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Explores the role of modeling and simulation in understanding material behavior and the design of new materials.
Plastic material behavior and the forming limits are studied at elevated temperatures.
Unfortunately, their non-linear material behavior and large deformations make actual devices difficult to model.
However, these methods are based on simplifying assumptions regarding material behavior and repair conditions.
Near-surface phenomena extend from the surface to subsurface regions and influence material behavior and performance.
Both experimental and analytical research is being conducted in the areas of nondestructive stress evaluation, characterization of thin solid films, large deformation material behavior, and microstructure evaluation.
The analysis of these systems requires a correct understanding of the material behavior and an appropriate numerical techniques as well.
Understanding the cracking processes of rock is important regarding the fundamental material behavior and in engineering applications.
Uncertainties in the performance of engineering systems arise due to idealizations of geometry, material behavior, and loading history.
A unit-cell model of the 3-D woven composite was developed to define the material behavior and failure evolution.
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Material behaviors and anti-algal performances of PVC and wood PVC composites (WPVCs) were examined after adding commercial algaecides of different types and contents.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com