Oxide dispersion-strengthened (ODS) Eurofer steel was laser welded using a short pulse duration and a designed pattern to minimise local heat accumulation. With a laser power of 2500 W and a duration of more than 3 ms, a full penetration can be obtained in a 1 mm thick plate. Material loss was observed in the fusion zone due to metal vaporisation, which can be fully compensated by the use of filler material. The solidified fusion zone consists of an elongated dual phase microstructure with a bimodal grain size distribution. Nano-oxide particles were found to be dispersed in the steel. Electron backscattered diffraction (EBSD) analysis shows that the microstructure of the heat-treated joint is recovered with substantially unaltered grain siz...
The present work deals with oxide dispersion strengthened (ODS) Eurofer steel fabricated by powder m...
This investigation attempts to explore the weld characteristics of a laser welded dissimilar joint o...
Press-hardened steels (PHS) with a 1.5-mm-thick coated Al–Si layer is welded using an IPG YLS6...
Oxide dispersion-strengthened (ODS) Eurofer steel was laser welded using a short pulse duration and ...
Pulsed laser beam welding was used successfully to join the oxide dispersion-strengthened (ODS) Euro...
Pulsed laser beam welding was used successfully to join the oxide dispersion-strengthened (ODS) Euro...
In this study, ultra-high-strength steels, namely, cold-hardened austenitic stainless steel AISI 301...
Aerospace and automotive industries utilize advanced high strength steels due to their exceptional m...
Abstract In this study, ultra-high-strength steels, namely, cold-hardened austenitic stainless stee...
Oxide dispersion strengthened (ODS) steels are promising candidates for use as structural materials ...
The purpose of our study was to investigate the properties of welded joints formed by 1.5 mm thick p...
Laser welding is attractive for numerous applications requiring materials joining, due to its low en...
In this contribution, the effect of nanoparticle additivation on the microstructure and microhardnes...
Additive manufacturing is revolutionizing the way of production and use of materials. The clear tend...
With the aim to investigate the effect of parameters and the quenching process on the joint microstr...
The present work deals with oxide dispersion strengthened (ODS) Eurofer steel fabricated by powder m...
This investigation attempts to explore the weld characteristics of a laser welded dissimilar joint o...
Press-hardened steels (PHS) with a 1.5-mm-thick coated Al–Si layer is welded using an IPG YLS6...
Oxide dispersion-strengthened (ODS) Eurofer steel was laser welded using a short pulse duration and ...
Pulsed laser beam welding was used successfully to join the oxide dispersion-strengthened (ODS) Euro...
Pulsed laser beam welding was used successfully to join the oxide dispersion-strengthened (ODS) Euro...
In this study, ultra-high-strength steels, namely, cold-hardened austenitic stainless steel AISI 301...
Aerospace and automotive industries utilize advanced high strength steels due to their exceptional m...
Abstract In this study, ultra-high-strength steels, namely, cold-hardened austenitic stainless stee...
Oxide dispersion strengthened (ODS) steels are promising candidates for use as structural materials ...
The purpose of our study was to investigate the properties of welded joints formed by 1.5 mm thick p...
Laser welding is attractive for numerous applications requiring materials joining, due to its low en...
In this contribution, the effect of nanoparticle additivation on the microstructure and microhardnes...
Additive manufacturing is revolutionizing the way of production and use of materials. The clear tend...
With the aim to investigate the effect of parameters and the quenching process on the joint microstr...
The present work deals with oxide dispersion strengthened (ODS) Eurofer steel fabricated by powder m...
This investigation attempts to explore the weld characteristics of a laser welded dissimilar joint o...
Press-hardened steels (PHS) with a 1.5-mm-thick coated Al–Si layer is welded using an IPG YLS6...