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The accessibility of recyclable virtual specimens has, in a way, democratized anatomy.
Failure predictions of the C/C virtual specimens under different void fraction and location were presented.
The geometrical rules adjust the shape and smoothness of the generated virtual specimens to match data from imaged specimens.
These virtual specimens were subjected to a computational uniaxial tension test to calculate their tensile strengths and elastic moduli.
Incorporating the effect of pore size and pore clustering quantified previously using the theory of critical distances a fatigue life prediction could be obtained for the virtual specimens.
Some representative particles were selected and reconstructed based on the angularity index to form the virtual specimens with aggregates of gradations AC-13 and SMA-13.
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For the numerical simulation of life time a virtual specimen is represented by Discrete Elements.
The virtual specimen generator is illustrated using data for an angle interlock weave.
Young's moduli of a cubic virtual specimen were numerically estimated.
Sutton, M. D., Garwood, R. J., Siveter, D. J. & Siveter, D. J. SPIERS and VAXML; a software toolkit for tomographic visualisation and a format for virtual specimen interchange.
The virtual specimen generator is illustrated using data for an angle interlock weave, a common 3D textile architecture.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com