Polydimethylsiloxane microchannel fabrication from 3d printed mold
3D printing has a great effect in microfluidics field of study due to fastest and cheapest way in producing a microchannel. In this work, replication, characterization and testing of PDMS microchannel have been demonstrated by using 3D printed mold technique. The characterization of the 3D printed m...
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my.utm.821752019-11-06T08:27:05Z http://eprints.utm.my/id/eprint/82175/ Polydimethylsiloxane microchannel fabrication from 3d printed mold Abidin, Ummikalsom Rusli, Muhammad Qadri TJ Mechanical engineering and machinery 3D printing has a great effect in microfluidics field of study due to fastest and cheapest way in producing a microchannel. In this work, replication, characterization and testing of PDMS microchannel have been demonstrated by using 3D printed mold technique. The characterization of the 3D printed mold and replicated PDMS microchannel is performed using an optical and scanning electron microscope (SEM). From the 3D printed microchannel mold characterized, it is observed that as the design width increases, the accuracy of the 3D printer increases for the width but decreases for thickness. Finally, PDMS microchannel and PDMS base were successfully bonded using a plasma cleaner set for 12 seconds at 200 mTorr. A functional test was then conducted using flowing colour dyed water with a maximum volumetric flow rate of 9 ml/min from a syringe pump into the PDMS microchannel. No leakage was observed during the testing due to the strong bond between the flat PDMS surfaces. Replication of PDMS microchannel using 3D printed mold technique has proven to save time and more economically. Therefore, 3D printed mold technique is proven as latest solution and a viable option to expedite and mass produce PDMS microchannels for the market. Jurnal Mekanikal 2018 Article PeerReviewed Abidin, Ummikalsom and Rusli, Muhammad Qadri (2018) Polydimethylsiloxane microchannel fabrication from 3d printed mold. Jurnal Mekanikal, 41 (2). pp. 16-22. ISSN 2289-3873 https://jurnalmekanikal.utm.my |
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TJ Mechanical engineering and machinery Abidin, Ummikalsom Rusli, Muhammad Qadri Polydimethylsiloxane microchannel fabrication from 3d printed mold |
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3D printing has a great effect in microfluidics field of study due to fastest and cheapest way in producing a microchannel. In this work, replication, characterization and testing of PDMS microchannel have been demonstrated by using 3D printed mold technique. The characterization of the 3D printed mold and replicated PDMS microchannel is performed using an optical and scanning electron microscope (SEM). From the 3D printed microchannel mold characterized, it is observed that as the design width increases, the accuracy of the 3D printer increases for the width but decreases for thickness. Finally, PDMS microchannel and PDMS base were successfully bonded using a plasma cleaner set for 12 seconds at 200 mTorr. A functional test was then conducted using flowing colour dyed water with a maximum volumetric flow rate of 9 ml/min from a syringe pump into the PDMS microchannel. No leakage was observed during the testing due to the strong bond between the flat PDMS surfaces. Replication of PDMS microchannel using 3D printed mold technique has proven to save time and more economically. Therefore, 3D printed mold technique is proven as latest solution and a viable option to expedite and mass produce PDMS microchannels for the market. |
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Article |
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Abidin, Ummikalsom Rusli, Muhammad Qadri |
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Abidin, Ummikalsom Rusli, Muhammad Qadri |
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Abidin, Ummikalsom |
title |
Polydimethylsiloxane microchannel fabrication from 3d printed mold |
title_short |
Polydimethylsiloxane microchannel fabrication from 3d printed mold |
title_full |
Polydimethylsiloxane microchannel fabrication from 3d printed mold |
title_fullStr |
Polydimethylsiloxane microchannel fabrication from 3d printed mold |
title_full_unstemmed |
Polydimethylsiloxane microchannel fabrication from 3d printed mold |
title_sort |
polydimethylsiloxane microchannel fabrication from 3d printed mold |
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Jurnal Mekanikal |
publishDate |
2018 |
url |
http://eprints.utm.my/id/eprint/82175/ https://jurnalmekanikal.utm.my |
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