Investigation of injection molding of orthogonal fluidic connector for microfluidic devices

Orthogonal fluidic connections are essential for developing multilayered microfluidic devices. At present, most orthogonal connectors are realized by a horizontal channel and a vertical channel in different plates. Therefore, some extra alignment and adhesion processes for precise plate assembly are...

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Main Authors: Zheng Xu, Dong Cao, Wei Zhao, Man-cang Song, Jun-shan Liu
Format: Article
Language:English
Published: AIP Publishing LLC 2017-02-01
Series:AIP Advances
Online Access:http://dx.doi.org/10.1063/1.4976618
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spelling doaj-973d0698d8e046bfba48249d7a8bf5d22020-11-24T21:11:58ZengAIP Publishing LLCAIP Advances2158-32262017-02-0172025205025205-810.1063/1.4976618016702ADVInvestigation of injection molding of orthogonal fluidic connector for microfluidic devicesZheng Xu0Dong Cao1Wei Zhao2Man-cang Song3Jun-shan Liu4Key Laboratory for Micro/Nano Technology and System of Liaoning Province, Dalian University of Technology, Dalian 116085, ChinaKey Laboratory for Micro/Nano Technology and System of Liaoning Province, Dalian University of Technology, Dalian 116085, ChinaKey Laboratory for Micro/Nano Technology and System of Liaoning Province, Dalian University of Technology, Dalian 116085, ChinaKey Laboratory for Micro/Nano Technology and System of Liaoning Province, Dalian University of Technology, Dalian 116085, ChinaKey Laboratory for Micro/Nano Technology and System of Liaoning Province, Dalian University of Technology, Dalian 116085, ChinaOrthogonal fluidic connections are essential for developing multilayered microfluidic devices. At present, most orthogonal connectors are realized by a horizontal channel and a vertical channel in different plates. Therefore, some extra alignment and adhesion processes for precise plate assembly are required. In this paper, the method of injection molding is proposed to make a one-body-type orthogonal connector in a single plastic plate. The connector was composed of a cantilevered tube and the other in the substrate. An injection mold was developed in which a side core-pulling mechanism and an ejection mechanism of push-pipes were combined to form the mold for an orthogonal connector. Both the type and the location of gate were optimized for the mold. The results showed that the fan gate in the middle position of the plate was the most suitable in term of both defect control and practicability. The effect of melt temperature was numerically investigated and then verified experimentally. With the optimized parameters, the relative length and the relative wall thickness of a cantilevered tube in the plastic part can reach 98.89% and 99.80%, respectively. Furthermore, using the plastic part as a cover plate, a three-layer plastic microfluidic device was conveniently fabricated for electrochemical detection.http://dx.doi.org/10.1063/1.4976618
collection DOAJ
language English
format Article
sources DOAJ
author Zheng Xu
Dong Cao
Wei Zhao
Man-cang Song
Jun-shan Liu
spellingShingle Zheng Xu
Dong Cao
Wei Zhao
Man-cang Song
Jun-shan Liu
Investigation of injection molding of orthogonal fluidic connector for microfluidic devices
AIP Advances
author_facet Zheng Xu
Dong Cao
Wei Zhao
Man-cang Song
Jun-shan Liu
author_sort Zheng Xu
title Investigation of injection molding of orthogonal fluidic connector for microfluidic devices
title_short Investigation of injection molding of orthogonal fluidic connector for microfluidic devices
title_full Investigation of injection molding of orthogonal fluidic connector for microfluidic devices
title_fullStr Investigation of injection molding of orthogonal fluidic connector for microfluidic devices
title_full_unstemmed Investigation of injection molding of orthogonal fluidic connector for microfluidic devices
title_sort investigation of injection molding of orthogonal fluidic connector for microfluidic devices
publisher AIP Publishing LLC
series AIP Advances
issn 2158-3226
publishDate 2017-02-01
description Orthogonal fluidic connections are essential for developing multilayered microfluidic devices. At present, most orthogonal connectors are realized by a horizontal channel and a vertical channel in different plates. Therefore, some extra alignment and adhesion processes for precise plate assembly are required. In this paper, the method of injection molding is proposed to make a one-body-type orthogonal connector in a single plastic plate. The connector was composed of a cantilevered tube and the other in the substrate. An injection mold was developed in which a side core-pulling mechanism and an ejection mechanism of push-pipes were combined to form the mold for an orthogonal connector. Both the type and the location of gate were optimized for the mold. The results showed that the fan gate in the middle position of the plate was the most suitable in term of both defect control and practicability. The effect of melt temperature was numerically investigated and then verified experimentally. With the optimized parameters, the relative length and the relative wall thickness of a cantilevered tube in the plastic part can reach 98.89% and 99.80%, respectively. Furthermore, using the plastic part as a cover plate, a three-layer plastic microfluidic device was conveniently fabricated for electrochemical detection.
url http://dx.doi.org/10.1063/1.4976618
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