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  • AIME
    Magnesium Alloys - Factors Affecting Abnormal Grain Growth in Magnesium-alloy Castings

    By H. E. Elliott, R. S. Busk, A. T. Peters

    One of the problems of the fabricator of metals and alloys is the propensity of some composition rarnges toward abnoermal grain growth during certain stages of fabrication. In this respect magnesium a

    Jan 1, 1945

  • AIME
    Magnesium Alloys - Gain Refinement of a Carbothermic Magnesium Alloy by Superheating

    By Ralph Hultgren, Bernard York, David W. Mitchell

    It is a well-known fact that magnesium-alloy castings are apt to be coarse grained if the melt is not superheated several hundred degrees above the melting point before casting. (The casting temperatu

    Jan 1, 1945

  • AIME
    Magnesium Alloys - Oxidation Inhibitors in Core-sand Mixtures for Magnesium Castings

    By O. Jay Myers

    The war effort has furnished the necessary impetus for better magnesium foundry practice. Four or five years ago, there were but a few formulas in general use for core-sand mixtures for magnesium cast

    Jan 1, 1945

  • TMS
    Magnesium Alloys Containing Rare Earths For Space Applications: Microstructural Aspects

    By K. Suseelan Nair

    Magnesium alloys containing rare earths are finding increasing applications in space programmes. A number of alloys have been developed and e good data base an the mechanical properties of these alloy

    Jan 1, 1989

  • AIME
    Magnesium and Magnesium Alloys - Correlation of Optical and Electron Microscopy (Metals Tech., June, 1948, TP 2364)

    By J. S. Bryner

    In the study of metallographic specimens in the electron microscope, there is need for a method of locating the same field in both the light microscope and the electron microscope. This need arises ch

    Jan 1, 1949

  • AIME
    Magnesium and Magnesium Alloys - The Room and Elevated Temperature Properties of Some Sand Cast Magnesium-base Alloys Containing Zinc (Metals Tech., June, 1948, TP 2371)

    By T. E. Leontis

    The importance of magnesium alloys in the manufacture of aircraft engines has been realized for many years. A concentrated effort has been exerted in the laboratories of the Dow Chemical Co. to develo

    Jan 1, 1949

  • CIM
    Magnesium as a Possible Degradable Bio-Compatable Material

    By G. Song

    Magnesium has excellent bio-compatibility in terms of its density, strength, elastic modulus and toxicity. However, due to its poor corrosion performance, so far magnesium has not been successfully us

    Jan 1, 2006

  • AIME
    Magnesium Industry

    By J. D. Hanawalt

    Significant strides were made in the year 1948 leading to further recognition of the place of magnesium as a common commercial metal, rather than as just a premium aircraft material. One of the factor

    Jan 1, 1949

  • SME
    Magnesium Oxide Suppression during Nickel Flotation

    By R. Casagrande, L. R. Moore, J. Sessoms, P. Macy

    "A South American nickel mine has been producing a nickel concentrate that also contains copper and iron (15 percent nickel, 5 percent copper, 28 percent iron) for the end use of stainless steel produ

    Jan 1, 2015

  • TMS
    Magnesium Removal from Secondary Aluminum Melts in Reverberatory and Rotary Furnaces

    By Eulogio Velasco, Jose Nino, Marcos Cardoso

    "Recycling of aluminum scrap for production of secondary alloys used for automotive applications is increasing continuously. Automotive alloys require a strict control to remove alloy impurities, incl

    Jan 1, 2011

  • CIM
    Magnesium Sheet Production Today and Tomorrow

    By Fr. -W. Bach

    In the past years the enormous weight saving potential of magnesium sheet has been demonstrated by various research projects all over the world. It has been shown magnesium flat products can benefit a

    Jan 1, 2006

  • AUSIMM
    Magnesium Sulfate Production ù First Value Added Salt From Saline Waters of the Murray Basin (Australia)

    By T Barto, D Thomson, T Norgate, C Doblin

    Collaboration between CSIRO Minerals and SunSalt Pty Ltd, a salt producing company located in rural Victoria, has resulted in a commercial process to recover magnesium sulfate (commonly called Epsom s

    Jan 1, 2004

  • AIME
    Magnesium-Its Sources, Methods of Reduction, and Commercial Application

    By Paul D. V. Manning

    MAGNESIUM is an exceedingly strategic material but the importance of its production at the time this war started was not realized. Our Government then suddenly became much alive to the need of a treme

    Jan 1, 1943

  • AIME
    Magnesium: Production and Technology

    By Philip D. Wilson

    OF all the metals in the war program the demand for and the production of magnesium have increased percentagewise the most. In the prewar year 1939 the production was 3350 tons. The war program, twice

    Jan 1, 1943

  • AIME
    Magnesium: Reviewing Its Technology of Production and Use

    By John A. Gann

    WITHIN a very few years magnesium has sprung from oblivion, from classification as a technically unknown, little appreciated, and expensive material to front-page importance in many fields of engineer

    Jan 1, 1932

  • AUSIMM
    Magnetic and Gravity Modelling of the Renison Tin Mine, Tasmania

    By Mudge S. T

    Tin mineralisation occurs at Renison Bell, near Zeehan in Tasmania, as a group of cassiterite-bearing massive pyrrhotite bodies in Cambrian sedimentary rocks. Mineralising fluids from the underlying

    Jan 1, 1997

  • AUSIMM
    Magnetic Anomalies of the Coromandel Region

    By D J. Woodward, A B. Christie, S A. Henrys

    Low-level aeromagnetic data available in digital form have been combined to produce a new 1:100 000 scale map of total force anomalies of the Coromandel region, New Zealand. The map incorporates data

    Jan 1, 2001

  • SME
    Magnetic Coalescence Of Hematite And Magnetite

    By Q. Xu

    The new process consists of the selective coalescence of fine hematite particles by fine magnetite. The gangue minerals are dispersed by some dispersant; thus it can be separated by desliming. This pr

    Jan 1, 1989

  • TMS
    Magnetic Collection Of Grinding Ball Fragments From SAG And Ball Mill Circuits

    By Daniel A. Norrgran

    Grinding ball fragments discharging from SAG mills and ball mills causes extreme wear to downstream processing equipment. These ball fragments, recirculating in a milling circuit, will cause excessive

    Jan 1, 1999

  • CIM
    Magnetic Concentration of Asbestosore

    By Edward Martinez

    Laboratory studies had shown that the magnetite contained in serpentine asbestos ore was not uniformly distributed. Ore particles containing chrysotiye fiber responded to a magnetic f field; particle

    Jan 1, 1979