Powder metallurgy of titanium – past, present, and future
- Authors:
-
- Department of Metallurgical Engineering, University of Utah, Salt Lake City, UT, USA
- Department of Metallurgical Engineering, University of Utah, Salt Lake City, UT, USA, Lightweight and Specialty Metals Branch, United States Army Research Laboratory, Aberdeen Proving Ground, MD, USA
- Publication Date:
- Sponsoring Org.:
- USDOE Office of Energy Efficiency and Renewable Energy (EERE); USDOE Advanced Research Projects Agency - Energy (ARPA-E)
- OSTI Identifier:
- 1510354
- Grant/Contract Number:
- AR0000420
- Resource Type:
- Published Article
- Journal Name:
- International Materials Reviews
- Additional Journal Information:
- Journal Name: International Materials Reviews Journal Volume: 63 Journal Issue: 7; Journal ID: ISSN 0950-6608
- Publisher:
- SAGE Publications
- Country of Publication:
- United Kingdom
- Language:
- English
Citation Formats
Fang, Zhigang Zak, Paramore, James D., Sun, Pei, Chandran, K. S. Ravi, Zhang, Ying, Xia, Yang, Cao, Fei, Koopman, Mark, and Free, Michael. Powder metallurgy of titanium – past, present, and future. United Kingdom: N. p., 2017.
Web. doi:10.1080/09506608.2017.1366003.
Fang, Zhigang Zak, Paramore, James D., Sun, Pei, Chandran, K. S. Ravi, Zhang, Ying, Xia, Yang, Cao, Fei, Koopman, Mark, & Free, Michael. Powder metallurgy of titanium – past, present, and future. United Kingdom. https://doi.org/10.1080/09506608.2017.1366003
Fang, Zhigang Zak, Paramore, James D., Sun, Pei, Chandran, K. S. Ravi, Zhang, Ying, Xia, Yang, Cao, Fei, Koopman, Mark, and Free, Michael. Mon .
"Powder metallurgy of titanium – past, present, and future". United Kingdom. https://doi.org/10.1080/09506608.2017.1366003.
@article{osti_1510354,
title = {Powder metallurgy of titanium – past, present, and future},
author = {Fang, Zhigang Zak and Paramore, James D. and Sun, Pei and Chandran, K. S. Ravi and Zhang, Ying and Xia, Yang and Cao, Fei and Koopman, Mark and Free, Michael},
abstractNote = {},
doi = {10.1080/09506608.2017.1366003},
journal = {International Materials Reviews},
number = 7,
volume = 63,
place = {United Kingdom},
year = {Mon Aug 28 00:00:00 EDT 2017},
month = {Mon Aug 28 00:00:00 EDT 2017}
}
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https://doi.org/10.1080/09506608.2017.1366003
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Cited by: 294 works
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Manipulation and Characterization of a Novel Titanium Powder Precursor for Additive Manufacturing Applications
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Novel methods for the production of titanium
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In Situ Synchrotron Radiation Study of TiH2-6Al-4V and Ti-6Al-4V: Accelerated Alloying and Phase Transformation, and Formation of an Oxygen-Enriched Ti4Fe2O Phase in TiH2-6Al-4V
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Titanium Powder from the TiRO™ Process
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Characteristics of Powder-Rolled and Sintered Sheets Made from HDH Ti Powders
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A novel method for production of spherical Ti-6Al-4V powder for additive manufacturing
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There is Low Cost Titanium Componentry Today
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Metal injection molding of titanium
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Metal Injection Moulding of Titanium and Titanium-Aluminides
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Optimization of Blended-Elemental Powder-Based Titanium Alloy Extrusions for Aerospace Applications
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Microstructure and mechanical behavior of metal injection molded Ti–Nb binary alloys as biomedical material
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Titanium and Titanium Alloy via Sintering of TiH<sub>2</sub>
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A new concept for producing Ti sponge: Calciothermic reduction
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The effect of molten salt on oxygen removal from titanium and its alloys using calcium
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Fabrication of high-strength Ti materials by in-process solid solution strengthening of oxygen via P/M methods
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Progress in Titanium Metal Powder Injection Molding
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Application of metal injection molding to titanium and titanium hydride powders. [射出成形法のチタンおよびチタン水素化物粉末への応用]
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Fabrication of near-net-shape cost-effective titanium components by use of prealloyed powders and hot isostatic pressing
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Reduction of TiO<SUB>2</SUB> in Molten CaCl<SUB>2</SUB> by Ca Deposited during CaO Electrolysis
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Plasma atomization: A new process for the production of fine, spherical powders
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Electrochemical Near-Net-Shape Production Via the FFC Cambridge Process --- Dedication to the Special Session for the 2012 Max Bredig Award
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Titanium Powder Metallurgy for Automotive Components
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Microwave Sintering – A Novel Approach to Powder Technology
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Titanium sheet fabrication from powder
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The automotive application of discontinuously reinforced TiB-Ti composites
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Observations on microstructurally sensitive fatigue crack growth in a widmanstätten Ti-6Al-4V alloy
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Application of injection molding to Ti-5wt%Co and Ti-6wt%Al-4wt%V mixed powders. [射出成形法のTi‐5wt%CoおよびTi‐6wt%Al‐4wt%V合金粉末への応用]
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