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Aluminium alloy, AA 6063 was peened with an oil pressure of 50 MPa at different stand-off-distances.
It is clear that no other phase is detected, just like XRD pattern of aluminium coating at different stand-off distance.
Aluminum-molten particles are deposited vertically (θ = 90°) on the surface of the substrate using plasma torch at different stand-off distance and different work gas flow rate.
Copper coatings are prepared using the handmade atmospheric plasma spraying (APS) system at different stand-off distances onto the stainless steel 316L substrate.
Open image in new window Fig. 5 The morphology of aluminum coating at different stand-off distance a 80, b 100, c 120 and d 140 mm (P = 15 kW and argon flow rate = 40 L min−1).
In this study, aluminum powder is coated on low carbon steel substrate at different stand-off distances and different gas flow rates to investigate the effect of these parameters on morphology and mechanical properties of aluminum coatings.
Open image in new window Fig. 6 The morphology of cross section of aluminum coating at different stand-off distance a 80, b 100, c 120 and d 140 mm (P = 15 kW and argon flow rate = 40 L min−1).
The experimental results for different stand-off distance of aluminum coating are shown in Table 2.
The XRD pattern of coatings with different stand-off distances shows that the only distinguishable phase is pure aluminum.
Figure 2 shows the XRD spectra of copper coated on the 316L stainless steel substrates at the different stand-off distances.
The mixtures were sprayed using different spray stand-off distances and plasma power levels.
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