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Perspectives on Titanium Science and Technology

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TLDR
In this paper, the complexity and variety of fundamental phenomena in this material system with a focus on phase transformations and mechanical behaviour are discussed. And the challenges that lie ahead in achieving these goals are delineated.
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This article is published in Acta Materialia.The article was published on 2013-02-01. It has received 1797 citations till now.

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Metallic glass matrix composites

TL;DR: In this article, the development, fabrication, microstructures, and properties of MGMCs, including the room-temperature, cryogenictemperature and hightemperature mechanical properties upon quasi-static and dynamic loadings are reviewed.
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Grain morphology evolution behavior of titanium alloy components during laser melting deposition additive manufacturing

TL;DR: In this paper, the grain morphology evolution behaviors of laser-deposition titanium alloy components were investigated via basic study on solidification nucleation and growth mechanisms of the local melt pool during the layer-by-layer deposition process.
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A Review of Metastable Beta Titanium Alloys

TL;DR: In this article, a broad and extensive review of beta titanium alloys is provided, including phase stability, development history, thermo-mechanical processing and heat treatment, and stress-induced transformations.
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Fatigue performance of additive manufactured TiAl6V4 using electron and laser beam melting

TL;DR: In this article, the authors contribute to an improved understanding of the factors influencing the mechanical properties of laser powder bed and electron beam melted TiAl6V4, and determine tensile tests, fracture toughness tests, fatigue crack growth measurements for different r-ratios as well as high cycle fatigue properties were determined for different surface roughness and heat treatments.
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Controlling the microstructure and properties of wire arc additive manufactured Ti-6Al-4V with trace boron additions

TL;DR: In this article, trace boron addition to Ti-6Al-4V coupons produced by additive layer manufacturing is an effective way to eliminate the deleterious anisotropic microstructures often encountered with this manufacturing technique.
References
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Ti based biomaterials, the ultimate choice for orthopaedic implants – A review

TL;DR: In this paper, the influence of alloy chemistry, thermomechanical processing and surface condition on these properties is discussed and various surface modification techniques to achieve superior biocompatibility, higher wear and corrosion resistance.
Journal ArticleDOI

Thermomechanical processing of beta titanium alloys—an overview

TL;DR: In this paper, the thermomechanical processing of beta titanium alloys in general and high temperature deformation mechanisms, microstructure control during TMP, and final mechanical properties in particular are reviewed.
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