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Abstract

The study aimed to optimize the Plasma Beam Polishing process for 316L stainless steel components to reduce anisotropy and poor surface roughness using statistical analysis. An experimental design investigated the impacts of managing factors on surface roughness, with scanning speed having the ultimate impact, followed by beam power and energy density. For lower values of plasma energy density and scanning speed, and a focal location without changes on the metal surface, there was a strong tendency for the estimated Ra to drop with increasing laser power. The process parameters were changed throughout a broad range of values, making it challenging to model the dependent variable across the whole range of experimental trials. The study supports the potential of PBP as a post-processing method for additive manufacturing components.
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Authors and Affiliations

Chari V. Srinivasa
1
ORCID: ORCID
Suyog Jhavar
2
ORCID: ORCID
R. Suresh
3
ORCID: ORCID

  1. Mechanical Engg. Department at At ria Institute of Technology in Bengaluru 560024, which is affiliated with VTU in Belagavi, India
  2. School of Mechanical Engineering, Inavolu, Beside AP Secretariat, Amaravati, 522237 AP, India
  3. Mechanical Engg. Department at MS Ramaiah University of Applied Sciences in Bengaluru 560024, India

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