For all engineers and students coming to finite element analysis or to ANSYS software for the first time, this powerful hands-on guide develops a detailed and confident understanding of using ANSYS's ...powerful engineering analysis tools. The best way to learn complex systems is by means of hands-on experience. With an innovative and clear tutorial based approach, this powerful book provides readers with a comprehensive introduction to all of the fundamental areas of engineering analysis they are likely to require either as part of their studies or in getting up to speed fast with the use of ANSYS software in working life. Opening with an introduction to the principles of the finite element method, the book then presents an overview of ANSYS technologies before moving on to cover key applications areas in detail.Key topics covered: Introduction to the finite element method Getting started with ANSYS software stress analysis dynamics of machines fluid dynamics problems thermo mechanics contact and surface mechanics exercises, tutorials, worked examples With its detailed step-by-step explanations, extensive worked examples and sample problems, this book will develop the reader's understanding of FEA and their ability to use ANSYS's software tools to solve their own particular analysis problems, not just the ones set in the book.* Develops a detailed understanding of finite element analysis and the use of ANSYS software by example * Develops a detailed understanding of finite element analysis and the use of ANSYS software by example * Exclusively structured around the market leading ANSYS software, with detailed and clear step-by-step instruction, worked examples, and detailed, screen-by-screen illustrative problems to reinforce learning
This user-friendly book provides the reader with a theoretical and practical knowledge of the finite element method (FEM) and with the skills required to analyze engineering problems with ANSYS®. A ...self-contained, introductory text, it minimizes the need for additional reference material, covering the fundamental topics in FEM as well as advanced topics concerning modeling and analysis with ANSYS®. Extensive examples from various engineering disciplines are presented in a step-by-step fashion, focusing on the use of ANSYS® through both the Graphics User Interface (GUI) and the ANSYS® Parametric Design Language (APDL). The text details more than 40 example problems, with solutions demonstrated in a step-by-step fashion, primarily through the use of GUI and, to a lesser extent, APDL.
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In the present study, the computational fluid dynamics (CFD) method was utilized to explore the rheological behavior of the flat solar collector. ANSYS 16.1 has been used to do an analysis on the ...drafted three-dimensional model. In order to investigate the heat transmission from the solar panel to the fluid, a CFD tool has been used. The effectiveness of the heat transfer across the entire system has been evaluated with the help of Nano fluid. Both 0.3 and 0.5 meters per second might be considered the speed of the water. These results have been compared to others and validated in accordance with those standards. The most recent findings from this line of investigation have shown that include a greater number of specifics in the working fluid of the system can contribute to an increase in the temperature at which the solar plate discharges its heat. In addition to this, it is possible to get the highest possible temperature by bringing the velocity value down to its lowest possible range.
Provides a hands-on introduction to engineering analysis using one of the most powerful commercial general purposes finite element programs on the market. Students will find a practical and ...integrated approach that combines finite element theory with best practices for developing, verifying, validating and interpreting the results of finite element models, while engineering professionals will appreciate the deep insight presented on the program's structure and behavior. Additional topics covered include an introduction to commands, input files, batch processing, and other advanced features in ANSYS.
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8.
Design and Analysis of Two Pass Rolling Dies siva prasad kondapalli; VISHNU KANDULA
International Journal of Advanced Design and Manufacturing Technology,
12/2022, Volume:
15, Issue:
4
Journal Article
Peer reviewed
Open access
Sheet metal forming is widely used in automotive and aerospace industry. In this paper analysis of sheet metal forming process by deep drawing was discussed. Static analysis on the deep drawing ...operation was carried out to find the stresses, strains and total deformation of deep drawing cup. CAD models are generated using CATIA from the dimensions obtained by theoretical calculations and analysis is carried out using ANSYS software. The force required to develop the cup, deformation and defect like tearing, wrinkles etc. can be obtained through simulation. By using this method it is easy to make stress and strain analysis for different materials. From the analysis, it is observed that Titanium has the maximum stress with standing ability when compared to copper and Aluminum.
The paper describes commissioning of the inductive heater based on numerical simulation of inductive heating in the hypervapotron sample and test channel. The HEFEL loop is being developed to ...research a high heat flux cooling channels applicable in fusion devices. The Box Scraper hypervapotron channel geometry represents a primary focus of research. Conditions in the first wall of tokamak are simulated by induction heating of the tested hypervapotron channel. The exact heat flux of tested sample is difficult to measure, thus the numerical simulation of induction heating and thermohydraulic model of the cooling channel are an important part of HEFEL loop commissioning. ANSYS Maxwell 3D and ANSYS Fluent coupling is used for optimalization of the induction heating to achieve the highest heat fluxes using selected induction heating source.
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AA2014/titanium carbide composites (Al-MMCs) included with diverse mass fraction of TiC (0, 4 and 8 wt.%) were made through stir casting method. This present work, examines the tensile behavior of ...the fabricated specimen and finite element modeling based tensile specimen. Experimental tensile specimens are examined through ultimate testing machine (UTM). The modeling of the tensile specimen has been developed in ANSYS 12.0 for finite element analysis, which are the most standard CAE tools. Tensile load values are calculated by experimental method and that load values are given as input to the FEA analysis. The finite element outcomes employing ANSYS APDL software exhibiting stresses and deflections were confirmed with experimental upshots and analytical outcomes.