Design and fabrication of a 3D printed miniature pump for integrated microfluidic applications

被引:0
|
作者
Muhd Nazrul Hisham Zainal Alam
Faruque Hossain
Alexander Vale
Abbas Kouzani
机构
[1] Universiti Teknologi Malaysia (UTM),Faculty of Chemical and Energy Engineering
[2] Deakin University,School of Engineering
[3] Khulna University of Engineering & Technology (KUET),Department of Electronics and Communication Engineering
关键词
3D printing; Peristaltic pump; Microfluidic chip; Microbioreactor; Miniaturization;
D O I
暂无
中图分类号
学科分类号
摘要
This paper presents design, implementation, and evaluation of a 3D printed miniature peristaltic pump based on a planetary gear structure. The miniature pump (minipump) is printed using a rigid opaque photopolymers (Vero) and the fabrication time for a single pump was in the order of few minutes. The function of the minipump is comparable to that of a benchtop peristaltic pump. It however uses gears instead of rollers to invoke peristalsis. The characterization of the minipump is performed by using deionized water and a honey solution with viscosity of about 170 cP as working fluids. The minipump has a linear flow rate range spanning from 40 mL·min-1 to 230 mL·min-1 and continues working fine even at the backpressure as high as 25 kPa. A temperature gradient microfluidic chip is fabricated as an additional testing platform for the minipump. Our experimental results demonstrate a successful interfacing between the chip and the minipump where the conceptual polymerase chain reaction (PCR) chip is established excellently without leaking or flow disruption within the microchannels. Moreover, the minipump shows good tolerance to bubbles, has a high reproducible output flow, and can operate continuously over a period of 35 hours.
引用
收藏
页码:1287 / 1296
页数:9
相关论文
共 50 条
  • [1] Design and fabrication of a 3D printed miniature pump for integrated microfluidic applications
    Alam, Muhd Nazrul Hisham Zainal
    Hossain, Faruque
    Vale, Alexander
    Kouzani, Abbas
    [J]. INTERNATIONAL JOURNAL OF PRECISION ENGINEERING AND MANUFACTURING, 2017, 18 (09) : 1287 - 1296
  • [2] 3D printed microfluidic devices with integrated valves
    Rogers, Chad I.
    Qaderi, Kamran
    Woolley, Adam T.
    Nordin, Gregory P.
    [J]. BIOMICROFLUIDICS, 2015, 9 (01):
  • [3] 3D printed modules for integrated microfluidic devices
    Lee, Kyoung G.
    Park, Kyun Joo
    Seok, Seunghwan
    Shin, Sujeong
    Kim, Do Hyun
    Park, Jung Youn
    Heo, Yun Seok
    Lee, Seok Jae
    Lee, Tae Jae
    [J]. RSC ADVANCES, 2014, 4 (62): : 32876 - 32880
  • [4] 3D Printed Integrated Sensors: From Fabrication to Applications-A Review
    Hassan, Md Sahid
    Zaman, Saqlain
    Dantzler, Joshua Z. R.
    Leyva, Diana Hazel
    Mahmud, Md Shahjahan
    Ramirez, Jean Montes
    Gomez, Sofia Gabriela
    Lin, Yirong
    [J]. NANOMATERIALS, 2023, 13 (24)
  • [5] A 3D printed flow sensor for microfluidic applications
    Hawke, Adam
    Concilia, Gianmarco
    Thurgood, Peter
    Ahnood, Arman
    Baratchi, Sara
    Khoshmanesh, Khashayar
    [J]. SENSORS AND ACTUATORS A-PHYSICAL, 2023, 362
  • [6] Engineering 3D Printed Microfluidic Chips for the Fabrication of Nanomedicines
    Kara, Aytug
    Vassiliadou, Athina
    Ongoren, Baris
    Keeble, William
    Hing, Richard
    Lalatsa, Aikaterini
    Serrano, Dolores R.
    [J]. PHARMACEUTICS, 2021, 13 (12)
  • [7] Design and Fabrication of an Electromagnetic Pump for Microfluidic Applications
    Lee, Chia-Yen
    Fu, Lung-Ming
    Chou, Po-Cheng
    Zhong, Jian-Hao
    [J]. 2012 IEEE SYMPOSIUM ON INDUSTRIAL ELECTRONICS AND APPLICATIONS (ISIEA 2012), 2012,
  • [8] A 3D printed acoustofluidic nozzle-diffuser microfluidic pump
    Yetiskin, Erturan
    Gucluer, Sinan
    Erdem, Ilayda
    Ozcelik, Adem
    [J]. MICROFLUIDICS AND NANOFLUIDICS, 2024, 28 (05)
  • [9] Integrated 3D printed heaters for microfluidic applications: Ammonium analysis within environmental water
    Fornells, Elisenda
    Murray, Eoin
    Waheed, Sidra
    Morrin, Aoife
    Diamond, Dermot
    Paull, Brett
    Breadmore, Michael
    [J]. ANALYTICA CHIMICA ACTA, 2020, 1098 : 94 - 101
  • [10] Microfluidic chip fabrication and performance analysis of 3D printed material for use in microfluidic nucleic acid amplification applications
    Tzivelekis, Charalampos
    Selby, Matthew P.
    Batet, Albert
    Madadi, Hojjat
    Dalgarno, Kenny
    [J]. JOURNAL OF MICROMECHANICS AND MICROENGINEERING, 2021, 31 (03)