Enhancement of Mechanical Engineering Education With Additive Manufacturing Projects

Author:

Billings Christopher1,Siddique Zahed1,Liu Yingtao1

Affiliation:

1. University of Oklahoma

Abstract

Abstract This paper presents an undergraduate research project developed to enhance mechanical engineering education at the University of Oklahoma. Selective Laser Sintering (SLS) is a promising additive manufacturing method for high-temperature materials with high spatial resolution and surface quality. As one of the most capable engineering-grade thermoplastics, polyether ketone (PEEK) can be used in additive manufacturing due to its elevated working temperature. This printer will use multiple heat zones, adjustable layer height, and a controlled hopper system to allow the user to fine-tune every print. In this paper, students are required to analyze the technical challenges of SLS based 3D printing technology. Using three separate controlled heat zones, the user will be able to hold the part above its glass transition temperature until the entire part finishes, therefore, annealing it in the process. This will additionally allow for testing and documentation of the effect of heat during preheating, pre-sintering, and post sintering. These features in a small-scale machine will allow thorough documentation of how controlled heated environments can alter the physical properties of a 3D printed part. Using a full steel platform with CNC machined parts and an off the shelf laser, the cost will be reduced to under ten thousand dollars. This undergraduate project to design an SLS based 3D printer provide a unique opportunity for students to fully understand the challenges of SLS manufacturing and gain experience in developing a complex 3D printing system.

Publisher

American Society of Mechanical Engineers

Cited by 4 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Methodological Approach for Interdisciplinary Teaching of Machines and Mechanism in Real Contexts;Trends in Educational Activity in the Field of Mechanism and Machine Theory (2018–2022);2023

2. Augmenting mechanical design engineering with additive manufacturing;Progress in Additive Manufacturing;2022-11-10

3. 3D Printing - An Important Industry 4.0 Tool for Online and Onsite Learning;Artificial Intelligence and Online Engineering;2022-10-15

4. Design and Operational Analysis of Mechanical Elements in Different Engineering;2022 IEEE World Engineering Education Conference (EDUNINE);2022-03-13

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