPERS ON A FEW BLADES. PART II: NONLINEAR AND BLADE-BLADE DAMPERS APPLICATIONS

机译:减少刀片上有阻尼器的圆盘反应。第二部分:非线性和叶片阻尼器的应用

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This two part paper focuses on the optimum placement of a limited number of dampers, i.e. fewer than the number of blades, on a bladed disk to induce the smallest possible amplitude of blade response with or without involuntary, random mistuning. Intentional mistuning is also considered as an option to reduce the amplitude of blade response and the pattern of two blade types (referred to as A and B blades) is then part of the optimization effort in addition to the location of the dampers on the disk.This second part of the investigation focuses on the application of the optimization algorithms developed in Part I to nonlinear dampers, more specifically friction dampers, as well as to the consideration of blade-blade dampers, linear or nonlinear (underplatform dampers). Additionally, the optimization of blade-only and blade-blade linear dampers will be extended to include uncertainty/variability in the damper properties that arise during the manufacturing and/or in-service. It is found that the optimum achieved without considering such uncertainty/variability is robust with respect to it.
机译:这两个部分纸张侧重于有限数量的阻尼器的最佳放置,即叶片上的叶片数量少于叶片,以引起或没有非自愿的,无意迷雾的最小可能的刀片响应幅度。故意迷信也被认为是减少叶片响应幅度的选项,并且除了磁盘上的阻尼器的位置之外,两个刀片类型(称为A和B叶片)的模式是优化工作的一部分。该研究的第二部分侧重于在第一部分开发到非线性阻尼器的优化算法的应用,更具体地说是摩擦阻尼器,以及考虑叶片叶片阻尼器,线性或非线性(底层堵塞器)。另外,仅刀片和刀片线性阻尼器的优化将被延长,以包括在制造和/或在役期间产生的阻尼器的不确定性/可变性。发现在不考虑这种不确定性/可变性的情况下实现的最佳实现是对其具有鲁棒的。

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