Evaluation of Vinyl Cinnamate for 4D printing of light-induced Shape Memory Polymers by digital light projection

Light-induced Shape Memory Polymers (SMP) exhibits shape memory effect via photodimerization by forming cyclobutane crosslinkage between a determined wavelength when exposed to ultraviolet (UV) light. For the above to occur, monomers that contain Cinnamate acid (CA) groups allow these temporary cros...

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Main Author: Toh, Enver Wei Ren
Other Authors: Su Pei-Chen
Format: Final Year Project
Language:English
Published: Nanyang Technological University 2022
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Online Access:https://hdl.handle.net/10356/157851
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Institution: Nanyang Technological University
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spelling sg-ntu-dr.10356-1578512023-03-04T20:16:53Z Evaluation of Vinyl Cinnamate for 4D printing of light-induced Shape Memory Polymers by digital light projection Toh, Enver Wei Ren Su Pei-Chen School of Mechanical and Aerospace Engineering peichensu@ntu.edu.sg Engineering::Manufacturing::Polymers and plastics Engineering::Materials::Material testing and characterization Light-induced Shape Memory Polymers (SMP) exhibits shape memory effect via photodimerization by forming cyclobutane crosslinkage between a determined wavelength when exposed to ultraviolet (UV) light. For the above to occur, monomers that contain Cinnamate acid (CA) groups allow these temporary crosslinks to be formed under UV light. The most used monomer that contains CA groups are synthesized Polyvinyl Cinnamate (PVCinn). However, they exist in powder form which is not adequate for digital light processing (DLP). In this report, the feasibility of using Vinyl Cinnamate (VCinn) through DLP technique to create a light induced SMP was demonstrated. A resin formulation with integration of VCinn allows for photodimerization and photocleaving to occur between 260nm. The resin formulation was 3D printed successfully via DLP. It was subsequently subjected to Tensile Testing, Fourier-transform Infrared Spectroscopy (FTIR) and Differential Scanning Calorimetry (DSC) to evaluate the mechanical properties, the number of cyclobutane crosslinks and the effects on glass transition temperature after photodimerization and photocleaving respectively. The addition of VCinn increased the tensile strength, young’s modulus and reduced tensile strain, more so after photodimerization because of the formation of cyclobutane crosslinks. FTIR measurements also showed a decrease in % transmittance at 1635cm-1 indicating that cyclobutane crosslinks were formed after exposure to UV wavelength >260nm. Also, DSC results showed that VCinn increases the glass transition temperature. Bachelor of Engineering (Aerospace Engineering) 2022-05-24T03:31:38Z 2022-05-24T03:31:38Z 2022 Final Year Project (FYP) Toh, E. W. R. (2022). Evaluation of Vinyl Cinnamate for 4D printing of light-induced Shape Memory Polymers by digital light projection. Final Year Project (FYP), Nanyang Technological University, Singapore. https://hdl.handle.net/10356/157851 https://hdl.handle.net/10356/157851 en B365 application/pdf Nanyang Technological University
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic Engineering::Manufacturing::Polymers and plastics
Engineering::Materials::Material testing and characterization
spellingShingle Engineering::Manufacturing::Polymers and plastics
Engineering::Materials::Material testing and characterization
Toh, Enver Wei Ren
Evaluation of Vinyl Cinnamate for 4D printing of light-induced Shape Memory Polymers by digital light projection
description Light-induced Shape Memory Polymers (SMP) exhibits shape memory effect via photodimerization by forming cyclobutane crosslinkage between a determined wavelength when exposed to ultraviolet (UV) light. For the above to occur, monomers that contain Cinnamate acid (CA) groups allow these temporary crosslinks to be formed under UV light. The most used monomer that contains CA groups are synthesized Polyvinyl Cinnamate (PVCinn). However, they exist in powder form which is not adequate for digital light processing (DLP). In this report, the feasibility of using Vinyl Cinnamate (VCinn) through DLP technique to create a light induced SMP was demonstrated. A resin formulation with integration of VCinn allows for photodimerization and photocleaving to occur between 260nm. The resin formulation was 3D printed successfully via DLP. It was subsequently subjected to Tensile Testing, Fourier-transform Infrared Spectroscopy (FTIR) and Differential Scanning Calorimetry (DSC) to evaluate the mechanical properties, the number of cyclobutane crosslinks and the effects on glass transition temperature after photodimerization and photocleaving respectively. The addition of VCinn increased the tensile strength, young’s modulus and reduced tensile strain, more so after photodimerization because of the formation of cyclobutane crosslinks. FTIR measurements also showed a decrease in % transmittance at 1635cm-1 indicating that cyclobutane crosslinks were formed after exposure to UV wavelength >260nm. Also, DSC results showed that VCinn increases the glass transition temperature.
author2 Su Pei-Chen
author_facet Su Pei-Chen
Toh, Enver Wei Ren
format Final Year Project
author Toh, Enver Wei Ren
author_sort Toh, Enver Wei Ren
title Evaluation of Vinyl Cinnamate for 4D printing of light-induced Shape Memory Polymers by digital light projection
title_short Evaluation of Vinyl Cinnamate for 4D printing of light-induced Shape Memory Polymers by digital light projection
title_full Evaluation of Vinyl Cinnamate for 4D printing of light-induced Shape Memory Polymers by digital light projection
title_fullStr Evaluation of Vinyl Cinnamate for 4D printing of light-induced Shape Memory Polymers by digital light projection
title_full_unstemmed Evaluation of Vinyl Cinnamate for 4D printing of light-induced Shape Memory Polymers by digital light projection
title_sort evaluation of vinyl cinnamate for 4d printing of light-induced shape memory polymers by digital light projection
publisher Nanyang Technological University
publishDate 2022
url https://hdl.handle.net/10356/157851
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