Comparison of Epicyclic Gearing Design Methods by Means of Quality Criteria Evaluation

<p>The performance of modern economy depends on the usage of different machines. Execution of the many tasks a society entrusts to the machinery requires a huge amount of the mechanical energy imparted to the mechanical system due to different engines. Combining the motors and actuators in tur...

Full description

Bibliographic Details
Main Authors: I. V. Leonov, E. O. Podchasov
Format: Article
Language:Russian
Published: MGTU im. N.È. Baumana 2015-01-01
Series:Nauka i Obrazovanie
Subjects:
Online Access:http://technomag.edu.ru/jour/article/view/106
id doaj-e001c990865e4f68800c80c45bb7f6b2
record_format Article
spelling doaj-e001c990865e4f68800c80c45bb7f6b22020-11-24T23:46:55ZrusMGTU im. N.È. BaumanaNauka i Obrazovanie1994-04082015-01-010119210010.7463/1115.0823612106Comparison of Epicyclic Gearing Design Methods by Means of Quality Criteria EvaluationI. V. Leonov0E. O. Podchasov1Bauman Moscow State Technical UniversityBauman Moscow State Technical University<p>The performance of modern economy depends on the usage of different machines. Execution of the many tasks a society entrusts to the machinery requires a huge amount of the mechanical energy imparted to the mechanical system due to different engines. Combining the motors and actuators in turn occurs through various transmissions.</p><p>Among the numerous types of transmission the planetary gears occupy an important place. With a number of advantages and differences from other types of transmission of rotational motion, planetary gear can be used as a gear or a differential gear. The planetary gear firmly holds a leading position for its frequent use in transmissions of various technological and transport vehicles, as it has a convenient layout and high load capacity.</p><p>Despite the fact that people have been using planetary gears over two thousand years, there is no simple method of their design, allowing both a minimizing design time and an optimization of their performance characteristics and technological qualities.</p><p>The proposed design method is derived from the classical method of factors. It limits the number of options by isolating a promising region of a set of reduced criteria values of the overall dimensions, one of the main design criteria. A minimizing size criterion optimization is provided through rapprochement of gear sizes in two rows of gearings and proximity to the minimum possible number of teeth from the undercut condition, environment for numerous satellites, and gear assembly as well as through specifying the numbers of teeth of one of the rows to be equal to the arithmetic average of the teeth numbers of the other row.</p>http://technomag.edu.ru/jour/article/view/106epicyclic gearingdesigntechnical regulationmathematical modelquality criteriaoverall dimensions
collection DOAJ
language Russian
format Article
sources DOAJ
author I. V. Leonov
E. O. Podchasov
spellingShingle I. V. Leonov
E. O. Podchasov
Comparison of Epicyclic Gearing Design Methods by Means of Quality Criteria Evaluation
Nauka i Obrazovanie
epicyclic gearing
design
technical regulation
mathematical model
quality criteria
overall dimensions
author_facet I. V. Leonov
E. O. Podchasov
author_sort I. V. Leonov
title Comparison of Epicyclic Gearing Design Methods by Means of Quality Criteria Evaluation
title_short Comparison of Epicyclic Gearing Design Methods by Means of Quality Criteria Evaluation
title_full Comparison of Epicyclic Gearing Design Methods by Means of Quality Criteria Evaluation
title_fullStr Comparison of Epicyclic Gearing Design Methods by Means of Quality Criteria Evaluation
title_full_unstemmed Comparison of Epicyclic Gearing Design Methods by Means of Quality Criteria Evaluation
title_sort comparison of epicyclic gearing design methods by means of quality criteria evaluation
publisher MGTU im. N.È. Baumana
series Nauka i Obrazovanie
issn 1994-0408
publishDate 2015-01-01
description <p>The performance of modern economy depends on the usage of different machines. Execution of the many tasks a society entrusts to the machinery requires a huge amount of the mechanical energy imparted to the mechanical system due to different engines. Combining the motors and actuators in turn occurs through various transmissions.</p><p>Among the numerous types of transmission the planetary gears occupy an important place. With a number of advantages and differences from other types of transmission of rotational motion, planetary gear can be used as a gear or a differential gear. The planetary gear firmly holds a leading position for its frequent use in transmissions of various technological and transport vehicles, as it has a convenient layout and high load capacity.</p><p>Despite the fact that people have been using planetary gears over two thousand years, there is no simple method of their design, allowing both a minimizing design time and an optimization of their performance characteristics and technological qualities.</p><p>The proposed design method is derived from the classical method of factors. It limits the number of options by isolating a promising region of a set of reduced criteria values of the overall dimensions, one of the main design criteria. A minimizing size criterion optimization is provided through rapprochement of gear sizes in two rows of gearings and proximity to the minimum possible number of teeth from the undercut condition, environment for numerous satellites, and gear assembly as well as through specifying the numbers of teeth of one of the rows to be equal to the arithmetic average of the teeth numbers of the other row.</p>
topic epicyclic gearing
design
technical regulation
mathematical model
quality criteria
overall dimensions
url http://technomag.edu.ru/jour/article/view/106
work_keys_str_mv AT ivleonov comparisonofepicyclicgearingdesignmethodsbymeansofqualitycriteriaevaluation
AT eopodchasov comparisonofepicyclicgearingdesignmethodsbymeansofqualitycriteriaevaluation
_version_ 1725491605409890304