Glass Fiber Reinforced Acrylonitrile Butadiene Styrene Composite Gears by FDM 3D Printing

Author:

Bodaghi Mahdi1ORCID,Sadooghi Ali2,Bakhshi Mohammadreza3,Hashemi Seyed Jalal4,Rahmani Kaveh56,Keshavarz Motamedi Mehdi3

Affiliation:

1. Department of Engineering School of Science and Technology Nottingham Trent University Nottingham NG11 8NS UK

2. Department of Mechanical Engineering Shahid Rajaee Training Teacher University Tehran 16788‐15811 Iran

3. Department of Mechanical Engineering Kar Higher Education Institute Qazvin 34318‐49689 Iran

4. Department of Mechanical Engineering Technical and Vocational University Tehran 36471‐13736 Iran

5. Department of Mechanical Engineering Bu‐Ali Sina University Hamadan 65178‐38695 Iran

6. BSA Pars Sanat knowledge‐based company R&D center Takestan Qazvin 13919‐55411 Iran

Abstract

Abstract3D printing of gears via fused deposition modeling (FDM) has been recently introduced as a low‐cost efficient manufacturing method. Different materials have been 3D printed and Acrylonitrile Butadiene Styrene (ABS) with excellent mechanical properties has been found to be promising. However, 3D printed ABS gears possess a high level of abrasion rate. This paper introduces a new class of ABS‐based gears reinforced by different amounts of milled E‐glass fibers and 3D printed by FDM with acceptable thermo‐mechanical properties and performance. A set of thermo‐mechanical tests is carried out to provide an insight into the influence of adding glass fibers on the glass transition temperature (Tg), hardness and teeth bending strength, teeth failure force, weight lost, abrasion resistance, mechanical wear, and performance of composite gears. The mechanical behaviors of driving and driven gears are examined in high and room temperatures with or without lubrication. Microstructure and gear profile analysis of 3D printed layers, worn surfaces, and fracture locations are also conducted by SEM images and profile projector. The newly developed glass fiber reinforced ABS gears reveal a high level of thermo‐mechanical performance in terms of hardness, mechanical strength, bending force, abrasion and wear resistance compared to pure 3D printed ABS gears.

Publisher

Wiley

Subject

Mechanical Engineering,Mechanics of Materials

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