TY - CHAP A1 - Kannengießer, Thomas A1 - Cross, C. E. A1 - Schobbert, H. ED - Düsseldorf, DVS T1 - Prüfung der Kalt- und Heißrisssicherheit gefügter Bauteile N2 - Kaltrisssicherheit, Kaltrissprüfverfahren nach DIN EN ISO 17642, TEKKEN-Test, CTS-Test, Implant-Test, Untersuchungen zur Kaltrisssicherheit hochfester Feinkornbaustähle, Heißrisssicherheit, MVT-Test, Einfluss des Einspannbedingungen auf die Heißrissbildung von Aluminiumlegierungen KW - Kaltrisssicherheit KW - Heißrisssicherheit KW - TEKKEN-Test KW - MVT-Test PY - 2006 SN - 0935-0292 VL - 2006 SP - 142 EP - 150 PB - DVS Verlag CY - Düsseldorf AN - OPUS4-39035 LA - deu AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CONF A1 - Böllinghaus, Thomas A1 - Holler, K. A1 - Kannengießer, Thomas A1 - Schobbert, H. T1 - Nd: YAG laser plasma powder hybrid welding of austenitic stainless steels N2 - As an approach towards more rough industrial laser welding applications, the Nd:YAG laser welding process has been coupled to the plasma powder welding process for the first time. Process stabilities have been achieved by such hybrid welding which are even better than those known from previous coupling of the laser process with gas metal arc welding (GMAW), for instance. The present contribution focuses on the technology and potentials of the novel laser hybrid welding technique and addresses the realisation and the perspectives for practical applications. The experimental results demonstrate that the new process coupling enables welding of austenitic stainless steels in the thickness range between 3 mm and 8 mm at various weld geometries and joint configurations and at welding speeds exceeding 2 m/min. In addition it has been proven that the laser plasma powder arc welding (LPPAW) technique can also be applied to out-of-position conditions. Continuous advancement of the welding equipment ensures a high gap bridging ability and levelling of misalignment due to higher powder feeding rates. The recent development of a new plasma powder torch even provides a higher efficiency of powder feeding and guarantees smoth weld surfaces. Up to the present, the investigations demonstrated that the novel laser plasma powder hybrid welding technique offers all perspectives for application in pipe fabrication, ship building and offshore as well as transportation industry. T2 - Seminar in Mechanical and Metallurgical Approaches to New Joining Process CY - Awaji Island, Japan DA - 20.07.2004 KW - Nd:YAG KW - Laser plasma KW - Powder KW - Hybrid KW - Welding KW - Austenitic stainless steels PY - 2004 SP - 140 EP - 145 CY - Japan AN - OPUS4-39261 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER -