Matches in SemOpenAlex for { <https://semopenalex.org/work/W4200342471> ?p ?o ?g. }
- W4200342471 endingPage "708" @default.
- W4200342471 startingPage "692" @default.
- W4200342471 abstract "Additive manufacturing (AM) technologies, also known as 3D printing, which offer advantages such as design flexibility, short lead time and cost effectiveness compared to traditional production methods, are used in many different areas. With the exponentially increasing technological developments, complex structures at micron level can be produced and used in customized applications. One promising unique application of AM is Lab-on-a-chips (LOCs). These microfluidic devices can effectively be used in laboratory experiments carried out on a very small scale in biomedical, chemistry and clinical cases. Lab-on-chip systems, which are time-consuming, specialization-required, and expensive to produce with traditional 2D microfabrication technologies such as lithography and PDMS-glass bonding, have become easily producible with AM methods. Although there are many different AM methods can be used in 3D printing of microfluidics, Multi Jet Printing (MJP) method is frequently preferred because of its high sensitivity and dimensional accuracy. MJP AM technology is based on spraying photopolymer resins to a layer thickness of down to 16 µm, then curing with UV light. This paper critically reviews relevant methods and materials used for 3D printing of microfluidics, especially for the MJP based technologies. A case study on 3d printing complex microchannels for microfluidics application using a commercial material jetting based 3D printer (Objet 30 Prime - Stratasys) has also been presented. The results show that the 3D printing of microfluidics is a promising area for often novel applications." @default.
- W4200342471 created "2021-12-31" @default.
- W4200342471 creator A5028313553 @default.
- W4200342471 creator A5044730025 @default.
- W4200342471 creator A5063762152 @default.
- W4200342471 date "2021-12-30" @default.
- W4200342471 modified "2023-09-30" @default.
- W4200342471 title "ADDITIVE MANUFACTURING OF MICROFLUIDIC LAB-ON-A-CHIP DEVICES" @default.
- W4200342471 cites W1512126150 @default.
- W4200342471 cites W1523513542 @default.
- W4200342471 cites W1568395597 @default.
- W4200342471 cites W1981080311 @default.
- W4200342471 cites W1981777800 @default.
- W4200342471 cites W1992650028 @default.
- W4200342471 cites W1994519846 @default.
- W4200342471 cites W2000196103 @default.
- W4200342471 cites W2002869883 @default.
- W4200342471 cites W2010550924 @default.
- W4200342471 cites W2010636704 @default.
- W4200342471 cites W2018683972 @default.
- W4200342471 cites W2024021474 @default.
- W4200342471 cites W2024209745 @default.
- W4200342471 cites W2035159723 @default.
- W4200342471 cites W2035757080 @default.
- W4200342471 cites W2036564583 @default.
- W4200342471 cites W2038166820 @default.
- W4200342471 cites W2038879481 @default.
- W4200342471 cites W2039676626 @default.
- W4200342471 cites W2056194977 @default.
- W4200342471 cites W2059725783 @default.
- W4200342471 cites W2061238140 @default.
- W4200342471 cites W2070758483 @default.
- W4200342471 cites W2078863041 @default.
- W4200342471 cites W2084778748 @default.
- W4200342471 cites W2086449920 @default.
- W4200342471 cites W2087611773 @default.
- W4200342471 cites W2093311332 @default.
- W4200342471 cites W2095420755 @default.
- W4200342471 cites W2095576930 @default.
- W4200342471 cites W2098755193 @default.
- W4200342471 cites W2118380914 @default.
- W4200342471 cites W2121099951 @default.
- W4200342471 cites W2128078684 @default.
- W4200342471 cites W2128381267 @default.
- W4200342471 cites W2130522179 @default.
- W4200342471 cites W2142072629 @default.
- W4200342471 cites W2193696010 @default.
- W4200342471 cites W2209075698 @default.
- W4200342471 cites W2233170698 @default.
- W4200342471 cites W2267701318 @default.
- W4200342471 cites W2288894485 @default.
- W4200342471 cites W2290063375 @default.
- W4200342471 cites W2329719920 @default.
- W4200342471 cites W2334966290 @default.
- W4200342471 cites W2342593170 @default.
- W4200342471 cites W2435764566 @default.
- W4200342471 cites W2464102095 @default.
- W4200342471 cites W2465133870 @default.
- W4200342471 cites W2469435766 @default.
- W4200342471 cites W2509174837 @default.
- W4200342471 cites W2517878956 @default.
- W4200342471 cites W2529219302 @default.
- W4200342471 cites W2569648393 @default.
- W4200342471 cites W2593465421 @default.
- W4200342471 cites W2594944823 @default.
- W4200342471 cites W2609837203 @default.
- W4200342471 cites W2734989861 @default.
- W4200342471 cites W2753509970 @default.
- W4200342471 cites W2766463156 @default.
- W4200342471 cites W2785288695 @default.
- W4200342471 cites W2791462616 @default.
- W4200342471 cites W2791917761 @default.
- W4200342471 cites W2794148887 @default.
- W4200342471 cites W2807279131 @default.
- W4200342471 cites W2883043629 @default.
- W4200342471 cites W2889377484 @default.
- W4200342471 cites W893670177 @default.
- W4200342471 doi "https://doi.org/10.46519/ij3dptdi.956020" @default.
- W4200342471 hasPublicationYear "2021" @default.
- W4200342471 type Work @default.
- W4200342471 citedByCount "0" @default.
- W4200342471 crossrefType "journal-article" @default.
- W4200342471 hasAuthorship W4200342471A5028313553 @default.
- W4200342471 hasAuthorship W4200342471A5044730025 @default.
- W4200342471 hasAuthorship W4200342471A5063762152 @default.
- W4200342471 hasBestOaLocation W42003424711 @default.
- W4200342471 hasConcept C105795698 @default.
- W4200342471 hasConcept C136525101 @default.
- W4200342471 hasConcept C138942068 @default.
- W4200342471 hasConcept C142724271 @default.
- W4200342471 hasConcept C159985019 @default.
- W4200342471 hasConcept C171250308 @default.
- W4200342471 hasConcept C192562407 @default.
- W4200342471 hasConcept C204223013 @default.
- W4200342471 hasConcept C204787440 @default.
- W4200342471 hasConcept C2780598303 @default.
- W4200342471 hasConcept C33923547 @default.
- W4200342471 hasConcept C41008148 @default.