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Implementation of a strain energy-based nonlinear finite element in the object-oriented environment
Authors:Tadeusz Wegner  Andrzej P?czak
Affiliation:Institute of Applied Mechanics, Poznan University of Technology, Piotrowo 3, 60-965 Poznań, Poland
Abstract:The objective of the paper is to describe a novel finite element computational method based on a strain energy density function and to implement it in the object-oriented environment. The original energy-based finite element was put into the known standard framework of classes and handled in a different manner. The nonlinear properties of material are defined with a modified strain energy density function. The local relaxation procedure proposed as a method used to resolve a nonlinear problem is implemented in C++ language. The hexahedral element with eight nodes as well as the adaptation of the nonlinear finite element is introduced. The chosen numerical model is made of nearly incompressible hyperelastic material. The application of the proposed element is shown on the example of a rectangular parallelepiped with a hollow port.
Keywords:Hyperelastic material  Strain energy density function  Energy-based finite element  Local relaxation procedure  Object-oriented finite element programming
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