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  • AIME
    Manganese

    By Charles H. Jacoby

    In 1774 a Swedish chemist, C. W. Schule, first recognized manganese as an element. That same year Schule's associate, J. G. Gahn, isolated the element manganese for the first time. In 1856 the Be

    Jan 1, 1975

  • AIME
    Preparation of Industrial Minerals - Wear-resistance Tests on Domestic Materials for Pebble-mill Linings (Mining Tech., Mar. 1946, T.P. 1948)

    By C. E. Berry

    Natural stone or manufactured porcelain pebbles are used as the grinding elements in pebble mills and the mills are lined with stone or porcelain blocks. Steel balls usually form the grinding medium i

    Jan 1, 1948

  • AIME
    Wear-Resistance Tests On Domestic Materials For Pebble-Mill Linings

    By C. E. Berry

    NATURAL stone or manufactured porcelain pebbles are used as the grinding elements in pebble mills and the mills are lined with stone or porcelain blocks. Steel balls usually form the grinding medium i

    Jan 1, 1946

  • AIME
    Preparation of Industrial Minerals - Wear-resistance Tests on Domestic Materials for Pebble-mill Linings (Mining Tech., Mar. 1946, T.P. 1948)

    By C. E. Berry

    Natural stone or manufactured porcelain pebbles are used as the grinding elements in pebble mills and the mills are lined with stone or porcelain blocks. Steel balls usually form the grinding medium i

    Jan 1, 1948

  • AIME
    Spokane Paper - Preparing and Recording Samples for Use in Technical Assay-Laboratories

    By Louis D. Huntoon

    After the completion, in 1905, of the Hammond Mining and Metallurgical Laboratory of the Sheffield Scientific School, Yale University, it became necessary to secure and assay a large assortment of ore

    Jan 1, 1910

  • AIME
    Papers - Comminution - Wear-resistance Tests on Domestic Materials for Pebble-mill Linings (T. P. 1948, Min. Tech., March 1946)

    By C. E. Berry

    Natural stone or manufactured porcelain pebbles are used as the grinding elements in pebble mills and the mills are lined with stone or porcelain blocks. Steel balls usually form the grinding medium i

    Jan 1, 1947

  • AIME
    Papers - Comminution - Wear-resistance Tests on Domestic Materials for Pebble-mill Linings (T. P. 1948, Min. Tech., March 1946)

    By C. E. Berry

    Natural stone or manufactured porcelain pebbles are used as the grinding elements in pebble mills and the mills are lined with stone or porcelain blocks. Steel balls usually form the grinding medium i

    Jan 1, 1947

  • AIME
    Copper and Copper Alloys - Mechanism of Precipitation in a Permanent Magnet Alloy (Metals Tech., Aug. 1948, TP 2444)

    By J. B. Newkirk, A. H. Geisler

    Certain of the permanent magnet alloys provide ideal systems for the study of the kinetics of the precipitation reaction and the correlation of structure with properties. One such system, Cu-Ni-Fe, wa

    Jan 1, 1949

  • AIME
    PART VI - The Growth of Nitrogen-Austenite into Alloyed Ferrite

    By J. E. Pavlick, W. W. Mullins, H. W. Paxton

    The growth of nitrogen-austenite during nitriding of large-gvained ferrite between 650" and 800°C has been studied as a functimz oJ time and nitrogen potential of the atmosphere for a variety of alloy

    Jan 1, 1967

  • AIME
    Discussion on Steel Rails - Held at the Virginia Meeting, May, 1881.*

    C. P. SANDBERG, LONDON, ENG : † I think we should all be grateful to the Pennsylvania Railroad Company, and to their chemist, Dr., Dudley, for spending so much time and money in order to solve an impo

    Jan 1, 1881

  • AIME
    Coal - Work of the U. S Geological Survey on Coal and Coal Reserves

    By Paul Averitt

    The U. S. Geological Survey has been actively engaged in work on coal for more than 50 years. During this long period we have released more than 300 publications containing information about coal and

    Jan 1, 1950

  • AIME
    Pittsburgh Paper - Note on the Determination of Small Quantities of Titanium in Irons and Steels

    By Horace L. Wells

    The gravimetric determination of titanium in irons and steels is extremely difficult. It may be well, therefore, to call the attention of those members of the Institute who are interested in the chemi

    Jan 1, 1886

  • AIME
    Colorado Paper - Gaging and Storage of Oil in the Mid-Continent Field

    By O. U. Bradley

    The methods of handling the oil output of the Mid-Continent fields are not unlike those practised in other oil fields of the United States, and it is not expected that this paper will present any enti

    Jan 1, 1920

  • AIME
    Institute of Metals Division - The Role of Phase Relationships in the Activates Sintering of Tungsten

    By ZJ. H. Brophy, A. L. Prill, H. W. Hayden

    The effect of Group VIII transition-element additions on the sintering of tungsten powders is shown to be dependent on the phase relationships of the particular tungsten-Group VIII metal alloy system.

    Jan 1, 1964

  • AIME
    Institute of Metals Division - The Effect of Ferrite Grain Size on Notch Toughness

    By J. M. Hodge, H. M. Reichhold, R. D. Manning

    The work reported in this paper represents the first of a series of investigations of the factors governing notch toughness in ferritic materials. This paper is concerned with two of these factors, na

    Jan 1, 1950

  • AIME
    Institute of Metals Division - Correlation Between Microstructure and Resistivity of Transforming Ti-Mn Alloys

    By D. J. DeLazaro, D. W. Levinson

    Observations were made of the isothermal transformation and quench and reheat transformation characteristics of binary titanium alloys containing nominally 6 wt pct and 10 wt pct Mn at temperatures of

    Jan 1, 1955

  • AIME
    Nickel-Iron Alloys Produced By Powder Metallurgy

    By Laurence Delisle, Aaron Finger

    THE alloys formed by the addition of nickel to iron by convelltional metallurgical procedures show physical properties that differ widely from those of the individual metals. The effect of alloying on

    Jan 1, 1946

  • AIME
    Resources of Industrial Minerals - Owens Lake, California-Source of Sodium Minerals (Mining Tech., Sept. 1947, T. P. 2235)

    By George D. Dub

    Owens Lake is at present a source of important nonmetallic minerals, sodium carbonate (soda ash, Na2CO3); sodium sesquicarbonate (trona, Na2CO3.NaHCO3.-2H2O) and borax, (Na2B4O7.10H2O). Owens Lake

    Jan 1, 1948

  • AIME
    Resources of Industrial Minerals - Owens Lake, California-Source of Sodium Minerals (Mining Tech., Sept. 1947, T. P. 2235)

    By George D. Dub

    Owens Lake is at present a source of important nonmetallic minerals, sodium carbonate (soda ash, Na2CO3); sodium sesquicarbonate (trona, Na2CO3.NaHCO3.-2H2O) and borax, (Na2B4O7.10H2O). Owens Lake

    Jan 1, 1948

  • AIME
    Papers - Comminution - Principles of Comminution-Size and Surface Distribution (T. P. 1779, Min. Tech., Nov. 1944, with discussion)

    By R. T. Hukki, A. M. Gaudin

    Previous work on the principles of comminution has shown: (I) that the surface produced is proportional to work input (Rittinger law,1a-3); (2) that there is regularity to the weight distribution of t

    Jan 1, 1947