A MINI REVIEW ON THE EFFECTS OF SURFACE ROUGHNESS IN MICROFIUIDICS CHANNELS

The effects of surface roughness at low Reynolds numbers are more pronounced and critical in microchannels due to the relative size of roughness to channel dimensions. Surface roughness in microfluidic channels originates from the machining process during fabrication. This review examines how surfac...

詳細記述

書誌詳細
出版年:Jurnal Mekanikal
第一著者: Mohamed Rijal M.L.; Mohamed Yusof A.; Mohamed Noor R.; Zubair A.F.
フォーマット: 論文
言語:English
出版事項: Penerbit UTM Press 2024
オンライン・アクセス:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85214706081&doi=10.11113%2fjm.v47.548&partnerID=40&md5=dc08c7bd21520c530acd345beae5287a
その他の書誌記述
要約:The effects of surface roughness at low Reynolds numbers are more pronounced and critical in microchannels due to the relative size of roughness to channel dimensions. Surface roughness in microfluidic channels originates from the machining process during fabrication. This review examines how surface roughness, resulting from various manufacturing processes, influences the performance of microfluidic devices. Different patterns of surface roughness generated through techniques such as photolithography, etching, precision machining, and 3D printing are highlighted. These techniques yield distinct surface characteristics that affect critical microchannel properties, including fluid flow, pressure drop, and stress distribution. In addition to that, specific fabrication methods can minimize surface roughness, enhancing the performance of microchannels for applications in diagnostics, lab-on-a-chip systems, and small-scale heat exchangers are addressed. The review provides insights into selecting optimal fabrication techniques to achieve desired performance characteristics in microfluidic devices. © 2024 Penerbit UTM Press. All rights reserved.
ISSN:22893873
DOI:10.11113/jm.v47.548