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Bulletin of the Institute of Welding / Biuletyn Instytutu Spawalnictwa 5/2021

September - October 2021
2021.12.20 by Joanna Gubernat
Download PDF: 
2021_05
20 December 2021 pdf, 411.48 KB
Download [1]
Articles: 

Relation between geometry of FSW tools and formation of nano- dispersed zones in macrostructure EN AW 6082-T6 alloy welded joints [2]

Krzysztof Krasnowski, Julia Khokhlova, Maksym Khokhlov, Valery Kostin
Keywords: 
Friction Stir Welding [3], FSW [4], thermomechanical affected zone [5], weld core [6], indentation [7], Berkovich indenter [8], hardness [9], Young’s modulus [10]
doi: 
10.17729/ebis.2021.5/1 [11]

Tests of Technological Conditions of the Resistance Welding and Adhesive Bonding of Coated Steel Sheets [12]

Szymon Kowieski, Jolanta Matusiak
Keywords: 
resistance welding [13], adhesive bonding [14], Coated Steel Sheets [15]
doi: 
10.17729/ebis.2021.5/2 [16]

 
 

Analysis of Selected Properties of Induction Welded Seamed Tubes [17]

Zbigniew Techmański, Mariusz Stępień, Jacek Stępień
Keywords: 
induction heating [18], steel tubes [19], heat affected zone (HAZ) [20], material flow lines [21]
doi: 
10.17729/ebis.2021.5/3 [22]

Plasma Transferred Arc (PTA) Cladding and TOPTIG Cladding of Tubes Made of Steel 13CrMo4-5 [23]

Janusz Rykała, Maciej Różański
Keywords: 
13CrMo4-5; PTA [24], TOPTIG [25], tube cladding [26], overlay welds [27]
doi: 
10.17729/ebis.2021.5/4 [28]

Microstructure, Toughness and Hardness of a Simulated HAZ in Steel S1100QL and of the HAZ of an Actual MAGWelded Joint Made Using a Metallic Flux-Cored Wire [29]

Mirosław Łomozik
Keywords: 
steel S1100QL [30], heat affected zone (HAZ) [20], simulation tests [31], metallographic tests [32], hardness [9], toughness [33]
doi: 
10.17729/ebis.2021.5/5 [34]

Source URL:https://bulletin.is.gliwice.pl/bulletin/bulletin-institute-welding-biuletyn-instytutu-spawalnictwa-52021

Links
[1] https://bulletin.is.gliwice.pl/download/file/fid/9379 [2] https://bulletin.is.gliwice.pl/article/ebis.2021.5/1 [3] https://bulletin.is.gliwice.pl/tags/friction-stir-welding [4] https://bulletin.is.gliwice.pl/tags/fsw [5] https://bulletin.is.gliwice.pl/tags/thermomechanical-affected-zone [6] https://bulletin.is.gliwice.pl/tags/weld-core [7] https://bulletin.is.gliwice.pl/tags/indentation [8] https://bulletin.is.gliwice.pl/tags/berkovich-indenter [9] https://bulletin.is.gliwice.pl/tags/hardness [10] https://bulletin.is.gliwice.pl/tags/youngs-modulus [11] http://dx.doi.org/10.17729/ebis.2021.5/1 [12] https://bulletin.is.gliwice.pl/article/ebis.2021.5/2 [13] https://bulletin.is.gliwice.pl/tags/resistance-welding [14] https://bulletin.is.gliwice.pl/tags/adhesive-bonding [15] https://bulletin.is.gliwice.pl/tags/coated-steel-sheets [16] http://dx.doi.org/10.17729/ebis.2021.5/2 [17] https://bulletin.is.gliwice.pl/article/ebis.2021.5/3 [18] https://bulletin.is.gliwice.pl/tags/induction-heating [19] https://bulletin.is.gliwice.pl/tags/steel-tubes [20] https://bulletin.is.gliwice.pl/tags/heat-affected-zone-haz [21] https://bulletin.is.gliwice.pl/tags/material-flow-lines [22] http://dx.doi.org/10.17729/ebis.2021.5/3 [23] https://bulletin.is.gliwice.pl/article/ebis.2021.5/4 [24] https://bulletin.is.gliwice.pl/tags/13crmo4-5-pta [25] https://bulletin.is.gliwice.pl/tags/toptig [26] https://bulletin.is.gliwice.pl/tags/tube-cladding [27] https://bulletin.is.gliwice.pl/tags/overlay-welds [28] http://dx.doi.org/10.17729/ebis.2021.5/4 [29] https://bulletin.is.gliwice.pl/article/ebis.2021.5/5 [30] https://bulletin.is.gliwice.pl/tags/steel-s1100ql [31] https://bulletin.is.gliwice.pl/tags/simulation-tests [32] https://bulletin.is.gliwice.pl/tags/metallographic-tests [33] https://bulletin.is.gliwice.pl/tags/toughness [34] http://dx.doi.org/10.17729/ebis.2021.5/5