Using the Box–Behnken Response Surface Method to Study Parametric Influence to Improve the Efficiency of Helical Gears
Studying gear power loss theoretically and determining the efficiency of a helical gear drive depend on many geometrical and working parameters, such as rotation speed, tooth number, gear ratio, helix angle, and torque, among others. In this paper, the Plackett–Burman screening design and the Box–Be...
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oai:doaj.org-article:c9af21e449254b22bf6a8ab3f74bdd472021-11-25T18:12:08ZUsing the Box–Behnken Response Surface Method to Study Parametric Influence to Improve the Efficiency of Helical Gears10.3390/machines91102642075-1702https://doaj.org/article/c9af21e449254b22bf6a8ab3f74bdd472021-10-01T00:00:00Zhttps://www.mdpi.com/2075-1702/9/11/264https://doaj.org/toc/2075-1702Studying gear power loss theoretically and determining the efficiency of a helical gear drive depend on many geometrical and working parameters, such as rotation speed, tooth number, gear ratio, helix angle, and torque, among others. In this paper, the Plackett–Burman screening design and the Box–Behnken response-surface method are used to consider how the above parameters influence gear drive efficiency, and experimental models are provided to evaluate these influences. The present results can be used to select the efficiency when calculating and designing gear transmissions and to choose the parameters for improving gear transmission efficiency.Huu Loc NguyenLe Thanh DuyMDPI AGarticleresponse surfacegear efficiencypower lossMechanical engineering and machineryTJ1-1570ENMachines, Vol 9, Iss 264, p 264 (2021) |
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response surface gear efficiency power loss Mechanical engineering and machinery TJ1-1570 Huu Loc Nguyen Le Thanh Duy Using the Box–Behnken Response Surface Method to Study Parametric Influence to Improve the Efficiency of Helical Gears |
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Studying gear power loss theoretically and determining the efficiency of a helical gear drive depend on many geometrical and working parameters, such as rotation speed, tooth number, gear ratio, helix angle, and torque, among others. In this paper, the Plackett–Burman screening design and the Box–Behnken response-surface method are used to consider how the above parameters influence gear drive efficiency, and experimental models are provided to evaluate these influences. The present results can be used to select the efficiency when calculating and designing gear transmissions and to choose the parameters for improving gear transmission efficiency. |
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article |
author |
Huu Loc Nguyen Le Thanh Duy |
author_facet |
Huu Loc Nguyen Le Thanh Duy |
author_sort |
Huu Loc Nguyen |
title |
Using the Box–Behnken Response Surface Method to Study Parametric Influence to Improve the Efficiency of Helical Gears |
title_short |
Using the Box–Behnken Response Surface Method to Study Parametric Influence to Improve the Efficiency of Helical Gears |
title_full |
Using the Box–Behnken Response Surface Method to Study Parametric Influence to Improve the Efficiency of Helical Gears |
title_fullStr |
Using the Box–Behnken Response Surface Method to Study Parametric Influence to Improve the Efficiency of Helical Gears |
title_full_unstemmed |
Using the Box–Behnken Response Surface Method to Study Parametric Influence to Improve the Efficiency of Helical Gears |
title_sort |
using the box–behnken response surface method to study parametric influence to improve the efficiency of helical gears |
publisher |
MDPI AG |
publishDate |
2021 |
url |
https://doaj.org/article/c9af21e449254b22bf6a8ab3f74bdd47 |
work_keys_str_mv |
AT huulocnguyen usingtheboxbehnkenresponsesurfacemethodtostudyparametricinfluencetoimprovetheefficiencyofhelicalgears AT lethanhduy usingtheboxbehnkenresponsesurfacemethodtostudyparametricinfluencetoimprovetheefficiencyofhelicalgears |
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1718411523345350656 |