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On the reinforcement of cement mortars through 3D printed polymeric and metallic fibers

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TLDR
In this article, three-point bending tests and optical microscope analyses are performed on a cement mortar reinforced with 3D printed fibers made of polymeric and metallic materials, which exhibit different surface morphology and roughness.
Abstract
We employ additive manufacturing technologies for the design and fabrication of novel reinforcing elements of cement mortars. Three-point bending tests and optical microscope analyses are performed on a cement mortar reinforced with 3D printed fibers made of polymeric and metallic materials, which exhibit different surface morphology and roughness. Experimental and analytical results highlight that the shear capacity, flexural strength and fracture toughness of the examined materials greatly depend on the design and the material of the reinforcing fibers. Specimens reinforced with high surface roughness fibers exhibit shear failure and high interfacial bond strength, while unreinforced specimens and specimens reinforced with smooth fibers exhibit flexural failure and limited interfacial bond strength. We observe that mortar specimens reinforced with titanium alloy Ti6Al4V fibers exhibit load carrying capacity more than twice as high as specimens reinforced with photopolymeric fibers.

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Additive manufacturing (3D printing): A review of materials, methods, applications and challenges

TL;DR: A comprehensive review of the main 3D printing methods, materials and their development in trending applications was carried out in this paper, where the revolutionary applications of AM in biomedical, aerospace, buildings and protective structures were discussed.
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Recycling of plastic solid waste: A state of art review and future applications

TL;DR: In this paper, the effect on properties of virgin and recycled HDPE/LDPE/Nylon PSW with different reinforcements like sand, natural fibre, hemp fibre, metal powder etc.
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Experimental characterization and micrography of 3D printed PLA and PLA reinforced with short carbon fibers

TL;DR: In this article, the mechanical properties of materials produced by 3D printing based on fused filament fabrication (FFF, analogous to FDM ® ) are investigated. But the main assumption is that the materials behave like laminates formed by orthotropic layers.
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Improving the 3D printability of high volume fly ash mixtures via the use of nano attapulgite clay

TL;DR: In this article, the effect of nano-attapulgite clay (NC) addition on the fresh, hardened and microstructural properties of high volume fly ash (HVFA) mixes designed for 3D printing was investigated.
References
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Journal ArticleDOI

Strong, lightweight, and recoverable three-dimensional ceramic nanolattices

TL;DR: This work demonstrates the creation of structural metamaterials composed of nanoscale ceramics that are simultaneously ultralight, strong, and energy-absorbing and can recover their original shape after compressions in excess of 50% strain.
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Micro-architectured materials: past, present and future

TL;DR: In this article, a historical perspective is given to the expansion of material property space by the introduction of new alloys and new micro-structures and the role of nodal connectivity is emphasized for monoscale and multi-scale microstructures.
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Phononic crystals and acoustic metamaterials

TL;DR: In this paper, a phononic crystal in an acoustic “atom” scale has been proposed and some important characteristics such as acoustic band structure and negative refraction have been investigated in acoustic materials and devices.
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On the practicability of pentamode mechanical metamaterials

TL;DR: In this article, the pentamode theoretical ideal suggested by Milton and Cherkaev in 1995 can be approximated by a metamaterial with current state-of-the-art lithography.
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