Fiber nanoindentation models are developed for polymeric matrix composites with nonhomogeneous interphases. Using design of experiments, the effects of geometry, loading and material parameters on the critical parameters of the indentation test such as the load-displacement curve, the maximum interfacial shear and normal stresses are studied. The sensitivity analysis shows that the initial load-displacement curve is dependent only on the indenter type, and not on parameters such as fiber volume fraction, interphase type, thickness of interphase, and boundary conditions. The interfacial tensile radial stresses are not sensitive to indenter type, or to type and thickness of interphase, while the interfacial compressive radial stresses are sen...
The interface region in polymer/glass composite materials was investigated by means of the nano-inde...
Investigation of the transverse properties in anisotropic Kevlar® fibers are conducted via instrumen...
During sharp contacts, polymeric materials can exhibit elastic (reversible), plastic (instantaneous ...
Fiber nanoindentation models are developed for polymeric matrix composites with nonhomogeneous inter...
Fiber nanoindentation models are developed for polymeric matrix composites with nonhomogeneous inter...
Nanoindentation experiments were performed on neat and in situ polymers in two different composite m...
In this study, nanoindentation was used to determine Young\u27s modulus of homogeneous plastic ...
Fiber pushout test models are developed for a fiber-matrix-composite with a nonhomogeneous interphas...
The effect of intrinsic and extrinsic factors on the measured results, such as load-displacement cur...
Fiber pushout test models are developed for a fiber-matrix-composite with a nonhomogeneous interphas...
The effect of intrinsic and extrinsic factors on the measured results, such as load-displacement cur...
Indentation models for thin layer-substrate geometry with an interphase have been developed. The int...
Indentation models for thin layer-substrate geometry with an interphase have been developed. The int...
Indentation models for thin layer-substrate geometry with an interphase have been developed. The int...
AbstractIt is well known that a clear disparity exists between the elastic modulus determined using ...
The interface region in polymer/glass composite materials was investigated by means of the nano-inde...
Investigation of the transverse properties in anisotropic Kevlar® fibers are conducted via instrumen...
During sharp contacts, polymeric materials can exhibit elastic (reversible), plastic (instantaneous ...
Fiber nanoindentation models are developed for polymeric matrix composites with nonhomogeneous inter...
Fiber nanoindentation models are developed for polymeric matrix composites with nonhomogeneous inter...
Nanoindentation experiments were performed on neat and in situ polymers in two different composite m...
In this study, nanoindentation was used to determine Young\u27s modulus of homogeneous plastic ...
Fiber pushout test models are developed for a fiber-matrix-composite with a nonhomogeneous interphas...
The effect of intrinsic and extrinsic factors on the measured results, such as load-displacement cur...
Fiber pushout test models are developed for a fiber-matrix-composite with a nonhomogeneous interphas...
The effect of intrinsic and extrinsic factors on the measured results, such as load-displacement cur...
Indentation models for thin layer-substrate geometry with an interphase have been developed. The int...
Indentation models for thin layer-substrate geometry with an interphase have been developed. The int...
Indentation models for thin layer-substrate geometry with an interphase have been developed. The int...
AbstractIt is well known that a clear disparity exists between the elastic modulus determined using ...
The interface region in polymer/glass composite materials was investigated by means of the nano-inde...
Investigation of the transverse properties in anisotropic Kevlar® fibers are conducted via instrumen...
During sharp contacts, polymeric materials can exhibit elastic (reversible), plastic (instantaneous ...