Results 211 to 220 of about 1,935,041 (297)
Finite Element Numerical Simulation and Repair Process of Laser Cladding Repair of Surface Cracks on Mechanical Parts. [PDF]
Yu S, Chong Q, Zhou J, Yang Y, Li H.
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Effect of Dilution on Microstructure and Phase Transformation of AlCrFeMnNi High-Entropy Alloy by Resonant Ultrasonic Vibration-Assisted Laser Cladding. [PDF]
Mohsan AUH +6 more
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Effect of the Laser Cladding Parameters on Microstructure and Elevated Temperature Wear of FeCrNiTiZr Coatings. [PDF]
Gao Y +6 more
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Residual stress release during laser cladding process: A review
Journal of laser applications, 2023Laser cladding technology has attracted substantial attention in cutting-edge areas of metal surface repair and remanufacturing research. Nevertheless, excessive residual stress of cladding is the primary obstacle that hinders its practical application ...
Zhijie Jing, P. Xu, Qibin Liu, Chuan Yu
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Microscale Clad Thickness Measurement after Laser Cladding via Laser Speckle Photography
2021 3rd Novel Intelligent and Leading Emerging Sciences Conference (NILES), 2021Laser cladding is a promising technique that has been used for surface modification. It uses a high-power laser to melt a deposited powder and a thin layer of a substrate forming a hard coating with a certain thickness according to the laser cladding process parameters.
Doaa Youssef, Samar Reda Al-Sayed
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Research status of the transition layer on laser cladding
Metallurgical Research & Technology, 2023Laser cladding technology is widely used in component repair and surface strengthening because of its advantages of various powder options and high processing efficiency.
Runze Wei +5 more
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ICALEO 2005: 24th International Congress on Laser Materials Processing and Laser Microfabrication, 2005
Laser cladding is used in the repair of high value industrial components such as rollers, axles and turbine blades. The absence of defects is essential to the remanufacturing process. Consequently, a non-intrusive cladding monitor that is robust in detecting defects and minimizes false positives is very desirable.
K. H. Leong, K. L. Ho, H. C. Man
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Laser cladding is used in the repair of high value industrial components such as rollers, axles and turbine blades. The absence of defects is essential to the remanufacturing process. Consequently, a non-intrusive cladding monitor that is robust in detecting defects and minimizes false positives is very desirable.
K. H. Leong, K. L. Ho, H. C. Man
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Laser Clad Functionally Graded Coatings
SAE Technical Paper Series, 2002<div class="htmlview paragraph">With a well-controlled laser melt injection (LMI) process, for the first time the feasibility is demonstrated to produce SiC particles (SiC<sub>p</sub>) reinforced Ti6Al4V functionally graded materials (FGMs).
de Hosson, J.T.M., Pei, Y.T.
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Study on parameter optimization of laser cladding Fe60 based on GA-BP neural network
Journal of Adhesion Science and Technology, 2022Laser cladding is an emerging surface modification technology, which can effectively improve the wear and corrosion resistance of the workpiece surface. It is widely used in aviation, aerospace, iron and steel metallurgy and other fields.
Chang Li +3 more
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IEEE Journal of Quantum Electronics, 1995
Laser emission at 1.06 /spl mu/m, pump light absorption, laser threshold, slope efficiency, and alignment tolerance as a function of the fiber length have been measured for a cladding-pumped double-clad Nd:glass fiber laser. The fiber laser was pumped with a laser diode emitting at 810 nm.
T. Weber +7 more
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Laser emission at 1.06 /spl mu/m, pump light absorption, laser threshold, slope efficiency, and alignment tolerance as a function of the fiber length have been measured for a cladding-pumped double-clad Nd:glass fiber laser. The fiber laser was pumped with a laser diode emitting at 810 nm.
T. Weber +7 more
openaire +1 more source

