TY - JOUR
T1 - Free flexural vibration of symmetric angle-ply triangular composite laminates
AU - Liew, K. M.
AU - Chiam, T. C.
PY - 1994/2/3
Y1 - 1994/2/3
N2 - This paper reports an extension of previous work [1] to the study of the free flexural vibration analysis of symmetrically laminated triangular plates. The analysis is performed by using a simple and straightforward pb-2 Rayleigh-Ritz method. A governing frequency equation for the laminated triangular plates with different combinations of free, simply supported or clamped edge conditions is derived. Although only the vibration frequencies for cantilevered right-angled and isosceles triangular plates are reported, the method is readily applied to general triangular laminated plates. In the present analysis, the effects of material properties, the number of layers and different fibre stacking sequences of various composites on the vibration frequencies are investigated. Convergence tests have been carried out for selected plate examples to demonstrate the accuracy of the solutions.
AB - This paper reports an extension of previous work [1] to the study of the free flexural vibration analysis of symmetrically laminated triangular plates. The analysis is performed by using a simple and straightforward pb-2 Rayleigh-Ritz method. A governing frequency equation for the laminated triangular plates with different combinations of free, simply supported or clamped edge conditions is derived. Although only the vibration frequencies for cantilevered right-angled and isosceles triangular plates are reported, the method is readily applied to general triangular laminated plates. In the present analysis, the effects of material properties, the number of layers and different fibre stacking sequences of various composites on the vibration frequencies are investigated. Convergence tests have been carried out for selected plate examples to demonstrate the accuracy of the solutions.
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U2 - 10.1006/jsvi.1994.1038
DO - 10.1006/jsvi.1994.1038
M3 - RGC 21 - Publication in refereed journal
SN - 0022-460X
VL - 169
SP - 633
EP - 654
JO - Journal of Sound and Vibration
JF - Journal of Sound and Vibration
IS - 5
ER -