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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my.uniten.dspace-243952023-05-29T15:23:13Z 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. 57211626643 57211628190 55366998300 23088558100 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. Final 2023-05-29T07:23:12Z 2023-05-29T07:23:12Z 2019 Article 10.35940/ijeat.A2694.109119 2-s2.0-85074644808 https://www.scopus.com/inward/record.uri?eid=2-s2.0-85074644808&doi=10.35940%2fijeat.A2694.109119&partnerID=40&md5=d469d7bf5b548663ee764fc4b7761220 https://irepository.uniten.edu.my/handle/123456789/24395 9 1 2511 2513 All Open Access, Bronze Blue Eyes Intelligence Engineering and Sciences Publication Scopus |
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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. |
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57211626643 |
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57211626643 Shaath M.L.M. Ansar M.N.M. Atiqah A. Hamdan A. |
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Shaath M.L.M. Ansar M.N.M. Atiqah A. Hamdan A. |
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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 |
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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 |
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Blue Eyes Intelligence Engineering and Sciences Publication |
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2023 |
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1806424075065622528 |
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