2016 IEEE International Conference on Industrial Technology (ICIT) 2016
DOI: 10.1109/icit.2016.7474916
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Biodegradable photocurable PCL/PEG-diacrylate for 3D printing

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Cited by 2 publications
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“…It is alleged that the most common approaches in TE are scaffolds, which are 3D structures resembling extracellular matrix and allowing proper mechanical and biological support for the neo-tissue fabrication [25][26][27][28]. PCL is a biodegradable aliphatic synthetic polymer [29] that is mostly utilized as a 3D scaffold due to its nontoxicity, compatibility (it is an FDA-approved polyester), relatively low melting and glass transition temperatures; at normal human body temperature, the semi-crystalline PCL accomplishes a rubbery shape causing its remarkable toughness [30,31]. PCL parts present a remarkably plastic deformation before fracturing.…”
Section: Introductionmentioning
confidence: 99%
“…It is alleged that the most common approaches in TE are scaffolds, which are 3D structures resembling extracellular matrix and allowing proper mechanical and biological support for the neo-tissue fabrication [25][26][27][28]. PCL is a biodegradable aliphatic synthetic polymer [29] that is mostly utilized as a 3D scaffold due to its nontoxicity, compatibility (it is an FDA-approved polyester), relatively low melting and glass transition temperatures; at normal human body temperature, the semi-crystalline PCL accomplishes a rubbery shape causing its remarkable toughness [30,31]. PCL parts present a remarkably plastic deformation before fracturing.…”
Section: Introductionmentioning
confidence: 99%