Development of a Piezo-Driven Liquid Jet Dispenser with Hinge-Lever Amplification Mechanism

Owing to the quick response, compact structure, high precision, huge blocking force generation, and ease of operation, piezoelectric actuators are urgently being adopted in the field of advanced dispensing for jetting performance improvement and fulfillment of precision requirements in microelectron...

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Main Authors: Mojiz Abbas Trimzi, Young Bog Ham, Byeung Cheol An, Young Min Choi, Jung Ho Park, So Nam Yun
Format: Article
Language:English
Published: MDPI AG 2020-01-01
Series:Micromachines
Subjects:
Online Access:https://www.mdpi.com/2072-666X/11/2/117
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author Mojiz Abbas Trimzi
Young Bog Ham
Byeung Cheol An
Young Min Choi
Jung Ho Park
So Nam Yun
author_facet Mojiz Abbas Trimzi
Young Bog Ham
Byeung Cheol An
Young Min Choi
Jung Ho Park
So Nam Yun
author_sort Mojiz Abbas Trimzi
collection DOAJ
description Owing to the quick response, compact structure, high precision, huge blocking force generation, and ease of operation, piezoelectric actuators are urgently being adopted in the field of advanced dispensing for jetting performance improvement and fulfillment of precision requirements in microelectronics packaging, adhesive bonding, and miniaturization industry. This research focuses on the fundamental design and development of a piezo-electrically driven compact fluid dispenser using the principle of a class-one lever for amplification of needle displacement, and enhancement of application areas of the developed jet dispenser. Using fundamental lever principle, geometry-based modelling is carried out to fabricate a working prototype of a normally closed hinge-lever type dispenser. Preliminary experiments are carried out to witness the workability of the fabricated dispenser to deliver 100 dots of working fluid per second that will provide a novel device for dispensing of various fluids, and the proposed amplification mechanism suits various other piezoelectric applications as well.
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spelling doaj.art-dfd57668b2dd48ff8852e784ff201b482022-12-22T02:34:16ZengMDPI AGMicromachines2072-666X2020-01-0111211710.3390/mi11020117mi11020117Development of a Piezo-Driven Liquid Jet Dispenser with Hinge-Lever Amplification MechanismMojiz Abbas Trimzi0Young Bog Ham1Byeung Cheol An2Young Min Choi3Jung Ho Park4So Nam Yun5Department of Thermal Systems, Korea Institute of Machinery and Materials, Daejeon 34103, KoreaDepartment of Thermal Systems, Korea Institute of Machinery and Materials, Daejeon 34103, KoreaDepartment of Thermal Systems, Korea Institute of Machinery and Materials, Daejeon 34103, KoreaDepartment of Thermal Systems, Korea Institute of Machinery and Materials, Daejeon 34103, KoreaDepartment of Thermal Systems, Korea Institute of Machinery and Materials, Daejeon 34103, KoreaDepartment of Thermal Systems, Korea Institute of Machinery and Materials, Daejeon 34103, KoreaOwing to the quick response, compact structure, high precision, huge blocking force generation, and ease of operation, piezoelectric actuators are urgently being adopted in the field of advanced dispensing for jetting performance improvement and fulfillment of precision requirements in microelectronics packaging, adhesive bonding, and miniaturization industry. This research focuses on the fundamental design and development of a piezo-electrically driven compact fluid dispenser using the principle of a class-one lever for amplification of needle displacement, and enhancement of application areas of the developed jet dispenser. Using fundamental lever principle, geometry-based modelling is carried out to fabricate a working prototype of a normally closed hinge-lever type dispenser. Preliminary experiments are carried out to witness the workability of the fabricated dispenser to deliver 100 dots of working fluid per second that will provide a novel device for dispensing of various fluids, and the proposed amplification mechanism suits various other piezoelectric applications as well.https://www.mdpi.com/2072-666X/11/2/117dropletjettingneedle-typenormally-closedhinge-leverdispenserdisplacement amplificationnozzle
spellingShingle Mojiz Abbas Trimzi
Young Bog Ham
Byeung Cheol An
Young Min Choi
Jung Ho Park
So Nam Yun
Development of a Piezo-Driven Liquid Jet Dispenser with Hinge-Lever Amplification Mechanism
Micromachines
droplet
jetting
needle-type
normally-closed
hinge-lever
dispenser
displacement amplification
nozzle
title Development of a Piezo-Driven Liquid Jet Dispenser with Hinge-Lever Amplification Mechanism
title_full Development of a Piezo-Driven Liquid Jet Dispenser with Hinge-Lever Amplification Mechanism
title_fullStr Development of a Piezo-Driven Liquid Jet Dispenser with Hinge-Lever Amplification Mechanism
title_full_unstemmed Development of a Piezo-Driven Liquid Jet Dispenser with Hinge-Lever Amplification Mechanism
title_short Development of a Piezo-Driven Liquid Jet Dispenser with Hinge-Lever Amplification Mechanism
title_sort development of a piezo driven liquid jet dispenser with hinge lever amplification mechanism
topic droplet
jetting
needle-type
normally-closed
hinge-lever
dispenser
displacement amplification
nozzle
url https://www.mdpi.com/2072-666X/11/2/117
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