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To capture the observed fundamental mechanisms, significantly different from classical continua, a mechanical model based on a strong nonlocal theory is applied in which an intrinsic length reflects a characteristic length of the microstructure.
A mechanical model based on the innovative concepts of quantized fracture mechanics was developed to predict the bonding strength and estimate the fracture toughness of the coating on the basis of experimental data from tensile tests.
The simplified mechanical model based on this geometrical description is a truss type model.
Both algorithms determine the probability of failure considering the failure scenarios achieved by the mechanical model based on Fick's diffusion law.
Therefore, an evolutive elastoplastic mechanical model based on a modified Drucker Prager (D P) yield criterion was proposed by Cui and Fall (2016a).
The blade stresses are calculated from a dynamic mechanical model based on a two dynamic degree of freedom.
A comprehensive mechanical model based on the nonlinear large deflection beam theory for the deepwater SLWR transfer process is developed.
A comprehensive mechanical model based on the nonlinear large deformation beam theory for simulating the deepwater SLWR is proposed.
A mechanical model based on fracture energy provides the background for the theoretical explanation of the debonding phenomena.
The present continuum mechanical model based on these "artificial" test data can be efficiently implemented into a finite element formulation.
A mechanical model, based on the component approach, is then proposed and a detailed description of the model assumptions, component characterisation, overall considerations and model validation is presented.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com