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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.
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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 predicted crack density growth calculated for various laminates is in good agreement with published experimental results.
In addition, the influences of various laminates' lay-ups, dimensions and material properties are investigated to gain a thorough understanding of the bistable characteristics of bistable hybrid symmetric laminates (BHSLs).
This paper presents an approach to detect surface cracks in various composite laminates.
In a first part of this paper, the fatigue strength for various laminates of a carbon fibre reinforced thermoplastic material (AS4/APC-2) was investigated experimentally up to 109 cycles.
The design of the laminate structure of the CFRP is then optimized, considering various laminate processes.
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.
Flax yarn and cotton thread were used to stitch preforms of woven fabric and unidirectional flax fibre laminates in various stitch densities.
It is shown that geometrical parameters of optimal multi-rank, high-porosity laminates are different in various ranges of volume fractions and anisotropy level of external stress.
First, the mechanical behaviour is described of a unidirectional fibre-reinforced lamina as the basic building block of a laminate, showing stress strain relationships in various coordinate systems.
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