LEADER 00955nam--2200361---450- 001 990002787020203316 005 20060721130716.0 010 $a0538195703 035 $a000278702 035 $aUSA01000278702 035 $a(ALEPH)000278702USA01 035 $a000278702 100 $a20060721d1975----km-y0itay0103----ba 101 $aeng 102 $aUS 105 $a||||||||001yy 200 1 $aAdvertising$eplanning, implementation, and control$fDavid W. Nylen 210 $aCincinnati$cSouth-Western Pub. Co.$dc1975 215 $aviii, 598 p.$cill.$d24 cm 410 0$12001 454 1$12001 461 1$1001-------$12001 606 0 $aPubblicità 676 $a659.1 700 1$aNYLEN,$bDavid W.$0594216 801 0$aIT$bsalbc$gISBD 912 $a990002787020203316 951 $aP08 508$bDISTRA 959 $aBK 969 $aDISTRA 979 $aDISTRA2$b10$c20060721$lUSA01$h1307 996 $aAdvertising$9996349 997 $aUNISA LEADER 03181 am 2200661 n 450 001 9910571795203321 005 20211124 010 $a2-84016-472-8 024 7 $a10.4000/books.pupo.25762 035 $a(CKB)5670000000356975 035 $a(FrMaCLE)OB-pupo-25762 035 $a(oapen)https://directory.doabooks.org/handle/20.500.12854/86532 035 $a(PPN)263271587 035 $a(EXLCZ)995670000000356975 100 $a20220530j|||||||| ||| 0 101 0 $afre 135 $auu||||||m|||| 181 $ctxt$2rdacontent 182 $cc$2rdamedia 183 $acr$2rdacarrier 200 10$aArchitectures de mémoire /$fJean-Marie Dallet, Bertrand Gervais 210 $aNanterre $cPresses universitaires de Paris Nanterre$d2021 215 $a1 online resource (252 p.) 225 1 $aLa Grande Collection ArTEC 311 $a2-37896-027-1 330 $aLa situation de transition que nous connaissons et qui fait cohabiter une culture du livre avec une culture de l?écran nous fait peu à peu basculer d?une raison graphique à une raison computationnelle. De la même manière que l?écriture a permis d?engendrer un mode particulier de pensée, où les listes, les tableaux et les formules ont joué un rôle primordial dans la modélisation des connaissances, avec le numérique s?inventent d?autres systèmes de mise en forme de l?information et de sa transmission. En effet, le développement du réseau, d?un vaste cyberespace, induit une rationalité particulière reposant sur le calcul plutôt que sur l?écriture, ce qui est la seule façon de le rendre intelligible. On comprend dès lors que les architectures de mémoire, dans leur actualisation contemporaine, essentiellement numérique, sont au c?ur d?une transformation de l?esprit humain. Il est encore trop tôt pour déterminer exactement ce qu?il en est de cette transformation, mais il importe dès maintenant de tracer les contours de cette situation et d?explorer des pistes qui peuvent en baliser certains des aspects les plus saillants. 606 $aArchitecture 606 $amémoire 606 $ainformatique 606 $astructure 610 $amémoire 610 $ainformatique 610 $astructure 615 4$aArchitecture 615 4$amémoire 615 4$ainformatique 615 4$astructure 700 $aAsselin$b Olivier$01288771 701 $aCazin$b Marie-Laure$01288772 701 $aCurien$b Frédéric$01288773 701 $aDallet$b Jean-Marie$0657463 701 $aDidi-Huberman$b Georges$0221677 701 $aDryansky$b Larisa$01288774 701 $aFraser$b Marie$0438954 701 $aGervais$b Bertrand$01284144 701 $aGisinger$b Arno$01288775 701 $aGuez$b Emmanuel$01288776 701 $aLegrady$b George$01288777 701 $aNardin$b Patrick$01077827 701 $aPuig$b Vincent$01288778 701 $aTruchot$b J$01288779 701 $aDallet$b Jean-Marie$0657463 701 $aGervais$b Bertrand$01284144 801 0$bFR-FrMaCLE 906 $aBOOK 912 $a9910571795203321 996 $aArchitectures de mémoire$93020990 997 $aUNINA LEADER 04653nam 2201021z- 450 001 9910557350403321 005 20220111 035 $a(CKB)5400000000042386 035 $a(oapen)https://directory.doabooks.org/handle/20.500.12854/76877 035 $a(oapen)doab76877 035 $a(EXLCZ)995400000000042386 100 $a20202201d2021 |y 0 101 0 $aeng 135 $aurmn|---annan 181 $ctxt$2rdacontent 182 $cc$2rdamedia 183 $acr$2rdacarrier 200 00$aMicro-Electro Discharge Machining: Principles, Recent Advancements and Applications 210 $aBasel, Switzerland$cMDPI - Multidisciplinary Digital Publishing Institute$d2021 215 $a1 online resource (197 p.) 311 08$a3-0365-1933-5 311 08$a3-0365-1932-7 330 $aMicro electrical discharge machining (micro-EDM) is a thermo-electric and contactless process most suited for micro-manufacturing and high-precision machining, especially when difficult-to-cut materials, such as super alloys, composites, and electro conductive ceramics, are processed. Many industrial domains exploit this technology to fabricate highly demanding components, such as high-aspect-ratio micro holes for fuel injectors, high-precision molds, and biomedical parts.Moreover, the continuous trend towards miniaturization and high precision functional components boosted the development of control strategies and optimization methodologies specifically suited to address the challenges in micro- and nano-scale fabrication.This Special Issue showcases 12 research papers and a review article focusing on novel methodological developments on several aspects of micro electrical discharge machining: machinability studies of hard materials (TiNi shape memory alloys, Si3N4-TiN ceramic composite, ZrB2-based ceramics reinforced with SiC fibers and whiskers, tungsten-cemented carbide, Ti-6Al-4V alloy, duplex stainless steel, and cubic boron nitride), process optimization adopting different dielectrics or electrodes, characterization of mechanical performance of processed surface, process analysis, and optimization via discharge pulse-type discrimination, hybrid processes, fabrication of molds for inflatable soft microactuators, and implementation of low-cost desktop micro-EDM system. 517 $aMicro-Electro Discharge Machining 606 $aTechnology: general issues$2bicssc 610 $a3D microstructure 610 $aadvanced material 610 $aceramic composite 610 $acomposite 3D microelectrode 610 $acorrosion resistance 610 $acubic boron nitride 610 $acut-side micro-tool 610 $adesktop micro-electrical discharge machining (micro-EDM) system 610 $adiffusion bonding 610 $adrilling 610 $aDSS-2205 alloy 610 $aEDM 610 $aelectric-discharge machining 610 $aelectrical discharge machining (EDM) 610 $aelectro-discharge treatment 610 $aelectrochemical discharge machining 610 $aelectrodischarge micromachining 610 $afoil queue microelectrode 610 $aGalinstan 610 $aglass 610 $alaser machining 610 $aliquid-metal electrode 610 $amaterial processing 610 $amicro-EDM 610 $amicro-EDM milling 610 $aMicro-electro-discharge machining (?EDM) 610 $amicro-groove 610 $amicro-holes 610 $amicrohardness 610 $amicromoulding 610 $aMRR 610 $aMWCNTs 610 $an/a 610 $aPMEDM 610 $apulse discrimination 610 $asilicon carbide fibers 610 $asilicon carbide whiskers 610 $asoft microrobotics 610 $aSR 610 $astep 610 $astep effect 610 $asurface characterization 610 $asurface integrity 610 $asurface modification 610 $asurface wettability 610 $atapered structure 610 $aTi-6Al-4V 610 $aTiC powder 610 $aTiNi shape memory alloy 610 $aTungsten cemented carbide (WC-Co) 610 $aTWR 610 $awear resistance 610 $awire electrical discharge grinding (WEDG) 610 $aZirconium Boride 615 7$aTechnology: general issues 700 $aFassi$b Irene$4edt$0760119 702 $aModica$b Francesco$4edt 702 $aFassi$b Irene$4oth 702 $aModica$b Francesco$4oth 906 $aBOOK 912 $a9910557350403321 996 $aMicro-Electro Discharge Machining: Principles, Recent Advancements and Applications$93031998 997 $aUNINA