Fiber laser welding of dissimilar materials between AISI316L austenitic stainless steel and EH36 ship steels were conducted. Then the effects of welding speed on microstructure and mechanical characterization of the welded joint were investigated. Optical microscopy, Scanning Electron Microscopy (SEM), and X-ray Diffraction (XRD) were used to analyze the microstructure. Microhardness testing, transverse tensile strength, and impact tests at the temperature of −40 °C were performed to study the mechanical properties. The martensite phase formed due to the rapid cooling rate during laser welding and low Creq/Nieq ratio. The coarse martensite grains in the center seam are transformed to finer martensite grains as the welding speed increases re...
This study investigates the microstructure and mechanical property in heat affected zone (HAZ) betwe...
In this research, microstructure and mechanical properties of laser welded joints between 2304 duple...
Nowadays, environmental impact, safety and fuel efficiency are fundamental issues for the automotive...
Fiber laser welding of dissimilar materials between AISI316L austenitic stainless steel and EH36 shi...
An investigation was implement to study the influence of laser power, and speed of the welding on ha...
An investigation was implement to study the influence of laser power, and speed of the welding on ha...
In this study, an attempt on pulsed-fiber laser welding on an austenitic-duplex stainless steel butt...
This study is focused to determine empirically, which microstructural changes occur in austenitic st...
In this study, ultra-high-strength steels, namely, cold-hardened austenitic stainless steel AISI 301...
This paper attempted to establish a relationship between the morphology, microstructure and mechanic...
This paper investigates an experimental design of laser butt welding of S32520 duplex stainless stee...
Abstract In this study, ultra-high-strength steels, namely, cold-hardened austenitic stainless stee...
Annealed Ti\u20136Al\u20134V alloy sheets with 1 and 2 mm thickness are welded using a 4 kW Nd:YAG l...
For the welding of many structural metallic materials laser beam (LB) offers many advantages over tr...
This paper presents experimental investigation of laser beam welding of martensitic stainless steels...
This study investigates the microstructure and mechanical property in heat affected zone (HAZ) betwe...
In this research, microstructure and mechanical properties of laser welded joints between 2304 duple...
Nowadays, environmental impact, safety and fuel efficiency are fundamental issues for the automotive...
Fiber laser welding of dissimilar materials between AISI316L austenitic stainless steel and EH36 shi...
An investigation was implement to study the influence of laser power, and speed of the welding on ha...
An investigation was implement to study the influence of laser power, and speed of the welding on ha...
In this study, an attempt on pulsed-fiber laser welding on an austenitic-duplex stainless steel butt...
This study is focused to determine empirically, which microstructural changes occur in austenitic st...
In this study, ultra-high-strength steels, namely, cold-hardened austenitic stainless steel AISI 301...
This paper attempted to establish a relationship between the morphology, microstructure and mechanic...
This paper investigates an experimental design of laser butt welding of S32520 duplex stainless stee...
Abstract In this study, ultra-high-strength steels, namely, cold-hardened austenitic stainless stee...
Annealed Ti\u20136Al\u20134V alloy sheets with 1 and 2 mm thickness are welded using a 4 kW Nd:YAG l...
For the welding of many structural metallic materials laser beam (LB) offers many advantages over tr...
This paper presents experimental investigation of laser beam welding of martensitic stainless steels...
This study investigates the microstructure and mechanical property in heat affected zone (HAZ) betwe...
In this research, microstructure and mechanical properties of laser welded joints between 2304 duple...
Nowadays, environmental impact, safety and fuel efficiency are fundamental issues for the automotive...