Surface properties play a critical role in the structural integrity of any component and this becomes even more critical for weld joints. Laser shock peening (LSP) is one of the non-contact methods which is getting popular in industries to enhance surface properties for improving service life, mainly fatigue of engineering components. In the present study, electron beam welding (EBW) of commercially pure (cp) titanium was carried out at constant line energy with varying scan speeds ranging from 1000 to 1600 mm/min and welding currents from 25 to 40 mA. The influence of the EBW parameters on microstructure, surface micro-hardness, tensile, and fatigue strength was investigated. The effect of LSP on mechanical and corrosion properties of EBW ...
As one of the surface strengthening technologies, laser shock processing (LSP) can form a gradient r...
AbstractWith the development of the manufacturing technology, electron beam welding (EBW) is capable...
Titanium and its alloys are nowadays widely used in many sectors: in the medical field (orthopedic a...
Titanium is considered one of the best engineering materials for industrial applications with the di...
This research work investigates the effect of laser shock peening (LSP) on commercially pure titaniu...
The use of pure titanium and titanium alloys have been increased recently in fixed, removable prosth...
Ti-4Al-5Mo-5V-5Cr-1Nb (wt.%) is a new type of high-strength (~1300 MPa) titanium (Ti) alloy develope...
The welding of titanium alloys must be conducted in completely inert or vacuum environments due to t...
This thesis examines the effect of welding on the microstructure and properties of commercially pure...
Electron beam welding (EBW) was applied to 50. mm thick damage-tolerant Ti-6Al-4V (TC4-DT) alloy, an...
Linear friction welding (LFW) is a solid state joining process that offers the advantage of producin...
Titanium alloys are widely used for components in the fan and compressor sections of aeroengines mai...
Commercially pure titanium Ti Grade 2, 2 mm in thickness, was welded to 2 mm thick nickel alloy 201 ...
In this study, in order to achieve a better understanding of the strengthening mechanism in the comm...
Purpose: The primary purpose of the study was the metallurgical characterization of laser welds. The...
As one of the surface strengthening technologies, laser shock processing (LSP) can form a gradient r...
AbstractWith the development of the manufacturing technology, electron beam welding (EBW) is capable...
Titanium and its alloys are nowadays widely used in many sectors: in the medical field (orthopedic a...
Titanium is considered one of the best engineering materials for industrial applications with the di...
This research work investigates the effect of laser shock peening (LSP) on commercially pure titaniu...
The use of pure titanium and titanium alloys have been increased recently in fixed, removable prosth...
Ti-4Al-5Mo-5V-5Cr-1Nb (wt.%) is a new type of high-strength (~1300 MPa) titanium (Ti) alloy develope...
The welding of titanium alloys must be conducted in completely inert or vacuum environments due to t...
This thesis examines the effect of welding on the microstructure and properties of commercially pure...
Electron beam welding (EBW) was applied to 50. mm thick damage-tolerant Ti-6Al-4V (TC4-DT) alloy, an...
Linear friction welding (LFW) is a solid state joining process that offers the advantage of producin...
Titanium alloys are widely used for components in the fan and compressor sections of aeroengines mai...
Commercially pure titanium Ti Grade 2, 2 mm in thickness, was welded to 2 mm thick nickel alloy 201 ...
In this study, in order to achieve a better understanding of the strengthening mechanism in the comm...
Purpose: The primary purpose of the study was the metallurgical characterization of laser welds. The...
As one of the surface strengthening technologies, laser shock processing (LSP) can form a gradient r...
AbstractWith the development of the manufacturing technology, electron beam welding (EBW) is capable...
Titanium and its alloys are nowadays widely used in many sectors: in the medical field (orthopedic a...