Title of article :
Variational formulation of a simplified strain gradient elasticity theory and its application to a pressurized thick-walled cylinder problem
Author/Authors :
X.-L. Gao ، نويسنده , , S.K. Park، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2007
Pages :
14
From page :
7486
To page :
7499
Abstract :
A detailed variational formulation is provided for a simplified strain gradient elasticity theory by using the principle of minimum total potential energy. This leads to the simultaneous determination of the equilibrium equations and the complete boundary conditions of the theory for the first time. To supplement the stress-based formulation, the coordinateinvariant displacement form of the simplified strain gradient elasticity theory is also derived anew. In view of the lack of a consistent and complete formulation, derivation details are included for the tutorial purpose. It is shown that both the stress and displacement forms of the simplified strain gradient elasticity theory obtained reduce to their counterparts in classical elasticity when the strain gradient effect (a measure of the underlying material microstructure) is not considered. As a direct application of the newly obtained displacement form of the theory, the problem of a pressurized thick-walled cylinder is analytically solved. The solution contains a material length scale parameter and can account for microstructural effects, which is qualitatively different from Lame´’s solution in classical elasticity. In the absence of the strain gradient effect, this strain gradient elasticity solution reduces to Lame´’s solution. The numerical results reveal that microstructural effects can be large and Lame´’s solution may not be accurate for materials exhibiting significant microstructure dependence. 2007 Elsevier
Keywords :
Length scale , strain gradient theory , Elasticity , potential energy , Variational method , Lame´’s solution , Thickwalledcylinder , displacement formulation
Journal title :
International Journal of Solids and Structures
Serial Year :
2007
Journal title :
International Journal of Solids and Structures
Record number :
449196
Link To Document :
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