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dc.contributor.authorUrbicain, Gorka*
dc.contributor.authorLópez de Lacalle, Luis Norberto*
dc.date.accessioned2021-02-11T18:29:57Z
dc.date.available2021-02-11T18:29:57Z
dc.date.issued2019*
dc.date.submitted2019-12-09 16:10:12*
dc.identifier42691*
dc.identifier.urihttps://directory.doabooks.org/handle/20.500.12854/52524
dc.description.abstractThe Special Issue Machining—Recent Advances, Applications and Challenges is intended as a humble collection of some of the hottest topics in machining. The manufacturing industry is a varying and challenging environment where new advances emerge from one day to another. In recent years, new manufacturing procedures have retained increasing attention from the industrial and scientific community. However, machining still remains the key operation to achieve high productivity and precision for high-added value parts. Continuous research is performed, and new ideas are constantly considered. This Special Issue summarizes selected high-quality papers which were submitted, peer-reviewed, and recommended by experts. It covers some (but not only) of the following topics: High performance operations for difficult-to-cut alloys, wrought and cast materials, light alloys, ceramics, etc.; Cutting tools, grades, substrates and coatings. Wear damage; Advanced cooling in machining: Minimum quantity of lubricant, dry or cryogenics; Modelling, focused on the reduction of risks, the process outcome, and to maintain surface integrity; Vibration problems in machines: Active and passive/predictive methods, sources, diagnosis and avoidance; Influence of machining in new concepts of machine–tool, and machine static and dynamic behaviors; Machinability of new composites, brittle and emerging materials; Assisted machining processes by high-pressure, laser, US, and others; Introduction of new analytics and decision making into machining programming. We wish to thank the reviewers and staff from Materials for their comments, advice, suggestions and invaluable support during the development of this Special Issue.*
dc.languageEnglish*
dc.subjectTA1-2040*
dc.subjectT1-995*
dc.subject.classificationthema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TB Technology: general issues::TBX History of engineering and technologyen_US
dc.subject.otherin situ estimation*
dc.subject.othermodeling*
dc.subject.othersimulation*
dc.subject.othervariable pitch*
dc.subject.otherX-ray diffraction*
dc.subject.othercutting edge preparation*
dc.subject.otherplastic zone*
dc.subject.otherflank milling*
dc.subject.othersurface roughness*
dc.subject.otherpower consumption*
dc.subject.othercutting tool*
dc.subject.otherfatigue*
dc.subject.otheradditive manufacturing*
dc.subject.otheroptimization*
dc.subject.othertrochoidal step*
dc.subject.othersurface topography*
dc.subject.othersinusoidal grid*
dc.subject.othermilling*
dc.subject.otherdesirability approach*
dc.subject.otherelectrochemical discharge machining*
dc.subject.otherfast simulation*
dc.subject.otherInconel 718*
dc.subject.othersecondary adhesion wear*
dc.subject.othermachinability*
dc.subject.otherhybrid stacks drilling*
dc.subject.othercooling rate*
dc.subject.othershape memory alloy*
dc.subject.otherresidual stress*
dc.subject.otherdiameter variation*
dc.subject.otherturning*
dc.subject.othercomputer vision*
dc.subject.otherworkholding*
dc.subject.otheron-machine monitoring*
dc.subject.otherchip morphology*
dc.subject.otherdry-cutting*
dc.subject.otherturning machine tools*
dc.subject.otherSACE-drilled hole depth*
dc.subject.otherresidual stresses*
dc.subject.othercryogenic machining*
dc.subject.otherprime machining costs*
dc.subject.otherPVD Ti0.41Al0.59N/Ti0.55Al0.45N coating*
dc.subject.othersingle point incremental sheet forming*
dc.subject.otherbutt weld joint*
dc.subject.otherdish angle*
dc.subject.othermachining characteristic*
dc.subject.otherDSC test*
dc.subject.othersegmented diamond blade*
dc.subject.othercutting tool wear*
dc.subject.otherultra-precision machining*
dc.subject.otherceramics*
dc.subject.othershape memory effect*
dc.subject.othercurrent density*
dc.subject.otherfractal dimension*
dc.subject.othercrack growth rate*
dc.subject.otherdrilling*
dc.subject.otherforce–temperature correlation through analytical modeling*
dc.subject.otherfinite element model*
dc.subject.otheranalytic solution*
dc.subject.otheraluminium*
dc.subject.othertaguchi method*
dc.subject.othermulti-objective optimization*
dc.subject.otherreal-time prediction*
dc.subject.otherGamma-TiAl*
dc.subject.othercutting temperature*
dc.subject.otherEN 31 steel*
dc.subject.othersuperalloys*
dc.subject.othermaterial-removal rate*
dc.subject.otherglass machining*
dc.subject.othercorner radius*
dc.subject.otherthin-wall machining*
dc.subject.othervibration*
dc.subject.otherGPU*
dc.subject.othertitanium aluminides*
dc.subject.otherminimum quantity lubrication*
dc.subject.othermachining temperatures at two deformation zones*
dc.subject.otherfinite element method*
dc.subject.otherroughness*
dc.subject.otherslight materials*
dc.subject.otherhigh computational efficiency*
dc.subject.otherdynamic*
dc.subject.otheradhesive*
dc.subject.otherheat transfer analysis*
dc.subject.otherconnections*
dc.subject.otherstability*
dc.subject.othervibrations*
dc.subject.othertrochoidal milling*
dc.subject.othermagnesium alloys*
dc.subject.otherspecific cutting energy*
dc.subject.otherlaser-assisted machining*
dc.subject.otherartificial neutral network*
dc.subject.othermicroscopic analysis*
dc.subject.otherMilling stability*
dc.subject.othertopography*
dc.subject.otherweight loss*
dc.subject.othermodal testing*
dc.subject.othersustainable machining*
dc.subject.otherdry*
dc.subject.otherdamping*
dc.subject.otherductile machining*
dc.subject.otherInconel® 718*
dc.subject.othermodelling*
dc.subject.othercutting edge microgeometry*
dc.subject.otherelectropulsing*
dc.subject.otherPCD*
dc.subject.othercutting geometry*
dc.subject.otherfixture*
dc.subject.otherartificial neural networks*
dc.subject.otherspark-assisted chemical engraving*
dc.subject.othermachining*
dc.subject.otherspecific energy consumption*
dc.subject.otherheat transfer search algorithm*
dc.subject.othermaterial removal rate*
dc.subject.otherprediction*
dc.subject.otherCFRP/UNS A92024*
dc.subject.othertool wear*
dc.subject.othertitanium alloy*
dc.subject.othermulti-beam laser*
dc.subject.otherchip compression ratio*
dc.subject.otherdesign of experiments*
dc.subject.otherconcrete*
dc.subject.otherANN*
dc.subject.othertitanium*
dc.subject.otherchatter*
dc.subject.otherresponse surface methodology*
dc.subject.othermachine tool*
dc.subject.othersuperelastic nitinol*
dc.subject.otheroptimal machining conditions*
dc.subject.othermachine vision*
dc.subject.othersteel sheet*
dc.subject.othercutting process*
dc.subject.otherfracture mechanism*
dc.subject.otherself-excitation*
dc.subject.othertool insert condition*
dc.subject.otherinduction assisted milling*
dc.subject.otherhole quality*
dc.subject.otherGA*
dc.subject.othertitanium alloys*
dc.subject.othermicrolens array*
dc.subject.otherparameter identification*
dc.subject.otherTaguchi method*
dc.subject.otherweld reinforcement*
dc.subject.otherslow tool servo*
dc.subject.othercutting parameters*
dc.subject.otherflank super abrasive machining (SAM)*
dc.subject.otherstiffness properties*
dc.subject.othergrey relational analysis*
dc.subject.otherdeflection*
dc.subject.othercomputer numerical control*
dc.subject.othergrain density*
dc.subject.othersurface grinding*
dc.subject.otherthe cutting force components*
dc.subject.otherHuber–Mises stress*
dc.subject.otherWEDM*
dc.titleMachining—Recent Advances, Applications and Challenges*
dc.typebook
oapen.identifier.doi10.3390/books978-3-03921-378-8*
oapen.relation.isPublishedBy46cabcaa-dd94-4bfe-87b4-55023c1b36d0*
oapen.relation.isbn9783039213788*
oapen.relation.isbn9783039213771*
oapen.pages554*
oapen.edition1st*


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