Austenitic stainless steels are generally known to have very good laser weldability, when ordinary grades of sheets are concerned. But it is not necessarily the case, if special grades of fully austenitic structures with e.g. high molybdenum, or thick-section are used. It is also known that hot cracking susceptibility is strictly controlled by composition and welding parameters. If solidification is primary ferritic, hot cracking resistance is dramatically increased. It is also well known that laser welding needs a careful control of weld edge preparation and air gap between the edges. The dependence on edge quality can be decreased by using filler metal, either cold wire, hot wire or hybrid laser-arc welding. An additional role is high mol...
Autogenous Nd:YAG laser welding was carried out on austenitic stainless steel (316LN) and duplex sta...
Hybrid welding, in which laser and some arc welding method work together, has been introduced to be ...
Thick section austenitic stainless steel, AISI 316 LN, has been welded by using an 3 kW Nd:YAG - las...
Austenitic stainless steels are generally known to have very good laser weldability, when ordinary g...
AbstractAustenitic stainless steels are generally known to have very good laser weldability, when or...
Although the austenitic stainless steel grades are commonly considered to be quite easily weldable, ...
Although the austenitic stainless steel grades are commonly considered to be quite easily weldable, ...
Autogenous laser welding has shown many advantages over traditional welding methods in numerous appl...
Austenitic stainless steel AISI 316L grade base material with butt joint thickness of 15 mm and diff...
Autogenous laser welding has shown many advantages over traditional welding methods in numerous appl...
In thick section laser welding, filler metal addition is usually required to improve joint fit-up to...
Hybrid welding has been introduced as a process that combines one laser and one arc welding process ...
This study is focused to determine empirically, which microstructural changes occur in austenitic st...
Narrow gap multirun welding tests were carried out on thick specimens (14-35 mm) of AISI 316L austen...
Laser welding can offer many advantages over conventional welding when used in the right application...
Autogenous Nd:YAG laser welding was carried out on austenitic stainless steel (316LN) and duplex sta...
Hybrid welding, in which laser and some arc welding method work together, has been introduced to be ...
Thick section austenitic stainless steel, AISI 316 LN, has been welded by using an 3 kW Nd:YAG - las...
Austenitic stainless steels are generally known to have very good laser weldability, when ordinary g...
AbstractAustenitic stainless steels are generally known to have very good laser weldability, when or...
Although the austenitic stainless steel grades are commonly considered to be quite easily weldable, ...
Although the austenitic stainless steel grades are commonly considered to be quite easily weldable, ...
Autogenous laser welding has shown many advantages over traditional welding methods in numerous appl...
Austenitic stainless steel AISI 316L grade base material with butt joint thickness of 15 mm and diff...
Autogenous laser welding has shown many advantages over traditional welding methods in numerous appl...
In thick section laser welding, filler metal addition is usually required to improve joint fit-up to...
Hybrid welding has been introduced as a process that combines one laser and one arc welding process ...
This study is focused to determine empirically, which microstructural changes occur in austenitic st...
Narrow gap multirun welding tests were carried out on thick specimens (14-35 mm) of AISI 316L austen...
Laser welding can offer many advantages over conventional welding when used in the right application...
Autogenous Nd:YAG laser welding was carried out on austenitic stainless steel (316LN) and duplex sta...
Hybrid welding, in which laser and some arc welding method work together, has been introduced to be ...
Thick section austenitic stainless steel, AISI 316 LN, has been welded by using an 3 kW Nd:YAG - las...