\u3cp\u3eThis paper demonstrates the application of a recently developed enriched micro-inertial continuum based homogenization framework towards numerical dispersion and boundary value problem analyses of local resonance metamaterials exhibiting sub-wavelength negative stiffness and double negative effects (i.e. simultaneous negative effective mass density and stiffness). This is a novel development since homogenized structural dynamic analyses that specifically incorporate negative stiffness effects have not yet been extensively explored. The proposed methodology is successful in approximating the negative stiffness effect to a certain degree. Accordingly, an appropriate error estimation procedure based on dispersion analyses is proposed ...
Elastic/Acoustic metamaterials have exhibited a rapid increase of interest due to their surprising d...
Researches on metamaterials have realized negative density or stiffness which was impossible previou...
We report the results of the calculation of negative effective density and negative effective compli...
This paper demonstrates the application of a recently developed enriched micro-inertial continuum ba...
This dissertation studies the fundamental behavior associated with a class of nonlinear acoustic met...
This work presents a novel multiscale semi-analytical technique for the acoustic plane wave analysis...
This contribution presents a novel homogenization technique for modeling heterogeneous materials wit...
[ACCESS RESTRICTED TO THE UNIVERSITY OF MISSOURI AT REQUEST OF AUTHOR.] An insight into the working ...
AbstractDifferent models of metamaterials have been developed to generate negative mass and/or negat...
A framework, based on an extended Hill–Mandel principle accounting for inertial effects (Multiscale ...
The effects of negative effective mass density and negative effective elastic modulus on energy abso...
Despite the fact that the concept of incorporating Negative Stiffness (NS) elements within mechanica...
A metamaterial model that possesses simultaneously negative effective mass density and negative effe...
\u3cp\u3eThis paper presents a computational frequency-domain boundary value analysis of acoustic me...
Elastic/Acoustic metamaterials have exhibited a rapid increase of interest due to their surprising d...
Elastic/Acoustic metamaterials have exhibited a rapid increase of interest due to their surprising d...
Researches on metamaterials have realized negative density or stiffness which was impossible previou...
We report the results of the calculation of negative effective density and negative effective compli...
This paper demonstrates the application of a recently developed enriched micro-inertial continuum ba...
This dissertation studies the fundamental behavior associated with a class of nonlinear acoustic met...
This work presents a novel multiscale semi-analytical technique for the acoustic plane wave analysis...
This contribution presents a novel homogenization technique for modeling heterogeneous materials wit...
[ACCESS RESTRICTED TO THE UNIVERSITY OF MISSOURI AT REQUEST OF AUTHOR.] An insight into the working ...
AbstractDifferent models of metamaterials have been developed to generate negative mass and/or negat...
A framework, based on an extended Hill–Mandel principle accounting for inertial effects (Multiscale ...
The effects of negative effective mass density and negative effective elastic modulus on energy abso...
Despite the fact that the concept of incorporating Negative Stiffness (NS) elements within mechanica...
A metamaterial model that possesses simultaneously negative effective mass density and negative effe...
\u3cp\u3eThis paper presents a computational frequency-domain boundary value analysis of acoustic me...
Elastic/Acoustic metamaterials have exhibited a rapid increase of interest due to their surprising d...
Elastic/Acoustic metamaterials have exhibited a rapid increase of interest due to their surprising d...
Researches on metamaterials have realized negative density or stiffness which was impossible previou...
We report the results of the calculation of negative effective density and negative effective compli...