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  • AIME
    Correlation Of Optical And Electron Microscopy

    By J. S. Bryner

    INTRODUCTION IN the study of metallographic specimens in the electron microscope, there is need for a method of locating the same field in both the light microscope and the electron microscope. Thi

    Jan 1, 1948

  • AIME
    Institute of Metals Division - Solubility and Diffusion of Titanium in Iron

    By S. H. Moll, R. E. Ogilvie

    The investigation of solid-state diffusion phenomena may lead to much information concerning binary alloys. In particular, a study of the concentration gradients present in multiphase diffusion coup

    Jan 1, 1960

  • AIME
    Intergranular Comminution By Heating

    By C. M. Loeb, A. M. Gaudin, J. H. Brown

    THE object of most size reduction operations in the mineral industry is to liberate the grains of valuable minerals in the ore from those of the gangue. This is usually accomplished by crushing and gr

    Jan 4, 1958

  • AIME
    Iron and Steel Division - The Oxygen Potential Diagram Summarizing Fe-Mn-Si-O 1285 Equilibria at 1600°C (TN)

    By D. I. Cameron

    A graphical method has been developed and tested for separating the effects of grain boundary and lattice diffusion in polycrystalline materials. The method is based on the assumptions that for unidir

    Jan 1, 1962

  • AIME
    Pitting of Stainless Steels

    By H. H. Uhlig

    Soon after general use of stainless steels began, it was observed in practice that certain combinations of factors tended to induce corrosion by pitting. For most applications this was a serious drawb

    Jan 1, 1940

  • AIME
    Institute of Metals Division - A Method for Separating Grain-Boundary and Lattice Diffusion Effects in Polycrystalline Materials (TN)

    By T. S. Lundy, J. I. Federer

    A graphical method has been developed and tested for separating the effects of grain boundary and lattice diffusion in polycrystalline materials. The method is based on the assumptions that for unidir

    Jan 1, 1962

  • AIME
    New Mexico School of Mines, and New Mexico State Bureau of Mines and Mineral Resources

    New Mexico School of Mmes, and State Bureau of Mmes and Mineral Resources, Socorro, N. M E. H Wells, President and Director Available publications of the State Bureau of Mines and Mineral Resource

    Jan 1, 1933

  • AIME
    Notes on Conservation of Lake Superior Iron Ores

    By C. K. Leith

    The question as to what grades of ore it pays to conserve for the future, and the valuation of low-grade reserves, are becoming immediate and definite as applied to the individual ore deposits, and se

    Jan 1, 1915

  • AIME
    Comparative Studies on Creep of Metals Using a Modified Rohn Test

    By C. R. Austin

    IN a recent paper1 the authors presented information on a refinement of the Rohn type of creep test with data on pure iron that exemplified the behavior of the apparatus. The present paper extends tha

    Jan 1, 1934

  • AIME
    Local Section News (a2f34cc9-7c33-40ba-8adb-396529f1e9e7)

    BOSTON. SECTION W. E. C. EUSTIS, Chairman, H. L. AGASSIZ, Vice-Chairman., E. E. BUGBEE, Secretary-Treasurer, Mass. Inst. of Technology, Boston, Mass. ALBERT SAUVEUR, H. L. SMYTH. The 37th meeting

    Jan 1, 1917

  • AIME
    Technical Papers and Discussions - Miscellaneous Metals and Alloys - The Melting of Molybdenum in the Vacuum Arc (Metals Tech., Sept. 1946, T. P. 2052, with discussion)

    By John L. Ham, Robert M. Parke

    The melting point of molybdenum is 2625° + 50°C. Heretofore the metal has been considered too refractory to be melted in commercial quantities; hence, it has been formed into rod, wire, and sheet by t

    Jan 1, 1947

  • AIME
    Technical Papers and Discussions - Miscellaneous Metals and Alloys - The Melting of Molybdenum in the Vacuum Arc (Metals Tech., Sept. 1946, T. P. 2052, with discussion)

    By John L. Ham, Robert M. Parke

    The melting point of molybdenum is 2625° + 50°C. Heretofore the metal has been considered too refractory to be melted in commercial quantities; hence, it has been formed into rod, wire, and sheet by t

    Jan 1, 1947

  • AIME
    The Position Of Ae3 In Carbon-Iron Alloys.

    Discussion of the papers of Messrs. Howe and Levy, Burgess, Crowe and Rawdon, and H. M. Howe, presented at the New York Meeting, October, 1913, and printed in Bulletin No. 78, June, 1913, pp. 1075 to

    Jan 12, 1913

  • AIME
    The Hygiene of Mines

    By R. W. Raymond

    [NOTE.-This paper was presented at the Pittsburgh meeting in a partially completed form, and I fully expected to obtain, before the period of its publication, both the data and the leisure required fo

    Jan 1, 1880

  • AIME
    Mining Engineering Notebook – Two Cost-Cutting Applications of Instrumentation

    Long pipelines handling suspended solids find wide use throughout the mining industry. In phosphate, iron ore, and clay mining; in hydraulic stripping of overburden; in tailing disposal; and in transf

    Jun 1, 1955

  • AIME
    Reservoir Engineering Equipment - A Practical Method for Treating Oilfield Interference in Water-Drive Reservoirs

    By Mohamed Mortada

    A practical analytical method is developed in this paper which provides the practicing reservoir engineer with a handy method for analyzing oilfield interference problems. The procedure employed entai

    Jan 1, 1956

  • AIME
    Cincinnati Paper - The Quemahoning Coal-field of Somerset County, Pennsylvania

    By J. P. Kimball

    INCIDENTAL to a description of the hytlrographical basin of the Quemahoning in Somerset county, Pa., as a coal-field, I have, without a personal survey of the whole county, taken the pains to collate

    Jan 1, 1884

  • AIME
    Pennsylvania Fire Clay

    By L. C. Morganroth

    CARBONIFEROUS CLAYS FROM a geological standpoint, but scant attention has been paid to fire-clay beds. Only within the last few years have they been the subject of individual investigation, prior to

    Jan 2, 1916

  • AIME
    Production In Kentucky

    There are not many data about early coal production in Kentucky, but some legislative reports, early geological studies and occasional newspaper articles have left some figures. The earliest productio

    Jan 1, 1942

  • AIME
    Papers - - Production - Foreign - Petroleum Development in Germany during 1933

    By Walter Kauenhowen

    The production of crude oil in Germany during 1933 totaled about 1,669,521 bbl., a slight increase over the 1,608,558 bbl. produced in 1932. This is an extension of a yearly increase which has continu

    Jan 1, 1934