Characterization and Constitutive Modeling of Composite Materials Under Static and Dynamic Loading
Composite materials were characterized under quasi-static and dynamic loading, and a constitutive model was proposed to describe the nonlinear multi-axial behavior of the materials at varying strain rates. The material investigated was a unidirectional carbon-fiber/epoxy composite. Multi-axial exper...
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Veröffentlicht in: | AIAA journal 2011-08, Vol.49 (8), p.1658-1664 |
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Hauptverfasser: | , , , |
Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Composite materials were characterized under quasi-static and dynamic loading, and a constitutive model was proposed to describe the nonlinear multi-axial behavior of the materials at varying strain rates. The material investigated was a unidirectional carbon-fiber/epoxy composite. Multi-axial experiments were conducted at three strain rates, quasi-static (10... s...), intermediate (1 s...), and high (180-400 s...), using offaxis specimens to produce stress states combining transverse normal and in-plane shear stresses to verify the model. A Hopkinson-bar apparatus and offaxis specimens loaded in this system were used for multi-axial characterization of the material at high strain rates. Stress-strain curves under tension and compression were obtained for various loading orientations with respect to the fiber direction. A nonlinear constitutive model is proposed following an elastic-plastic approach. It is based on a potential function in the form of a linear combination of deviatoric and dilatational deformation components. The model is able to describe the rate-dependent behavior under multi-axial states of stress including tensile and compressive loading. Experimental results were in good agreement with predictions of the proposed constitutive model. (ProQuest: ... denotes formulae/symbols omitted.) |
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ISSN: | 0001-1452 1533-385X |
DOI: | 10.2514/1.J050797 |