
Topology Optimization of Automotive sheet metal part using Altair Inspire
Author(s) -
Netsanet Ferede
Publication year - 2020
Publication title -
international journal of engineering and management sciences
Language(s) - English
Resource type - Journals
ISSN - 2498-700X
DOI - 10.21791/ijems.2020.3.15
Subject(s) - topology optimization , computer science , mathematical optimization , stiffness , automotive industry , topology (electrical circuits) , optimal design , sheet metal , mechanical engineering , engineering , structural engineering , mathematics , finite element method , aerospace engineering , electrical engineering , machine learning
In an optimization problem, different candidate solutions are compared with each other, and then the best or optimal solution is obtained which means that solution quality is fundamental. Topology optimization is used at the concept stage of design. It deals with the optimal distribution of material within the structure. Altair Inspire software is the industry's most powerful and easy-to-use Generative Design/Topology Optimization and rapid simulation solution for design engineers. In this paper Topology optimization is applied using Altair inspire to optimize the Sheet metal Angle bracket. Different results are conducted the better and final results are fulfilling the goal of the paper which is minimizing the mass of the sheet metal part by 65.9% part and Maximizing the stiffness with Better Results of Von- Miss Stress Analysis, Displacement, and comparison with different load cases. This can lead to reduced costs, development time, material consumption, and product less weight.