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  • AIME
    Wilkes-Barre, Pa. Paper - Octagonal Ventilation Shaft of David-Daly Copper Co. (with Discussion)

    By J. L. Bruce

    ' For a number of years, from an economic standpoint, the ventilation of the Colorado mine of the Davis-Daly Copper Co. has been a difficult problem. The development through the main hoisting sha

    Jan 1, 1922

  • AIME
    Crushing Practice at Ajo

    By David Cole

    THE New Cornelia Copper Co. is mining and treating a 'monzonite " porphyry" copper deposit that is all hard rock. The oxidized surface shell, which constitutes the leachable part of the orebody,

    Jan 1, 1925

  • AIME
    Discussion - Of Mr. Baker's Paper on Improvements in the Mechanical Charging of the Modern Blast-Furnace (see p. 553)

    Mr. John J. Porter, Chicago Ill. (communication to the Secretary†):—Mr. Baker's account of his experiences with stock-distribution has been particularly interesting to me, as it

    Jan 1, 1905

  • AIME
    Baltimore Paper - High-pressure Hydraulic Presses in Iron Works

    By R. M. Daelen

    Mechanical science is severely tested by the demands of the iron manufacture for the varied apparatus needed to transport and to treat raw materials and products. Water has long been a favorite means

    Jan 1, 1893

  • AIME
    Papers - An Improved Nickel-chromium Hardened Chilled Cast Iron (With Discussion)

    By J. S. Vanick

    An extremely hard, tough, and strong, white or chilled cast iron has been applied for the past several years to industrial and mining services in which its unusual properties have been confirmed by it

    Jan 1, 1933

  • AIME
    Reservoir Engineering - General - A Method of Predicting Oil Recovery in a Five-Spot Steamflood

    By B. H. Caudle, L. G. Davies, I. H. Silberberg

    This paper presents a method of predicting the recovery and performance of a five-spot steam injection project, in which a realistic approach to pattern sweepout efficiencies is made. Published method

    Jan 1, 1969

  • AIME
    Semi-Centennial Meeting at Wilkes-Barre

    By H. A. MEGRAW

    THE meeting of the A. I. M. E. at Wilkes-Barre, Pa., Sept. 12 to 15, inclusive, celebrated the fiftieth anniversary of the Institute. It was at Wilkes-Barre, in 1871, that the foundation was laid for

    Jan 1, 1921

  • AIME
    Index (8fa840bc-3622-4d7e-b1cf-ea49fe7896c5)

    By J. W. Walker, G. J. Heuer, E. W. Hough

    An improved apparatus is described for the deterrni-nation of interfacial tension* by the pendant drop method in the pressure range from 15 to 15000 psi and the temperature range from 100º td 280°F. T

  • AIME
    Institute of Metals Division - X-Ray Identification of Phases in Type 316 Austenitic Stainless Steels Subjected to Creep Rupture (TN)

    By F. von Gemmingen, E. J. Fasiska, L. Zwell

    EARLIER studies of the dependence of creep on structure1 and of the dependence of creep rupture on creep behavior2 did not include detailed discussion of the phases present in the specimens under exam

    Jan 1, 1962

  • AIME
    Face To Face Longwall Moves At Inland Steel Coal's Lancashire No. 25

    By D. N. Hedges

    This paper discusses the actual recovery and installation of a longwall in a bituminous coal mine in western Pennsylvania. The coal bed mined is in the Lower Freeport seam, which averaged 1.07 m (42 i

    Jan 1, 1985

  • AIME
    Institute of Metals Division - Titanium-Chromium Phase Diagram

    By N. J. Grant, C. F. Flo, F. B. Cuff

    An investigation of the Ti-Cr system has shown the presence of a complete series of solid solutions in the ß phase, with a minimum in the solid us near 50 pct Cr. An intermetallic compound, TiCr2, for

    Jan 1, 1953

  • AIME
    Rare Earths And Thorium

    By Spencer S. Shannon

    The lanthanide elements from lanthanum (atomic number 57) to lutetium (71) plus yttrium (39) are called the rare-earth elements; scandium (21) is chemically similar to yttrium and the lanthanides, but

    Jan 1, 1983

  • AIME
  • AIME
    Field Trips Sandwiched Into a Three-Day Meeting of Nonmetallics Division at Wilmington

    By AIME AIME

    A FALL meeting that should have repercussions both in the "Transactions" and MINING AND METALLURGY was that of the Industrial Minerals Division (Nonmetallics) at Wilmington, Oct. 21-23; headquarters,

    Jan 1, 1943

  • AIME
    Extractive Metallurgy Division - Distillation of Zinc from Copper Base Alloys and Galvanizers Drosses

    By F. F. Poland

    The purpose of this paper is to describe the recent applications and improvements made in the process and equipment for the recovery of metallic zinc from secondary metals by means of high temperature

    Jan 1, 1950

  • AIME
    Geophysics Education - Later discussion on Professional Training

    and would also contribute to the post-war employment. -As far as the future is concerned, I doubt whether any of the present geophysical methods will ever be developed to directly indicate ore. How

    Jan 1, 1946

  • AIME
    Geophysics Education - Later discussion on Professional Training

    and would also contribute to the post-war employment. -As far as the future is concerned, I doubt whether any of the present geophysical methods will ever be developed to directly indicate ore. How

    Jan 1, 1946

  • AIME
    Novel Void-Hole Process May Improve In Situ Fragmentation

    In situ mining techniques have become prominent in recent years due to declining ore grades, rising costs, and increasing concern for miners' health and safety. Current practices depend heavily o

    Jan 3, 1979

  • AIME
    Semi-centennial Meeting

    By WILKES BARRE

    AS PREVIOUSLY announced, the semi-centennial meeting of the Institute is to be held at Wilkes-Barre, Pa., on Sept. 12, 13, 14, and 15. An interesting program of technical sessions and excursions is no

    Jan 1, 1921

  • AIME
    Mineral Pigments (0b4089c4-0072-407b-a1ca-899dad8dba04)

    By Kenneth R. Hancock

    Iron oxides are unique in that they are the only significant colored mineral found in a natural state suitable for use as a pigment after being pulverized to pigmentary size. The current world product

    Jan 1, 1983