Mechanical Properties and Failure Mechanisms of Novel Resin-infused Thermoplastic and Conventional Thermoset 3D Fabric Composites
This paper presents an extensive comparison of the mechanical properties and failure mechanisms of a recently developed thermoplastic (Elium ®) 3D fabric-reinforced composite (3D-FRC) with the conventional thermoset (epoxy) 3D-FRC. Experiments involved tensile tests, compression tests, V-notch shear...
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Published in | Applied composite materials Vol. 29; no. 2; pp. 515 - 545 |
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Main Authors | , , , , , |
Format | Journal Article |
Language | English |
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Springer Netherlands
01.04.2022
Springer Nature B.V |
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Abstract | This paper presents an extensive comparison of the mechanical properties and failure mechanisms of a recently developed thermoplastic (Elium ®) 3D fabric-reinforced composite (3D-FRC) with the conventional thermoset (epoxy) 3D-FRC. Experiments involved tensile tests, compression tests, V-notch shear tests, and short beam shear tests for specimens produced through the vacuum-assisted resin infusion process in each case. These tests were used for the determination of in-plane elastic constants, failure strengths and for investigating the failure mechanisms. A micro-mechanical model validated against these experiments was used to predict the remaining orthotropic elastic constants. This work enhances our understanding of the mechanics of infusible thermoplastic 3D-FRC as a new class of emerging materials and provides useful data which substantiates that this unconventional thermoplastic resin is also easier to recycle, uses similar manufacturing processes and can be a suitable replacement for conventional thermoset resins. |
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AbstractList | This paper presents an extensive comparison of the mechanical properties and failure mechanisms of a recently developed thermoplastic (Elium ®) 3D fabric-reinforced composite (3D-FRC) with the conventional thermoset (epoxy) 3D-FRC. Experiments involved tensile tests, compression tests, V-notch shear tests, and short beam shear tests for specimens produced through the vacuum-assisted resin infusion process in each case. These tests were used for the determination of in-plane elastic constants, failure strengths and for investigating the failure mechanisms. A micro-mechanical model validated against these experiments was used to predict the remaining orthotropic elastic constants. This work enhances our understanding of the mechanics of infusible thermoplastic 3D-FRC as a new class of emerging materials and provides useful data which substantiates that this unconventional thermoplastic resin is also easier to recycle, uses similar manufacturing processes and can be a suitable replacement for conventional thermoset resins. This paper presents an extensive comparison of the mechanical properties and failure mechanisms of a recently developed thermoplastic (Elium ®) 3D fabric-reinforced composite (3D-FRC) with the conventional thermoset (epoxy) 3D-FRC. Experiments involved tensile tests, compression tests, V-notch shear tests, and short beam shear tests for specimens produced through the vacuum-assisted resin infusion process in each case. These tests were used for the determination of in-plane elastic constants, failure strengths and for investigating the failure mechanisms. A micro-mechanical model validated against these experiments was used to predict the remaining orthotropic elastic constants. This work enhances our understanding of the mechanics of infusible thermoplastic 3D-FRC as a new class of emerging materials and provides useful data which substantiates that this unconventional thermoplastic resin is also easier to recycle, uses similar manufacturing processes and can be a suitable replacement for conventional thermoset resins. |
Author | Choudhry, Rizwan Saeed Megat-Yusoff, Puteri Sri Melor Sajid, Zubair Ahmad, Faiz Shah, Syed Zulfiqar Hussain Karuppanan, Saravanan |
Author_xml | – sequence: 1 givenname: Syed Zulfiqar Hussain surname: Shah fullname: Shah, Syed Zulfiqar Hussain organization: Department of Mechanical Engineering, Universiti Teknologi PETRONAS – sequence: 2 givenname: Puteri Sri Melor surname: Megat-Yusoff fullname: Megat-Yusoff, Puteri Sri Melor email: puteris@utp.edu.my organization: Department of Mechanical Engineering, Universiti Teknologi PETRONAS – sequence: 3 givenname: Saravanan surname: Karuppanan fullname: Karuppanan, Saravanan organization: Department of Mechanical Engineering, Universiti Teknologi PETRONAS – sequence: 4 givenname: Rizwan Saeed surname: Choudhry fullname: Choudhry, Rizwan Saeed organization: College of Science and Engineering, School of Computing and Engineering, Discipline of Engineering, University of Derby – sequence: 5 givenname: Faiz surname: Ahmad fullname: Ahmad, Faiz organization: Department of Mechanical Engineering, Universiti Teknologi PETRONAS – sequence: 6 givenname: Zubair surname: Sajid fullname: Sajid, Zubair organization: Department of Mechanical Engineering, Universiti Teknologi PETRONAS |
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Keywords | Micro-mechanics modelling Thermoplastic resin (Elium ®) Mechanical properties 3-Dimensional reinforcement Thermoset resin Failure mechanisms |
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SubjectTerms | Characterization and Evaluation of Materials Chemistry and Materials Science Classical Mechanics Compression tests Elastic properties Failure mechanisms Industrial Chemistry/Chemical Engineering Materials Science Mechanical properties Polymer Sciences Shear tests Tensile tests Thermoplastic resins Three dimensional composites |
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Title | Mechanical Properties and Failure Mechanisms of Novel Resin-infused Thermoplastic and Conventional Thermoset 3D Fabric Composites |
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