NASA Technical Reports Server (NTRS) 20020060785: Incorporation Of Mean Stress Effects Into The Micromechanical Analysis Of The High Strain Rate Response Of Polymer Matrix Composites - Info and Reading Options
By NASA Technical Reports Server (NTRS)
"NASA Technical Reports Server (NTRS) 20020060785: Incorporation Of Mean Stress Effects Into The Micromechanical Analysis Of The High Strain Rate Response Of Polymer Matrix Composites" and the language of the book is English.
“NASA Technical Reports Server (NTRS) 20020060785: Incorporation Of Mean Stress Effects Into The Micromechanical Analysis Of The High Strain Rate Response Of Polymer Matrix Composites” Metadata:
- Title: ➤ NASA Technical Reports Server (NTRS) 20020060785: Incorporation Of Mean Stress Effects Into The Micromechanical Analysis Of The High Strain Rate Response Of Polymer Matrix Composites
- Author: ➤ NASA Technical Reports Server (NTRS)
- Language: English
Edition Identifiers:
- Internet Archive ID: NASA_NTRS_Archive_20020060785
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"NASA Technical Reports Server (NTRS) 20020060785: Incorporation Of Mean Stress Effects Into The Micromechanical Analysis Of The High Strain Rate Response Of Polymer Matrix Composites" Description:
The Internet Archive:
The results presented here are part of an ongoing research program, to develop strain rate dependent deformation and failure models for the analysis of polymer matrix composites subject to high strain rate impact loads. A micromechanics approach is employed in this work, in which state variable constitutive equations originally developed for metals have been modified to model the deformation of the polymer matrix, and a strength of materials based micromechanics method is used to predict the effective response of the composite. In the analysis of the inelastic deformation of the polymer matrix, the definitions of the effective stress and effective inelastic strain have been modified in order to account for the effect of hydrostatic stresses, which are significant in polymers. Two representative polymers, a toughened epoxy and a brittle epoxy, are characterized through the use of data from tensile and shear tests across a variety of strain rates. Results computed by using the developed constitutive equations correlate well with data generated via experiments. The procedure used to incorporate the constitutive equations within a micromechanics method is presented, and sample calculations of the deformation response of a composite for various fiber orientations and strain rates are discussed.
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