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2024 | OriginalPaper | Chapter

Impact of Deposition Procedures on 410L Multilayer Plasma Transferred Arc Processing

Authors : Otavio de Oliveira Lima, Gustavo Scheid Prass, Ana Sofia C. M. d’Oliveira

Published in: ABCM Series on Mechanical Sciences and Engineering

Publisher: Springer Nature Switzerland

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Abstract

The chapter delves into the impact of deposition procedures on the properties of multilayer AISI 410L stainless steel produced via Plasma Transferred Arc processing. It examines how deposition direction (bidirectional and unidirectional) and powder flow rate (6 g/min and 9 g/min) influence the microstructure and hardness of the material. The study reveals that deposition direction affects thermal cycles and cooling rates, leading to variations in hardness profiles and microstructure growth. Unidirectional deposition results in a more uniform hardness profile and smaller grains, while bidirectional deposition induces a zigzag effect in microstructure growth. Increasing the powder flow rate leads to thicker layers and coarser microstructures. The findings highlight the critical role of deposition strategies and powder flow rates in optimizing the properties of multilayers, potentially reducing the need for post-heat treatment operations.

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Metadata
Title
Impact of Deposition Procedures on 410L Multilayer Plasma Transferred Arc Processing
Authors
Otavio de Oliveira Lima
Gustavo Scheid Prass
Ana Sofia C. M. d’Oliveira
Copyright Year
2024
DOI
https://doi.org/10.1007/978-3-031-43555-3_12

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