Novel Composite Powders with Uniform TiB2 Nano-Particle Distribution for 3D Printing (original) (raw)

Advances in Laser Additive Manufacturing of Ti-Nb Alloys: From Nanostructured Powders to Bulk Objects

Konstantin Prosolov

Nanomaterials, 2021

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Selective laser melting of nano-TiB 2 decorated AlSi10Mg alloy with high fracture strength and ductility

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Multi-scale study of microstructure evolution in hot extruded nano-sized TiB2 particle reinforced aluminum composites

Marie-Hélène Mathon

Materials & Design, 2017

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Comparative Study of Al-TiB2 Composite Fabricated by Different Powder Metallurgical Methods

Purushottam Kumar

International Journal of Emerging Research in Management and Technology, 2018

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Microstructure and mechanical properties of (TiB+TiC)/Ti composites fabricated in situ via selective laser melting of Ti and B4C powders

Chen-Nan Sun

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Characterisation of mechanically alloyed Ti–Al–B nanocomposite consolidated by spark plasma sintering

yh han

British Ceramic Transactions, 2003

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TANTALUM (Ta) AND NIOBIUM (Nb) CONTAINING ALLOY POWDERS FOR APPLICATION IN ADDITIVE MANUFACTURING

Melanie Stenzel

2019

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Microstructural and mechanical evaluation of Al–TiB2 nanostructured composite fabricated by mechanical alloying

Dr Mukul Shukla, Professor, Prof Esther T . Akinlabi

Journal of Alloys and Compounds, 2011

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Hardness and Young's modulus behavior of Al composites reinforced by nanometric TiB2 elaborated by mechanosynthesis

Mirvat ZAKHOUR

Materials Science and Engineering: A, 2014

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Forming a single layer of a composite powder based on the Ti-Nb system via selective laser melting (SLM)

Elena Babakova

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SHS Produced TiB2-Si Powders for Selective Laser Melting of Ceramic-Based Composite

Irina Hussainova

Applied Sciences, 2020

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The effect of TiB 2 content on the properties of AA6005/TiB 2 nanocomposites fabricated by mechanical alloying method

Mª Dolores Escalera Rodríguez

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Incorporation of Al into TIB2 in Al matrix composites and Al-Ti-B master alloys

L. Froyen

Materials Letters, 1997

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Cold Forming of Al-TiB2 Composites Fabricated by SPS: A Computational Experimental Study

Shmuel Hayun

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Investigation on microstructural characterization of in situ TiB/Al metal matrix composite by laser cladding

Dr. Umesh M daivagna M Daivagna

Materials Science and Engineering: A, 2007

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Fabrication of Metal Matrix Composite by Laser Metal Deposition—A New Process Approach by Direct Dry Injection of Nanopowders

Marc Leparoux

Materials, 2019

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Densification of TiB 2 with metallic additive by using vacuum arc melting: A preliminary study

İlker ÖZKAN

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Effect of TiB2 content on microstructure and properties of in situ Ti-TiB composites

Harshpreet Singh

International Journal of Minerals, Metallurgy, and Materials, 2019

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Solidification behavior and grain morphology of laser additive manufacturing titanium alloys

haibo tang

Journal of Alloys and Compounds, 2018

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Influence of Heat Treatments on Microstructure and Mechanical Properties of Ti–26Nb Alloy Elaborated In Situ by Laser Additive Manufacturing with Ti and Nb Mixed Powder

Cuie Wen

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ON THE MECHANISM AND THERMODYNAMICS OF THE PRECIPITATION OF TIB2 PARTICLES IN 6063 MATRIX ALUMINUM ALLOY

Petru Moldovan

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Phase Composition and Microstructure of Ti-Nb Alloy Produced by Selective Laser Melting

Elena Babakova

IOP Conference Series: Materials Science and Engineering, 2016

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In-situ formation of TiB2 in a PM aluminum matrix

Laurens Katgerman

Scripta Materialia, 1997

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Spark plasma sintering of self-propagating high-temperature synthesized TiC0.7/TiB2 powders and detailed characterization of dense product

Roberto Orrù

Ceramics International, 2009

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In-situ Al/TiB 2 composite obtained through reaction in liquid phase

Petru Moldovan

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Preparation of Al–Fe/TiB2 nanocomposite powder by ball milling and subsequent heat treatment

gholam housain borhani

Micro & Nano Letters, 2012

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Fabrication and Study of Titanium Diboride Powder and Aluminium Titanium Alloy Composite

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