Numerical And Experimental Analyses Of Piezoelectric Fans For Microelectronics Cooling

With the advancement of science and technology, electronic products work faster and perform more functions. Also electronic products are shrinking in size and weight that have increased volumetric heat generation rates and surface heat fluxes over their components. Hence, it is important to develop...

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Main Author: Ramana, Maram Venkata
Format: Thesis
Language:English
Published: 2010
Subjects:
Online Access:http://eprints.usm.my/41997/1/MARAM_VENKATA_RAMANA.pdf
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author Ramana, Maram Venkata
author_facet Ramana, Maram Venkata
author_sort Ramana, Maram Venkata
collection USM
description With the advancement of science and technology, electronic products work faster and perform more functions. Also electronic products are shrinking in size and weight that have increased volumetric heat generation rates and surface heat fluxes over their components. Hence, it is important to develop a new cooling technology to improve performance of microelectronic components, which motivates the usage of cantilever type piezoelectric bimorph structure as a miniature fan. These piezoelectric bimorph structures have been investigated as alternative cooling mechanism for cooling microelectronic components. Parameters such as length, thickness, width and location of the piezoceramic layer to perform at the optimum level are studied here in. This process involves solving static, modal and harmonic simulations repeatedly.
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spelling usm.eprints-419972019-04-12T05:26:51Z http://eprints.usm.my/41997/ Numerical And Experimental Analyses Of Piezoelectric Fans For Microelectronics Cooling Ramana, Maram Venkata TJ1-1570 Mechanical engineering and machinery With the advancement of science and technology, electronic products work faster and perform more functions. Also electronic products are shrinking in size and weight that have increased volumetric heat generation rates and surface heat fluxes over their components. Hence, it is important to develop a new cooling technology to improve performance of microelectronic components, which motivates the usage of cantilever type piezoelectric bimorph structure as a miniature fan. These piezoelectric bimorph structures have been investigated as alternative cooling mechanism for cooling microelectronic components. Parameters such as length, thickness, width and location of the piezoceramic layer to perform at the optimum level are studied here in. This process involves solving static, modal and harmonic simulations repeatedly. 2010-06 Thesis NonPeerReviewed application/pdf en http://eprints.usm.my/41997/1/MARAM_VENKATA_RAMANA.pdf Ramana, Maram Venkata (2010) Numerical And Experimental Analyses Of Piezoelectric Fans For Microelectronics Cooling. PhD thesis, Universiti Sains Malaysia.
spellingShingle TJ1-1570 Mechanical engineering and machinery
Ramana, Maram Venkata
Numerical And Experimental Analyses Of Piezoelectric Fans For Microelectronics Cooling
title Numerical And Experimental Analyses Of Piezoelectric Fans For Microelectronics Cooling
title_full Numerical And Experimental Analyses Of Piezoelectric Fans For Microelectronics Cooling
title_fullStr Numerical And Experimental Analyses Of Piezoelectric Fans For Microelectronics Cooling
title_full_unstemmed Numerical And Experimental Analyses Of Piezoelectric Fans For Microelectronics Cooling
title_short Numerical And Experimental Analyses Of Piezoelectric Fans For Microelectronics Cooling
title_sort numerical and experimental analyses of piezoelectric fans for microelectronics cooling
topic TJ1-1570 Mechanical engineering and machinery
url http://eprints.usm.my/41997/1/MARAM_VENKATA_RAMANA.pdf
work_keys_str_mv AT ramanamaramvenkata numericalandexperimentalanalysesofpiezoelectricfansformicroelectronicscooling