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MARC Record from marc_columbia

Record ID marc_columbia/Columbia-extract-20221130-031.mrc:80512305:5903
Source marc_columbia
Download Link /show-records/marc_columbia/Columbia-extract-20221130-031.mrc:80512305:5903?format=raw

LEADER: 05903cam a2200673 a 4500
001 15080583
005 20220817091353.0
006 m o d
007 cr cnu---unuuu
008 101025s2010 flua ob 001 0 eng d
035 $a(OCoLC)ocn671648564
035 $a(NNC)15080583
040 $aN$T$beng$epn$cN$T$dVPI$dYDXCP$dOCLCQ$dE7B$dOCLCQ$dDEBSZ$dOCLCQ$dOCLCO$dIDEBK$dCOO$dOCLCQ$dOCLCO$dOCLCQ$dPIFBY$dOTZ$dOCLCQ$dERL$dCEF$dOCLCQ$dNLE$dAU@$dUKMGB$dS9I$dTYFRS$dLEAUB$dUHL$dOCLCQ$dOCLCO$dOCL
015 $aGBB7L9492$2bnb
015 $aGBB7L4607$2bnb
016 7 $a018587356$2Uk
019 $a669833232$a992099549$a994925502$a1031047957$a1058440780
020 $a9781439819685$q(electronic bk.)
020 $a1439819688$q(electronic bk.)
020 $a9781439858752
020 $a1439858756
020 $z9781439819678
020 $z143981967X
024 7 $a10.1201/9781439819685$2doi
035 $a(OCoLC)671648564$z(OCoLC)669833232$z(OCoLC)992099549$z(OCoLC)994925502$z(OCoLC)1031047957$z(OCoLC)1058440780
037 $aTANDF_210566$bIngram Content Group
050 4 $aTJ187$b.R34 2010eb
072 7 $aHOM$x015000$2bisacsh
082 04 $a621.9/44$222
049 $aZCUA
100 1 $aRadzevich, S. P.$q(Stepan Pavlovich)
245 10 $aGear cutting tools :$bfundamentals of design and computation /$cStephen P. Radzevich.
260 $aBoca Raton, FL :$bCRC Press,$c©2010.
264 4 $c©2010
300 $a1 online resource (xxxi, 754 pages) :$billustrations
336 $atext$btxt$2rdacontent
337 $acomputer$bc$2rdamedia
338 $aonline resource$bcr$2rdacarrier
347 $adata file
504 $aIncludes bibliographical references (pages 723-731) and index.
505 0 $aSect. I. Basics -- 1. Gears: Geometry of Tooth Flanks -- 2. Principal Kinematics of a Gear Machining Process -- 3. Kinematics of Continuously Indexing Methods of Gear Machining Processes -- 4. Elements of Coordinate Systems Transformations -- Sect. II. Form Gear Cutting Tools -- 5. Gear Broaching Tools -- 6. End-Type Gear Milling Cutters -- 7. Disk-Type Gear Milling Cutters -- 8. Nontraditional Methods of Gear Machining with Form Cutting Tools -- Sect. III. Cutting Tools for Gear Generating: Parallel-Axis Gear Machining Mesh -- 9. Rack Cutters for Planing of Gears -- 10. Gear Shaper Cutters I: External Gear Machining Mesh -- 11. Gear Shaper Cutters II: Internal Gear Machining Mesh -- Sect. IV. Cutting Tools for Gear Generating: Intersecting-Axis Gear Machining Mesh -- 12. Gear Shapers with a Tilted Axis of Rotation -- 13. Gear Cutting Tools for Machining Bevel Gears -- 14. Gear Shaper Cutters Having a Tilted Axis of Rotation: Internal Gear Machining Mesh -- Sect. V. Cutting Tools for Gear Generating: Spatial Gear Machining Mesh -- Sect. V-A. Design of Gear Cutting Tools: External Gear Machining Mesh -- 15. Generating Surface of the Gear Cutting Tool -- 16. Hobs for Machining Gears -- 17. Gear Shaving Cutters -- 18. Examples of Implementation of the Classification of the Gear Machining Meshes -- Sect. V-B. Design of Gear Cutting Tools: Quasi-Planar Gear Machining Mesh -- 19. Gear Cutting Tools for Machining of Bevel Gears -- Sect. V-C. Design of Gear Cutting Tools: Internal Gear Machining Mesh -- 20. Gear Cutting Tools with an Enveloping Generating Surface -- 21. Gear Cutting Tools for Machining Internal Gears -- App. A. Engineering Formulae for the Specification of Gear Tooth -- App. B. Conditions of Proper Part Surface Generation -- App. C. Change of Surface Parameters -- App. D. Cutting Edge Geometry: Definition of the Major Parameters.
520 1 $a"Billions of gears are produced for use in the aerospace, construction, and agricultural machinery industries, yet the cost of gear cutting tools themselves represents more than half the total cost of the gear machining operation. With an improved understanding of gear machining process and tool design, engineers and scientists can potentially streamline the methods involved to dramatically slash production costs and enhance efficiency." "Gear Cutting Tools: Fundamentals of Design and Computation addresses this issue, presenting the DG/K-based method of surface generation, a novel and practical mathematical method for designing gear cutting tools with optimal parameters. The author, an industry leader for the past 30 years, proposes a scientific classification of kinematic schemes of gear machining before discussing the best possible tool designs. This classification makes it possible to consider gear cutting tool designs currently in practice and those expected to be used in the future. This book also facilitates development of scientific predictions, and in most cases it provides optimal designs and solutions in analytical and/or graphical form."--Jacket
588 0 $aPrint version record.
650 0 $aGear-cutting machines.
650 0 $aGearing$xDesign and construction.
650 0 $aMetal-cutting tools$xDesign and construction$xMathematical models.
650 0 $aMachinery, Kinematics of$xMathematical models.
650 0 $aGear-shaping machines.
650 6 $aMachines à tailler les engrenages.
650 6 $aMachines$xCinématique$xModèles mathématiques.
650 7 $aHOUSE & HOME$xPower Tools.$2bisacsh
650 7 $aGear-shaping machines.$2fast$0(OCoLC)fst00939402
650 7 $aGear-cutting machines$2fast$0(OCoLC)fst00939397
650 7 $aGearing$xDesign and construction$2fast$0(OCoLC)fst00939408
650 7 $aMachinery, Kinematics of$xMathematical models$2fast$0(OCoLC)fst01005110
655 4 $aElectronic books.
776 08 $iPrint version:$aRadzevich, S.P. (Stepan Pavlovich).$tGear cutting tools.$dBoca Raton, FL : CRC Press, ©2010$z9781439819678$w(DLC) 2009031422$w(OCoLC)377860016
856 40 $uhttp://www.columbia.edu/cgi-bin/cul/resolve?clio15080583$zTaylor & Francis eBooks
852 8 $blweb$hEBOOKS