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180207s2018 flu ob 001 0 eng |
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|a DLC
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|a UAMI
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|a Radzevich, S. P.
|q (Stepan Pavlovich),
|e author.
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|a Theory of gearing :
|b kinematics, geometry, and synthesis /
|c Stephen Radzevich.
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|a Second edition.
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|a Boca Raton :
|b CRC Press, Taylor & Francis Group,
|c [2018]
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|a 1 online resource
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|a text
|b txt
|2 rdacontent
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|a computer
|b c
|2 rdamedia
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|a online resource
|b cr
|2 rdacarrier
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|a Includes bibliographical references and index.
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|a Description based on online resource; title from PDF title page (Site, viewed 09/01/2020).
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|a Cover; Half Title; Title Page; Copyright Page; Dedication; Contents; Preface; Acknowledgments; Author; Notation; Introduction; 1. A Brief Overview of the Evolution of the Scientific Theory of Gearing; 1.1 Preliminary Remarks; 1.2 Earliest Designs of Gears; 1.3 Pre-Eulerian Period of Gear Art; 1.4 The Origin of the Scientific Theory of Gearing: Eulerian Period of Gear Art; 1.5 Post-Eulerian Period of Developments in the Field of Gearing; 1.6 Developments in the Field of Perfect Gearings; 1.6.1 Grant Bevel Gearing; 1.6.2 Contribution by Professor N.I. Kolchin; 1.6.3 Novikov Conformal Gearing.
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|a 1.6.4 Contribution by Professor V.A. Gavrilenko1.6.5 Contribution by Walton Musser; 1.7 Tentative Chronology of the Evolution of the Theory of Gearing; 1.8 Developments in the Field of Approximate Gearings; 1.8.1 Cone Double-Enveloping Worm Gearing; 1.8.2 Approximate Bevel Gearing; 1.8.3 Approximate Crossed-Axes Gearing; 1.8.4 Face Gearing; 1.9 A Brief Summary of the Principal Accomplishments in the Theory of Gearing Achieved by the Beginning of the 21st Century; 1.9.1 Condition of Contact of the Interacting Tooth Flanks of a Gear and Pinion; 1.9.1.1 Condition of Contact.
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|a 1.9.2 Condition of Conjugacy of the Interacting Tooth Flanks of a Gear and Pinion1.9.3 Condition of Equality of Base Pitches of the Interacting Tooth Flanks of a Gear and Pinion; 1.10 Concluding Remarks; Part I: Fundamentals; 2. Kinematics of a Gear Pair; 2.1 Transmission of Motion by Means of a Gear Pair; 2.2 Vector Representation of Gear Pair Kinematics; 2.2.1 Concept of Vector Representation of Gear Pair Kinematics; 2.2.2 Vector Diagrams of Three Different Types for Spatial Gear Pairs; 2.2.2.1 Vector Diagrams of Rotary-Negative Crossed-Axes Gear Pairs.
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|a 2.2.2.2 Vector Diagrams of Rotary-Positive Crossed-Axes Gear Pairs2.2.2.3 Vector Diagrams of Rotary-Zero Crossed-Axes Gear Pairs; 2.2.2.4 Analytical Criterion of Type of Crossed-Axes Gear Pair; 2.3 Classification of Possible Types of Vector Diagrams of Gear Pairs; 2.4 Complementary Vectors to Vector Diagrams of Gear Pairs; 2.4.1 Centerline Vectors of a Gear Pair; 2.4.2 Axial Vectors of a Gear Pair; 2.4.3 Useful Kinematic and Geometric Formulas; 2.5 Possible Future Developments in the Theory of Gearing; 3. Principal Planes and Principal Reference Systems Associated with a Gear Pair.
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|a 3.1 Principal Planes Associated with a Gear Pair3.1.1 Case of Intersected-Axes Gearing; 3.1.2 Case of Parallel-Axes Gearing; 3.2 Principal Reference Systems Associated with a Gear Pair; 3.3 Coordinate System Transformations; 3.3.1 Transition from the Gear Reference System to the Main Reference System; 3.3.2 Transition from the Pinion Reference System to the Main Reference System; 4. Conditions for Transmitting a Uniform Rotation Smoothly from a Driving Shaft to a Driven Shaft: Three Fundamental Laws of Gearing.
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|a Knovel
|b ACADEMIC - Mechanics & Mechanical Engineering
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|a Gearing.
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|a Engrenages.
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|a gears.
|2 aat
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|a TECHNOLOGY & ENGINEERING
|x Mechanical.
|2 bisacsh
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|a Gearing.
|2 fast
|0 (OCoLC)fst00939404
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|i Print version:
|t Theory of gearing
|d Boca Raton : CRC Press, Taylor & Francis Group, 2018.
|z 9781138585553 (hardback : alk. paper)
|w (DLC) 2018003427
|
856 |
4 |
0 |
|u https://appknovel.uam.elogim.com/kn/resources/kpTGKGSER1/toc
|z Texto completo
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938 |
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|a ProQuest Ebook Central
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