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  • AIME
    Production Engineering - Diamond Coring in the Rangely Field, Colorado (TP 2301, Petr. Tech., Jan. 1948)

    By Carl J. Christensen

    This paper presents the development of diamond coring of the Weber sand section in the Rangely Field, Colorado. The description and operation of the diamond-coring equipment is included as well as the

    Jan 1, 1948

  • AIME
    The Effect Of Chromium On The Ms Point

    By J. B. Bassett, E. S. Rowland

    INTRODUCTION THE experimental work reported herein was inspired by the publication of a paper by Grange and Stewart,1 in which it was suggested that at low chromium contents the effect of this elem

    Jan 1, 1948

  • CIM
    Review of Tin Prospecting Possibilities in Canada

    By A. H. Lang

    Introduction Tin continues to be as much a strategic metal as it was during the war. This situation is due to the fact that the tin mines in the major producing areas of Malaya and the Netherlands

    Jan 1, 1948

  • AIME
    Sectionalizing Power Distribution Underground

    By A. Lee Barrett

    MINE power systems are quite different in many respects from those usually found in industrial plants. Wide areas are served, usually by a circuit which is connected continuously throughout the mine.

    Jan 1, 1948

  • AIME
    Prospecting, Examination and Description of Deposits - Prospecting for Fire Clay in Missouri (Mining Tech., Jan. 1947, T.P. 2057)

    By B. K. Miller, George E. Moore

    The Missouri fire clays are here divided into plastic and semiplastic clays occurring as widespread bedded deposits in east central Missouri and flint and diaspore clays occurring as isolated "sink-ho

    Jan 1, 1948

  • AIME
    Technical Notes (86b2af3a-7e18-4203-a19e-d2585a64fa90)

    On Feb. 16, 1948, the Board of Directors of AIME authorized the publishing of "Technical Notes" in METALS TECHNOLOGY. The purpose is to provide prompt publication of wry short items of the following g

    Jan 1, 1948

  • NIOSH
    RI 4338 Magnetometric Survey Of The Mahopac Magnetite Mine, Putnam County, N. Y.

    By Clinton C. Knox

    During the latter part of 1943, a magnetometric survey was conducted by the Geophysical Division of the Bureau of Mines at the Mahopac magnetite mine, Putnam County, N. Y., in an endeavor to locate a

    Jan 1, 1948

  • NIOSH
    RI 4386 Investigation Of Royal Princess Zinc-Lead Deposit Jo Daviess County, Ill.

    By Stephen P. Holt

    In the fall of 1946 and spring of 1947 the Bureau of Mines put down five inclined diamond-drill holes totaling about 3,100 feet of bore to test for the possible eastward extension of the Royal Princes

    Jan 1, 1948

  • AIME
    The Effect Of Thermal-Mechanical History On The Strain Hardening Of Metals

    By A. Goldberg, T. E. Tietz, J. E. Dorn

    INTRODUCTION THE concept that the flow stress for plastic deformation of metals in the work hardening range is a function of the instantaneous values of the strain, strain rate and test temperature

    Jan 1, 1948

  • AIME
    Mining - Transportation of Suspended Solids in Pipe Lines (Mining Tech. Mar. 1945, T.P. 1785)

    By Warren E. Wilson

    The transportation of solids in pipe lines is a matter of deep concern in many fields of engineering. Much experimental and theoretical work has been done in an effort to devise means of designing pip

    Jan 1, 1948

  • AIME
    Wear Tests On Grinding Balls (2afd709c-4818-4372-850e-46cf776849fa)

    By C. M. Loeb, T. E. Norman

    THE use of ball, rod and tube mills for grinding ore, cement and other materials has grown so rapidly during the past forty years that the world's annual consumption of ferrous grinding media for

    Jan 1, 1948

  • AIME
    Cleaning Anthracite Silt for Boiler Fuel with Humphreys Spiral Separator

    By W. L. Dennen, V. H. Wilson

    THIS paper is a description of the opera¬tion and results of a Humphreys Spiral Silt Cleaning Plant at the Powderly Colliery of The Hudson Coal Co. during the first nine months of operation and follow

    Jan 1, 1948

  • NIOSH
    RI 4343 Investigation Of The North Arkansas Zinc Mines Searcy, Boone, And Newton Counties, Ark.

    By R. B. McElwaine

    From November 1943 to April 1944, the Bureau of Mines put down 18 churn-drill holes aggregating 2,571 feet of bore in an investigation of the virtually abandoned zinc deposits of the north-central Ark

    Jan 1, 1948

  • AIME
  • CIM
    The Gorgas, Alabama, Experiment in Underground Gasification of Coal

    By Milton Fies

    Introduction The first experiment in underground gasification of coal in the United States was conducted at Gorgas, Walker county, Alabama, under a co-operative arrangement between the U.S. Bureau

    Jan 1, 1948

  • AIME
    X Ray Determination Of Retained Austenite By Integrated Intensities

    By B. L. Averbach, M. Cohen

    THE PROBLEM MANY hardened steels contain significant quantities of retained austenite even in cases where the carbon and alloy contents are low. In fact austenite has been detected in plain carbon

    Jan 1, 1948

  • NIOSH
    RI 4273 Survey Of Commercial Aviation-Gasoline Characteristics

    By W. C. Holliman

    This report on the characteristics of commercial aviation gasolines presents compilations of inspection test data furnished on their products by manufacturers of commercial grades of aviation gasoline

    Jan 1, 1948

  • CIM
    Cathodic Protection of Steel in Hot Water by Alloys of Magnesium, Zinc, and Aluminium

    By R. R. Rogers

    Abstract The degree of cathodic protection of steel and the anode corrosion rate were determined when anodes and waters of different compositions were used at temperatures similar to those in domes

    Jan 1, 1948

  • NIOSH
    RI 4325 Investigation Of Rex Zinc Mine Howell County, Mo.

    By Homer J. Ballinger

    The Rex mine is one of several zinc deposits in Ozark and Howell Counties, Mo. It is the second of these deposits investigated by the Bureau of Mines in an effort to demonstrate reserves of sulfide or

    Jan 1, 1948

  • AIME
    Solubility Of Iron In Liquid Magnesium

    By David W. Mitchell

    WHILE pure magnesium does not corrode rapidly the presence of even very small quantities of certain other metals accelerates corrosion remarkably. Because magnesium is such an electropositive metal (E

    Jan 1, 1948