Comparison of nonlinear modeling methods for the composite rubber clamp
DOI10.1007/S10483-024-3114-6MaRDI QIDQ6604280
Xumin Guo, Hui Ma, Bing Wang, Xin Wang, Yiming Cao, Hui Li, Author name not available (Why is that?)
Publication date: 12 September 2024
Published in: AMM. Applied Mathematics and Mechanics. (English Edition) (Search for Journal in Brave)
genetic algorithmexperimental validationBouc-Wen modelvibration responsepipeline systemamplitude-dependent characteristiccubic stiffness force model
Vibrations in dynamical problems in solid mechanics (74H45) Experimental work for problems pertaining to mechanics of deformable solids (74-05) Composite and mixture properties (74E30) Numerical and other methods in solid mechanics (74S99) Mathematical modeling or simulation for problems pertaining to mechanics of deformable solids (74-10)
Cites Work
- Vibration response of multi-span fluid-conveying pipe with multiple accessories under complex boundary conditions
- Improved frequency modeling and solution for parallel liquid-filled pipes considering both fluid-structure interaction and structural coupling
- Nonlinear vibration analysis of pipeline considering the effects of soft nonlinear clamp
- Adjacent mode resonance of a hydraulic pipe system consisting of parallel pipes coupled at middle points
- Dynamic Characteristics of Fluid-Conveying Pipes with Piecewise Linear Support
This page was built for publication: Comparison of nonlinear modeling methods for the composite rubber clamp
Report a bug (only for logged in users!)Click here to report a bug for this page (MaRDI item Q6604280)