The Fabrication and Flow Analysis Piezoelectric valve-less micropump

碩士 === 中華技術學院 === 機電光工程研究所碩士班 === 95 === This thesis is aimed at the analysis of the flow structures and characteristics of the piezoelectronic valveless micro-pump by the experiments with high-speed photography technology. The micro-pump was made by the CO2 laser carving and hot-press methods. The...

Full description

Bibliographic Details
Main Authors: TaiShuan Lin, 林泰軒
Other Authors: 吳正鵬
Format: Others
Language:zh-TW
Published: 2007
Online Access:http://ndltd.ncl.edu.tw/handle/57274063181503706701
id ndltd-TW-095CHIT0490006
record_format oai_dc
spelling ndltd-TW-095CHIT04900062015-10-13T16:41:42Z http://ndltd.ncl.edu.tw/handle/57274063181503706701 The Fabrication and Flow Analysis Piezoelectric valve-less micropump 壓電無閥微幫浦製作與流場分析 TaiShuan Lin 林泰軒 碩士 中華技術學院 機電光工程研究所碩士班 95 This thesis is aimed at the analysis of the flow structures and characteristics of the piezoelectronic valveless micro-pump by the experiments with high-speed photography technology. The micro-pump was made by the CO2 laser carving and hot-press methods. The influence of the different opening, angle and area ratio of the nozzle/diffuser channel was also simulated and discussed according with experimental flowrate data to design an economic micro-pump. Flow in the nozzle/diffuser channel makes the pressure gradient. By altering the opening, angle and cross-area ratio of the nozzle/diffuser channel, experiment was conducted systematically to find the better operating conditions. It proved that the maximum flowrate 3.45 ml/min and maximum back-pressure 21.9 cm-H2O of the micro-pump was generated on the condition of the nozzle/diffuser channel angle being 16°, inlet hole and outlet hole of area cross-area ratio being 0.2, driving voltage being 120V and square-wave frequency being 70Hz. 吳正鵬 2007 學位論文 ; thesis 123 zh-TW
collection NDLTD
language zh-TW
format Others
sources NDLTD
description 碩士 === 中華技術學院 === 機電光工程研究所碩士班 === 95 === This thesis is aimed at the analysis of the flow structures and characteristics of the piezoelectronic valveless micro-pump by the experiments with high-speed photography technology. The micro-pump was made by the CO2 laser carving and hot-press methods. The influence of the different opening, angle and area ratio of the nozzle/diffuser channel was also simulated and discussed according with experimental flowrate data to design an economic micro-pump. Flow in the nozzle/diffuser channel makes the pressure gradient. By altering the opening, angle and cross-area ratio of the nozzle/diffuser channel, experiment was conducted systematically to find the better operating conditions. It proved that the maximum flowrate 3.45 ml/min and maximum back-pressure 21.9 cm-H2O of the micro-pump was generated on the condition of the nozzle/diffuser channel angle being 16°, inlet hole and outlet hole of area cross-area ratio being 0.2, driving voltage being 120V and square-wave frequency being 70Hz.
author2 吳正鵬
author_facet 吳正鵬
TaiShuan Lin
林泰軒
author TaiShuan Lin
林泰軒
spellingShingle TaiShuan Lin
林泰軒
The Fabrication and Flow Analysis Piezoelectric valve-less micropump
author_sort TaiShuan Lin
title The Fabrication and Flow Analysis Piezoelectric valve-less micropump
title_short The Fabrication and Flow Analysis Piezoelectric valve-less micropump
title_full The Fabrication and Flow Analysis Piezoelectric valve-less micropump
title_fullStr The Fabrication and Flow Analysis Piezoelectric valve-less micropump
title_full_unstemmed The Fabrication and Flow Analysis Piezoelectric valve-less micropump
title_sort fabrication and flow analysis piezoelectric valve-less micropump
publishDate 2007
url http://ndltd.ncl.edu.tw/handle/57274063181503706701
work_keys_str_mv AT taishuanlin thefabricationandflowanalysispiezoelectricvalvelessmicropump
AT líntàixuān thefabricationandflowanalysispiezoelectricvalvelessmicropump
AT taishuanlin yādiànwúfáwēibāngpǔzhìzuòyǔliúchǎngfēnxī
AT líntàixuān yādiànwúfáwēibāngpǔzhìzuòyǔliúchǎngfēnxī
AT taishuanlin fabricationandflowanalysispiezoelectricvalvelessmicropump
AT líntàixuān fabricationandflowanalysispiezoelectricvalvelessmicropump
_version_ 1717773503570116608