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  • Mechanical and Thermal Analyses of Metal-PLA Components Fabricated by Metal Material Extrusion

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    Alifui-Segbaya440983-Published.pdf (594.4Kb)
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    Author(s)
    Mohammadizadeh, Mahdi
    Lu, Hao
    Fidan, Ismail
    Tantawi, Khalid
    Gupta, Ankit
    Hasanov, Seymur
    Zhang, Zhicheng
    Alifui-Segbaya, Frank
    Rennie, Allan
    Griffith University Author(s)
    Alifui-Segbaya, Frank
    Year published
    2020
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    Abstract
    Metal additive manufacturing (AM) has gained much attention in recent years due to its advantages including geometric freedom and design complexity, appropriate for a wide range of potential industrial applications. However, conventional metal AM methods have high-cost barriers due to the initial cost of the capital equipment, support, and maintenance, etc. This study presents a low-cost metal material extrusion technology as a prospective alternative to the production of metallic parts in additive manufacturing. The filaments used consist of copper, bronze, stainless steel, high carbon iron, and aluminum powders in a ...
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    Metal additive manufacturing (AM) has gained much attention in recent years due to its advantages including geometric freedom and design complexity, appropriate for a wide range of potential industrial applications. However, conventional metal AM methods have high-cost barriers due to the initial cost of the capital equipment, support, and maintenance, etc. This study presents a low-cost metal material extrusion technology as a prospective alternative to the production of metallic parts in additive manufacturing. The filaments used consist of copper, bronze, stainless steel, high carbon iron, and aluminum powders in a polylactic acid matrix. Using the proposed fabrication technology, test specimens were built by extruding metal/polymer composite filaments, which were then sintered in an open-air furnace to produce solid metallic parts. In this research, the mechanical and thermal properties of the built parts are examined using tensile tests, thermogravimetric, thermomechanical and microstructural analysis.
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    Journal Title
    Inventions
    Volume
    5
    Issue
    3
    DOI
    https://doi.org/10.3390/inventions5030044
    Copyright Statement
    © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
    Subject
    Dentistry
    Materials engineering
    Publication URI
    http://hdl.handle.net/10072/396840
    Collection
    • Journal articles

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