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In order to improve the surface properties of a wrought CoCrMo alloy, a low energy high current pulsed electron beam surface treatment process was investigated.
The Comeld joining method utilises protrusions formed on the surface of the metal by electron beam surface treatment which are then embedded into composite layers to form an integrated joint by co-curing.
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The effect of the low energy high current pulsed electron beam (LEHCPEB) surface treatment on the microstructure and properties of a near α Ti alloy have been investigated.
In-beam tests for a limited number of pulses (<1000 pulses for each test target) have demonstrated that pitting damage appears to be especially sensitive to beam intensity, surface treatment, and gas injection.
The use of laser beams allows surface treatment to be located at the parts strongly exposed to wear and friction.
The PS discharge-based plasma cathode electron (PCE) gun has potential applications in microwave generation, electron beam melting, welding, surface treatment, plasma chemistry, radiation technologies, laser pumping, and where material cathode cannot be used[2, 3].
In this work we are utilizing a Pulsed Cold Cathode Electron Beam (PCCEB) for steel surface treatment that presents distinct properties as compared to other beam sources for rapid heating of metal surfaces.
The Yb-fiber laser beam technology applied to the surface treatment of aluminum alloys proved efficient in augmenting their corrosion resistance, thus deserving further investigation for aerospace and automotive applications.
Surface treatment technologies with high energy beams {electron beam (EB) or laser beam (LB)} offer a good and modern alternative to the mostly used bulk heat treatment.
The paper describes the new pulsed electron beam facilities GESA designed for material surface treatment.
It could be shown experimentally that magnetic fields could assist laser surface treatment processes beneficially if higher beam powers were coupled in.
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