An In-Depth Exploration of Unconventional Machining Techniques for INCONEL® Alloys

Author:

Pedroso André F. V.1ORCID,Sebbe Naiara P. V.1ORCID,Silva Francisco J. G.12ORCID,Campilho Raul D. S. G.12ORCID,Sales-Contini Rita C. M.13ORCID,Martinho Rui P.1ORCID,Casais Rafaela B.1

Affiliation:

1. CIDEM, ISEP, Polytechnic of Porto, Rua Dr. António Bernardino de Almeida, 4249-015 Porto, Portugal

2. LAETA-INEGI, Associate Laboratory for Energy, Transports and Aerospace, Rua Dr. Roberto Frias 400, 4200-465 Porto, Portugal

3. Technological College of São José dos Campos, Centro Paula Souza, Avenida Cesare Mansueto Giulio Lattes, 1350 Distrito Eugênio de Melo, São José dos Campos 12247-014, Brazil

Abstract

Build-up-edge (BUE), high-temperature machining and tool wear (TW) are some of the problems associated with difficult-to-machine materials for high-temperature applications, contributing significantly to high-cost manufacturing and poor tool life (TL) management. A detailed review of non-traditional machining processes that ease the machinability of INCONEL®, decrease manufacturing costs and suppress assembly complications is thus of paramount significance. Progress taken within the field of INCONEL® non-conventional processes from 2016 to 2023, the most recent solutions found in the industry, and the prospects from researchers have been analysed and presented. In ensuing research, it was quickly noticeable that some techniques are yet to be intensely exploited. Non-conventional INCONEL® machining processes have characteristics that can effectively increase the mechanical properties of the produced components without tool-workpiece contact, posing significant advantages over traditional manufacturing.

Funder

“DRIVOLUTION—Transition to the factory of the future”

European Structural and Investments Funds with the “Portugal2020” program scope

Publisher

MDPI AG

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