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  • AIME
    Foundry Sand Produced Near Eugene, Oregon

    By W. D. Lowry

    As most of the industrial activity of Oregon is centered in the Portland area, the foundries there consume the bulk of the foundry sand produced in Oregon. Although a number of the larger towns scatte

    Jan 1, 1947

  • AIME
    Preparation of Industrial Minerals - Flash Drying and Calcining as Developed from Mill Drying (Mining Tech., Sept. 1945, T.P. 1897)

    By William B. Senseman

    FoR reasons well known to mining engineers, wet grinding is quite universal in plants having to do with the extraction of metallic values from crude ores. In the processing of the nonmetallic and indu

    Jan 1, 1948

  • AIME
    Description of Operations - Foundry Sand Produced Near Eugene, Oregon (Mining Tech., Mar. 1947, T.P. 2058)

    By W. D. Lowry

    As most of the industrial activity of Oregon is centered in the Portland area, the foundries there consume the bulk of the foundry sand produced in Oregon. Although a number of the larger towns scatte

    Jan 1, 1948

  • AIME
    Pittsburgh Coal in Northern West Virginia

    By W. D. Steele, S. D. Brady

    THE Pittsburgh coal seam in West Virginia contains the largest coal reserves of any coal seam in that State and is, therefore, one of the most important seams, and attains mineable thickness and purit

    Jan 1, 1948

  • AIME
    Description of Operations - Foundry Sand Produced Near Eugene, Oregon (Mining Tech., Mar. 1947, T.P. 2058)

    By W. D. Lowry

    As most of the industrial activity of Oregon is centered in the Portland area, the foundries there consume the bulk of the foundry sand produced in Oregon. Although a number of the larger towns scatte

    Jan 1, 1948

  • AIME
    Minerals Beneficiation - An Electric Tramp Iron Detector for Ore Conveyor Belts

    By C. M. Marquardt

    Tramp iron and steel moving on a conveyor belt cause small currents to be generated in a coil situated in a strong magnetic field, which are converted to an alternating current and are amplified. The

    Jan 1, 1951

  • AIME
    Preparation of Industrial Minerals - Flash Drying and Calcining as Developed from Mill Drying (Mining Tech., Sept. 1945, T.P. 1897)

    By William B. Senseman

    FoR reasons well known to mining engineers, wet grinding is quite universal in plants having to do with the extraction of metallic values from crude ores. In the processing of the nonmetallic and indu

    Jan 1, 1948

  • AIME
    Optimum Production Rate For High-Grade/Low Tonnage Mines

    By Ross Glanville

    INTRODUCTION The Optimum Production Rate (OPR) is one of the most important parameters in the evaluation of a mineral deposit. The OPR can also be expressed as the Optimum Mine Life (OML) in years

    Jan 1, 1985

  • AIME
    Flash Drying And Calcining As Developed From Mill Drying

    By William B. Senseman

    FOR reasons well known to mining engineers, wet grinding is quite universal in plants having to do with the extraction of metallic values from crude ores. In the processing of the nonmetallic and indu

    Jan 1, 1945

  • AIME
    Concentration - Flotation - Flotation of Low Grade Gold Ores at Golden Cycle Corporation (Mining Tech., May 1948, TP 2361)

    By Howard R. Keil

    Prior to World War 11, approximately 500 tons per day, or one-third of the ore being shipped to the Golden Cycle Mill at Colorado Springs, Colo., from the Cripple Creek district, was being treated in

    Jan 1, 1949

  • AIME
    Some Problems Of Horizontal Steady Flow In Porous Media

    By John A. Putnam, Morrough P. O’Brien

    DATA on the physical and thermodynamic properties of hydrocarbons have been made available in recent years but the formal method of applying these data to flow in porous media appears not to have been

    Jan 1, 1941

  • AIME
    Production - Domestic - Developments and Production in East and East Central Texas in 1942

    By K. M. Fagin, D. W. Carter

    Six new oil fields were discovered in the East and East Central Texas district during 1942. The Coke and Quitman fields, in Wood County, at this time appear to be the two most important oil discoverie

    Jan 1, 1943

  • AIME
    Papers - Drying and Calcining - Flash Drying and Calcining as Developed from Mill Drying (T. P. 1897, Min. Tech., Sept. 1945)

    By William B. Senseman

    For reasons well known to mining engineers, wet grinding is quite universal in plants having to do with the extraction of metallic values from crude ores. In the processing of the nonmetallic and indu

    Jan 1, 1947

  • AIME
    Production - Domestic - Developments and Production in East and East Central Texas in 1942

    By D. W. Carter, K. M. Fagin

    Six new oil fields were discovered in the East and East Central Texas district during 1942. The Coke and Quitman fields, in Wood County, at this time appear to be the two most important oil discoverie

    Jan 1, 1943

  • AIME
    Lead-Grid Study Of Metal Powder Compaction

    By John Wulff, Robert Kamm, M. A. Steinberg

    IN a previous paper1 from this laboratory, the development of a lead grid method for exploring the distribution of strain and density within metal powder compacts was described, In that work thin lead

    Jan 1, 1948

  • AIME
    Papers - Reserves and Mining - Pittsburgh Coal Seam in Northern West Virginia (T.P. 2425, Coal Tech., Aug. 1948, with discussion)

    By W. D. Steele, S. D. Brady

    The Pittsburgh coal seam in West Virginia contains the largest coal reserves of any coal seam in that State and is, therefore, one of the most important seams, and attains minable thickness and purity

    Jan 1, 1949

  • AIME
    Powder Metallurgy - Lead-grid Study of Metal Powder Compaction (Metals Tech., Dec. 1948, TP 2487)

    By M. A. Steinberg, J. Wulff, R. Kamm

    In a previous paper1 from this laboratory, the development of a lead grid method for exploring the distribution of strain and density within metal powder compacts was described. In that work thin lead

    Jan 1, 1949

  • AIME
    Papers - Drying and Calcining - Flash Drying and Calcining as Developed from Mill Drying (T. P. 1897, Min. Tech., Sept. 1945)

    By William B. Senseman

    For reasons well known to mining engineers, wet grinding is quite universal in plants having to do with the extraction of metallic values from crude ores. In the processing of the nonmetallic and indu

    Jan 1, 1947

  • AIME
    Papers - Photocell Control for Bessemer Steelmaking (T.P. 1300)

    By H. K. Work

    The Bessemer process is one of the most interesting methods of making steel. At one time it was by far the most important. In recent years, however, it has steadily lost ground to the open-hearth proc

    Jan 1, 1941

  • AIME
    Papers - Steelmaking - Manufacture and Properties of Killed Bessemer Steel (Metals technology, June 1944) (With discussion)

    By E. C. Wright

    The bessemer process is nearly one hundred years old. William Kelly, the American inventor, was able to demonstrate that he had accomplished the pneumatic purification of molten pig iron as early as 1

    Jan 1, 1944