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Numerical studies indicate that the terms involving B 6 in Eq. (21) have unimportant effects on distribution of interlaminar stresses in various laminates, even for thick laminate.
Various laminates, with controlled and random stacking sequences, were analysed under typical boundary conditions and with the same hygrothermal loading.
The predicted crack density growth calculated for various laminates is in good agreement with published experimental results.
Further, based on the best combination obtained, two different (0 and 4 wt%) sandwich laminates are prepared to make relative comparison among various laminates.
Concurrent progressive damage analyses in different plies of various laminates are also investigated and some results which are rarely available in the literature are presented in this paper.
The solution is obtained using the recently developed mixed-field multiterm extended Kantorovich method, whose robustness, convergence and accuracy are illustrated for various laminates and loadings.
Similar(52)
The design of the laminate structure of the CFRP is then optimized, considering various laminate processes.
Comparison of model results to experimental data is presented for various laminate stacking sequences.
We present results of bending experiments in which laminate deflection and glass stress development have been monitored as a function of load for various laminate structures.
Simultaneously, tests on beams of various laminate layouts are performed to gain insights into the interaction of the two laminate materials and provide verification and validation data for the computational model.
An analytical model is developed to characterize the quasi-static response of such a composite to the applied fluid pressure for various laminate stacking sequences.
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