How to increase the accuracy of analysis and reduce the computational time in ANSYS in the case of deformation study of orthopedic bone plates
Paper
Paper/Presentation Title | How to increase the accuracy of analysis and reduce the |
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Presentation Type | Paper |
Authors | Malekani, Javad, Yarlagadda, Prasad K. D. V., Schmutz, Beat, Gu, YuanTong and Schuetz, Michael |
Journal or Proceedings Title | Proceedings of the 3rd International Conference on Materials and Products Manufacturing Technology (ICMPMT 2013) |
Journal Citation | 835-836, pp. 1592-1600 |
Number of Pages | 11 |
Year | 2014 |
Publisher | Scientific.Net |
ISBN | 9783037859162 |
Digital Object Identifier (DOI) | https://doi.org/10.4028/www.scientific.net/AMR.834-836.1592 |
Web Address (URL) of Paper | https://www.scientific.net/AMR.834-836.1592 |
Conference/Event | 3rd International Conference on Materials and Products Manufacturing Technology (ICMPMT 2013) |
Event Details | 3rd International Conference on Materials and Products Manufacturing Technology (ICMPMT 2013) Delivery In person Event Date 25 to end of 26 Sep 2013 Event Location China |
Abstract | Currently, finite element analyses are usually done by means of commercial software tools. Accuracy of analysis and computational time are two important factors in efficiency of these tools. This paper studies the effective parameters in computational time and accuracy of finite element analyses performed by ANSYS and provides the guidelines for the users of this software whenever they us this software for study on deformation of orthopedic bone plates or study on similar cases. It is not a fundamental scientific study and only shares the findings of the authors about structural analysis by means of ANSYS workbench. It gives an idea to the readers about improving the performance of the software and avoiding the traps. The solutions provided in this paper are not the only possible solutions of the problems and in similar cases there are other solutions which are not given in this paper. The parameters of solution method, material model, geometric model, mesh configuration, number of the analysis steps, program controlled parameters and computer settings are discussed through thoroughly in this paper. |
Keywords | Finite Element Method (FEM); ANSYS; Computational time; Accuracy; Tibia; Bone plate; deformation |
Public Notes | File reproduced in accordance with the copyright policy of the publisher/author. |
Series | Advanced Materials Research |
Byline Affiliations | Queensland University of Technology |
https://research.usq.edu.au/item/w455z/how-to-increase-the-accuracy-of-analysis-and-reduce-the-computational-time-in-ansys-in-the-case-of-deformation-study-of-orthopedic-bone-plates
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