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Cohesive elements were used to model the interface between matrix and fibres.
The micro-scale model of UDLT represents matrix and fibres by means of 3D solid elements.
The matrix and fibres were constructed using disc particles bonded together using parallel bonds, while the fibre/matrix interfaces were represented by a displacement-softening model.
The mixed mode stress-intensity factors are determined, and the effects of the geometrical and mechanical parameters related to matrix and fibres are discussed.
The growing environmental awareness is driving attention towards the development of ever more ecological and friendly materials, calling for the use of natural matrix and fibres in composite materials.
Additionally, mechanical properties were enhanced by the dispersion of GNP in nanocomposites but experienced a reduction in glass fibre composites because of the formation of a weak interface between the GNPs filled matrix and fibres.
Similar(53)
Both matrix and fibre-matrix interface were found to suffer from the applied exposition.
Both matrix and fibre tensile strengths must be taken into account as criteria.
Two multidirectional CFRP laminates were studied, possessing matrix and fibre dominated properties respectively.
The compatibility of matrix and fibre properties is one of the key parameters in the successful design of fibre reinforced cementitious composites.
Particular attention has been given to the response of the interfacial shear resistance between the matrix and fibre to loading rate at different fibre embedment length.
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