@article{ReisgenSchleserMokrovetal.2012, author = {Reisgen, Uwe and Schleser, Markus and Mokrov, Oleg and Zabirov, Alexander and F{\"u}ssel, Uwe and Schnick, Michael and Hertel, Martin and Jaeckel, Sebastian}, title = {Modellierung und Visualisierung der MSG-Lichtbogenprozesse}, series = {Schweissen und Schneiden : Fachzeitschrift f{\"u}r Schweißen und verwandte Verfahren}, volume = {64}, journal = {Schweissen und Schneiden : Fachzeitschrift f{\"u}r Schweißen und verwandte Verfahren}, number = {4}, publisher = {DVS Verlag}, address = {D{\"u}sseldorf}, issn = {0036-7184}, pages = {166 -- 174}, year = {2012}, language = {de} } @article{ReisgenSchleserMokrovetal.2012, author = {Reisgen, Uwe and Schleser, Markus and Mokrov, Oleg and Zabirov, Alexander and F{\"u}ssel, Uwe and Schnick, Michael and Hertel, Martin and Jaeckel, Sebastian}, title = {Modelling and visualisation of the GMA process}, series = {Welding and Cutting}, volume = {11}, journal = {Welding and Cutting}, number = {4}, publisher = {DVS Verlag}, address = {D{\"u}sseldorf}, issn = {1612-3433}, pages = {242 -- 249}, year = {2012}, language = {en} } @inproceedings{ReisgenSchleserMokrovetal.2011, author = {Reisgen, Uwe and Schleser, Markus and Mokrov, Oleg and Zabirov, Alexander}, title = {Simulation des Tropfen{\"u}bergangs beim MSG-Impulslichtbogenschweißen}, series = {Große Schweißtechnische Tagung 2011 : Studentenkongress 2011, Abschlusskolloquium Lichtbogenschweißen 2011; Vortr{\"a}ge der Veranstaltung in Hamburg}, booktitle = {Große Schweißtechnische Tagung 2011 : Studentenkongress 2011, Abschlusskolloquium Lichtbogenschweißen 2011; Vortr{\"a}ge der Veranstaltung in Hamburg}, publisher = {DVS-Media}, address = {D{\"u}sseldorf}, organization = {Deutscher Verband f{\"u}r Schweißen und Verwandte Verfahren ; Große Schweißtechnische Tagung <2011, Hamburg>}, isbn = {978-3-87155-267-0}, pages = {554 -- 559}, year = {2011}, language = {de} } @article{ReisgenSchleserMokrovetal.2011, author = {Reisgen, Uwe and Schleser, Markus and Mokrov, Oleg and Zabirov, Alexander}, title = {Virtual welding equipment for simulation of GMAW processes with integration of power source regulation}, series = {Frontiers of materials science}, volume = {Vol. 5}, journal = {Frontiers of materials science}, number = {Iss. 2}, publisher = {Springer}, address = {Berlin}, issn = {2095-0268 (E-Journal); 2095-025X (Print)}, pages = {79 -- 89}, year = {2011}, language = {en} } @inproceedings{ReisgenSchleserMokrovetal.2012, author = {Reisgen, Uwe and Schleser, Markus and Mokrov, Oleg and Ufer, Sebastian and Guenel, Ismet and Gach, Stefan}, title = {Voruntersuchungen mit Ansys CFX zu einer Druckstufe von einem Druckstufensystem f{\"u}r das Elektronenstrahlschweißen}, series = {DVS Congress 2012 : Große Schweißtechnische Tagung, DVS-Studentenkongress ; Vortr{\"a}ge der Veranstaltungen in Saarbr{\"u}cken am 17. und 18. September 2012. (DVS-Berichte ; 286)}, booktitle = {DVS Congress 2012 : Große Schweißtechnische Tagung, DVS-Studentenkongress ; Vortr{\"a}ge der Veranstaltungen in Saarbr{\"u}cken am 17. und 18. September 2012. (DVS-Berichte ; 286)}, publisher = {DVS Media}, address = {D{\"u}sseldorf}, organization = {Deutscher Verband f{\"u}r Schweißen und Verwandte Verfahren ; Große Schweißtechnische Tagung <2012, Saarbr{\"u}cken>}, isbn = {978-3-87155-593-0}, pages = {33 -- 35}, year = {2012}, language = {de} } @inproceedings{ReisgenSchleserMokrovetal.2012, author = {Reisgen, Uwe and Schleser, Markus and Mokrov, Oleg and Schmidt, Andre}, title = {SimWeld - 10 Jahre Schweißprozesssimulation im ISF}, series = {Entwicklung und Evolution von Forschungssoftware : Tagungsband des Workshops, Rolduc, November 2011. (Aachener Informatik-Berichte, Software-Engineering ; Bd. 14)}, booktitle = {Entwicklung und Evolution von Forschungssoftware : Tagungsband des Workshops, Rolduc, November 2011. (Aachener Informatik-Berichte, Software-Engineering ; Bd. 14)}, editor = {Rumpe, Bernhard and Lichter, Horst}, publisher = {Shaker}, address = {Aachen}, isbn = {978-3-8440-1600-0}, pages = {55 -- 62}, year = {2012}, language = {de} } @inproceedings{ReisgenSchleserMokrovetal.2010, author = {Reisgen, Uwe and Schleser, Markus and Mokrov, Oleg and Schmidt, A. and Rossiter, E. and Loose, T.}, title = {Durchg{\"a}ngige Schweißsimulation der Eigenspannung und des Gef{\"u}gezustands auf Basis realer Schweißstromquellenparameter}, series = {DVS congress 2010 : Große Schweißtechnische Tagung ; Studentenkongress ; Statusseminar "Schneidtechnik" ; Abschlusskolloquium zum AiF-Forschungscluster "Integration des R{\"u}hrreibschweißens in Fertigungsprozessketten" ; Vortr{\"a}ge der Veranstaltung in N{\"u}rnberg am 27. und 28. September 2010. (DVS-Berichte ; 267)}, booktitle = {DVS congress 2010 : Große Schweißtechnische Tagung ; Studentenkongress ; Statusseminar "Schneidtechnik" ; Abschlusskolloquium zum AiF-Forschungscluster "Integration des R{\"u}hrreibschweißens in Fertigungsprozessketten" ; Vortr{\"a}ge der Veranstaltung in N{\"u}rnberg am 27. und 28. September 2010. (DVS-Berichte ; 267)}, publisher = {DVS Media}, address = {D{\"u}sseldorf}, organization = {Deutscher Verband f{\"u}r Schweißen und Verwandte Verfahren ; Große Schweißtechnische Tagung <2010, N{\"u}rnberg>}, isbn = {978-3-87155-592-3}, pages = {37 -- 42}, year = {2010}, language = {de} } @inproceedings{ReisgenSchleserMokrovetal.2009, author = {Reisgen, Uwe and Schleser, Markus and Mokrov, Oleg and Ahmed, Essam and Schmidt, Andre and Rossiter, Eduardo}, title = {Integrative Berechnung von Verzug und Eigenspannungen auf Basis realer Schweißparameter}, series = {Tagungsband / SYSWELD-Forum 2009 : 22. - 23. Oktober 2009, Weimar}, booktitle = {Tagungsband / SYSWELD-Forum 2009 : 22. - 23. Oktober 2009, Weimar}, editor = {Hildebrand, J{\"o}rg}, publisher = {Univ.-Verl.}, address = {Weimar}, isbn = {978-3-86068-401-6}, pages = {32 -- 41}, year = {2009}, language = {de} } @article{ReisgenSchleserMokrovetal.2012, author = {Reisgen, Uwe and Schleser, Markus and Mokrov, Oleg and Ahmed, Essam}, title = {Statistical modeling of laser welding of DP/TRIP steel sheets}, series = {Optics and laser technology}, volume = {44}, journal = {Optics and laser technology}, number = {1}, publisher = {Elsevier}, address = {Amsterdam}, issn = {1879-2545 (E-Journal); 0030-3992 (Print); 0308-4280 (Print)}, doi = {10.1016/j.optlastec.2011.05.025}, pages = {92 -- 101}, year = {2012}, abstract = {In this research work, a statistical analysis of the CO2 laser beam welding of dual phase (DP600)/transformation induced plasticity (TRIP700) steel sheets was done using response surface methodology. The analysis considered the effect of laser power (2-2.2 kW), welding speed (40-50 mm/s) and focus position (-1 to 0 mm) on the heat input, the weld bead geometry, uniaxial tensile strength, formability limited dome height and welding operation cost. The experimental design was based on Box-Behnken design using linear and quadratic polynomial equations for predicting the mathematical models. The results indicate that the proposed models predict the responses adequately within the limits of welding parameters being used and the welding speed is the most significant parameter during the welding process.}, language = {en} } @article{ReisgenSchleserMokrovetal.2012, author = {Reisgen, Uwe and Schleser, Markus and Mokrov, Oleg and Ahmed, Essam}, title = {Optimization of laser welding of DP/TRIP steel sheets using statistical approach}, series = {Optics and laser technology}, volume = {44}, journal = {Optics and laser technology}, number = {1}, publisher = {Elsevier}, address = {Amsterdam}, issn = {1879-2545 (E-Journal); 0030-3992 (Print); 0308-4280 (Print)}, doi = {10.1016/j.optlastec.2011.06.028}, pages = {255 -- 262}, year = {2012}, abstract = {Generally, the quality of a weld joint is directly influenced by the welding input parameter settings. Selection of proper process parameters is important to obtain the desired weld bead profile and quality. In this research work, numerical and graphical optimization techniques of the CO2 laser beam welding of dual phase (DP600)/transformation induced plasticity (TRIP700) steel sheets were carried out using response surface methodology (RSM) based on Box-Behnken design. The procedure was established to improve the weld quality, increase the productivity and minimize the total operation cost by considering the welding parameters range of laser power (2-2.2 kW), welding speed (40-50 mm/s) and focus position (-1 to 0 mm). It was found that, RSM can be considered as a powerful tool in experimental welding optimization, even when the experimenter does not have a model for the process. Strong, efficient and low cost weld joints could be achieved using the optimum welding conditions.}, language = {en} }