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The modulus and yield stress increase with increasing T6T6T content.
Micromechanics-based models were also employed to explain important factors in Young's modulus and yield strength.
The elastic modulus and yield surface were obtained using a numerical optimization based inverse method.
The elastic modulus and yield stress in tension are nearly constant for PP and blends.
Young′s modulus and yield stress increased with the ratio of the parallel fibre component.
The main material parameters estimated in these ways are Young modulus and yield stress.
A conspicuous increase of modulus and yield strength was found by increasing the silica content.
The modulus and yield strength are enhanced by increasing the PP-g-MA/organoclay ratios.
The modulus and yield strength of the unreinforced materials decreased as EPR-g-MA content increased.
For modeling the elastic modulus and yield stress, two new approaches were proposed.
The modulus and yield characteristics seem to be almost unaffected whereas ultimate properties undergo strong variations.
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