EventsThe 4th International Electronic Conference on Applied Sciences
Published
This submission belongs to the session E. Mechanical and Aerospace Engineering of the event The 4th International Electronic Conference on Applied Sciences
Published date
19 Dec, 2023
Academic Editor
author-avatarMarco Mandolini
Citation
Michele Trovato, Federico Perquoti, Paolo Cicconi, Topological Optimization for the Redesign of Components in Additive Manufacturing: the case study of the connecting rod , in Proceedings of The 4th International Electronic Conference on Applied Sciences, 27 October–10 November 2023, MDPI: Basel, Switzerland, doi: 10.3390/ASEC2023-16638
Share
Email
Facebook
Twitter
LinkedIn

Topological Optimization for the Redesign of Components in Additive Manufacturing: the case study of the connecting rod

image
1. Università degli Studi ROMA TRE, Italy
2. Università degli Studi ROMA TRE, Rome, Italy, Italy
3. Università degli Studi ROMA TRE, Rome, Italy
Abstract

Additive manufacturing allows the creation of geometries otherwise impossible to achieve through traditional technologies in mechanical components. These geometries can be obtained using algorithms to optimize the mass distribution. Topology Optimization algorithms are one of the tools most applied in design for additive manufacturing and lightweight engineering. These optimization techniques require Finite Element Method tools to evaluate and compare the mechanical behavior of different geometrical solutions. The optimization results are closely related to boundary conditions, objectives, and constraints. Therefore, one of the issues is the necessity to evaluate different parameter settings to improve the result in terms of lightweight, strength, and easy printability. This article shows a working method to use topological optimization for lightening a connecting rod. The resultant model is optimized considering Additive Manufacturing.

Keywords
Design for Additive Manufacturing
Topological Optimization
Additive Manufacturing
Light-weight Engineering
Connecting Rod.
Manuscript
Personal Social Network Profile Authentication Through Image Steganography
Temperature and Pressure-Induced Phase Transitions in Cu2ZnSnS4 and CuZnGeS4: Thermodynamic Analysis and Structural Transformations