Investigations of the parameters of the reinforcing structure in the form of a woven fabric of a polymer composite material were carried out by numerical technologies in order to determine the geometric and elastic-viscous parameters of the elementary periodic cell of the filler, which is regularly repeated in its architecture. The results obtained were used in the development of a computer system for designing and calculating the functional parameters of the unit cell of a reinforcing woven structure of a polymer composite. The created numerical images of the surface of the textile reinforcing structure made it possible to make adjustments to the results of model solutions that increase the accuracy of the software solution of the problem of multifunctional study of the filler parameters in order to highlight the functional properties of the unit periodic cell of the woven structure of the polymer composite.
The article formulates an algorithmic approach to the binarization method and shows the effectiveness of its implementation in relation to the analytical study on the surface density of a nonwoven structure, used as a reinforcing base of a composite materialaccording to the digital image of its surface. This method is considered to be the basis for determining the influence of external factors on the verification parameters of the model output of the average density indicatorsin the structure of the nonwoven material and predicting the structural properties of the composite material obtained on its basis.
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