Every reference with a DOI in the deposited reference list resolved to a known
work in Crossref or DataCite at the dated check, and none carried a retraction,
withdrawal, or removal notice.
The 39 checked references that resolve
resolves10.1007/BF02644050The effect of oxygen on the structure and mechanical behavior of Aged Ti-8 Wt pct Al
resolves10.1016/j.actamat.2014.01.015A transmission electron microscopy and three-dimensional atom probe study of the oxygen-induced fine microstructural features in as-sintered Ti–6Al–4V and their impacts on ductility
resolves10.1023/A:1021117126537Synthesis of Alloy Ti ― 6Al ― 4V with Low Residual Porosity by a Powder Metallurgy Method
resolves10.1007/BF02662365A comparison of the microstructures of As-cast and laser surface melted Ti-8Al-4Y
resolves10.1007/BF02657851The Roles of Rare Earth Dispersoids and Process Route on the Low Cycle Fatigue Behavior of a Rapidly Solidified Powder Metallurgy Titanium Alloy
resolves10.1007/BF02648575Structure and properties of rapidly solidified dispersion-strengthened titanium alloys: Part I. Characterization of dispersoid distribution, structure, and chemistry
resolves10.1016/j.scriptamat.2012.06.009Simultaneous gettering of oxygen and chlorine and homogenization of the β phase by rare earth hydride additions to a powder metallurgy Ti–2.25Mo–1.5Fe alloy
resolves10.1016/j.msea.2013.02.042Impurity scavenging, microstructural refinement and mechanical properties of powder metallurgy titanium and titanium alloys by a small addition of cerium silicide
resolves10.1016/j.scriptamat.2012.09.024In situ synchrotron radiation to understand the pathways for the scavenging of oxygen in commercially pure Ti and Ti–6Al–4V by yttrium hydride
resolves10.1016/j.actbio.2013.10.034Impacts of trace carbon on the microstructure of as-sintered biomedical Ti–15Mo alloy and reassessment of the maximum carbon limit
resolves10.1361/105994905X75538Effect of Carbon on Microstructure and Mechanical Properties of a Eutectoid β Titanium Alloy
resolves10.1007/BF00559499Reaction of the hydrogen-absorbing intermetallic compound TiFe with oxygen. III. Phase composition of the scale formed on TiFe
resolves10.1016/j.msea.2006.02.328Phase selection during solidification of undercooled Ti–Fe, Ti–Fe–O and Ti–Fe–Si–O melts—Influence of oxygen and silicon
resolves10.1007/s11661-013-1720-0Impurity (Fe, Cl, and P)-Induced Grain Boundary and Secondary Phases in Commercially Pure Titanium (CP-Ti)
resolves10.1046/j.1365-2818.1997.d01-622.x<b>Effect of Cl on microstructure and mechanical properties of <i>in situ</i> Ti/TiB MMCs produced by a blended elemental powder metallurgy method</b>
resolves10.1063/1.1724845Mass-Spectrometric Investigation of the High-Temperature Reaction between Nickel and Chlorine
resolves10.1007/s11661-012-1328-9Sintering of Titanium with Yttrium Oxide Additions for the Scavenging of Chlorine Impurities
resolves10.1007/BF01103526Oxide-dispersed titanium alloys Ti-Y prepared with the rotating electrode process
The 20 references without a DOI — listed, not checked
no DOI — not checkedThe influence of density and oxygen content on the mechanical properties of injection molded Ti-6Al-4V alloys
no DOI — not checkedR.J. Low, Sintering of titanium for cost-effective net-shape manufacturing: scavenging of chlorine and sulphur with rare earth oxide additions and the sintering of titanium for surface densification and containerless HIP, PhD thesis, The University of Queensland, 2010.
no DOI — not checkedLow cost titanium and developing applications
no DOI — not checkedCold compaction and sintering of titanium and its alloys for near-net-shape or preform fabrication
no DOI — not checkedO.M. Ivasishin, D.G. Savvakin, V.A. Duz, M.V. Matviychuk, V.S. Moxson, Extra low impurity content powder metallurgy titanium and titanium alloys, Titanium 2012, Hilton Atlanta, 2012.
no DOI — not checkedTitanium alloy components manufacture from blended elemental powder and the qualification process
no DOI — not checkedC.G. McCracken, J.W. Robison, C.A. Motchenbacher Jr., Manufacture of HDH low oxygen titanium-6aluminium-4vanadium (Ti-6-4) powder incorporating a novel powder de-oxidation step, Adv. Powder Metall. Particulate Mater. (2009); Proceedings of the 2009 International Conference on Powder Metallurgy and Particulate Materials, June 20–July 1, Las Vegas, Nevada, The Metal Powder Industries Federation (MPIF), 2009.
no DOI — not checkedReview of titanium. Powder-production methods
no DOI — not checkedD.W. Rostron, Method of sintering titanium and like metals. U.S. Patent 2,546,320 (Priority date: 4 November 1948; Publication date: 27 March 1951) (1951).
no DOI — not checkedImprovement of ductility of powder metallurgy titanium alloys by addition of rare earth element
no DOI — not checkedH.P. Tang, M. Qian, Unpublished result.
no DOI — not checkedhttp://www.mineralprices.com (recorded on the April 1, 2014).
no DOI — not checkedhttp://en.wikipedia.org.
no DOI — not checked10.1016/B978-0-12-800054-0.00015-0_bib0195
no DOI — not checkedM. Yan, M.S. Dargusch, C. Kong, J. Kimpton, S. Kohara, M. Brandt, M. Qian, Unpublished data.
no DOI — not checkedhttp://en.wikipedia.org.
no DOI — not checkedStandard Thermodynamic Properties of Chemical Substances, CRC Press LLC, http://www.update.uu.se/~jolkkonen/pdf/CRC_TD.pdf, 2000.
no DOI — not checkedSelective electron beam melting of titanium and titanium aluminide alloys
no DOI — not checked10.1016/B978-0-12-800054-0.00015-0_bib0295
no DOI — not checked10.1016/B978-0-12-800054-0.00015-0_bib0300
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