"Improving Laser Beam Welding Efficiency"
written by Mikhail Sokolov, Antti Salminen,
published by Engineering, Vol.6 No.9, 2014
has been cited by the following article(s):
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[2] Some Aspects of Laser Cutting of Thick-Walled Workpieces of Phase-Shifting Steels
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[3] Investigations on induced residual stresses, mechanical and metallurgical properties of CO2 laser beam and pulse current gas tungsten arc welded SMO 254
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[4] Laser Welding of NiTinol Shape Memory Alloy: An Overview
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[5] Multiple beams Yb: fibre laser welding process for Grade 2205 duplex stainless steel
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[6] Investigations on metallurgical and mechanical properties of CO2 laser beam welded Alloy 825
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[7] High Power Fiber Laser Welding of Single Sided T-Joint on Shipbuilding Steel with Different Processing Setups
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[8] The residual stress distribution of CO2 laser beam welded AISI 316 austenitic stainless steel and the effect of vibratory stress relief
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[9] Assessment of Mechanical Properties, Residual Stresses and Diffusible Hydrogen of Longitudinal Weld in Electric Water Heater Tanks
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[10] Valutazione dell'efficienza energetica delle tecnologie di saldatura Electron Beam, Laser e arco ad elettrodo infusibile
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[11] Tungsten Carbide Grain Size Computation for WC-Co Dissimilar Welds
Journal of Materials Engineering and Performance, 2016
[12] Modified Twin-Spot Laser Welding of Complex Phase Steel
Archives of Metallurgy and Materials, 2016
[13] Simulation of laser welding in sandwich rocket nozzle
Thesis, 2015
[14] Testing of New Materials and Computer Aided Optimization of Laser Beam Welding of High-Strength Steels
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