Comparison of hand-arm vibration on truck steering wheels based on speed changes using i-kaz method

Shamsul Akmar Ab Aziz, Mohd. Zaki Nuawi, Mohd. Jailani Mohd Nor, Dian Darina Indah Daruis

Research output: Chapter in Book/Report/Conference proceedingConference contribution

Abstract

Exposure to high levels of hand-arm vibration (HAV) from the steering wheels can present risks to health and safety to drivers. This study aim to do HAV comparison analysis on the Malaysian Army (MA) three-tonne truck steering wheels in three different speeds, when the truck is stationary with the engine switched on and when truck is moving at speed of 40 km/h and 80 km/h. HAV from the steering wheel were measured by using single axis piezoelectric accelerometer and was connected to Brüel & Kjær Vibration Analyser Type 3649, which is which is capable to produce tangential direction acceleration time discrete continuous raw data in units of meters per second squared (m/s2). The raw data were analyzed using statistical analysis I-kaz method to determine the HAV in relation to difference speed of the truck. Based on the results, HAV experienced by the drivers can be presented in frequency weighted HAVhwz, I-kaz coefficient (Z) and I-kaz display which the value will increase proportional to the truck speed.

Original languageEnglish
Title of host publicationApplied Mechanics and Materials
PublisherTrans Tech Publications Ltd
Pages411-414
Number of pages4
Volume663
ISBN (Print)9783038352617
DOIs
Publication statusPublished - 2014
Event2nd International Conference on Recent Advances in Automotive Engineering and Mobility Research, ReCAR 2013 - Kuala Lumpur
Duration: 16 Dec 201318 Dec 2013

Publication series

NameApplied Mechanics and Materials
Volume663
ISSN (Print)16609336
ISSN (Electronic)16627482

Other

Other2nd International Conference on Recent Advances in Automotive Engineering and Mobility Research, ReCAR 2013
CityKuala Lumpur
Period16/12/1318/12/13

Fingerprint

Trucks
Wheels
Accelerometers
Statistical methods
Display devices
Health
Engines

Keywords

  • Hand-arm vibration
  • I-kaz
  • Malaysian Army 3-tonne truck
  • Speed changes

ASJC Scopus subject areas

  • Engineering(all)

Cite this

Aziz, S. A. A., Nuawi, M. Z., Mohd Nor, M. J., & Daruis, D. D. I. (2014). Comparison of hand-arm vibration on truck steering wheels based on speed changes using i-kaz method. In Applied Mechanics and Materials (Vol. 663, pp. 411-414). (Applied Mechanics and Materials; Vol. 663). Trans Tech Publications Ltd. https://doi.org/10.4028/www.scientific.net/AMM.663.411

Comparison of hand-arm vibration on truck steering wheels based on speed changes using i-kaz method. / Aziz, Shamsul Akmar Ab; Nuawi, Mohd. Zaki; Mohd Nor, Mohd. Jailani; Daruis, Dian Darina Indah.

Applied Mechanics and Materials. Vol. 663 Trans Tech Publications Ltd, 2014. p. 411-414 (Applied Mechanics and Materials; Vol. 663).

Research output: Chapter in Book/Report/Conference proceedingConference contribution

Aziz, SAA, Nuawi, MZ, Mohd Nor, MJ & Daruis, DDI 2014, Comparison of hand-arm vibration on truck steering wheels based on speed changes using i-kaz method. in Applied Mechanics and Materials. vol. 663, Applied Mechanics and Materials, vol. 663, Trans Tech Publications Ltd, pp. 411-414, 2nd International Conference on Recent Advances in Automotive Engineering and Mobility Research, ReCAR 2013, Kuala Lumpur, 16/12/13. https://doi.org/10.4028/www.scientific.net/AMM.663.411
Aziz SAA, Nuawi MZ, Mohd Nor MJ, Daruis DDI. Comparison of hand-arm vibration on truck steering wheels based on speed changes using i-kaz method. In Applied Mechanics and Materials. Vol. 663. Trans Tech Publications Ltd. 2014. p. 411-414. (Applied Mechanics and Materials). https://doi.org/10.4028/www.scientific.net/AMM.663.411
Aziz, Shamsul Akmar Ab ; Nuawi, Mohd. Zaki ; Mohd Nor, Mohd. Jailani ; Daruis, Dian Darina Indah. / Comparison of hand-arm vibration on truck steering wheels based on speed changes using i-kaz method. Applied Mechanics and Materials. Vol. 663 Trans Tech Publications Ltd, 2014. pp. 411-414 (Applied Mechanics and Materials).
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