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In addition to the above subjective measure of the object detection performances at different sampling rates, we choose PSNR and root mean square error (RMSE) as objective evaluation parameters to further illustrate the performance of the proposed object detection model and compressive PCP at different sampling rates.
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This ability to model tensile and compressive behaviour using the same micromechanical mechanisms is considered to be a particularly attractive feature of the formulation, which removes the need for multi-parameter triaxial yield surfaces and evolution functions that bedevil many competitor models.
In the proposed plasticity model, tensile and compressive micro failure surfaces defined in the prescribed multiple fixed orientations were used to describe the directional nonlocality in the micro-structure of concrete, and the overall failure surface of the concrete was calculated by averaging the multi-oriented micro-surfaces.
Animal models of traumatic and compressive peripheral and central nerve injury and models of wound healing show consistent cytoprotective effects, with EPO correlating with reduced apoptosis, improved wound healing and reduced inflammation [ 11, 89].
Models for tensile and compressive mean stress effects have also been proposed based on the uniaxial test results.
Maximum principal stress failure criterion has been implemented for modeling both tensile and compressive behaviors at meso-scale.
Different volume fractions of desired geometry were fabricated by multimaterial fused deposition modeling (FDM) technology and compressive mechanical properties of the samples were obtained by mechanical tests.
This article reports on the experimental determination and finite element modeling of tensile and compressive mechanical properties of solid polycaprolactone (PCL) and of porous PCL scaffolds with one-dimensional, two-dimensional and three-dimensional orthogonal, periodic porous architectures produced by selective laser sintering (SLS).
The failure criterion and a damage model were introduced to model their unique tensile and compressive failure behavior.
beam, a theoretical model, called the mixed model, was carried out which considers the web as a smeared model subjected to tensile and compressive principal stresses and its interaction with the tensile and compressed chords.
The implants manufactured in the horizontal and inverted horizontal orientations were found to show the least deviation from the design model and the highest compressive strength resistance.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com