Laser Welding of Pipe Stubs Made From Super 304 Steel. Numerical Simulation and Weld Properties

The laser welding process of test pipe stubs which were made from Super 304 stainless steel is usually used to produce components of a power infrastructure. It was numerically simulated and the obtained results are presented in this paper. For the laser welding method, the weldability of this steel...

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Main Author: Danielewski Hubert
Format: Article
Language:English
Published: Sciendo 2019-01-01
Series:Technical Transactions
Subjects:
Online Access:https://doi.org/10.4467/2353737XCT.19.011.10051
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author Danielewski Hubert
author_facet Danielewski Hubert
author_sort Danielewski Hubert
collection DOAJ
description The laser welding process of test pipe stubs which were made from Super 304 stainless steel is usually used to produce components of a power infrastructure. It was numerically simulated and the obtained results are presented in this paper. For the laser welding method, the weldability of this steel is presented, as well as the results of strength and microstructure tests of a joint welded at the parameter settings selected from a numerical simulation. The chemical composition, including the increased content of alloying elements such as chromium and nickel, improves the strength characteristics of the welded steel, allowing for the production of components of superheaters and partition walls of boilers operating in supercritical parameters.
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spelling doaj.art-1a2eaaa5032d47c1ac2a2ebd7e98ac9e2023-12-18T12:46:17ZengSciendoTechnical Transactions2353-737X2019-01-01116116717510.4467/2353737XCT.19.011.10051Laser Welding of Pipe Stubs Made From Super 304 Steel. Numerical Simulation and Weld PropertiesDanielewski Hubert0Faculty of Mechatronics and Mechanical Engineering, Kielce University of TechnologyThe laser welding process of test pipe stubs which were made from Super 304 stainless steel is usually used to produce components of a power infrastructure. It was numerically simulated and the obtained results are presented in this paper. For the laser welding method, the weldability of this steel is presented, as well as the results of strength and microstructure tests of a joint welded at the parameter settings selected from a numerical simulation. The chemical composition, including the increased content of alloying elements such as chromium and nickel, improves the strength characteristics of the welded steel, allowing for the production of components of superheaters and partition walls of boilers operating in supercritical parameters.https://doi.org/10.4467/2353737XCT.19.011.10051laser weldingsuper 304 austenitic steelnumerical simulationsimufactweldingproperties of laser welded joints
spellingShingle Danielewski Hubert
Laser Welding of Pipe Stubs Made From Super 304 Steel. Numerical Simulation and Weld Properties
Technical Transactions
laser welding
super 304 austenitic steel
numerical simulation
simufactwelding
properties of laser welded joints
title Laser Welding of Pipe Stubs Made From Super 304 Steel. Numerical Simulation and Weld Properties
title_full Laser Welding of Pipe Stubs Made From Super 304 Steel. Numerical Simulation and Weld Properties
title_fullStr Laser Welding of Pipe Stubs Made From Super 304 Steel. Numerical Simulation and Weld Properties
title_full_unstemmed Laser Welding of Pipe Stubs Made From Super 304 Steel. Numerical Simulation and Weld Properties
title_short Laser Welding of Pipe Stubs Made From Super 304 Steel. Numerical Simulation and Weld Properties
title_sort laser welding of pipe stubs made from super 304 steel numerical simulation and weld properties
topic laser welding
super 304 austenitic steel
numerical simulation
simufactwelding
properties of laser welded joints
url https://doi.org/10.4467/2353737XCT.19.011.10051
work_keys_str_mv AT danielewskihubert laserweldingofpipestubsmadefromsuper304steelnumericalsimulationandweldproperties