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  • AIME
    Mining (fec04a67-36a3-42f7-b2f2-c9f8ce3c7c85)

    US 4,134,618-Method for restoring an underground reservoir subsequent to the solution mining of an ore body of uranium, copper, nickel, vanadium, molybdenum, silver, rhenium, or selenium. Clean water

    Jan 1, 1980

  • AIME
    Standards For Identifying Complex Twin Relationships In Cubic Crystals

    By C. G. Dunn

    IDENTIFICATION Of the kinds of orientation relationships that may exist among crystals is an important problem in the metallurgical field. As an aid to its solution standard orientations of several or

    Jan 1, 1945

  • AIME
    Canada Cement Co. Building Highly Automated Plant In Nova Scotia

    By A. O. Drysdale

    In Canada, the market for cement is not a national one but rather a collection of local or regional markets. Excess capacity on a national basis does not necessarily preclude a shortage on a regional

    Jan 4, 1965

  • AIME
    Replaceable Lips For Elevator-Buckets.

    By H. J. Maguire

    (Presented by invitation at a meeting of the Spokane Local Section, Feb. 17, 1912.) THOSE familiar with mill-practice understand the work required of an average bucket-elevator, but I wish to call sp

    Sep 1, 1912

  • AIME
    Power for Mining

    By AIME

    Annual production of more than 4,000,000 tons of 0.74 percent copper ore and coincident handling of over 5,000,000 tons of waste at the open-pit mine of Castle Dome Copper Co. near Miami, Ariz. takes

    Jan 1, 1948

  • AIME
    Mineral Block Models – Drill Hole Interpolation: Mineralized Interpolation Techniques

    By William E. Hughes, Roderick K. Davey

    The objective of this chapter is to review and discuss interpolation techniques commonly in use in the mining Industry today, including simple examples. This chapter will not attempt to compare the re

    Jan 1, 1979

  • AIME
    Mexican Oil Fields

    By Stirling Huntley, L. G. Huntley

    THE controversy regarding the ,'probable future of the Mexican oil fields, and its relation to the oil industry of the United States, has led to the preparation of this paper. As has been predict

    Jan 1, 1921

  • AIME
    Part VII - An X-Ray Study of the Fcc - Hcp Transformation in a Cu-Si Alloy

    By W. F. Flanagan, D. H. Polonis, S. D. Dahlgren

    Rotation diffraction patterns of Cu-4.84 wt pct Si polymystalline samples were taken during the course of isothel-ma1 affing of the suPersaturated a phase, a diffraction spots were obserzled to streak

    Jan 1, 1967

  • AIME
    Effects of Artificial Support in Longwall Mining as Determined by Barodynamic Experiment

    By B. B. Bucky

    THIS investigation was carried on by means of models and the applica-tion of the principles of similitude to determine the effects of props, props and cribs and sand filling in longwall mining. The ge

    Jan 1, 1939

  • AIME
    Institute of Metals Division - Solid Solubility of Lithium in Aluminum

    By S. K. Nowak

    The lithium solubility limit in solid aluminum was determined by the use of micro-graphic techniques. The solubility limit thus established was shown to be a true equilibrium by checking the reversibi

    Jan 1, 1957

  • AIME
    San Francisco Paper - Radiography of Metals

    By Wheeler P. Davey

    In an article in the General Electric Review, January, 1915, reference was made to the X-ray examination of a steel casting 9/16 in thick. Fig. 1 shows one of the radiographs thus obtained. All these

    Jan 1, 1916

  • AIME
    Papers - Occurance - Anthracites and Semianthracites in the United States

    By Allen J. Johnson

    Anthracite coals have been divided into three groups: (I) meta-anthracite, a high-carbon coal that is usually very slow to kindle and difficult to burn, at least on conventional equipment; (2) anthrac

    Jan 1, 1944

  • AIME
    Papers - Occurance - Anthracites and Semianthracites in the United States

    By Allen J. Johnson

    Anthracite coals have been divided into three groups: (I) meta-anthracite, a high-carbon coal that is usually very slow to kindle and difficult to burn, at least on conventional equipment; (2) anthrac

    Jan 1, 1944

  • AIME
    Angle Bolts Control Rib Side At No. 4 Mine, Brookwood, Alabama

    By K. R. Price, M. Gauna

    A high seam geologic condition exists at Jim Walter Resources No. 4 mine that requires immediate rib support after a continuous miner cuts a place. High seam mining heights are typically 2.4 to 2.6 m

    Jan 1, 1985

  • AIME
    3.15.4 - Other Nonmetallics - Abrasives

    By Robert M. Dreyer

    During the past two decades, synthetic abrasives have taken over successively greater percentages of the high-grade abrasive market, so that now, with the exception of natural diamonds (discussed in s

    Jan 1, 1976

  • AIME
    Part XI – November 1968 - Communications - On the Temperature Dependence of the Heat of Formation of the Compound AgMg

    By M. B. Bever, A. K. Jena

    THE heats of formation ?H at 273°K of the compound AgMg as a function of composition have been measured by solution calorimetry.1 The value at the stoichiometric composition is -4.41 kcal per g-atom.

    Jan 1, 1969

  • AIME
    Columbus Paper - Coke and Byproducts as Fuels for Metals Melting

    By F. W. Sperr

    The byproduct coke oven is the most important artificial source of fuels for metals melting. Its products are solid, liquid, and gaseous in form. The amount of coke and primary byproducts obtained per

    Jan 1, 1921

  • AIME
    Papers - A Study of the Homogeneity Limits of Wustite (FeO) by X-ray Methods (With Discussion)

    By Frank Foote, Eric R. Jette

    In a recent article,1 the authors reported the results of an X-ray investigation on the range of solid solutions that occurs in the iron-oxygen system in the vicinity of the compound FeO, which freque

    Jan 1, 1933

  • AIME
    Production - Foreign - Production in Arabia and Bahrein in 1944 with Summary of Operations Since 1940

    By James Terry Duce

    The gross production on the Island of Sahreirl during 1944 was approximately 6,700,000 U. S. bbl. No additional wells were drilled in the field during the year, but a number that were plugged off duri

    Jan 1, 1945

  • AIME
    New York Paper - The Hollenbeck Shaft, Lehigh and Wilkes-Barre Coal Company, Luzerne County, PA.

    By John Henry Harden

    This shaft, located in the northern anthracite coal-field about 2300 feet southwest from the court-house at Wilkes-Barre, in the County of Luzerne, Pa., is the property of the Lehigh & WilkesBarre Coa