Tensile properties of poly lactic acid (Pla)– tungsten trioxide (wo3) nano composites for 3d printing process

Poly Lactic Acid (PLA) is one of the most crucial aliphatic polyesters which is considered as one of the favourable options in environmentally friendly thermoplastic polymers since it could be biodegraded in certain conditions. PLA has been extensively used in the packaging, electronic industries, a...

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Main Authors: Shaath, M.L.M., Ansar, M.N.M., Atiqah, A., Hamdan, A.
Format: Article
Language:English
Published: 2020
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Institution: Universiti Tenaga Nasional
Language: English
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spelling my.uniten.dspace-128152020-07-07T07:35:12Z Tensile properties of poly lactic acid (Pla)– tungsten trioxide (wo3) nano composites for 3d printing process Shaath, M.L.M. Ansar, M.N.M. Atiqah, A. Hamdan, A. Poly Lactic Acid (PLA) is one of the most crucial aliphatic polyesters which is considered as one of the favourable options in environmentally friendly thermoplastic polymers since it could be biodegraded in certain conditions. PLA has been extensively used in the packaging, electronic industries, and household applications. As a result, the improvement of mechanical properties of PLA is necessary, which can be achieved through heat resistant materials such as Tungsten trioxide (WO3). The objective of this research was to investigate the tensile properties of PLA-WO3. The 3D printing process was employed to fabricate PLA-WO3 (3wt% WO3) and Neat PLA (control sample). The tensile test was conducted to investigate the effect of WO3 to the PLA. The results show that the tensile properties of PLA-WO3 were improved up to 75% as compared to Neat PLA. This result shows positive indication to the PLA-WO3 for many industrial applications. © BEIESP. 2020-02-03T03:27:01Z 2020-02-03T03:27:01Z 2019 Article 10.35940/ijeat.A2694.109119 en
institution Universiti Tenaga Nasional
building UNITEN Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Tenaga Nasional
content_source UNITEN Institutional Repository
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language English
description Poly Lactic Acid (PLA) is one of the most crucial aliphatic polyesters which is considered as one of the favourable options in environmentally friendly thermoplastic polymers since it could be biodegraded in certain conditions. PLA has been extensively used in the packaging, electronic industries, and household applications. As a result, the improvement of mechanical properties of PLA is necessary, which can be achieved through heat resistant materials such as Tungsten trioxide (WO3). The objective of this research was to investigate the tensile properties of PLA-WO3. The 3D printing process was employed to fabricate PLA-WO3 (3wt% WO3) and Neat PLA (control sample). The tensile test was conducted to investigate the effect of WO3 to the PLA. The results show that the tensile properties of PLA-WO3 were improved up to 75% as compared to Neat PLA. This result shows positive indication to the PLA-WO3 for many industrial applications. © BEIESP.
format Article
author Shaath, M.L.M.
Ansar, M.N.M.
Atiqah, A.
Hamdan, A.
spellingShingle Shaath, M.L.M.
Ansar, M.N.M.
Atiqah, A.
Hamdan, A.
Tensile properties of poly lactic acid (Pla)– tungsten trioxide (wo3) nano composites for 3d printing process
author_facet Shaath, M.L.M.
Ansar, M.N.M.
Atiqah, A.
Hamdan, A.
author_sort Shaath, M.L.M.
title Tensile properties of poly lactic acid (Pla)– tungsten trioxide (wo3) nano composites for 3d printing process
title_short Tensile properties of poly lactic acid (Pla)– tungsten trioxide (wo3) nano composites for 3d printing process
title_full Tensile properties of poly lactic acid (Pla)– tungsten trioxide (wo3) nano composites for 3d printing process
title_fullStr Tensile properties of poly lactic acid (Pla)– tungsten trioxide (wo3) nano composites for 3d printing process
title_full_unstemmed Tensile properties of poly lactic acid (Pla)– tungsten trioxide (wo3) nano composites for 3d printing process
title_sort tensile properties of poly lactic acid (pla)– tungsten trioxide (wo3) nano composites for 3d printing process
publishDate 2020
_version_ 1672614179211575296