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KLAKURKOVÁ, L. ČELKO, L. JULIŠ, M. JECH, D. ŠVEJCAR, J.
Originální název
Analysis of Coupling Segment of Belt Conveyor
Typ
článek ve sborníku ve WoS nebo Scopus
Jazyk
angličtina
Originální abstrakt
The paper focuses on the metallographic analysis of damaged belt-conveyor coupling segments made of high-alloy austenitic steel. The object in question is a weldment – a bar with a ring welded on it at either end. The subject of the analysis is the evaluation of the microstructure of the base material of the two components (weldment and weld metal), the quality of the execution of the weld joints, subsequent heat treatment of the weldment, and the overall state of the component part after operational loading. The suitability of the design solution of the whole weldment is also discussed. The problematic is solved with the aid of a metallographic analysis of the microstructure of the material, using light microscopy, scanning electron microscopy inclusive of the EDS microanalysis of chemical composition, and microhardness measurement.
Klíčová slova
Heat Treatment; High-Alloyed Austenitic Steel; Stabilized Steel; Welding
Autoři
KLAKURKOVÁ, L.; ČELKO, L.; JULIŠ, M.; JECH, D.; ŠVEJCAR, J.
Rok RIV
2015
Vydáno
1. 5. 2015
Nakladatel
Trans Tech Publications Ltd
Místo
Switzerland
ISBN
9783038354703
Kniha
Key Engineering Materials
ISSN
1013-9826
Periodikum
Key Engineering Materials (print)
Ročník
Číslo
647
Stát
Švýcarská konfederace
Strany od
210
Strany do
215
Strany počet
5
URL
http://www.scientific.net/KEM.647.210
BibTex
@inproceedings{BUT116589, author="Lenka {Klakurková} and Ladislav {Čelko} and Martin {Juliš} and David {Jech} and Jiří {Švejcar}", title="Analysis of Coupling Segment of Belt Conveyor", booktitle="Key Engineering Materials", year="2015", journal="Key Engineering Materials (print)", volume="2015", number="647", pages="210--215", publisher="Trans Tech Publications Ltd", address="Switzerland", doi="10.4028/www.scientific.net/KEM.647.210", isbn="9783038354703", issn="1013-9826", url="http://www.scientific.net/KEM.647.210" }