Thermal, surface and mechanical properties of PCL/PLA composites with coconut fibres as an alternative material to photopolymer printing plates

In this paper, methods of thermal, mechanical and surface analyses of biodegradable PCL/PLA composites with the addition of different concentrations of coconut fibres were performed. The aim was to assess the potential of these composite materials for the relief-printing plates as an alternative to...

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Main Authors: Dino Priselac, Tamara Tomašegović, Sanja Mahović Poljaček, Mirela Leskovac, Tomislav Cigula
Format: Article
Language:English
Published: University North 2017-01-01
Series:Tehnički Glasnik
Subjects:
PCL
PLA
Online Access:https://hrcak.srce.hr/file/275277
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spelling doaj-60b5eaaee00c4d61b7c228a706fda1052020-11-24T21:59:06ZengUniversity NorthTehnički Glasnik1846-61681848-55882017-01-01113111116Thermal, surface and mechanical properties of PCL/PLA composites with coconut fibres as an alternative material to photopolymer printing platesDino Priselac0Tamara Tomašegović1Sanja Mahović Poljaček2Mirela Leskovac3Tomislav Cigula4Faculty of Graphic Arts, University of Zagreb, Zagreb, CroatiaFaculty of Graphic Arts, University of Zagreb, Zagreb, CroatiaFaculty of Graphic Arts, University of Zagreb, Zagreb, CroatiaFaculty of Chemical Engineering and Technology, University of Zagreb, Zagreb, CroatiaFaculty of Graphic Arts, University of Zagreb, Zagreb, CroatiaFaculty of Graphic Arts, University of Zagreb, Zagreb, CroatiaIn this paper, methods of thermal, mechanical and surface analyses of biodegradable PCL/PLA composites with the addition of different concentrations of coconut fibres were performed. The aim was to assess the potential of these composite materials for the relief-printing plates as an alternative to classical photopolymer materials. Differential scanning calorimetry, surface free energy calculations and hardness measurements were performed on the samples. Results have shown that most thermal transitions that are characteristic for PLA and PCL do not take place in the area of temperatures applicable in the printing process. Most thermal transitions were not affected by the addition of coconut fibres. Coconut fibres in the composite structure contributed to the increased hardness of the material. Moreover, the hardness range of the prepared PCL/PLA composites was within the range of some classic photopolymer printing plates. By adding coconut fibres in higher concentrations, surface free energy of the materials decreased, which enables a wider application of the material for the production of printing plates. From the obtained results it can be concluded that there is a potential for the use of PCL/PLA biodegradable composite materials in the manufacture of various relief-printing plates for different printing techniques (letterpress, embossing, label printing).https://hrcak.srce.hr/file/275277biodegradable materialcoconut fibresPCLPLArelief printing
collection DOAJ
language English
format Article
sources DOAJ
author Dino Priselac
Tamara Tomašegović
Sanja Mahović Poljaček
Mirela Leskovac
Tomislav Cigula
spellingShingle Dino Priselac
Tamara Tomašegović
Sanja Mahović Poljaček
Mirela Leskovac
Tomislav Cigula
Thermal, surface and mechanical properties of PCL/PLA composites with coconut fibres as an alternative material to photopolymer printing plates
Tehnički Glasnik
biodegradable material
coconut fibres
PCL
PLA
relief printing
author_facet Dino Priselac
Tamara Tomašegović
Sanja Mahović Poljaček
Mirela Leskovac
Tomislav Cigula
author_sort Dino Priselac
title Thermal, surface and mechanical properties of PCL/PLA composites with coconut fibres as an alternative material to photopolymer printing plates
title_short Thermal, surface and mechanical properties of PCL/PLA composites with coconut fibres as an alternative material to photopolymer printing plates
title_full Thermal, surface and mechanical properties of PCL/PLA composites with coconut fibres as an alternative material to photopolymer printing plates
title_fullStr Thermal, surface and mechanical properties of PCL/PLA composites with coconut fibres as an alternative material to photopolymer printing plates
title_full_unstemmed Thermal, surface and mechanical properties of PCL/PLA composites with coconut fibres as an alternative material to photopolymer printing plates
title_sort thermal, surface and mechanical properties of pcl/pla composites with coconut fibres as an alternative material to photopolymer printing plates
publisher University North
series Tehnički Glasnik
issn 1846-6168
1848-5588
publishDate 2017-01-01
description In this paper, methods of thermal, mechanical and surface analyses of biodegradable PCL/PLA composites with the addition of different concentrations of coconut fibres were performed. The aim was to assess the potential of these composite materials for the relief-printing plates as an alternative to classical photopolymer materials. Differential scanning calorimetry, surface free energy calculations and hardness measurements were performed on the samples. Results have shown that most thermal transitions that are characteristic for PLA and PCL do not take place in the area of temperatures applicable in the printing process. Most thermal transitions were not affected by the addition of coconut fibres. Coconut fibres in the composite structure contributed to the increased hardness of the material. Moreover, the hardness range of the prepared PCL/PLA composites was within the range of some classic photopolymer printing plates. By adding coconut fibres in higher concentrations, surface free energy of the materials decreased, which enables a wider application of the material for the production of printing plates. From the obtained results it can be concluded that there is a potential for the use of PCL/PLA biodegradable composite materials in the manufacture of various relief-printing plates for different printing techniques (letterpress, embossing, label printing).
topic biodegradable material
coconut fibres
PCL
PLA
relief printing
url https://hrcak.srce.hr/file/275277
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