An Improved Microslip Model for Variable Normal Loads
Author:
Publisher
Springer International Publishing
Link
http://link.springer.com/content/pdf/10.1007/978-3-319-06590-8_14
Reference20 articles.
1. Yang BD, Menq CH (1998) Characterization of contact kinematics and application to the design of wedge dampers in turbomachinery blading: part 1—Stick-slip contact kinematics. J Eng Gas Turbine Power 120:410–417
2. Sanliturk KY, Ewins DJ, Stanbridge AB (2001) Underplatform dampers for turbine blades: theoretical modelling, analysis and comparison with experimental data. J Eng Gas Turbine Power 123:919–929
3. Csaba G, Modelling of a microslip friction damper subjected to translation and rotation. In: Proceeding of ASME Gas turbine and aeroengine congress and exhibition, 99-GT-149
4. Panning L, Sextro W, Popp K (2003) Spatial dynamics of tuned and mistuned bladed disks with cylindrical and wedge-shaped friction dampers. Int J Rotating Mach 9:219–228
5. Cigeroglu E, An N, Menq CH (2009) Forced response prediction of constrained and unconstrained structures coupled through frictional contacts. J Eng Gas Turbine Power 131:022505
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