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140926s2014 enk o 100 0 eng d |
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|a 891447014
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|a 9781782421955
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|a 1782421955
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|z 1782421947
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|z 9781782421948
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|a (OCoLC)891371012
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|a 621.833
|2 23
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|a International gear conference 2014 :
|b 26th-28th August 2014, Lyon Villeurbanne, France.
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|a Cambridge :
|b Woodhead Publishing, an imprint of Elsevier,
|c 2014.
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|a 1 online resource
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|a text
|b txt
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|a computer
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|a Title from PDF title page (viewed on September 26, 2014).
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|a This book presents papers from the International Gear Conference 2014, held in Lyon, 26th-28th August 2014. Mechanical transmission components such as gears, rolling element bearings, CVTs, belts and chains are present in every industrial sector and over recent years, increasing competitive pressure and environmental concerns have provided an impetus for cleaner, more efficient and quieter units. Moreover, the emergence of relatively new applications such as wind turbines, hybrid transmissions and jet engines has led to even more severe constraints. The main objective of this conference is to provide a forum for the most recent advances, addressing the challenges in modern mechanical transmissions. The conference proceedings address all aspects of gear and power transmission technology and range of applications (aerospace, automotive, wind turbine, and others) including topical issues such as power losses and efficiency, gear vibrations and noise, lubrication, contact failures, tribo-dynamics and nano transmissions.
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|a Cover; INTERNATIONAL GEAR CONFERENCE 2014; Copyright; CONTENTS; FOREWORD; PLENARY PAPERS; High ratio transmissions -- the key component for future mechatronic systems; Tribo-dynamic behavior of gear pairs; Influence of enveloping stressed volume and trochoidal interference on durability of gear teeth; Gearbox power losses -- Influence of lubricants, tooth and casing geometry; SESSION 1: WORM GEARS; Measurement of helix deviation for planar double enveloping hourglass worms; ABSTRACT; NOMENCLATURE; 1 INTRODUCTION; 2 WORKING PRINCIPLE AND CONSTITUTION OF THE MACHINE; 3 MEASUREMENT PRINCIPLE.
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|a 4 DATA PROCESSING5 CONCLUSIONS; REFERENCES; Calculation of the efficiency of worm gear drives; ABSTRACT; 1 INTRODUCTION; 2 POWER FLOW IN WORM GEAR DRIVES; 3 CALCULATION OF THE POWER LOSSES BY WORM GEAR DRIVES; 4 COMPARISON OF THE MEASUREMENT AND THE SIMULATION; 5 ANALYSIS OF THE POWER LOSSES; 6 CONCLUSION; 7 REFERENCES; Strength of plastic helical wheels meshed withvarious types of worms; ABSTRACT; 1 INTRODUCTION; 2 EXPERIMENTAL METHOD AND APPARATUS; 3 EXPERIMENTAL RESULTS AND DISCUSSION; 4 CONCLUSION; REFERENCES; Loaded behaviour of steel/bronze worm gear; ABSTRACT; 1 INTRODUCTION.
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|a 2 NUMERICAL MODEL3 RESULTS AND STUDIES; 4 CONCLUSION; REFERENCES; SESSION 2: TOOTH MODIFICATIONS; Optimal modifications on helical gears for goodload distribution and minimal wear; ABSTRACT; 1. INTRODUCTION; 2. MESHING SIMULATION -- ACTUAL PATH OF CONTACT; 3. LOAD DISTRIBUTION -- LOCAL PRESSURE DISTRIBUTION; 4. WEAR-SIMULATION; 5. COMPARISON TO TEST RESULTS -- DISCUSSION; 6. CRACK CRITERION; SUMMARY; REFERENCES; Profile optimization of the teeth of the double rack-and-pinion gear mechanism in the MCE-5 VCRi; ABSTRACT; 1 INTRODUCTION; 2 STUDY OF THE CORRECTION PARAMETERS INFLUENCE.
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|a 3 CALCULATION OF THE OPTIMUM PROFILE ON A 3D MODEL4 CONCLUSION; REFERENCES; A procedure to determine the optimum flank line modifications for planetary gear configurations; 1 INTRODUCTION; 2 ADAPTION OF THE METHOD FOR PLANETARY GEARS; 3 APPLICATION: EVALUATION OF A 'FLEX PIN DESIGN'; 4 INFLUENCE OF PLANET CARRIER TORSION WHEN USING ISO6336-1,ANNEX E, METHOD; 5 SOME REMAINING QUESTIONS; 6 CONCLUSION; REFERENCES; Multi-objective optimisation of profile modifications in spur and helical gears -- an analytical approach; ABSTRACT; 1 INTRODUCTION; 2 THEORY; 3 ELEMENTS OF VALIDATION.
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|a 4 PERFORMANCE DIAGRAMS ON THE MASTER CURVE5 CONCLUSION; REFERENCES; SESSION 3: MANUFACTURING (I); Manufacturing method of double helical gears using multi-axis control and multi-tasking machine tool; ABSTRACT; 1 INTRODUCTION; 2 TOOTH SURFACES OF DOUBLE HELICAL GEARS; 3 CAD/CAM SYSTEM; 4 MANUFACTURING OF DOUBLE HELICAL GEARS; 5 MEASUREMENT OF DOUBLE HELICAL GEARS; 6 TOOL WEAR AND LIFE TIME; 7 APPLICATION TO PUMP GEARS; 8 CONCLUSIONS; REFERENCES; Gear tooth surface roughness of helical gears manufactured by a form milling cutter; ABSTRACT; 1 INTRODUCTION; 2 GEOMETRY OF TOOL; 3 MILLING PROCESS.
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|a Gearing
|v Congresses.
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|a Engrenages
|0 (CaQQLa)201-0003062
|v Congr�es.
|0 (CaQQLa)201-0378219
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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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655 |
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|a Congress
|0 (DNLM)D016423
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|a proceedings (reports)
|2 aat
|0 (CStmoGRI)aatgf300027316
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655 |
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|a Conference papers and proceedings
|2 fast
|0 (OCoLC)fst01423772
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|a Conference papers and proceedings.
|2 lcgft
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|a Actes de congr�es.
|2 rvmgf
|0 (CaQQLa)RVMGF-000001049
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710 |
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|a International gear conference.
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776 |
0 |
8 |
|i Print version:
|t International gear conference 2014.
|d Cambridge : Woodhead Publishing, an imprint of Elsevier, 2014
|z 1782421947
|z 9781782421948
|w (OCoLC)879582407
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856 |
4 |
0 |
|u https://sciencedirect.uam.elogim.com/science/book/9781782421948
|z Texto completo
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