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  • AIME
    Tungstates, Molybdates

    By William E. Ford, Edward Salisbury Dana

    The monoclinic Wolframite Group and the tetragonal Scheelite Group are included here. Wolframite Group WoIframite (Fe,Mn)W04 a : b : c = 0.8300 : 1 : 0.8678 B = 89' 22' Hiibnerite MnW04 0483

    Jan 1, 1922

  • AIME
    Tungsten

    By Chung Yu Wang

    MINING ENGINEERING presents the fourth in a series of articles on strategic minerals. Preceding it are "Cobalt" in January, "Sulphur" in May, and "Nickel" in August. Here, an authority in the field an

    Jan 10, 1951

  • IOM3
    Tungsten (1011acf0-5ac1-48f0-902f-65e9673a0224)

    By A. Ploszajski

    This item examines the history and uses of tungsten, from discovery to superalloys via the lightbulb and electron beam instruments.

    Apr 1, 2015

  • AIME
    Tungsten (d6d3bd12-093d-4157-870e-47c1d6d1a92a)

    By W. P. Sykes

    TUNGSTEN serves mankind in two major roles. The first of these is represented by the tungsten filament of the incandescent electric lamp, a common article of commerce. In the field of hard alloys it p

    Jan 1, 1953

  • SME
    Tungsten - Can The Market Economy Countries Hold Their Own?

    By Donald I. Bleiwas

    The U.S. Bureau of nines evaluated the potential availability of tungsten from 57 tungsten mines and deposits in 19 market economy countries (1). The 38 properties that were producing at the time this

    Jan 1, 1984

  • AIME
    Tungsten and Thoria

    By Zay, Jeffries

    THE effect of thoria (ThO2) on grain growth in tungsten was discussed in some detail in a paper presented before this Institute by one, of the authors in 1918.1 In that paper it " was assumed that the

    Jan 1, 1927

  • AUSIMM
    Tungsten at Hatches Creek, Central Australia Mining and Treatment

    Local conditions at Hatches Creek are described, together with the mineralogy, mining and treatment of tungsten ores, with particular reference to procedures adopted by Pimer Mines, N.L.The Hatches Cr

    Jan 1, 1955

  • CIM
    Tungsten Carbide Bits at the Britannia Mine

    By P. W. Billwiller

    Abstract The Britannia Mining and Smelting Company, Limited, have replaced diamond drills with percussion drills and tungsten: carbide bits for most of their blast hole drilling operations and have

    Jan 1, 1950

  • CIM
    Tungsten Carbide Drilling at the Sullivan Mine

    By J. W. Reynolds

    Introduction The Sullivan mine, at Kimberley, B.C., is the principal source of ore for the Consolidated Mining and Smelting Company of Canada, Limited. Current production amounts to about 2,500,000 t

    Jan 1, 1951

  • AIME
    Tungsten Carbide Drilling on the Marquette Range

    By A. Eugene Lillstrom

    I N the development of iron mines and production of iron ore from the Marquette range, drilling blast-holes is an important phase of the mining cycle. The ground drilled in ore production can be class

    Jan 12, 1951

  • AUSIMM
    Tungsten Carbide in Mining

    By Gunderson C. T

    The use of carbide tipped integral drill steels and detachable bits is discussed in relation to the means of drilling or cutting employed. It is stressed that only by correct use can the full value of

    Jan 1, 1958

  • CIM
    Tungsten Carbide Tipped Rock Drill Bits

    By J. C. Heaslip

    Introduction The greatest single advance in rock drilling practice since the advent of percussion drills was the introduction of tungsten carbide tipped rock drill?bits. The evolution of rock drills

    Jan 1, 1951

  • SME
    Tungsten Geology Symposium and Mine Visits in Jiangxi Province, China

    By I. S. Parrish

    This article offers one of the infrequent looks at Chinese mining. It includes a brief review by Parrish of a tungsten symposium held there and his comments on and impressions of the mines he visited.

    Jan 6, 1982

  • AIME
    Tungsten In Searles Lake

    By L. Graydon Carpenter, Donald E. Garrett

    Probably the largest single tungsten deposit in the U. S. is one that has yet to produce any tungsten; it is not even listed in tables showing U. S. reserves. This deposit is at Searles Lake, Calif.,

    Jan 3, 1959

  • IMPC
    Tungsten Leaching from Scheelite Concentrate Using Sodium Hydroxide in the Presence of Phosphate by Autoclaving Process

    By Tingting Li, Guodong Li, Dezhou Wei, Cong Han, Shuling Gao, Yanbai Shen

    "The aim of this study is to solve the problem of tungsten leaching from scheelite concentrate using sodium hydroxide in the presence of phosphate by an autoclaving process, which is one of main devel

    Jan 1, 2018

  • AIME
    Tungsten Milling in Colorado

    By J. P. BONARDI, William F. Boericke

    BOULDER COUNTY, Colorado, ranked during the war years and until the end of 1918 as one of the foremost tungsten-producing districts of the world. In 1919 production fell off drastically, due to heavy

    Jan 1, 1929

  • SME
    Tungsten Minerals Recovery by Flotation Techniques in China: Flotation Collectors, Depressant, and Tail Water Treatment

    By Y. Guo, C. Cao

    "China is rich in tungsten resource, but they are mainly associated minerals. The similar flotability of scheelite, fluorite, and calcite resulted in the difficult separation by flotation. This work s

    Jan 1, 2016

  • AIME
    Tungsten Production in China

    THERE are three chief production zones of tungsten ore in China. In the Province of Kiangsi mines are located at Kanchow, East River, and West River. Their combined production is understood to amount

    Jan 1, 1928

  • AIME
    Tungsten Recovery from Searles Lake Brines by Ion Exchange

    By W. N. Marchant, P. T. Brooks, P. B. Altringer, R. O. Dannenberg

    The US Department of the Interior, Bureau of Mines conducted laboratory tests to devise a process for recovering a marketable grade of tungsten from the brine of Searles Lake, Calif. The brine contain

    Jan 8, 1979

  • SME
    Tungsten Recovery From Searles Lake Brines By Ion Exchange (141f22c2-415c-4572-a4b6-0342e8118cd2)

    By P. B. Altringer

    The Bureau of Mines conducted laboratory tests to develop a process for recovering a marketable grade of tungsten from the brine of Searles Lake, Calif. The brine contains only 56 parts per million of

    Jan 1, 1978