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  • AIME
    Titanium Dioxide Analysis Of MacIntyre Ore By Specific Gravity

    By Alan Stanley

    THE Maclntyre Development of National Lead Co. is located at Tahawus, N. Y., in the heart of the Adirondack Mountains. Operations involve the mining and concentrating of a titaniferous iron ore to pro

    Jan 1, 1952

  • AUSIMM
    Titanium Dioxide Manufacture

    Titanium dioxide (TiG ) is produced 2 commercially by two methods generally referred to as the "sulfate" route and the "chloride" route. The SCM Corporation, in supplying 15% of the world's dem

    Jan 1, 1986

  • AUSIMM
    Titanium Feedstocks – Opaque Quality Requirements

    By D McCoy

    Titanium feedstocks are the building blocks of the titanium value chain. They can be mined directly, as is the case for ilmenite, leucoxene and rutile, or manufactured from ilmenite by extracting vari

    Oct 5, 2011

  • SME
    Titanium In Hydrometallurgical Applications

    By Newell H. Orr

    Titanium's performance characteristics in acidic oxidizing and mildly reducing environments make it applicable to numerous currently defined and many projected hydrometallurgical applications. Wi

    Jan 1, 1983

  • AIME
    Titanium Investigations: The Laboratory Development of Mineral-dressing Methods for Arkansas Rutile

    By H. Kenworthy, M. M. Fine

    The progress made to date in the mineral dressing of complex Arkansas titanium ores is reported in this paper. Concentrates of rutile, a dioxide of titanium, were produced by treating a submarginal or

    Jan 1, 1949

  • TMS
    Titanium Metal: Extraction To Application

    By Joseph Gambogi

    In 1998, approximately 57,000 tons of titanium metal was consumed in the form of mill products (1). Only about 5% of the 4 million tons of titanium minerals consumed each year is used to produce titan

    Nov 26, 1999

  • AIME
    Titanium Minerals

    By Stanley J. LeFond, Langtry E. Lynd

    Elemental titanium has become famous as a space age metal, because of its high strength/ weight ratio and resistance to corrosion. However, the major use is in the form of titanium dioxide pigment, wh

    Jan 1, 1975

  • AIME
    Titanium Minerals (07246199-4493-48d4-a857-91681fd117d0)

    By Stanley J. LeFond, Langtry E. Lynd

    Elemental titanium has become famous as a space age metal, because of its high strength/ weight ratio and resistance to corrosion. However, the major use is in the form of titanium dioxide pigment, wh

    Jan 1, 1983

  • SME
    Titanium Minerals (ed66fd1d-c23e-4ae7-a2b2-d526869076d7)

    By Kerry J. Stanaway, Thomas E. Garnar

    Titanium was discovered in 1791 and, four years later, was named after the Titans of Greek mythology. Titanium metal was first made in 1910, but was not used commercially until the 1950s when it was n

    Jan 1, 1994

  • AUSIMM
    Titanium Minerals Marketing Factors from a User's Viewpoint

    Throughout the industrial world, Ilmenite, Rutile, Monazite and Zircon mineral sands play a KEY role in numerous industrial processes. Australia's ilmenites, rutiles, and synthetic rutiles are of

    Jan 1, 1986

  • SME
    Titanium Pigments From Colorado Perovskite

    By J. V. Thompson

    The Powderhorn complex as a source of perovskite (calcium titanate) containing about 1.5% rare earths has been examined in several recent feasibility studies. Much promising exploration and process re

    Jan 1, 1990

  • TMS
    Titanium Powder Production by Reactive Molten Salt as an Reductant

    By Yoshio Waseda, Tetsuya Uda, Tom H. Okabe

    "Halide salt has been tested as a reductant for producing titanium powder directly from TiCl4. From the results of thermodynamic investigation for several rare earth chloride systems, DyCl2 was found

    Jan 1, 2000

  • CIM
    Titanium Powder Production by Reducing Titanium Tetrachloride with Magnesium Metal in a Molten Salt

    By G. Minhas, M. Pule, Y. Laffitte, M. c. McGurn, T. Tzanetakis, Peacey. J., R. Susilo

    Titanium (Ti) metal production from titanium tetrachloride (TiCl4) using magnesium (Mg) as a reducing agent is the well-known Kroll process. A chloride route is used to avoid oxidation of the titanium

    Jan 1, 2015

  • SAIMM
    Titanium Production Via Metallothermic Reduction Of Ticl4 In Molten Salt: Problems And Products - Synopsis

    By D. S. van Vuuren

    Industrial production of titanium occurs via the batch-wise reduction of titanium tetrachloride (TiCl4) with a reducing metal, being magnesium in the Kroll process, or sodium in the Hunter process. In

    Jan 1, 2011

  • SME
    Titanium Raw Materials and Products--Supply and Demand

    By Langtry E. Lynd

    The titanium industry is based on the unique properties of titanium dioxide and titanium metal. Because of its whiteness, high refractive index and resulting light scattering ability, titanium dioxide

    Jan 1, 1980

  • AUSIMM
    Titanium Research at the University of Melbourne

    By Worner H. K

    The paper briefly summarises the work of the Titanium Research Section in the Metallurgy Department of the University of Melbourne and mentions the development of a new electrolytic process for titani

    Jan 1, 1956

  • SME
    Titanium/steel Explosion Bonded Clad For Autoclaves And Reactors

    By John G. Banker, Arthur L. Forrest

    Titanium solves corrosion, maintenance and environmental problems in many reactor and autoclave applications. Titanium clad construction permits autoclave designers a great deal of flexibility combine

    Jan 1, 1996

  • SME
    Titanium/steel Explosion Bonded Clad For Autoclaves And Reactors For Hydrometallurgical Applications - Review And Update

    By Ethan B. Eilertsen

    Titanium solves corrosion, maintenance and environmental problems in many reactor and autoclave applications. Titanium clad construction permits autoclave designers a great deal of flexibility combine

    Jan 1, 1997

  • SME
    Titanium: A Review of 1994 Activities

    By J. M. Gambogi

    Demand for titanium minerals and pigments increased during 1994 as the world economy expanded. Global consumption of titanium dioxide (Ti02) pigment grew an estimated 5% during 1994, the highest growt

    Jan 1, 1995

  • SME
    Titanium: A Review Of 1996 Activities

    By J. M. Gambogi

    Demand for titanium minerals and pigments was nearly unchanged in 1996 compared with 1995. However, through mine expansions and process optimization by the TiO, pigment industry, the available supply

    Jan 1, 1997