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Home > Biuletyn Instytutu Spawalnictwa 5/2017

Biuletyn Instytutu Spawalnictwa 5/2017

September – October 2017
2017.10.18 by Marek Dragan
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2017_05
18 October 2017 pdf, 429.26 KB
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Articles: 

Numerical Simulations of Modern Joining Techniques Illustrated with Examples of the FSW and EBW Methods [2]

Marek Slováček, Tomasz Kik
Keywords: 
Friction Stir Welding [3], FSW [4], electron beam welding [5], EBW [6], SYSWELD [7], modelling [8], numerical analyses [9]
doi: 
10.17729/ebis.2017.5/1 [10]

Numerical Analyses in the Modelling of Spot Resistance Welding Processes [11]

Tomasz Kik, Marek Slováček
Keywords: 
spot resistance welding [12], weld nugget [13], electrode shape [14], modelling [8], numerical analyses [9]
doi: 
10.17729/ebis.2017.5/2 [15]

Simulation Tests of the Welding Machine Secondary Circuit [16]

Mariusz Stępień, Zygmunt Mikno, Bogusław Grzesik
Keywords: 
secondary circuit of the welding machine [17], FEM [18], Finite Elements Method [19], ANSYS ADPL [20], simulation tests [21]
doi: 
10.17729/ebis.2017.5/3 [22]

Assessment of Electrode Consumption in Resistance Welding [23]

Marcin Korzeniowski, Beata Białobrzeska, Adrian Kowal
Keywords: 
spot resistance welding [12], electrode consumption [24], metallographic tests [25]
doi: 
10.17729/ebis.2017.5/4 [26]

Replacement of Projection Welding with the Spot Welding Process Illustrated Using an Example of a VW Crafter Door Window Frame [27]

Agata Pawłowska
Keywords: 
welded joints [28], projection welding [29], automotive industry [30], spot resistance welding [12]
doi: 
10.17729/ebis.2017.5/5 [31]

Strength of the Weld with Respect to Its Geometry [32]

Zygmunt Mikno, Bogusław Grzesik
Keywords: 
spot resistance welding [12], weld geometry [33]
doi: 
10.17729/ebis.2017.5/6 [34]

 
 
 
 

Resistance Welding and Laser Welding for Electrical Contacting and Micro Joining Solutions [35]

Marcin Alexy, Jörg Kundrat, Geoff Shannon
Keywords: 
spot resistance welding [12], laser welding [36], electrical contacts [37]
doi: 
10.17729/ebis.2017.5/7 [38]

Effect of Steel Grades on Technological Properties of Spot Welds [39]

Marcin Korzeniowski, Beata Białobrzeska, Martyna Maciejewska
Keywords: 
spot resistance welding [12], robotic welding [40], car body steels [41]
doi: 
10.17729/ebis.2017.5/8 [42]

Effect of the Preparation of Aluminium, Magnesium and Titanium Alloys Surface on Properties of Adhesive Bonded Joints [43]

Zbigniew Mirski, Tomasz Wojdat, Zbigniew Zimniak, Izabela Łącka, Agata Pawełko
Keywords: 
adhesive bonding [44], Aluminium [45], Magnesium [46], Titanium Alloys [47]
doi: 
10.17729/ebis.2017.5/9 [48]

Targeted Weld Seam Formation and Energy Reduction at Magnetic Pulse Welding (MPW) [49]

Joerg Bellmann, Eckhard Beyer, Joern Lueg-Althoff, Soeren Gies, A. Erman Tekkaya, Sebastian Schettler, Sebastian Schulze
Keywords: 
magnetic pulse welding [50], surface coating [51], energy reduction [52], torsion testing [53]
doi: 
10.17729/ebis.2017.5/10 [54]

Robot-based Friction Stir Welding for E-mobility and General Applications [55]

Bernd Richter
Keywords: 
Friction Stir Welding [3], FSW [4], automotive industry [30], FSW tooling [56], quality of joints [57]
doi: 
10.17729/ebis.2017.5/11 [58]

Selected Possibilities of the FSW and FSSW Methods in the Removal of Material Defects and Welding Imperfections [59]

Krzysztof Kudła, Kwiryn Wojsyk
Keywords: 
Friction Stir Welding [3], FSW [4], Friction Stir Spot Welding [60], FSSW [61], welding imperfections [62]
doi: 
10.17729/ebis.2017.5/12 [63]

Effect of FSW Process Parameters on Properties of Aluminium Joints [64]

Przemysław Nosal, Marek Hebda
Keywords: 
Friction Stir Welding [3], FSW [4], aluminium alloys [65], FSW process parameters [66], FSW process optimalisation [67]
doi: 
10.17729/ebis.2017.5/13 [68]

Development of Methods for the Assessment of Stresses in Welded Structure Elements. Part 2. The Latest Methods [69]

P.N. Tkach, A.W. Moltasov
Keywords: 
welded joints [28], weld geometry [33], stresses [70], concentration of stresses [71], computational methods [72]
doi: 
10.17729/ebis.2017.5/14 [73]

Source URL:https://bulletin.is.gliwice.pl/bulletin/biuletyn-instytutu-spawalnictwa-52017

Links
[1] https://bulletin.is.gliwice.pl/download/file/fid/4036 [2] https://bulletin.is.gliwice.pl/article/numerical-simulations-modern-joining-techniques-illustrated-examples-fsw-and-ebw-methods [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/electron-beam-welding [6] https://bulletin.is.gliwice.pl/tags/ebw [7] https://bulletin.is.gliwice.pl/tags/sysweld [8] https://bulletin.is.gliwice.pl/tags/modelling [9] https://bulletin.is.gliwice.pl/tags/numerical-analyses [10] http://dx.doi.org/10.17729/ebis.2017.5/1 [11] https://bulletin.is.gliwice.pl/article/numerical-analyses-modelling-spot-resistance-welding-processes [12] https://bulletin.is.gliwice.pl/tags/spot-resistance-welding [13] https://bulletin.is.gliwice.pl/tags/weld-nugget [14] https://bulletin.is.gliwice.pl/tags/electrode-shape [15] http://dx.doi.org/10.17729/ebis.2017.5/2 [16] https://bulletin.is.gliwice.pl/article/simulation-tests-welding-machine-secondary-circuit [17] https://bulletin.is.gliwice.pl/tags/secondary-circuit-welding-machine [18] https://bulletin.is.gliwice.pl/tags/fem [19] https://bulletin.is.gliwice.pl/tags/finite-elements-method [20] https://bulletin.is.gliwice.pl/tags/ansys-adpl [21] https://bulletin.is.gliwice.pl/tags/simulation-tests [22] http://dx.doi.org/10.17729/ebis.2017.5/3 [23] https://bulletin.is.gliwice.pl/article/assessment-electrode-consumption-resistance-welding [24] https://bulletin.is.gliwice.pl/tags/electrode-consumption [25] https://bulletin.is.gliwice.pl/tags/metallographic-tests [26] http://dx.doi.org/10.17729/ebis.2017.5/4 [27] https://bulletin.is.gliwice.pl/article/replacement-projection-welding-spot-welding-process-illustrated-using-example-vw-crafter [28] https://bulletin.is.gliwice.pl/tags/welded-joints [29] https://bulletin.is.gliwice.pl/tags/projection-welding [30] https://bulletin.is.gliwice.pl/tags/automotive-industry [31] http://dx.doi.org/10.17729/ebis.2017.5/5 [32] https://bulletin.is.gliwice.pl/article/strength-weld-respect-its-geometry [33] https://bulletin.is.gliwice.pl/tags/weld-geometry [34] http://dx.doi.org/10.17729/ebis.2017.5/6 [35] https://bulletin.is.gliwice.pl/article/resistance-welding-and-laser-welding-electrical-contacting-and-micro-joining-solutions [36] https://bulletin.is.gliwice.pl/tags/laser-welding [37] https://bulletin.is.gliwice.pl/tags/electrical-contacts [38] http://dx.doi.org/10.17729/ebis.2017.5/7 [39] https://bulletin.is.gliwice.pl/article/effect-steel-grades-technological-properties-spot-welds [40] https://bulletin.is.gliwice.pl/tags/robotic-welding [41] https://bulletin.is.gliwice.pl/tags/car-body-steels [42] http://dx.doi.org/10.17729/ebis.2017.5/8 [43] https://bulletin.is.gliwice.pl/article/effect-preparation-aluminium-magnesium-and-titanium-alloys-surface-properties-adhesive [44] https://bulletin.is.gliwice.pl/tags/adhesive-bonding [45] https://bulletin.is.gliwice.pl/tags/aluminium [46] https://bulletin.is.gliwice.pl/tags/magnesium [47] https://bulletin.is.gliwice.pl/tags/titanium-alloys [48] http://dx.doi.org/10.17729/ebis.2017.5/9 [49] https://bulletin.is.gliwice.pl/article/targeted-weld-seam-formation-and-energy-reduction-magnetic-pulse-welding-mpw [50] https://bulletin.is.gliwice.pl/tags/magnetic-pulse-welding [51] https://bulletin.is.gliwice.pl/tags/surface-coating [52] https://bulletin.is.gliwice.pl/tags/energy-reduction [53] https://bulletin.is.gliwice.pl/tags/torsion-testing [54] http://dx.doi.org/10.17729/ebis.2017.5/10 [55] https://bulletin.is.gliwice.pl/article/robot-based-friction-stir-welding-e-mobility-and-general-applications [56] https://bulletin.is.gliwice.pl/tags/fsw-tooling [57] https://bulletin.is.gliwice.pl/tags/quality-joints [58] http://dx.doi.org/10.17729/ebis.2017.5/11 [59] https://bulletin.is.gliwice.pl/article/selected-possibilities-fsw-and-fssw-methods-removal-material-defects-and-welding [60] https://bulletin.is.gliwice.pl/tags/friction-stir-spot-welding [61] https://bulletin.is.gliwice.pl/tags/fssw [62] https://bulletin.is.gliwice.pl/tags/welding-imperfections [63] http://dx.doi.org/10.17729/ebis.2017.5/12 [64] https://bulletin.is.gliwice.pl/article/effect-fsw-process-parameters-properties-aluminium-joints [65] https://bulletin.is.gliwice.pl/tags/aluminium-alloys [66] https://bulletin.is.gliwice.pl/tags/fsw-process-parameters [67] https://bulletin.is.gliwice.pl/tags/fsw-process-optimalisation [68] http://dx.doi.org/10.17729/ebis.2017.5/13 [69] https://bulletin.is.gliwice.pl/article/development-methods-assessment-stresses-welded-structure-elements-part-2-latest-methods [70] https://bulletin.is.gliwice.pl/tags/stresses [71] https://bulletin.is.gliwice.pl/tags/concentration-stresses [72] https://bulletin.is.gliwice.pl/tags/computational-methods [73] http://dx.doi.org/10.17729/ebis.2017.5/14