NASA NTRS · 19940031388
Transfer function modeling of damping mechanisms in distributed parameter models
Abstract
This work formulates a method for the modeling of material damping characteristics in distributed parameter models which may be easily applied to models such as rod, plate, and beam equations. The general linear boundary value vibration equation is modified to incorporate hysteresis effects represented by complex stiffness using the transfer function approach proposed by Golla and Hughes. The governing characteristic equations are decoupled through separation of variables yielding solutions similar to those of undamped classical theory, allowing solution of the steady state as well as transient response. Example problems and solutions are provided demonstrating the similarity of the solutions to those of the classical theories and transient responses of nonviscous systems.
Keep this discovery
Explore connections, maps & timelines
Slater, J. C., Inman, D. J.. 1994-06-01. Transfer function modeling of damping mechanisms in distributed parameter models. https://ntrs.nasa.gov/citations/19940031388
Cite the original work for its findings. Save a collection to share your selection of sources.