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A multi-scale finite-element (FE) model of a fatigue specimen for an intermetallic matrix/platelet composite is developed to investigate the crack growth micromechanisms and interactions between the matrix, platelets and interfaces in the crack-tip microstructure under repeated cyclic loading.
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On the other hand, the inner microstructural region is sufficiently refined to allow detailed microstructural modelling of the effects of repeated cyclic loading on the matrix, platelets and matrix/platelet interfaces.
Specifically, we study how the optical transmittance depends on the stiffness mismatch between the matrix and the platelets, as well as their initial orientation and aspect ratio.
Once bound to this matrix, platelets become activated, allowing the formation of platelet-platelet interactions which is needed for thrombus growth.
The designing of nanocomposites with only the desired properties requires precise control of the dispersed structure of the silicate platelets in the polymer matrix, interactions between the matrix and silicate layers, and molecular ordering.
The deuterium atoms were definitely observed on the broad surface of TiC platelets, which indicated that the broad interface between the matrix and TiC was the main trapping site.
MWCNTs may bridge graphene platelets (GnPs) and promote their dispersion in the matrix, which would provide more interface area between the matrix and the fillers.
Due to the matrix shearing between the MMT platelets, the H-bonded sheets display a higher thermal stability as compared with unfilled drawn fibers.
The mechanical behavior of each of the bonds in the discrete lattice model is governed by the characteristic modular damage evolution of the organic matrix and the mineral bridges between the aragonite platelets.
At sites of vascular injury platelet accumulation begins with an interaction between the extracellular matrix collagen and the platelet receptor glycoprotein VI [28].
The diverse d-spacing value obtained for the PMMA nanocomposite with different compatibilizer materials is probably due to the amount of polymer penetrated between the clay platelets and the interaction between a particular compatibilizer with PMMA matrix.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com