Non-contact Measurement of Dynamic Belt Span Tension in Automotive FEAD Systems
The proposed tension measurement method focuses on measurement of tension in a single belt span of the multi-pulley Front End Accessory Drive (FEAD) system. The mean belt span tension is calculated from the measured belt span natural vibration frequency. The oscillation belt span tension is calculat...
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ndltd-TORONTO-oai-tspace.library.utoronto.ca-1807-432682013-12-19T04:01:56ZNon-contact Measurement of Dynamic Belt Span Tension in Automotive FEAD SystemsNeudorf, Thelma KatherineVibrationTensionAutomotiveMeasurement05480540The proposed tension measurement method focuses on measurement of tension in a single belt span of the multi-pulley Front End Accessory Drive (FEAD) system. The mean belt span tension is calculated from the measured belt span natural vibration frequency. The oscillation belt span tension is calculated from the measured belt span transverse displacement. The dynamic belt span tension is calculated using the mean and oscillation tensions, belt span support pulley rotations, and belt slip, where the slip equation is based on Euler's equation. The proposed tension measurement method is validated using an experimental testing FEAD system which consists of a five pulley system and an automatic tensioner arm. Non-contact sensors are used to prevent disruption of the typical system behaviour. Testing conditions simulate typical engine crankshaft rotation input. Results from experimental testing consistently produce results with percent error less than 10 % for mean and maximum belt span dynamic tension.Zu, Jean W.2013-112013-12-05T20:57:03ZNO_RESTRICTION2013-12-05T20:57:03Z2013-12-05Thesishttp://hdl.handle.net/1807/43268en_ca |
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en_ca |
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Vibration Tension Automotive Measurement 0548 0540 |
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Vibration Tension Automotive Measurement 0548 0540 Neudorf, Thelma Katherine Non-contact Measurement of Dynamic Belt Span Tension in Automotive FEAD Systems |
description |
The proposed tension measurement method focuses on measurement of tension in a single
belt span of the multi-pulley Front End Accessory Drive (FEAD) system. The mean
belt span tension is calculated from the measured belt span natural vibration frequency. The oscillation belt span tension is calculated from the measured belt span transverse displacement. The dynamic belt span tension is calculated using the mean and oscillation tensions, belt span support pulley rotations, and belt slip, where the slip equation is based on Euler's equation. The proposed tension measurement method is validated using an experimental testing FEAD system which consists of a five pulley system and an automatic tensioner arm. Non-contact sensors are used to prevent disruption of the
typical system behaviour. Testing conditions simulate typical engine crankshaft rotation
input. Results from experimental testing consistently produce results with percent error less than 10 % for mean and maximum belt span dynamic tension. |
author2 |
Zu, Jean W. |
author_facet |
Zu, Jean W. Neudorf, Thelma Katherine |
author |
Neudorf, Thelma Katherine |
author_sort |
Neudorf, Thelma Katherine |
title |
Non-contact Measurement of Dynamic Belt Span Tension in Automotive FEAD Systems |
title_short |
Non-contact Measurement of Dynamic Belt Span Tension in Automotive FEAD Systems |
title_full |
Non-contact Measurement of Dynamic Belt Span Tension in Automotive FEAD Systems |
title_fullStr |
Non-contact Measurement of Dynamic Belt Span Tension in Automotive FEAD Systems |
title_full_unstemmed |
Non-contact Measurement of Dynamic Belt Span Tension in Automotive FEAD Systems |
title_sort |
non-contact measurement of dynamic belt span tension in automotive fead systems |
publishDate |
2013 |
url |
http://hdl.handle.net/1807/43268 |
work_keys_str_mv |
AT neudorfthelmakatherine noncontactmeasurementofdynamicbeltspantensioninautomotivefeadsystems |
_version_ |
1716620850295209984 |