| Applied Sciences | |
| An Approximation-Based Design Optimization Approach to Eigenfrequency Assignment for Flexible Multibody Systems | |
| Ilaria Palomba1  Roberto Belotti2  Erich Wehrle2  Renato Vidoni2  | |
| [1] Department of Industrial Engineering, University of Padova, Via Venezia 1, 35121 Padova, Italy;Faculty of Science and Technology, Free University of Bozen-Bolzano, Piazza Università 5, 39100 Bolzano, Italy; | |
| 关键词: eigenfrequency assignment; flexible multibody systems; parametric modal analysis; inverse eigenvalue problem; | |
| DOI : 10.3390/app112311558 | |
| 来源: DOAJ | |
【 摘 要 】
The use of flexible multibody simulation has increased significantly over recent years due to the increasingly lightweight nature of mechanical systems. The prominence of lightweight engineering design in mechanical systems is driven by the desire to require less energy in operation and to reach higher speeds. However, flexible lightweight systems are prone to vibration, which can affect reliability and overall system performance. Whether such issues are critical depends largely on the system eigenfrequencies, which should be correctly assigned by the proper choice of the inertial and elastic properties of the system. In this paper, an eigenfrequency assignment method for flexible multibody systems is proposed. This relies on a parametric modal model which is a Taylor expansion approximation of the eigenfrequencies in the neighborhood of a configuration of choice. Eigenfrequency assignment is recast as a quadratic programming problem which can be solved with low computational effort. The method is validated by assigning the lowest eigenfrequency of a two-bar linkage by properly adding point masses. The obtained results indicate that the proposed method can effectively assign the desired eigenfrequency.
【 授权许可】
Unknown