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- W2768863089 abstract "In recent years there have been significant new developments in welding processes forjoining stainless steel and dissimilar metals. This is associated with the rise in interest ofusing stainless steel in the automotive industry from both car manufacturers andstainless steel producers. The main reason for using stainless steel within the automotiveindustry is the combination of formability and high strength but also the improvedcorrosion resistance when compared to zinc coated mild steel.This research explores the mechanical and metallurgical properties of dissimilar metaljoining and determines a relationship between the fatigue properties and weld geometry.The research focuses on the relatively unexplored joining techniques of Laser HybridWelding and Cold Metal Transfer applied to joining stainless steel grades Hy-Tens1000 and LDX 2101 to Dogal 260RP-X mild steel. The joints are assessed in terms oftensile, fatigue and metallurgical properties.Experimental results and analysis show that the fatigue properties of both laser hybridwelding and cold metal transfer joints are a linear relationship with a negative gradientto value of the root angle on the mild steel side of the joints, as the angle at the rootdecreases the fatigue life increases.It was found that when joining the material combinations outlined in this research withLaser Hybrid Welding the resulting solidified weld pool was chemicallyinhomogeneous. However, welds produced using Cold Metal Transfer resulted in achemically homogenous weld pool and consistent microhardness.Comparisons with laser welding show that laser hybrid welding and cold metal transfercan produce joints with mechanical properties comparable to welding methods currentlybeing used in the automotive industry, for example, laser welding." @default.
- W2768863089 created "2017-12-04" @default.
- W2768863089 creator A5050762744 @default.
- W2768863089 date "2008-10-31" @default.
- W2768863089 modified "2023-09-27" @default.
- W2768863089 title "Mechanical and metallurgical properties of dissimilar metal joints using novel joining techniques" @default.
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