Affiliation:
1. Department of Industrial Engineering, University of Engineering & Technology, Peshawar 25100, Pakistan
2. Department of Industrial Engineering, King Khalid University, Farah 64231, Saudi Arabia
Abstract
In recent years, fused deposition modeling (FDM) based on material extrusion additive manufacturing technology has become widely accepted as a cost-effective method for fabricating engineering components with net-shapes. However, the limited exploration of the influence of FDM process parameters on surface roughness parameters, i.e., Ra (average surface roughness), Rq (root mean square surface roughness), and Rz (maximum height of the profile) across different sides (bottom, top, and walls) poses a challenge for the fabrication of functional parts. This research aims to bridge the knowledge gap by analyzing surface roughness under various process parameters and optimizing it for nylon carbon fiber printed parts. A definitive screening design (DSD) was employed for experimental runs. The Pareto chart highlighted the significant effects of layer height, part orientation, and infill density on all surface roughness parameters and respective sides. The surface morphology was analyzed through optical microscopy. Multi-response optimization was performed using an integrated approach of composited desirability function and entropy. The findings of the present study hold significant industrial applications, enhancing the quality and performance of 3D printed parts. From intricate prototypes to durable automotive components, the optimized surfaces contribute to production of functional and visually appealing products across various sectors.
Funder
King Khalid University of Saudi Arabia
Pakistan Science Foundation
Subject
Polymers and Plastics,General Chemistry
Reference65 articles.
1. A Systematic Review of Additive Manufacturing-Based Remanufacturing Techniques for Component Repair and Restoration;Kanishka;J. Manuf. Process.,2023
2. Application of Multi-Criteria Decision-Making Methods in the Selection of Additive Manufacturing Materials for Solid Ankle Foot Orthoses;Abas;J. Eng. Des.,2023
3. Khan, I., Farooq, U., Tariq, M., Abas, M., Ahmad, S., Shakeel, M., Riaz, A.A., and Hira, F. (2023). Investigation of Effects of Processing Parameters on the Impact Strength and Microstructure of Thick Tri-Material Based Layered Composite Fabricated via Extrusion Based Additive Manufacturing. J. Eng. Res., in press.
4. Fused Deposition Modelling: Current Status, Methodology, Applications and Future Prospects;Tambuwala;Addit. Manuf.,2021
5. Sandanamsamy, L., Harun, W.S.W., Ishak, I., Romlay, F.R.M., Kadirgama, K., Ramasamy, D., Idris, S.R.A., and Tsumori, F. (2022). A Comprehensive Review on Fused Deposition Modelling of Polylactic Acid. Prog. Addit. Manuf.
Cited by
9 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