Multiscale Analysis of Functional Surfaces Produced by L-PBF Additive Technology and Titanium Powder Ti6Al4V

Author:

Gogolewski Damian1ORCID,Zmarzły Paweł1ORCID,Kozior Tomasz1ORCID

Affiliation:

1. Faculty of Mechatronics and Mechanical Engineering, Kielce University of Technology, al. Tysiąclecia Państwa Polskiego 7, 25-314 Kielce, Poland

Abstract

The article discusses experimental studies assessing the possibility of mapping surfaces with a characteristic distribution of irregularities. Tests involved surfaces produced using the L-PBF additive technology, using titanium-powder-based material (Ti6Al4V). An evaluation of the resulting surface texture was extended to cover the application of a modern, multiscale analysis, i.e., wavelet transformation. The conducted analysis that involved using selected mother wavelet enabled production process errors and involved determining the size of resulting surface irregularities. The tests provide guidelines and enable a better understanding of the possibility of producing fully functional elements on surfaces, where morphological surface features are distributed in a characteristic way. Conducted statistical studies showed the advantages and disadvantages of the applied solution.

Funder

National Science Centre

Publisher

MDPI AG

Subject

General Materials Science

Reference39 articles.

1. Effects of equal channel angular pressing and heat treatments on the microstructures and mechanical properties of selective laser melted and cast AlSi10Mg alloys;Mikuszewski;Arch. Civ. Mech. Eng.,2021

2. Use of selective laser melting (SLM) as a replacement for pressure die casting technology for the production of automotive casting;Arch. Foundry Eng.,2021

3. Analysis of 3D printing parameters of gears for hybrid manufacturing;Budzik;AIP Conf. Proc.,2018

4. Diaz, A. (2019). Additive Manufacturing for the Aerospace Industry, Elsevier.

5. A comparative life cycle assessment of a selective-laser-melting-produced hydraulic valve body using design for Property;Wang;Procedia CIRP,2020

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