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  4. Modeling and design of air vane motors for minimal torque ripples
 
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Modeling and design of air vane motors for minimal torque ripples

Journal
Journal of Mechanical Design
Journal Volume
134
Journal Issue
5
Start Page
051003
ISSN
10500472
Date Issued
2012
Author(s)
Cheng, Chengwei
CHAO-CHIEH LAN  
Tseng, Chunyi
DOI
10.1115/1.4006437
URI
https://www.scopus.com/inward/record.uri?eid=2-s2.0-84859919536&doi=10.1115%2F1.4006437&partnerID=40&md5=0ee2649a9aaeec8e49a64d3c21435a70
https://scholars.lib.ntu.edu.tw/handle/123456789/732513
Abstract
This paper presents the analysis and design of a novel air vane motor. Air motors have a very high specific power. They require compressed air rather than electricity to produce motion; thus, they avoid sparks and can be used in demanding environments. Similar to other types of rotary machines, air vane motors exhibit torque fluctuations. The varying torque curve is a result of unmatched torques generated by the vanes in one revolution. Accompanying the torque fluctuations are dynamic speed ripples that produce undesirable vibration on the load side. Rather than using auxiliary flywheels or dampers to smoothen the fluctuation, we propose a new motor with noncircular stator profile so as to increase the flexibility of balancing vane torques. Through numerical optimization of the parametric noncircular profile, a nearly constant torque curve can be achieved. Experiments validate that the speed ripples are greatly suppressed without compromising performance, when compared with traditional air vane motors that employ circular stator profiles. We expect that the noncircular stator profile design can be applied to air vane motors of various sizes to minimize torque and speed ripples.
Subjects
Speed Ripple
Stator Profile Design
Torque Ripple
Vane-type Air Motor
Compressed Air
Curve Fitting
Optimization
Stators
Air Motors
Non-circular
Rotary Machine
Specific Power
Speed Ripples
Stator Profile Designs
Torque Curves
Torque Fluctuation
Torque Ripples
Vane-type Air Motors
Torque
Publisher
American Society of Mechanical Engineers (ASME)
Type
journal article

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