Application of the Finite Element Method in Implant Dentistry

Application of the Finite Element Method in Implant Dentistry
Author :
Publisher : Springer Science & Business Media
Total Pages : 148
Release :
ISBN-10 : 9783540737643
ISBN-13 : 3540737642
Rating : 4/5 (43 Downloads)

Synopsis Application of the Finite Element Method in Implant Dentistry by : Jianping Geng

This book creates the theoretical foundation that novices need to perform the finite element method in implant dentistry. It shows how both the implant dentist and the designer can benefit from finite element analysis. The authors explain the theory and math of the finite element method. Then, you get practical applications alongside discussions of the critical issues in using finite element analysis for dental implant design.

Application of the Finite Element Method in Implant Dentistry

Application of the Finite Element Method in Implant Dentistry
Author :
Publisher : Springer
Total Pages : 0
Release :
ISBN-10 : 3642092969
ISBN-13 : 9783642092961
Rating : 4/5 (69 Downloads)

Synopsis Application of the Finite Element Method in Implant Dentistry by : Jianping Geng

This book creates the theoretical foundation that novices need to perform the finite element method in implant dentistry. It shows how both the implant dentist and the designer can benefit from finite element analysis. The authors explain the theory and math of the finite element method. Then, you get practical applications alongside discussions of the critical issues in using finite element analysis for dental implant design.

Application of the Finite Element Method in Implant Dentistry

Application of the Finite Element Method in Implant Dentistry
Author :
Publisher :
Total Pages : 137
Release :
ISBN-10 : 7308055108
ISBN-13 : 9787308055109
Rating : 4/5 (08 Downloads)

Synopsis Application of the Finite Element Method in Implant Dentistry by : 耿建平

Part of the new series, Advanced Topics in Science and Technology in China, this book is designed to give the necessary theoretical foundation to new users of the finite element method in implant dentistry, and show how both the implant dentist and designer can benefit from finite element analysis. The first part deals with the theory of the finite element method. containing the necessary mathematical theory but written so that readers from a dental background can easily understand. Then basic knowledge of implant dentistry is introduced to readers from an engineering background. Next, dental.

Finite Element Analysis

Finite Element Analysis
Author :
Publisher : IntechOpen
Total Pages : 412
Release :
ISBN-10 : 9535107690
ISBN-13 : 9789535107699
Rating : 4/5 (90 Downloads)

Synopsis Finite Element Analysis by : Farzad Ebrahimi

In the past few decades, the Finite Element Method (FEM) has been developed into a key indispensable technology in the modeling and simulation of various engineering systems. The present book reports on the state of the art research and development findings on this very broad matter through original and innovative research studies exhibiting various investigation directions of FEM in electrical, civil, materials and biomedical engineering. This book is a result of contributions of experts from international scientific community working in different aspects of FEM. The text is addressed not only to researchers, but also to professional engineers, students and other experts in a variety of disciplines, both academic and industrial seeking to gain a better understanding of what has been done in the field recently, and what kind of open problems are in this area.

Finite Element Analysis for Biomedical Engineering Applications

Finite Element Analysis for Biomedical Engineering Applications
Author :
Publisher : CRC Press
Total Pages : 302
Release :
ISBN-10 : 9780429592157
ISBN-13 : 0429592159
Rating : 4/5 (57 Downloads)

Synopsis Finite Element Analysis for Biomedical Engineering Applications by : Z. C. Yang

Finite element analysis has been widely applied to study biomedical problems. This book aims to simulate some common medical problems using finite element advanced technologies, which establish a base for medical researchers to conduct further investigations. This book consists of four main parts: (1) bone, (2) soft tissues, (3) joints, and (4) implants. Each part starts with the structure and function of the biology and then follows the corresponding finite element advanced features, such as anisotropic nonlinear material, multidimensional interpolation, XFEM, fiber enhancement, UserHyper, porous media, wear, and crack growth fatigue analysis. The final section presents some specific biomedical problems, such as abdominal aortic aneurysm, intervertebral disc, head impact, knee contact, and SMA cardiovascular stent. All modeling files are attached in the appendixes of the book. This book will be helpful to graduate students and researchers in the biomedical field who engage in simulations of biomedical problems. The book also provides all readers with a better understanding of current advanced finite element technologies. Details finite element modeling of bone, soft tissues, joints, and implants Presents advanced finite element technologies, such as fiber enhancement, porous media, wear, and crack growth fatigue analysis Discusses specific biomedical problems, such as abdominal aortic aneurysm, intervertebral disc, head impact, knee contact, and SMA cardiovascular stent Explains principles for modeling biology Provides various descriptive modeling files

A Review on Dental Materials

A Review on Dental Materials
Author :
Publisher : Springer Nature
Total Pages : 230
Release :
ISBN-10 : 9783030489311
ISBN-13 : 3030489310
Rating : 4/5 (11 Downloads)

Synopsis A Review on Dental Materials by : Hamid Reza Rezaie

This book discusses the current biomaterials used for dental applications and the basic sciences underpinning their application. The most critical structures in the oral cavity are the teeth, which play a central role in speaking, biting, chewing, tasting and swallowing. Teeth consist of three types of tissue: the cementum, enamel and dentin, with bone and gingival tissue serving as supporting structures. Caries, tooth wear, trauma and mechanical defects can lead to severe facial conditions; however, correcting these defects remains a challenge for scientists and dentists. Presenting insights form a broad range of disciplines, including materials science, biology, physiology and clinical science, this book provides a timely review of the principles, processing and application of dental materials.

Perusal of the Finite Element Method

Perusal of the Finite Element Method
Author :
Publisher : BoD – Books on Demand
Total Pages : 276
Release :
ISBN-10 : 9789535128199
ISBN-13 : 9535128191
Rating : 4/5 (99 Downloads)

Synopsis Perusal of the Finite Element Method by : Radostina Petrova

The finite element method (FEM) is a numerical technique for finding approximate solutions to different numerical problems. The practical applications of FEM are known as finite element analysis (FEA). FEA is a good choice for analyzing problems over complicated domains. The first three chapters of this book contribute to the development of new FE techniques by examining a few key hurdles of the FEM and proposing techniques to mitigate them. The next four chapters focus on the close connection between the development of a new technique and its implementation. Current state-of-the-art software packages for FEA allow the construction, refinement, and optimization of entire designs before manufacturing. This is convincingly demonstrated in the last three chapters of the book with examples from the field of biomechanical engineering. This book presents a current research by highlighting the vitality and potential of the finite elements for the future development of more efficient numerical techniques, new areas of application, and FEA's important role in practical engineering.

Finite Element Methods and Their Applications

Finite Element Methods and Their Applications
Author :
Publisher : BoD – Books on Demand
Total Pages : 318
Release :
ISBN-10 : 9781839623417
ISBN-13 : 1839623411
Rating : 4/5 (17 Downloads)

Synopsis Finite Element Methods and Their Applications by : Mahboub Baccouch

This book provides several applications of the finite element method (FEM) for solving real-world problems. FEM is a widely used technique for numerical simulations in many areas of physics and engineering. It has gained increased popularity over recent years for the solution of complex engineering and science problems. FEM is now a powerful and popular numerical method for solving differential equations, with flexibility in dealing with complex geometric domains and various boundary conditions. The method has a wide range of applications in various branches of engineering such as mechanical engineering, thermal and fluid flows, electromagnetics, business management, and many others. This book describes the development of FEM and discusses and illustrates its specific applications.

Computational Modeling and Simulation Examples in Bioengineering

Computational Modeling and Simulation Examples in Bioengineering
Author :
Publisher : John Wiley & Sons
Total Pages : 386
Release :
ISBN-10 : 9781119563945
ISBN-13 : 1119563941
Rating : 4/5 (45 Downloads)

Synopsis Computational Modeling and Simulation Examples in Bioengineering by : Nenad Filipovic

A systematic overview of the quickly developing field of bioengineering—with state-of-the-art modeling software! Computational Modeling and Simulation Examples in Bioengineering provides a comprehensive introduction to the emerging field of bioengineering. It provides the theoretical background necessary to simulating pathological conditions in the bones, muscles, cardiovascular tissue, and cancers, as well as lung and vertigo disease. The methodological approaches used for simulations include the finite element, dissipative particle dynamics, and lattice Boltzman. The text includes access to a state-of-the-art software package for simulating the theoretical problems. In this way, the book enhances the reader's learning capabilities in the field of biomedical engineering. The aim of this book is to provide concrete examples of applied modeling in biomedical engineering. Examples in a wide range of areas equip the reader with a foundation of knowledge regarding which problems can be modeled with which numerical methods. With more practical examples and more online software support than any competing text, this book organizes the field of computational bioengineering into an accessible and thorough introduction. Computational Modeling and Simulation Examples in Bioengineering: Includes a state-of-the-art software package enabling readers to engage in hands-on modeling of the examples in the book Provides a background on continuum and discrete modeling, along with equations and derivations for three key numerical methods Considers examples in the modeling of bones, skeletal muscles, cartilage, tissue engineering, blood flow, plaque, and more Explores stent deployment modeling as well as stent design and optimization techniques Generates different examples of fracture fixation with respect to the advantages in medical practice applications Computational Modeling and Simulation Examples in Bioengineering is an excellent textbook for students of bioengineering, as well as a support for basic and clinical research. Medical doctors and other clinical professionals will also benefit from this resource and guide to the latest modeling techniques.

Applications and Techniques for Experimental Stress Analysis

Applications and Techniques for Experimental Stress Analysis
Author :
Publisher : IGI Global
Total Pages : 269
Release :
ISBN-10 : 9781799816911
ISBN-13 : 1799816915
Rating : 4/5 (11 Downloads)

Synopsis Applications and Techniques for Experimental Stress Analysis by : Karuppasamy, Karthik Selva Kumar

The design of mechanical components for various engineering applications requires the understanding of stress distribution in the materials. The need of determining the nature of stress distribution on the components can be achieved with experimental techniques. Applications and Techniques for Experimental Stress Analysis is a timely research publication that examines how experimental stress analysis supports the development and validation of analytical and numerical models, the progress of phenomenological concepts, the measurement and control of system parameters under working conditions, and identification of sources of failure or malfunction. Highlighting a range of topics such as deformation, strain measurement, and element analysis, this book is essential for mechanical engineers, civil engineers, designers, aerospace engineers, researchers, industry professionals, academicians, and students.