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A polygonal finite element method for modeling arbitrary interfaces in large deformation problems
, Article Computational Mechanics ; Volume 50, Issue 1 , 2012 , Pages 19-33 ; 01787675 (ISSN) ; Khoei, A. R ; Sharif University of Technology
2012
Abstract
In this paper, a polygonal-FEM technique is presented in modeling of arbitrary interfaces in large deformations. The method is used to model the internal interfaces and arbitrary geometries using a uniform non-conformal mesh. The technique is applied to capture discontinuous deformations in the non-conformal elements, which are cut by the interface in a uniform regular mesh. In this approach, a uniform non-conformal mesh is decomposed into sub-elements that conform to the internal interfaces. The geometry of interface is used to produce various triangular, quadrilateral and pentagonal elements at the intersection of interface with regular FE mesh, in which the extra degrees-of-freedom are...
A generalized finite element method for modeling arbitrary interfaces in large deformation problems
, Article Computational Plasticity XI - Fundamentals and Applications, COMPLAS XI, 7 September 2011 through 9 September 2011 ; September , 2011 , Pages 1306-1317 ; 9788489925731 (ISBN) ; Khoei, A. R ; Sharif University of Technology
2011
Abstract
In this paper, a generalized-FEM technique is presented in modeling of arbitrary interfaces in large deformations. The method is used to model the internal interfaces and arbitrary geometries using a uniform non-conformal mesh. The technique is applied to capture independent deformations at both sides of separated element cut by the interface in a uniform regular mesh. In this approach, a uniform non-conformal mesh is decomposed into subelements that conform to the internal interfaces. The geometry of interface is used to produce various triangular, quadrilateral and pentagonal elements at the intersection of interface with regular FE mesh, in which the extra degrees-of-freedom are defined...
A polygonal-FEM technique in modeling large sliding contact on non-conformal meshes: A study on polygonal shape functions
, Article Engineering Computations (Swansea, Wales) ; Volume 32, Issue 5 , 2015 , Pages 1391-1431 ; 02644401 (ISSN) ; Yasbolaghi, R ; Biabanaki, S. O. R ; Sharif University of Technology
2015
Abstract
Purpose - In this paper, the polygonal-FEM technique is presented in modeling large deformation - large sliding contact on non-conformal meshes. The purpose of this paper is to present a new technique in modeling arbitrary interfaces and discontinuities for non-linear contact problems by capturing discontinuous deformations in elements cut by the contact surface in uniform non-conformal meshes. Design/methodology/approach - The geometry of contact surface is used to produce various polygonal elements at the intersection of the interface with the regular FE mesh, in which the extra degrees-of-freedom are defined along the interface. The contact constraints are imposed between polygonal...
A polygonal finite element method for modeling crack propagation with minimum remeshing
, Article International Journal of Fracture ; Volume 194, Issue 2 , 2015 ; 03769429 (ISSN) ; Yasbolaghi, R ; Biabanaki, S. O. R ; Sharif University of Technology
Kluwer Academic Publishers
2015
Abstract
In this paper, a polygonal finite element method is presented for crack growth simulation with minimum remeshing. A local polygonal mesh strategy is performed employing polygonal finite element method to model the crack propagation. In order to model the singular crack tip fields, the convex and concave polygonal elements are modified based on the singular quarter point isoparametric concept that improves the accuracy of the stress intensity factors. Numerical simulations are performed to demonstrate the efficiency of various polygonal shape functions, including the Wachspress, metric, Laplace and mean value shape functions, in modeling the crack tip fields. Eventually, analogy of the...
3D finite element modeling of shear band localization via the micro-polar Cosserat continuum theory
, Article Computational Materials Science ; Volume 49, Issue 4 , 2010 , Pages 720-733 ; 09270256 (ISSN) ; Yadegari, S ; Biabanaki, S. O. R ; Sharif University of Technology
2010
Abstract
In this paper, a micro-polar continuum model is presented based on the Cosserat theory for 3D modeling of localization phenomena. Since the classical continuum model suffers from the pathological mesh-dependence in strain localization problem, the governing equations are regularized by adding the rotational degrees-of-freedom to conventional degrees-of-freedom. The fundamental relations in three-dimensional Cosserat continuum are presented and the internal length parameters are introduced in the elasto-plastic constitutive matrix to control the shear bandwidth. The mesh independency of Cosserat model in strain-softening problem is verified and the effect of internal parameters is...
Optimal design of powder compaction processes via genetic algorithm technique
, Article Finite Elements in Analysis and Design ; Volume 46, Issue 10 , 2010 , Pages 843-861 ; 0168874X (ISSN) ; Keshavarz, S ; Biabanaki, S. O. R ; Sharif University of Technology
2010
Abstract
In this paper, an optimal design is performed for powder die-pressing process based on the genetic algorithm approach. It includes the shape optimization of powder component, the optimal design of punch movements, and the friction optimization of powdertool interface. The genetic algorithm is employed to perform an optimal design based on a fixed-length vector of design variables. The technique is used to obtain the desired optimal compacted component by verifying the prescribed constraints. The numerical modeling of powder compaction simulation is applied based on a large deformation formulation, powder plasticity behavior, and frictional contact algorithm. A Lagrangian finite element...
Polygonal finite element methods for contact-impact problems on non-conformal meshes
, Article Computer Methods in Applied Mechanics and Engineering ; Vol. 269 , February , 2014 , pp. 198-221 ; ISSN: 00457825 ; Khoei, A. R ; Wriggers, P ; Sharif University of Technology
2014
Abstract
In this paper, a polygonal finite element method is presented for large deformation frictionless dynamic contact-impact problems with non-conformal meshes. The geometry and interfaces of the problem are modeled independent of the background mesh based on the level set method to produce polygonal elements at the intersection of the interface with the regular FE mesh. Various polygonal shape functions are employed to investigate the capability of polygonal-FEM technique in modeling frictionless contact-impact problems. The contact constraints are imposed between polygonal elements produced along the contact surface through the node-to-surface contact algorithm. Several contact-impact problems...
New point-to-face contact algorithm for 3-D contact problems using the augmented Lagrangian method in 3-D DDA
, Article Geomechanics and Geoengineering ; Volume 4, Issue 3 , 2009 , Pages 221-236 ; 17486025 (ISSN) ; Mikola, R. G ; Biabanaki, S. O.R ; Mohammadi, S ; Sharif University of Technology
2009
Abstract
This paper presents a new point-to-face contact algorithm for contacts between two polyhedrons with planar boundaries. A new discrete numerical method called three-dimensional discontinuous deformation analysis (3-D DDA) is used and formulations of normal contact submatrices based on the proposed algorithm are derived. The presented algorithm is a simple and efficient method and it can be easily coded into a computer program. This approach does not need to use an iterative algorithm in each time step to obtain the contact plane, unlike the ‘Common-Plane’ method applied in the existing 3-D DDA. In the present 3-D DDA method, block contact constraints are enforced using the penalty method....
Scientific Naturalism: Ontological and Epistemological Analysis
, Ph.D. Dissertation Sharif University of Technology ; Golshani, Mehdi (Supervisor)
Abstract
The term “scientific naturalism” is the invention of Thomas H. Huxley. He used it to describe a philosophical outlook that shunned the supernatural and adopted empirical science as the only reliable basis of knowledge about the physical, social, and moral worlds. Recent decades have witnessed a flurry of philosophical activity in the name of naturalism. Most contemporary philosophers identify themselves as naturalist, and much recent work in philosophy can be seen as part of general trend toward conducting philosophical inquiry under the umbrella of naturalistic assumptions. Today the label “naturalism” refers to a particular worldview. Nevertheless, naturalism is not a clearly defined...
Nodal-based three-dimensional discontinuous deformation analysis (3-D DDA)
, Article Computers and Geotechnics ; Volume 36, Issue 3 , 2009 , Pages 359-372 ; 0266352X (ISSN) ; Jafari, A ; Omid Reza Biabanaki, S ; Ronald Yeung, M ; Sharif University of Technology
2009
Abstract
This paper presents a new numerical model that can add a finite element mesh into each block of the three-dimensional discontinuous deformation analysis (3-D DDA), originally developed by Gen-hua Shi. The main objectives of this research are to enhance DDA block's deformability. Formulations of stiffness and force matrices in 3-D DDA with conventional Trilinear (8-node) and Serendipity (20-node) hexahedral isoparametric finite elements meshed block system due to elastic stress, initial stress, point load, body force, displacement constraints, inertia force, normal and shear contact forces are derived in detail for program coding. The program code for the Trilinear and Serendipity hexahedron...
Numerical Modeling of Contact-Impact Problems Using Polygonal Finite Element Method
, Ph.D. Dissertation Sharif University of Technology ; Khoei, Amir Reza (Supervisor)
Abstract
A Polygonal finite element method without conforming mesh was introduced by the authors for modeling large deformation elastoplastic problems. In this method, the geometry and interfaces of the problem are modeled on a uniform mesh. The boundaries are defined on the uniform background mesh using the level set method. Different polygonal elements will be created at the intersection of the interface and the uniform mesh. Polygonal element shape functions are used for the interpolation. In this paper, the capability of this polygonal finite element approach for modeling large deformational frictionless dynamic contact-impact problems is investigated. Contact interfaces are modeled independent...
Review of Oxygenation with Nanobubbles: Possible Treatment for Hypoxic COVID-19 Patients
, Article ACS Applied Nano Materials ; Volume 4, Issue 11 , 2021 , Pages 11386-11412 ; 25740970 (ISSN) ; Akhavan, O ; Hamblin, M. R ; Varma, R. S ; Sharif University of Technology
American Chemical Society
2021
Abstract
The coronavirus disease (COVID-19) pandemic, which has spread around the world, caused the death of many affected patients, partly because of the lack of oxygen arising from impaired respiration or blood circulation. Thus, maintaining an appropriate level of oxygen in the patients' blood by devising alternatives to ventilator systems is a top priority goal for clinicians. The present review highlights the ever-increasing application of nanobubbles (NBs), miniature gaseous vesicles, for the oxygenation of hypoxic patients. Oxygen-containing NBs can exert a range of beneficial physiologic and pharmacologic effects that include tissue oxygenation, as well as tissue repair mechanisms,...
Review of oxygenation with nanobubbles: possible treatment for hypoxic covid-19 patients
, Article ACS Applied Nano Materials ; Volume 4, Issue 11 , 2021 , Pages 11386-11412 ; 25740970 (ISSN) ; Akhavan, O ; Hamblin, M. R ; Varma, R. S ; Sharif University of Technology
American Chemical Society
2021
Abstract
The coronavirus disease (COVID-19) pandemic, which has spread around the world, caused the death of many affected patients, partly because of the lack of oxygen arising from impaired respiration or blood circulation. Thus, maintaining an appropriate level of oxygen in the patients' blood by devising alternatives to ventilator systems is a top priority goal for clinicians. The present review highlights the ever-increasing application of nanobubbles (NBs), miniature gaseous vesicles, for the oxygenation of hypoxic patients. Oxygen-containing NBs can exert a range of beneficial physiologic and pharmacologic effects that include tissue oxygenation, as well as tissue repair mechanisms,...
Dynamic modeling of powder compaction processes via a simple contact algorithm
, Article International Journal of Mechanical Sciences ; Volume 64, Issue 1 , 2012 , Pages 196-210 ; 00207403 (ISSN) ; Biabanaki, S. O. R ; Parvaneh, S. M ; Sharif University of Technology
2012
Abstract
In this paper, the dynamic modeling of powder compaction processes is presented based on a simple contact algorithm to evaluate the distribution of final density in dynamic powder die-pressing. The large deformation frictional contact is employed by imposing the contact constraints via the contact node-to-surface formulation and modifying the contact properties of frictional slip. The Coulomb friction law is used to simulate the friction between the rigid punch and the work-piece. The nonlinear contact friction algorithm is employed together with a double-surface cap plasticity model within the framework of large FE deformation in order to predict the non-uniform relative density...
3D dynamic modeling of powder forming processes via a simple and efficient node-to-surface contact algorithm
, Article Applied Mathematical Modelling ; Volume 37, Issue 1-2 , 2013 , Pages 443-462 ; 0307904X (ISSN) ; Biabanaki, S. O. R ; Parvaneh, S. M ; Sharif University of Technology
2013
Abstract
In this paper, a simple and efficient contact algorithm is presented for the evaluation of density distribution in three-dimensional dynamic modeling of powder compaction processes. The contact node-to-surface algorithm is employed to impose the contact constraints in large deformation frictional contact, and the contact frictional slip is modified by the Coulomb friction law to simulate the frictional behavior between the rigid punch and the work-piece. The 3D nonlinear contact friction algorithm is employed together with a double-surface cap plasticity model within the framework of large finite element deformation in order to predict the non-uniform relative density distribution during the...
3D dynamic modeling of large plastic deformations in powder die-pressing
, Article Proceedings of the 10th International Conference on Technology of Plasticity, ICTP 2011, 25 September 2011 through 30 September 2011, Aachen ; September , 2011 , Pages 1010-1015 ; 9783514007840 (ISBN) ; Biabanaki, S. O. R ; Parvaneh, S. M ; Sharif University of Technology
2011
Abstract
In this paper, a computational algorithm is presented in three-dimensional dynamic modeling of powder compaction processes. The contact node-to-surface algorithm is employed to impose the contact constraints in large deformation frictional contact, and the contact frictional slip is modified by the Coulomb friction law to simulate the frictional behavior between the rigid punch and the work-piece. The 3D nonlinear contact friction algorithm is employed together with a double-surface cap plasticity model within the framework of large FE deformation in order to predict the non-uniform relative density distribution during the dynamic simulation of powder die-pressing. Finally, the performance...
A new computational algorithm for 3D contact modeling of large plastic deformation in powder forming processes
, Article Computational Materials Science ; Volume 46, Issue 1 , 2009 , Pages 203-220 ; 09270256 (ISSN) ; Biabanaki, S. O. R ; Vafa, A. R ; Taheri Mousavi, S. M ; Sharif University of Technology
2009
Abstract
In this paper, the three-dimensional large deformation frictional contact of powder forming process is modeled using a simple computational algorithm based on the augmented-Lagrange approach. The technique is applied by imposing the contact constraints and modifying the contact properties of frictional slip through the node-to-surface (NTS) contact algorithm. The Coulomb friction law is employed to simulate the friction between the rigid punch and the work-piece by the use of penalty and augmented-Lagrange approaches. It is shown that the augmented-Lagrange technique significantly improves imposing of the constraints on contact surfaces. The nonlinear contact friction algorithm is employed...
3D contact modelling of large plastic deformation in powder forming processes
, Article International Journal of Material Forming ; Volume 5, Issue 2 , 2012 , Pages 163-173 ; 19606206 (ISSN) ; Biabanaki, S. O. R ; Taheri Mousavi, S. M ; Vafa, A. R ; Parvaneh, S. M ; Sharif University of Technology
2012
Abstract
In this paper, the three-dimensional large frictional contact deformation of powder forming process is modeled using a node-to-surface contact algorithm based on the penalty and augmented-Lagrange approaches. The technique is applied by imposing the normal and tangential contact constraints and modifying the contact properties of frictional slip. The Coulomb friction law is employed to simulate the friction between the rigid punch and the work piece. It is shown that the augmented-Lagrange technique significantly improves imposing of the constraints on contact surfaces. In order to predict the non-uniform relative density and stress distributions during the large deformation of powder...
Curcumin as a green fluorescent label to revive the fluorescence property of functionalized graphene oxide nanosheets
, Article Journal of Drug Delivery Science and Technology ; Volume 45 , June , 2018 , Pages 422-427 ; 17732247 (ISSN) ; Akhavan, O ; Hatamie, S ; Rahighi, R ; Sharif University of Technology
Editions de Sante
2018
Abstract
In this work, graphene oxide (GO) aqueous suspensions prepared by a chemical exfoliation method showed a fluorescence peak at ∼615 nm. Photoluminescence spectroscopy determined that functionalization of the GO sheets by 3-(2-Aminoethylamino) propyltrimethoxysilane molecules significantly quench the fluorescence property of the GO sheets. Fourier transform infrared spectroscopy confirmed proper functionalization of the GO sheets. Curcumin was applied as a fluorescent natural material with an emission peak at ∼550 nm wavelength for green fluorescent labeling of the functionalized-GO sheets. The curcumin-labeled functionalized-GO sheets showed an intense emission band fluorescent property with...
Silver and gold nanoparticles for antimicrobial purposes against multi-drug resistance bacteria
, Article Materials ; Volume 15, Issue 5 , 2022 ; 19961944 (ISSN) ; Ahmadi, S ; Akhavan, O ; Luque, R ; Sharif University of Technology
MDPI
2022
Abstract
Several pieces of research have been done on transition metal nanoparticles and their nanocomplexes as research on their physical and chemical properties and their relationship to biological features are of great importance. Among all their biological properties, the antibacterial and antimicrobial are especially important due to their high use for human needs. In this article, we will discuss the different synthesis and modification methods of silver (Ag) and gold (Au) nanoparticles and their physicochemical properties. We will also review some state-of-art studies and find the best relationship between the nanoparticles’ physicochemical properties and potential antimicrobial activity. The...