Modern Grinding Technology and Systems

This specialist edition features key innovations in the science and engineering of new grinding processes, abrasives, tools, machines, and systems for a range of important industrial applications. Topics written by invited, internationally recognized authors review the advances and present results o...

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Hoofdauteur: Rowe, Brian
Formaat: Online
Taal:Engels
Gepubliceerd in: MDPI - Multidisciplinary Digital Publishing Institute 2021
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Online toegang:33682
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author Rowe, Brian
author_browse Rowe, Brian
author_facet Rowe, Brian
author_sort Rowe, Brian
collection Directory of Open Access Books
description This specialist edition features key innovations in the science and engineering of new grinding processes, abrasives, tools, machines, and systems for a range of important industrial applications. Topics written by invited, internationally recognized authors review the advances and present results of research over a range of well-known grinding processes. A significant introductory review chapter explores innovations to achieve high productivity and very high precision in grinding. The reviewed applications range from grinding systems for very large lenses and reflectors, through to medium size grinding machine processes, and down to grinding very small components used in MEMS . Early research chapters explore the influence of grinding wheel topography on surface integrity and wheel wear. A novel chapter on abrasive processes also addresses the finishing of parts produced by additive manufacturing through mass finishing. Materials to be ground range from conventional engineering steels to aerospace materials, ceramics, and composites. The research findings highlight important new results for avoiding material sub-surface damage. The papers compiled in this book include references to many source publications which will be found invaluable for further research, such as new features introduced into control systems to improve process efficiency. The papers also reflect significant improvements and research findings relating to many aspects of grinding processes, including machines, materials, abrasives, wheel preparation, coolants, lubricants, and fluid delivery. Finally, a definitive chapter summarizes the optimal settings for high precision and the achievement of centerless grinding stability.
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publishDate 2021
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publisherStr MDPI - Multidisciplinary Digital Publishing Institute
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spelling doab-20.500.12854ir-537742024-04-11T15:10:18Z Modern Grinding Technology and Systems Rowe, Brian TA1-2040 T1-995 wheels safe operation precision lubrication surface roughness microgrinding high-performance dry grinding micro-grinding brittle hard materials glass micropencil grinding tools topography glass–ceramic cutting edge coolant delivery quality fusion materials metal additive manufacturing profile gear grinding grinding fluid coolant contact conditions metal cutting fluid grinding self-sharpening mass finishing process optimization centerless grinding grinding fluid nozzle laser productivity systems subsurface damages NC-form grinding sodium dodecyl sulfate grinding wheels processes jet breakup control removal rates wear modelling precision grinding optics manufacturing sensors bonding microstructures machines thermo-mechanical stress collective thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TB Technology: general issues::TBX History of engineering and technology This specialist edition features key innovations in the science and engineering of new grinding processes, abrasives, tools, machines, and systems for a range of important industrial applications. Topics written by invited, internationally recognized authors review the advances and present results of research over a range of well-known grinding processes. A significant introductory review chapter explores innovations to achieve high productivity and very high precision in grinding. The reviewed applications range from grinding systems for very large lenses and reflectors, through to medium size grinding machine processes, and down to grinding very small components used in MEMS . Early research chapters explore the influence of grinding wheel topography on surface integrity and wheel wear. A novel chapter on abrasive processes also addresses the finishing of parts produced by additive manufacturing through mass finishing. Materials to be ground range from conventional engineering steels to aerospace materials, ceramics, and composites. The research findings highlight important new results for avoiding material sub-surface damage. The papers compiled in this book include references to many source publications which will be found invaluable for further research, such as new features introduced into control systems to improve process efficiency. The papers also reflect significant improvements and research findings relating to many aspects of grinding processes, including machines, materials, abrasives, wheel preparation, coolants, lubricants, and fluid delivery. Finally, a definitive chapter summarizes the optimal settings for high precision and the achievement of centerless grinding stability. 2021-02-11T19:59:28Z 2021-02-11T19:59:28Z 2019-06-26 08:44:06 2019 book 33682 9783038429388 9783038429371 https://directory.doabooks.org/handle/20.500.12854/53774 eng image/jpeg Attribution-NonCommercial-NoDerivatives 4.0 International https://mdpi.com/books/pdfview/book/1345 MDPI - Multidisciplinary Digital Publishing Institute 10.3390/books978-3-03842-937-1 10.3390/books978-3-03842-937-1 46cabcaa-dd94-4bfe-87b4-55023c1b36d0 9783038429388 9783038429371 148 open access
spellingShingle TA1-2040
T1-995
wheels
safe operation
precision
lubrication
surface roughness
microgrinding
high-performance dry grinding
micro-grinding
brittle hard materials
glass
micropencil grinding tools
topography
glass–ceramic
cutting edge
coolant delivery
quality
fusion
materials
metal additive manufacturing
profile gear grinding
grinding fluid
coolant
contact conditions
metal cutting fluid
grinding
self-sharpening
mass finishing
process optimization
centerless grinding
grinding fluid nozzle
laser
productivity
systems
subsurface damages
NC-form grinding
sodium dodecyl sulfate
grinding wheels
processes
jet breakup
control
removal rates
wear modelling
precision grinding
optics manufacturing
sensors
bonding
microstructures
machines
thermo-mechanical stress collective
thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TB Technology: general issues::TBX History of engineering and technology
Rowe, Brian
Modern Grinding Technology and Systems
title Modern Grinding Technology and Systems
title_full Modern Grinding Technology and Systems
title_fullStr Modern Grinding Technology and Systems
title_full_unstemmed Modern Grinding Technology and Systems
title_short Modern Grinding Technology and Systems
title_sort modern grinding technology and systems
topic TA1-2040
T1-995
wheels
safe operation
precision
lubrication
surface roughness
microgrinding
high-performance dry grinding
micro-grinding
brittle hard materials
glass
micropencil grinding tools
topography
glass–ceramic
cutting edge
coolant delivery
quality
fusion
materials
metal additive manufacturing
profile gear grinding
grinding fluid
coolant
contact conditions
metal cutting fluid
grinding
self-sharpening
mass finishing
process optimization
centerless grinding
grinding fluid nozzle
laser
productivity
systems
subsurface damages
NC-form grinding
sodium dodecyl sulfate
grinding wheels
processes
jet breakup
control
removal rates
wear modelling
precision grinding
optics manufacturing
sensors
bonding
microstructures
machines
thermo-mechanical stress collective
thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TB Technology: general issues::TBX History of engineering and technology
topic_facet TA1-2040
T1-995
wheels
safe operation
precision
lubrication
surface roughness
microgrinding
high-performance dry grinding
micro-grinding
brittle hard materials
glass
micropencil grinding tools
topography
glass–ceramic
cutting edge
coolant delivery
quality
fusion
materials
metal additive manufacturing
profile gear grinding
grinding fluid
coolant
contact conditions
metal cutting fluid
grinding
self-sharpening
mass finishing
process optimization
centerless grinding
grinding fluid nozzle
laser
productivity
systems
subsurface damages
NC-form grinding
sodium dodecyl sulfate
grinding wheels
processes
jet breakup
control
removal rates
wear modelling
precision grinding
optics manufacturing
sensors
bonding
microstructures
machines
thermo-mechanical stress collective
thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TB Technology: general issues::TBX History of engineering and technology
url 33682
work_keys_str_mv AT rowebrian moderngrindingtechnologyandsystems