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Study on the Zero-Backlash Roller Enveloping Precision Reducer [electronic resource] / by Xingqiao Deng.

By: Contributor(s): Material type: TextTextLanguage: İngilizce Publisher: Singapore : Springer Nature Singapore : Imprint: Springer, 2022Edition: 1st ed. 2022Description: 1 online resourceContent type:
  • text
Media type:
  • computer
Carrier type:
  • online resource
ISBN:
  • 9789811651533
Subject(s): LOC classification:
  • TJ202
Online resources:
Contents:
Introduction -- Theory of Zero Backlash High Precision Roller Enveloping Reducer -- Parametric Study of Meshing Characteristics with Respect to Different Meshing Rollers -- Mathematical Calculation and Finite Element Analysis -- Optimal Design -- Manufacturing and Experiment -- Conclusion.
Summary: This book aims to describe the basis meshing theory of roller enveloping worm gear and provides the new design and manufacturing method for solving the problem of backlash in gearing transmission. Also, it presents a new efficient numerical calculation means to predict the lubrication properties for two complex surface meshing in space. Our results provide a series of new viewpoints for design precision reducer. .
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Holdings
Item type Current library Home library Collection Call number Copy number Status Notes Date due Barcode
E-Book E-Book Merkez Kütüphane Merkez Kütüphane E-Kitap Koleksiyonu TJ202EBK (Browse shelf(Opens below)) 1 Geçerli değil-e-Kitap / Not applicable-e-Book EBK03078

Introduction -- Theory of Zero Backlash High Precision Roller Enveloping Reducer -- Parametric Study of Meshing Characteristics with Respect to Different Meshing Rollers -- Mathematical Calculation and Finite Element Analysis -- Optimal Design -- Manufacturing and Experiment -- Conclusion.

This book aims to describe the basis meshing theory of roller enveloping worm gear and provides the new design and manufacturing method for solving the problem of backlash in gearing transmission. Also, it presents a new efficient numerical calculation means to predict the lubrication properties for two complex surface meshing in space. Our results provide a series of new viewpoints for design precision reducer. .

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