Discrete Element Method to Model 3D Continuous Materials

Discrete Element Method to Model 3D Continuous Materials
Author: Mohamed Jebahi,Damien Andre,Inigo Terreros,Ivan Iordanoff
Publsiher: John Wiley & Sons
Total Pages: 196
Release: 2015-03-30
Genre: Technology & Engineering
ISBN: 9781848217706

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Complex behavior models (plasticity, cracks, visco elascticity) face some theoretical difficulties for the determination of the behavior law at the continuous scale. When homogenization fails to give the right behavior law, a solution is to simulate the material at a meso scale in order to simulate directly a set of discrete properties that are responsible of the macroscopic behavior. The discrete element model has been developed for granular material. The proposed set shows how this method is capable to solve the problem of complex behavior that are linked to discrete meso scale effects.

Discrete Element Method to Model 3D Continuous Materials

Discrete Element Method to Model 3D Continuous Materials
Author: Mohamed Jebahi,Damien Andre,Inigo Terreros,Ivan Iordanoff
Publsiher: John Wiley & Sons
Total Pages: 196
Release: 2015-02-26
Genre: Technology & Engineering
ISBN: 9781119102755

Download Discrete Element Method to Model 3D Continuous Materials Book in PDF, Epub and Kindle

Complex behavior models (plasticity, cracks, visco elascticity) face some theoretical difficulties for the determination of the behavior law at the continuous scale. When homogenization fails to give the right behavior law, a solution is to simulate the material at a meso scale in order to simulate directly a set of discrete properties that are responsible of the macroscopic behavior. The discrete element model has been developed for granular material. The proposed set shows how this method is capable to solve the problem of complex behavior that are linked to discrete meso scale effects.

Modeling and Simulation of Functionalized Materials for Additive Manufacturing and 3D Printing Continuous and Discrete Media

Modeling and Simulation of Functionalized Materials for Additive Manufacturing and 3D Printing  Continuous and Discrete Media
Author: Tarek I. Zohdi
Publsiher: Springer
Total Pages: 298
Release: 2017-12-22
Genre: Technology & Engineering
ISBN: 9783319700793

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Within the last decade, several industrialized countries have stressed the importance of advanced manufacturing to their economies. Many of these plans have highlighted the development of additive manufacturing techniques, such as 3D printing which, as of 2018, are still in their infancy. The objective is to develop superior products, produced at lower overall operational costs. For these goals to be realized, a deep understanding of the essential ingredients comprising the materials involved in additive manufacturing is needed. The combination of rigorous material modeling theories, coupled with the dramatic increase of computational power can potentially play a significant role in the analysis, control, and design of many emerging additive manufacturing processes. Specialized materials and the precise design of their properties are key factors in the processes. Specifically, particle-functionalized materials play a central role in this field, in three main regimes: (1) to enhance overall filament-based material properties, by embedding particles within a binder, which is then passed through a heating element and the deposited onto a surface, (2) to “functionalize” inks by adding particles to freely flowing solvents forming a mixture, which is then deposited onto a surface and (3) to directly deposit particles, as dry powders, onto surfaces and then to heat them with a laser, e-beam or other external source, in order to fuse them into place. The goal of these processes is primarily to build surface structures which are extremely difficult to construct using classical manufacturing methods. The objective of this monograph is introduce the readers to basic techniques which can allow them to rapidly develop and analyze particulate-based materials needed in such additive manufacturing processes. This monograph is broken into two main parts: “Continuum Method” (CM) approaches and “Discrete Element Method” (DEM) approaches. The materials associated with methods (1) and (2) are closely related types of continua (particles embedded in a continuous binder) and are treated using continuum approaches. The materials in method (3), which are of a discrete particulate character, are analyzed using discrete element methods.

3D Discrete Element Workbench for Highly Dynamic Thermo mechanical Analysis

3D Discrete Element Workbench for Highly Dynamic Thermo mechanical Analysis
Author: Damien Andre,Jean-Luc Charles,Ivan Iordanoff
Publsiher: John Wiley & Sons
Total Pages: 212
Release: 2015-10-27
Genre: Technology & Engineering
ISBN: 9781119239789

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Complex behavior models (plasticity, cracks, visco elascticity) face some theoretical difficulties for the determination of the behavior law at the continuous scale. When homogenization fails to give the right behavior law, a solution is to simulate the material at a meso scale in order to simulate directly a set of discrete properties that are responsible of the macroscopic behavior. The discrete element model has been developed for granular material. The proposed set shows how this method is capable to solve the problem of complex behavior that are linked to discrete meso scale effects. The first book solves the local problem, the second one presents a coupling approach to link the structural effects to the local ones, this third book presents the software workbench that includes all the theoretical developments.

Finite Element Method to Model Electromagnetic Systems in Low Frequency

Finite Element Method to Model Electromagnetic Systems in Low Frequency
Author: Francis Piriou,Stephane Clenet
Publsiher: John Wiley & Sons
Total Pages: 243
Release: 2024-02-23
Genre: Science
ISBN: 9781394276479

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Numerical modeling now plays a central role in the design and study of electromagnetic systems. In the field of devices operating in low frequency, it is the finite element method that has come to the fore in recent decades. Today, it is widely used by engineers and researchers in industry, as well as in research centers. This book describes in detail all the steps required to discretize Maxwell’s equations using the finite element method. This involves progressing from the basic equations in the continuous domain to equations in the discrete domain that are solved by a computer. This approach is carried out with a constant focus on maintaining a link between physics, i.e. the properties of electromagnetic fields, and numerical analysis. Numerous academic examples, which are used throughout the various stages of model construction, help to clarify the developments.

Understanding the Discrete Element Method

Understanding the Discrete Element Method
Author: Hans-Georg Matuttis,Jian Chen
Publsiher: John Wiley & Sons
Total Pages: 484
Release: 2014-06-23
Genre: Science
ISBN: 9781118567203

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Gives readers a more thorough understanding of DEM and equips researchers for independent work and an ability to judge methods related to simulation of polygonal particles Introduces DEM from the fundamental concepts (theoretical mechanics and solidstate physics), with 2D and 3D simulation methods for polygonal particles Provides the fundamentals of coding discrete element method (DEM) requiring little advance knowledge of granular matter or numerical simulation Highlights the numerical tricks and pitfalls that are usually only realized after years of experience, with relevant simple experiments as applications Presents a logical approach starting withthe mechanical and physical bases,followed by a description of the techniques and finally their applications Written by a key author presenting ideas on how to model the dynamics of angular particles using polygons and polyhedral Accompanying website includes MATLAB-Programs providing the simulation code for two-dimensional polygons Recommended for researchers and graduate students who deal with particle models in areas such as fluid dynamics, multi-body engineering, finite-element methods, the geosciences, and multi-scale physics.

Discrete continuum Coupling Method to Simulate Highly Dynamic Multi scale Problems

Discrete continuum Coupling Method to Simulate Highly Dynamic Multi scale Problems
Author: Mohamed Jebahi,Frédéric Dau,Jean-Luc Charles,Ivan Iordanoff
Publsiher: John Wiley & Sons
Total Pages: 216
Release: 2015-11-09
Genre: Technology & Engineering
ISBN: 9781848217713

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Complex behavior models (plasticity, crack, visco-elascticity) are facing several theoretical difficulties in determining the behavior law at the continuous (macroscopic) scale. When homogenization fails to give the right behavior law, a solution is to simulate the material at a mesoscale using the discrete element model (DEM) in order to directly simulate a set of discrete properties that are responsible for the macroscopic behavior. Originally, the discrete element model was developed for granular material. This book, the second in the Discrete Element Model and Simulation of Continuous Materials Behavior set of books, shows how to choose the adequate coupling parameters to avoid spurious wave reflection and to allow the passage of all the dynamic information both from the fine to the coarse model and vice versa. The authors demonstrate the coupling method to simulate a highly nonlinear dynamical problem: the laser shock processing of silica glass.

The Finite Element Method

The Finite Element Method
Author: Patrick Ciarlet,Eric Luneville
Publsiher: John Wiley & Sons
Total Pages: 404
Release: 2023-07-26
Genre: Mathematics
ISBN: 9781394229741

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The finite element method, which emerged in the 1950s to deal with structural mechanics problems, has since undergone continuous development. Using partial differential equation models, it is now present in such fields of application as mechanics, physics, chemistry, economics, finance and biology. It is also used in most scientific computing software, and many engineers become adept at using it in their modeling and numerical simulation activities. This book presents all the essential elements of the finite element method in a progressive and didactic way: the theoretical foundations, practical considerations of implementation, algorithms, as well as numerical illustrations created in MATLAB. Original exercises with detailed answers are provided at the end of each chapter.