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008 120503t2011 my a f m 000 0 eng d
020 _aTHE0006965(Local)
039 9 _a201906131256
_baida
_c201710161554
_daishah
_c201205031124
_dida
_y201205031114
_zida
040 _aUMP
090 _aTK7872.P54 S25 2011 rs Thesis
100 0 _aSiti Nur Sakinah Jamaludin
245 1 0 _aDevelopment of regenerative piezoelectric linear generator for alternative power generation /
_cSiti Nur Sakinah Jamaludin
260 _aKuantan, Pahang :
_bUMP,
_c2011
300 _axx, 129 p. :
_bill. (some col.) ;
_c30 cm. +
_e1 CD-ROM
502 _aThesis (Master of Engineering in Automotive) -- Universiti Malaysia Pahang - 2011
504 _aBibliography: p. [117]-119
520 3 _aThe unique ability of piezoelectric materials shows their potential in harvesting power for the application of micro to miniature power source range of devices in the industry. Focus on the suspension operating system which produces waste vibrating energy as a source of power, a conceptual design of a regenerative piezoelectric linear generator was developed by considering some factors including the dimensions, shapes, maintenance convenience and material behaviour. In this project, piezoelectric plate used in a buzzer was modified to be a multilayer stack as an actuation element for the regenerative piezoelectric linear generator which able to supply power for certain applications. The performance of the fabricated prototype had been tested on a specific testing rig within some inputs variables in terms of different force magnitude, speed and load duration. The preliminary testing on the real system of the generator also performed where two loadings from 50kg’s and 80kg’s person bouncing had been considered. The experimental testing had agreed the hypothesis made where the model configurations and the mechanism of power harvesting implemented could influence the power output achieved by the system. The proposed design is proved able to achieve more power within more smart material thickness and layers. It also able to works within different frequencies and load duration that refer to variety of road conditions we have in our country. The average output power achieved was reached until 1.33mW and the value could be enhanced within the addition of piezoelectric plate thickness and layers. This thesis elaborated the whole process of designing the generator from the first brainstorming of conceptual design until the recommendation of the designed model.
650 0 _aPiezoelectric devices
_xDesign and construction
650 0 _aPiezoelectric devices
_xMaterials
856 4 0 _uhttp://ecollib.ump.edu.my/3826/
_zLibrary access only
999 _aVIRTUA40
_c2714
_d2720
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