All articles by "Yaroslavtsev V.M. "
Intensification Techniques for Polymer Composite Material Processing
Authors: Yaroslavtsev V.M.  | Published: 07.12.2018 |
Published in issue: #6(123)/2018 | |
DOI: | |
Category: Mechanical Engineering and Machine Science | Chapter: Technology and Equipment of Mechanical and Physical Processing | |
Keywords: machining, polymer composite materials, high-speed processing, wide cut method, cutting with preliminary damage, high-performance processing, machining quality, cutting with preliminary da-mage |
New Technologies for Surface Layer Quality Improvement in Cutting Fibrous Polymer Composite Materials
Authors: Yaroslavtsev V.M.  | Published: 05.12.2017 |
Published in issue: #6(117)/2017 | |
DOI: | |
Category: Mechanical Engineering and Machine Science | Chapter: Technology and Equipment of Mechanical and Physical Processing | |
Keywords: innovative technology, machining, polymer composite materials, surface layer quality, hairiness of the surface, thermo-mechanical effects, thermal destruction |
High-Performance Finishing Technology in Turning with Leading Plastic Deformation
Authors: Yaroslavtsev V.M. , Yaroslavtseva N.A.  | Published: 03.08.2017 |
Published in issue: #4(115)/2017 | |
DOI: | |
Category: Mechanical Engineering and Machine Science | Chapter: Technology and Equipment of Mechanical and Physical Processing | |
Keywords: high-performance technology, cutting with leading plastic deformation, strain hardening, roller with two working surfaces, cutting workability, technological parameters |
A Tool for Finish Turning of Plasma-Sprayed Materials
Authors: Yaroslavtsev V.M.  | Published: 06.12.2016 |
Published in issue: #6(111)/2016 | |
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Category: Mechanical Engineering and Machine Science | Chapter: Technology and Equipment of Mechanical and Physical Processing | |
Keywords: machining, plasma-sprayed materials, innovative cutting tool, rotary cutting element, increase in tool life period, improvement of machining quality, influencing factors |
Method of Large Plastic Strain Research
Authors: Yaroslavtsev V.M. , Yaroslavtseva N.A.  | Published: 11.08.2016 |
Published in issue: #4(109)/2016 | |
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Category: Mechanical Engineering and Machine Science | Chapter: Forming Technologies and Equipment | |
Keywords: coordinate dividing micro-grids, machining, chip formation, method of plastic deformation research, cutting with outstripping plastic deformation |
Revisiting the Possibility of HighSpeed Polymer Composite Processing
Authors: Yaroslavtsev V.M.  | Published: 19.06.2015 |
Published in issue: #3(102)/2015 | |
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Category: Mechanical Engineering and Machine Science | Chapter: Technology and Equipment of Mechanical and Physical Processing | |
Keywords: machining, polymer composites, high-speed cutting, thermal breakdown, laboratory setup, physical mechanism, high-performance processing |
New in cutting process
Authors: Yaroslavtsev V.M.  | Published: 27.03.2015 |
Published in issue: #4(41)/2000 | |
DOI: | |
Category: Production Process Procedures and Machines | |
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Effectiveness of Methods for Leading Strain Hardening of the Material of Cut Down Layer in Machining
Authors: Yaroslavtsev V.M.  | Published: 09.02.2015 |
Published in issue: #1(100)/2015 | |
DOI: | |
Category: Mechanical Engineering and Machine Science | Chapter: Technology and Equipment of Mechanical and Physical Processing | |
Keywords: cutting, leading plastic deforming, methods for surface hardening, general regularities, efficiency, application scope, method choice |
Development and Practical Implementation of Methodology of Search of New Methods of Material Processing
Authors: Yaroslavtsev V.M.  | Published: 22.01.2014 |
Published in issue: #2(67)/2007 | |
DOI: | |
Category: Production Process Procedures and Machines | |
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Process of Chip Forming in Cutting of Polymer Composite Materials with Fibrous Fillers
Authors: Yaroslavtsev V.M.  | Published: 11.09.2013 |
Published in issue: #2(87)/2012 | |
DOI: | |
Category: Production Process Procedures and Machines | |
Keywords: polymer composite materials, chip forming, regularities of deformation and destruction, surface quality, hairiness of the processed surface |