Quasi-static Compressive Properties and Behavior of Single-cell Miura Origami Column Fabricated by 3D Printed PLA Material

Author:

Triawan Farid1,Denatra Geraldy Cahya1,Djamari Djati Wibowo1

Affiliation:

1. 1 Department of Mechanical Engineering, Faculty of Engineering and Technology, Sampoerna University, Indonesia

Abstract

The study of a thin-walled column structure has gained much attention due to its potential in many engineering applications, such as the crash box of a car. A thin-walled square column usually exhibits high initial peak force, which may become very dangerous to the driver or passenger. To address this issue, introducing some shape patterns, e.g., origami folding pattern, to the column may become a solution. The present work investigates the compressive properties and behavior of a square box column structure which adopts the Miura origami folding pattern. Several test pieces of single-cell Miura origami column with varying folding angle and layer height are fabricated by a 3D printer. The filament is made of Polylactic Acid (PLA), which is a brittle material. Then, compression tests are carried out to understand its compressive mechanical properties and behavior. The results show that introducing a Miura origami pattern to form a thin-walled square column can dramatically lower down the initial peak stress by 96.82% and, at the same time, increase its ductility, which eventually improves the energy absorption capacity by 61.68% despite the brittle fracture behavior.

Publisher

Unijourn Publisher

Subject

Media Technology

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. Study on the Mechanical Properties and Behavior of Corrugated Cardboard under Tensile and Compression Loads;Materials Science Forum;2023-06-06

2. The crispness of cassava crisps with random shape by compression test;PROCEEDINGS OF THE SYMPOSIUM ON ADVANCE OF SUSTAINABLE ENGINEERING 2021 (SIMASE 2021): Post Covid-19 Pandemic: Challenges and Opportunities in Environment, Science, and Engineering Research;2023

3. 3D printed multi-material polylactic acid (PLA) origami-inspired structures for quasi-static and impact applications;Smart Materials and Structures;2022-10-19

4. Development of impact attenuator analysis tools in crash scenario using Euler method and finite element analysis;Journal of Engineering and Applied Science;2022-01-06

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