2012 EJRNL PP Changcheng Du 1.pdf?
Terbatas Irwan Sofiyan
» ITB
Terbatas Irwan Sofiyan
» ITB
Internal resonance in nonlinear vibration of functionally graded (FG) circular cylindrical
shells in thermal environment is studied using the Hamiltonian dynamics formulation. The
material properties are considered to be temperature-dependent. Based on the K´arm´an-Donnell’s
nonlinear shell theory, the kinetic and potential energy of FG cylindrical thin shells are formulated.
The primary target is to investigate the two-mode internal resonance, which is triggered
by geometric and material parameters of shells. Following a secular perturbation procedure, the
underlying dynamic characteristics of the two-mode interactions in both exact and near resonance
cases are fully discussed. It is revealed that the system will undergo a bifurcation in near resonance
case, which induces the dynamic response at high energy level being distinct from the motion at
low energy level. The effects of temperature and volume fractions of composition on the exact
resonance condition and bifurcation characteristics of FG cylindrical shells are also investigated.
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