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The paper presented deals with the fracture behaviour of ceramic laminates.
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In general, analytical models that describe the abrasive wear behaviour of ceramic materials do not take into account the presence of superficial flaws in ceramic coatings.
The rheological and flow behaviour of ceramic pastes with varying solids loadings (solids volume fraction) has been studied.
The employed model is explicit and simple, it can be used to reproduce the dynamic process of crack propagation in ceramic laminates and guide the design of the laminate's structure in the future.
Our simulations also show that, under the same impact velocity, the resistance of the target composed of the NS metal and ceramic laminates is remarkably stronger than that composed of coarse-grained metal and ceramic laminates.
Two different ceramic laminates composed of porous alumina and alumina/zirconia layers were designed and produced in the present work.
In other space specimens we incorporate metal patch inside the laminate beam to see the influence of these patch on the behaviour of the laminates.
Behaviour of fibre metal laminates subjected to localised blast loading: part II – quantitative analysis.
The behaviour of general laminates substantially differs from that of laminates with a symmetric layup or isotropic materials.
Behaviour of fibre metal laminates subjected to localised blast loading: part I – experimental observations and failure analysis.
The behaviour of composite laminates subject to transverse load introduction has been investigated experimentally and numerically.
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