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Open AccessJournal ArticleDOI

Additive manufacturing of polymer nanocomposites: Needs and challenges in materials, processes, and applications

TLDR
A comparative review of additive manufacturing processes for polymer composites and their applications is presented in this article, which aims to provide engineers and scientists with an updated understanding of the underlying issues, barriers, limitations, and opportunities.
Abstract
Polymer nanocomposites have attracted increasing interest in research and development with several current and potential industrial applications due to their wide margin of superiority over conventional materials. Polymer composites provide a higher strength-to-weight ratio, easily customizable product properties, flexible manufacturing processes, high resistance to corrosion or erosion, and lower cost. The recent progress in additive manufacturing (AM) methods has paved the way for even a broader range of flexibilities in design and materials in several industrial sectors, including aerospace, biomedical, construction, electronics, telecommunication, mechanical, and defense. However, some hindrances remain in the synthesis of polymer composites and their fabrication through AM technologies. A comparative review of AM processes for polymer composites and their applications is presented in this study. This study aims to provide engineers and scientists with an updated understanding of the underlying issues, barriers, limitations, and opportunities. It will also help the reader to systematically reveal the research problems and future directions related to materials synthesis and AM processes.

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4D printing of shape memory polymer composites: A review on fabrication techniques, applications, and future perspectives

TL;DR: In this article , a review article presents important 4D technologies in conjunction with the underlying functionalities of stimuli-responsive polymer composites, and elucidates the future opportunities of 4D-printed SMPCs in terms of preprogramming knowledge, multi-way SMPC, multimaterial printing, sustainability, and potential applications.
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Biopolymeric Sustainable Materials and their Emerging Applications

TL;DR: An overview of the latest knowledge of different natural and synthetic-based biodegradable polymers and their fiber-reinforced composites is presented in this paper , which discusses different degradation mechanisms of biopolymer-based composites as well as their sustainability aspects.
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A Critical Review on the Microstructure and Mechanical Properties Correlation of Additively Manufactured Nickel-based Superalloys

TL;DR: Inconel group of alloys, particularly IN 625 and IN 718 are the most widely recognized commercially available Ni-based superalloys employed for high temperature applications as mentioned in this paper .
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A review on four-dimensional bioprinting in pursuit of advanced tissue engineering applications

TL;DR: In this paper , the authors present a state-of-the-art review containing different types of stimuli-responsive materials (SRMs) and bioprinting technologies, which are applied in different soft and hard tissue engineering (TE) applications.
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Fused Filament Fabrication Process: A Review of Numerical Simulation Techniques.

TL;DR: A review of state-of-the-art scientific achievements in numerical simulations of the FFF process for polymers and their composites can be found in this article, where the authors highlight the multi-level complexity of the process.
References
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Journal ArticleDOI

Electrically conductive filament for 3D-printed circuits and sensors

TL;DR: In this paper, the authors describe the fabrication, characterization, stress testing, and application of a low-cost thermoplastic conductive composite that has been processed into filament form for 3D printing.
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3D printing of multiaxial force sensors using carbon nanotube (CNT)/thermoplastic polyurethane (TPU) filaments

TL;DR: In this paper, a 3D cubic cross-shaped force sensor is proposed to measure the forces from three axes (x, y and z) using fused deposition modeling 3D printing of functionalized nanocomposite filaments.
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Processing of a Polyamide-12/carbon nanofibre composite by laser sintering

TL;DR: In this article, the reinforcement of laser sintered polyamides with carbon nanofibres (CNFs) was investigated, and the effects of CNF addition on the processing parameters and mechanical properties of laser-sintered parts have been investigated.
Journal ArticleDOI

Current Biomedical Applications of 3D Printing and Additive Manufacturing

TL;DR: Additive manufacturing (AM) has emerged over the past four decades as a cost-effective, on-demand modality for fabrication of geometrically complex objects as mentioned in this paper, which has allowed for the adoption of this technology for biomedical applications in both research and clinical settings.
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What are challenging issues of composite plastic additive manufacturing?

The paper discusses hindrances in the synthesis and fabrication of polymer composites through additive manufacturing technologies, but does not explicitly mention the challenging issues of composite plastic additive manufacturing.