LEADER 01930nam0 2200337 i 450 001 SUN0113089 005 20171227112257.722 010 $a978-88-7959-781-4$d0.00 100 $a20171227d2013 |0itac50 ba 101 $aita 102 $aIT 105 $a|||| ||||| 200 1 $a*Fisica biomedica$fDomenico Scannicchio$gcon la collaborazione di Gastone Castellani ... [et al.] 205 $a3. ed 210 $aNapoli$cEdises$d2013 215 $aXX, 702, [42] p.$cill.$d27 cm. 620 $dNapoli$3SUNL000005 676 $a530$cFisica$v22 700 1$aScannicchio$b, Domenico$3SUNV087242$0296055 702 1$aCastellani$b, Gastone$3SUNV087243 712 $aEdiSES$3SUNV000139$4650 801 $aIT$bSOL$c20181109$gRICA 912 $aSUN0113089 950 $aUFFICIO DI BIBLIOTECA DEL DIPARTIMENTO DI SCIENZE E TECNOLOGIE AMBIENTALI BIOLOGICHE E FARMACEUTICHE$d17 CONS Fa106 $e17 BIB1735 950 $aUFFICIO DI BIBLIOTECA DEL DIPARTIMENTO DI SCIENZE E TECNOLOGIE AMBIENTALI BIOLOGICHE E FARMACEUTICHE$d17 PREST Fa107 $e17 BIB1736 950 $aUFFICIO DI BIBLIOTECA DEL DIPARTIMENTO DI SCIENZE E TECNOLOGIE AMBIENTALI BIOLOGICHE E FARMACEUTICHE$d17 PREST Fa108 $e17 BIB1737 995 $aUFFICIO DI BIBLIOTECA DEL DIPARTIMENTO DI SCIENZE E TECNOLOGIE AMBIENTALI BIOLOGICHE E FARMACEUTICHE$bIT-CE0101$gBIB$h1735$kCONS Fa106$oc$qa 995 $aUFFICIO DI BIBLIOTECA DEL DIPARTIMENTO DI SCIENZE E TECNOLOGIE AMBIENTALI BIOLOGICHE E FARMACEUTICHE$bIT-CE0101$gBIB$h1736$kPREST Fa107$op$qa 995 $aUFFICIO DI BIBLIOTECA DEL DIPARTIMENTO DI SCIENZE E TECNOLOGIE AMBIENTALI BIOLOGICHE E FARMACEUTICHE$bIT-CE0101$gBIB$h1737$kPREST Fa108$op$qa 996 $aFisica biomedica$9243038 997 $aUNICAMPANIA LEADER 01711nam 2200421z- 450 001 9910547687603321 005 20220219 010 $a1000137688 035 $a(CKB)5840000000005223 035 $a(oapen)https://directory.doabooks.org/handle/20.500.12854/78447 035 $a(oapen)doab78447 035 $a(EXLCZ)995840000000005223 100 $a20202202d2022 |y 0 101 0 $ager 135 $aurmn|---annan 181 $ctxt$2rdacontent 182 $cc$2rdamedia 183 $acr$2rdacarrier 200 00$aProzesssicherheit von Laserschneidmaschinen$eAuflagemessung und Schachtelung 210 $aKarlsruhe$cKIT Scientific Publishing$d2022 215 $a1 online resource (146 p.) 225 1 $aForschungsberichte aus der Industriellen Informationstechnik 311 08$a3-7315-1127-4 330 $aThe aim of this work is the design and validation of an image-based optimization of laser flatbed cutting machines to avoid tilted parts. Three different approaches for the visual detection of the slats are presented and, based on this, it is discussed to what extent a change in the nesting of the parts to be produced can be used to increase efficiency. 517 $aProzesssicherheit von Laserschneidmaschinen 606 $aElectrical engineering$2bicssc 610 $aindustrial image processing 610 $aIndustrielle Bildverarbeitung 610 $alaser cutting 610 $aLaserschneiden 610 $anesting 610 $aSchachtelung 615 7$aElectrical engineering 700 $aStruckmeier$b Frederick$4auth$01322298 906 $aBOOK 912 $a9910547687603321 996 $aProzesssicherheit von Laserschneidmaschinen$93034773 997 $aUNINA