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  • AIME
    Analysis and Assessment of Grade Variability for Improving Exploration Planning and Reserve Estimation

    By E. Tulcanaza

    The practical significance of the in situ grade variability is usually neglected. Although recognized, often times it is either ignored or just considered as a vague guideline in many of the decisions

    Jan 1, 1985

  • AIME
    Ground Water Development For Mineral Industry In Arid Zones Of The Andean Highlands, South America

    By J. W. Harshbarger, E. L. Montgomery

    The region of metallic ore deposits in northern Chile, southern Peru, western Bolivia, and northwestern Argentina occurs in arid zones at altitudes as high as 6 km (19,700 ft). Because surface water s

    Jan 1, 1986

  • AIME
    Zeolites - Zeolites in Sedimentary Rocks

    By Richard A. Sheppard

    Zeolites-crystalline hydrated aluminosilicates of the alkalis and alkaline earths-are important rock-forming constituents in sedimentary rocks and are potentially valuable industrial minerals. They ha

    Jan 1, 1975

  • AIME
    Elutriator Installation Upgrades Groveland's Capacity

    By Lawrence P. Bonicatto

    The steel industry's increased demand for higher grade pellets has caused the pellet producers to investigate methods of upgrading their product and the Hanna Mining Co.'s Groveland plant on

    Jan 3, 1968

  • AIME
    Institute of Metals Division - Fracture and Twinning in Sapphire (Alpha-Al2O3 Crystals)

    By H. Conrad, E. Stofel

    The fracture behavior of 60-deg-oriented sapphire crystals was investigated for both tension and compression. Plastic flow on the basal plane was found to be a factor in reducing the tensile stress re

    Jan 1, 1963

  • AIME
  • AIME
    Wollastonite (c502e11a-c3c0-4577-8bd3-10874a0fd952)

    By L. A. Roe, E. A. Elevatorski

    Wollastonite, named after William H. Wollaston, an English chemist, is a calcium metasilicate, CaSiO3; CaO: 48.30%, SiO2: 51.70%. It has a short history as an industrial mineral. The earliest product

    Jan 1, 1983

  • AIME
    Zinc Electrowinning from Chloride Electrolyte (233b2727-22ae-46c1-986d-fc3df8cfa1b7)

    By D. J. MacKinnon, J. M. Brannen

    Smooth, compact, dendrite free 24-h zinc deposits have been electrowon from zinc chloride electrolyte using a diaphragm cell. The cell consisted of sealed anode compartments containing DSA anodes sepa

    Jan 1, 1983

  • 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
    Part IX - Communications - Anodizing as a Technique for Studying Diffusion in the TiCb System

    By J. Grosso, D. J. Nagel

    In many metallurgical studies, it is necessary to reveal the composition and structural properties of materials. Usually this is done by etching, but some substances do not etch well or easily. Anodiz

    Jan 1, 1967

  • AIME
    Part IX – September 1968 - Papers - Nickel Induced RecrystaIIization of Doped Tungsten

    By J. Brett, L. Seigle, L. Castleman, T. Montelbano

    Impurity-induced low-temperature recrystallization of cold-worked tungsten was inuestigated with emphasis on the influence of nickel on the reaction. Palladium, nickel, aluminum, manganese, platinum

    Jan 1, 1969

  • AIME
    Drilling and Producing – Equipment, Methods, and Materials - Corrosion of Oil Well Casing by Earth Currents

    By Leendert de Witte, Fred J. Radd

    In many areas caring failures can be directly related to electrical currents observed in the casings. It is the thesis of this paper that the observed casing currents are mainly due to electrochemical

    Jan 1, 1956

  • AIME
    Washington Paper - The Manufacture and Characteristics of Wrought-Iron

    By James P. Roe

    Those who deem the subject of this paper an old and superseded one may recall with advantage the words of the great proverb-maker, bidding us to seek the new in the ashes of the old. The manufactur

    Jan 1, 1906

  • AIME
    Dithiophosphate vs. Xanthate Flotation of Chalcocite and Pyrite

    By J. L. Huiatt, M. C. Fuerstenau, M. C. Kuhn

    Dithiophosphatogen is the species responsible for flotation of pyrite when dithiophosphate is added as collector. Oxidation of collector apparently occurs by reaction with oxygen adsorbed on the pyrit

    Jan 1, 1972

  • AIME
    Natural Gas Technology - Calculation of Water Displacement by Gas in Development of Aquifer Storage

    By J. G. Richardson, K. H. Coats

    During the initial growth of a gas bubble in an aquifer storage reservoir the injected gas tends to override the water. The resulting low displacement efficiency and high rate of gas travel down-struc

  • AIME
    Papers - Secondary Metals - Reclaiming Non-ferrous Scrap Metals at Manufacturing Plants (With Discussion)

    By Francis N. Flynn

    Many excellent papers, descriptive of the milling and smelting of every kind of commercial ores, the refining of virgin metals, the casting into various shapes demanded by the trade, the rolling into

    Jan 1, 1930

  • AIME
    Government Regulation of Surface Subsidence Due to Underground Mining

    By David E. Jones, Dean K. Hunt, C. Y. Chen

    INTRODUCTION Of all the numerous geological hazards that threaten the well-being of urban areas in the United States, probably none is so widespread, persistent, and diversified as surface subside

    Jan 1, 1982

  • AIME
    Underground Mining in Saskatchewan Potash (3245fc89-c6ff-4891-b898-b52c2c40e2f1)

    By Fritz F. Prugger, Peter R. Jones

    This paper considers some of the main aspects of underground mining in the flat, rich, but deep lying deposits of Saskatchewan. It briefly describes the pertinent geological features as they relate to

    Jan 1, 1983

  • AIME
    Discussion ? Powder Metallurgy Symposium - Chicago Meeting, February 1946 ? Contents - The Pressing Operation In The Fabrication Of Articles By Powder Metallurgy ? Koehring, R. P., Squire, A.

    This is a most interesting paper and some data in it are corroborated by work I did at Watertown Arsenal some time ago with iron powder. I would like to ask Dr. Wulff to say just a little more about t

    Jan 1, 1946

  • AIME
    Comparative Friction Test of Two Types of Coal Mine Cars

    By P. B. Liebermann

    THE resistance to motion offered by mine cars is caused principally by: Rolling friction, flange friction, bending rails, bearing friction and wind resistance. With proper construction and with a fair

    Jan 6, 1916