Selection and Optimization of Carbon-Reinforced Polyether Ether Ketone Process Parameters in 3D Printing—A Rotating Component Application

Author:

Subramani Raja1ORCID,Vijayakumar Praveenkumar2ORCID,Rusho Maher Ali3,Kumar Anil4ORCID,Shankar Karthik Venkitaraman25ORCID,Thirugnanasambandam Arun Kumar1ORCID

Affiliation:

1. Center for Sustainable Materials and Surface Metamorphosis, Chennai Institute of Technology, Chennai 600069, India

2. Department of Mechanical Engineering, Amrita Vishwa Vidyapeetham, Amirtapuri 690525, India

3. Lockheed Martin Engineering Management, University of Colorado, Boulder, CO 80308, USA

4. Department of Mechanical Engineering, Kamala Nehru Institute of Technology, Sultanpur 228118, India

5. Centre for Flexible Electronics and Advanced Materials, Amrita Vishwa Vidyapeetham, Amritapuri 690525, India

Abstract

The selection of process parameters is crucial in 3D printing for product manufacturing. These parameters govern the operation of production machinery and influence the mechanical properties, production time, and other aspects of the final product. The optimal process parameter settings vary depending on the product and printing application. This study identifies the most suitable cluster of process parameters for producing rotating components, specifically impellers, using carbon-reinforced Polyether Ether Ketone (CF-PEEK) thermoplastic filament. A mathematical programming technique using a rating method was employed to select the appropriate process parameters. The research concludes that an infill density of 70%, a layer height of 0.15 mm, a printing speed of 60 mm/s, a platform temperature of 195 °C, an extruder temperature of 445 °C, and an extruder travel speed of 95 mm/s are optimal process parameters for manufacturing rotating components using carbon-reinforced PEEK material.

Funder

Center for Sustainable Materials and Surface Metamorphosis

Chennai Institute of Technology, India

Publisher

MDPI AG

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