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LSPwC influence on the surface layer parameters of the titanium alloy GTE compressor blades
Authors: Shiryaev А.А., Gabov I.G., Milenin A.S., Popova Yu.V. | Published: 06.03.2024 |
Published in issue: #3(768)/2024 | |
Category: Mechanical Engineering and Machine Science | Chapter: Technology and Equipment for Mechanical and Physico-Technical Processing | |
Keywords: laser shock, laser shock peening, blade surface roughness, residual compressive stresses, surface morphology, titanium alloy, blade deformation |
The Effect of the Creep-Feed Grinding Speed on the Morphology and Chemical Composition of the Titanium Alloy Surface
Authors: Nosenko V.A., Nosenko V.A., Koryazhkin A.A., Kremenetsky L.L. | Published: 02.04.2018 |
Published in issue: #3(696)/2018 | |
Category: Mechanical Engineering and Machine Science | Chapter: Technology and Equipment for Mechanical and Physico-Technical Processing | |
Keywords: titanium alloy, creep-feed grinding, grinding speed, silicon carbide, surface morphology, surface roughness |
Transfer of Metal on the Silicon Carbide Surface when Micro-Cutting Titanium and Zirconium
Authors: Nosenko V.A., Avilov A.V., Nosenko V.A., Bakhmat V.I., Bykov Y.M. | Published: 30.06.2016 |
Published in issue: #7(676)/2016 | |
Category: Technology and Process Machines | |
Keywords: micro-cutting, titanium, zirconium, silicon carbide, surface morphology, metal transfer |
Morphology of the silicon carbide surface after micro cutting of molybdenum
Authors: Nosenko V.A., Avilov A.V., Kharlamov V.O., Bakhmat V.I. | Published: 16.06.2015 |
Published in issue: #6(663)/2015 | |
Category: Technology and Process Machines | |
Keywords: silicon carbide, molybdenum, micro cutting, wear site, surface morphology, electronic microscope |