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  • AIME
    Magnetic Measurements on Auriferous Veins in Brazil (bab09cc2-cf0a-44da-b035-183e301fc712)

    By Mark Malamphy

    DURING colonial times, Brazil was famous for the richness of her alluvial gold deposits. Paul Ferrand has estimated that the gold produced during the period from 1700 to 1820 was the equivalent of som

    Jan 1, 1934

  • CIM
    Magnetic Processing of a Rare Earth Element Bearing Ore

    By Adam Jordens

    Along with gravity separation and froth flotation, magnetic separation is one of the most common techniques for separating minerals. Minerals are separated by a magnetic force that is dependent on a c

    Aug 1, 2013

  • CIM
    Magnetic Properties of Asbestos, With Special Reference to the Determination of Absolute Magnetite Contents

    By E. J. Schwarz, A. A. Winir

    "Absolute magnetite contents were determined for asbestos specimens in various stages of milling by using a Faraday-type thermomagnetic balance. Comparison of these results with magnetic ratings (MR)

    Jan 1, 1971

  • TMS
    Magnetic Properties of Electrodeposited Ni-Fe Alloy Films

    By Hiroaki Nakano, Kenji Hara, Shunsuke Kawano, Takeshi Ohgai, Michiaki Ikeda, Hisaaki Fukushima, Shinji Yamashita, Tetsuya Akiyama, Hisayuki Kaku

    "Ni-Fe alloys have an inverse magnetostrictive effect (Villari effect) in which its permeability varies according to the ·applied strain. This alloy film has a potential for application as force senso

    Jan 1, 2000

  • AIME
    Magnetic Properties Of Iron-Powder Compacts

    By Robert Steinitz

    SOFT iron parts for magnetic applications, particularly pole shoes, constitute a major portion of the ferrous products of powder metallurgy. The residual pores in pressed and sintered parts reduce val

    Jan 1, 1948

  • AIME
    Magnetic Properties of Natural Chromites: Mechanical and Thermal Effects

    By W. Gundaker, F. C. Schwerer

    Natural chromium-bearing spinels (chromites), which are used as refractory materials in basic steelmaking, are the only commercially important chromium ore and are also encountered as difficult-to-sep

    Jan 1, 1976

  • TMS
    Magnetic Properties of Strontium Ferrite Prepared Using Submicron-Sized SrFe12-XAlxO19 Powders

    By S. V. Ketov, V. P. Menushenkov, V. S. Shubakov

    "The glass samples were obtained by melting of the oxides mixture SrO-Fe2O3-B2O3(Al2O3) at 1200-1250°C with subsequent quenching of the melt on quickly rotating steel roller. Submicronsized Sr(Fe,Al)1

    Jan 1, 2012

  • TMS
    Magnetic Properties of Undercooled Co-Based Alloys Measured by Means of a Faraday-Balance

    By Sven Reutzel

    Investigations show that Co-based melts embedded by glass flux in a crucible can be under- cooled nearly as strong as samples processed containerlessly by electromagnetic levitation. This allows to me

    Jan 1, 2002

  • CIM
    Magnetic Prospecting Methods in Asbestos Exploration

    By John H. Low

    Introduction Despite the fact that the .association of magnetite with chrysotile asbestos in the parent producing area of the world, the Thetford Mines - Black Lake area, has been recognized since th

    Jan 1, 1951

  • SME
    Magnetic Reagent Technology For Mineral Processing

    By J. Y. Hwang

    Processing of fine mineral particles in a slurry is a difficult problem. Methods to make fine particles magnetic have been developed recently and may offer a solution to this problem. Particles of non

    Jan 1, 1992

  • SME
    Magnetic Recovery Of Germanium Sulphide With The Franz Ferrofilter ? The Kipushi Deposit

    By M. A. Bouchat

    The Kipushi deposit, where the Prince Leopold Mine has been installed, belongs to Union Miniere du Haut-Katanga and is located in the Belgian Congo, 20 miles SW of Elisabethville, at the vicinity of t

    Jan 1, 1960

  • TMS
    Magnetic Refrigeration

    By Karl A. Gschneidner

    Magnetic refrigeration was first used in the mid-1920's and new developments seem to have taken place about every 20 years, and this is especially true for the mid-1990's. The active magneti

    Jan 1, 1997

  • CIM
    Magnetic resonance imaging of operating H2/02 fuel cells and towards rechargeable 2-propanol fuel cells

    By K. Feindel

    The distribution of water in operating fuel cells must be carefully managed to optimize the performance, durability, and functionality of the system. For example, the ionic conductivity of polymer ele

    Jan 1, 2005

  • AIME
    Magnetic Roasting Of Lean Ores

    By Fred D. DeVaney

    DURING the past few years a radically new process for the magnetic roasting of iron ores has been investigated and developed by Pickands Mather & Co. and the Erie Mining Co. in the Erie laboratory at

    Jan 1, 1952

  • IMPC
    Magnetic Seeding Co-Agglomeration for Hematite Slimes Flotation

    By Xiqing Wu, Tao Yue

    "Magnetic seeding co-agglomeration, i.e. adding magnetic seeds, organic depressant (such as the starch), and pre-magnetization for co-agglomeration, was applied in the reverse flotation for hematite o

    Jan 1, 2018

  • CIM
    Magnetic Seeding Flotation for Fine Coal and Pyrite Particles

    By Xiqing Wu, Liang Dai, Tao Yue, Longsheng Yi, Ruifang Wang

    Magnetic seeding flotation (MSF), i.e. adding magnetic seeds and pre-magnetization-flotation, is a new flotation technology especially for fine particles, which improves the flotation performance by e

    Jan 1, 2016

  • AUSIMM
    Magnetic Separation Basic Principles and Their Practical Application

    Magnetic Separators have a wide application in dry separation processes, frequently in conjunction with High Tension Separation. Dry processes can frequently be superior to established processes in mo

    Jan 1, 1958

  • AIME
    Magnetic Separation For Mesabi Magnetite Taconite

    By J. E. Forciea, O. E. Palasvirta, L. G. Hendrickson

    All pilot and commercial plants working with Mesabi Range taconite employ wet magnetic separation. Progress is being made with a dry magnetic process,9-11 but this has not yet been applied to taconite

    Jan 12, 1958

  • SME
    Magnetic Separation In Sulfide Processing

    By K. S. E. Forssberg, J. A. Jirestig

    Laboratory investigations on the possibility of using magnetic separation for the recovery of sulfide minerals have been reported. A survey of several sulfide ores and flotation concentrates indicated

    Jan 1, 1994

  • SME
    Magnetic Separation Of Fine Mineral Sulphides Following A Leach Pretreatment To Enhance Magnetic Susceptibility

    By S. T. Hall

    The authors have previously described a method of enhancing the magnetic susceptibility of pyrite by a mild alkaline oxidative pressure leach (Hall et al, 1985). This finding was successfully applied

    Jan 1, 1985