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  • AIME
    Differential Grinding Applied to Tailing Retreatment

    By Leon Banks

    THE- Missouri-Kansas Zinc Corpn., operating in the Waco district, 15 miles northwest of Joplin, Mo., owns large tailing piles made during milling operations of the years 1918-28 by the Butte-Kansas, A

    Jan 1, 1929

  • AIME
    Differential Infrared Spectra of Adsorbed Monolayers-n-Hexanethiol on Zn Minerals

    By Milton E. Wadsworth, Edward M. Eyring

    Better understanding of solid surfaces and their associated adsorption products is of both academic and practical value. The study of detergents and their behavior in cleaning surfaces is fundamentall

    May 1, 1956

  • AIME
    Differential Production of Soluble Sulfates from Mixtures of Metallic Oxides

    By Carl Floe

    THE possibility of separating the various constituents of mixed ores or metalliferous products by differentially producing their soluble sulfates has not received the consideration that it deserves. T

    Jan 1, 1936

  • AIME
    Differential Thermal Analysis For Ore Treatment Study

    By William I. Watson

    Problems encountered in beneficiating mineral raw materials become increasingly difficult as there is a shift to lower grade and more complex raw materials, and because of the economic need to strive

    Jan 7, 1959

  • AIME
    Differentiating Characteristics of The Engineering Curriculum

    By S. C. Hollister

    An evaluation of the function of the engineer, so that means whereby education can best serve his needs can be adopted.

    Jan 2, 1950

  • AIME
    Differentiation And Ore Deposition, Cordill[e]ran Region Of The United States

    By Waldemar Lindgren

    THE purpose of this paper is to present certain facts relating to Cordilleran differentiation and metallization. Theoretical discussions concerning the exact modus operandi of differentiation, the cau

    Jan 1, 1933

  • AIME
    Differentiation Of Igneous Rocks And Ore Deposition In Peru

    By W. C. Lacy

    A WIDE variety of metalliferous deposits in Peru shows a close and consistent relationship to intrusive and extrusive igneous rocks. This relation- ship furnishes a clue to the composition of ore-bear

    Jan 5, 1957

  • AIME
    Difficult Problems Met in Supplying Raw Material Supply for New Geneva, Utah, Steel Plant

    By AIME AIME

    AT a recent meeting of the Utah Section. A.I.M.E., P. D. Nielson, general plant superintendent of the new Geneva steel plant at Provo, Utah, spoke on "General Operations of the Geneva Plant." Mr. Nie

    Jan 1, 1944

  • AIME
    Difficulties Met in Differential Flotation

    By Carl Lemke

    SOME of the principal metallurgical difficulties en-countered in the differential flotation of lead-zinc-iron sulfide ores arise from the following causes: The oxidized, or partly-oxidized, condition

    Jan 4, 1927

  • AIME
    Diffusion Experiments On A Gold-Silver Alloy By Chemical And Radioactive Tracer Methods

    By William A. Johnson

    IT was pointed out in an earlier paper1 that our understanding of the atomic mechanism by which diffusion occurs in metallic alloys is scarcely in an advanced state. This unsatisfactory condition is t

    Jan 1, 1942

  • AIME
    Diffusion In Alclad 24S-T Sheet

    By F. Keller, R. H. Brown

    BECAUSE of the extensive use of Alclad 24s alloy sheet in aircraft construction, there is much interest in the metallurgical changes caused by heat-treatment of this product.1,2 One of these changes i

    Jan 1, 1944

  • AIME
    Diffusion In Metal Accompanied By Phase Change

    By L. S. Darken

    THE manufacture and treatment of metals comprises operations whose effectiveness depends in large measure upon diffusion phenomena. The significance of such phenomena has, for a few simple cases, long

    Jan 1, 1942

  • AIME
    Diffusion In R301 Alloy And Its Effect On The Corrosion Resistance

    By L. F. Mondolfo

    R301 is a clad aluminum alloy, composed of a core of a duralumin-type alloy clad with a magnesium silicide alloy. It differs from other well-known clad alloys in that the cladding and the core respond

    Jan 1, 1945

  • AIME
    Diffusion In Relation To Changes In Microstructure

    By Marie L. V. Gayler

    WITHOUT diffusion taking place in liquid metals and alloys, no castings could be made; it is therefore the most important factor affecting the structure of metals. Diffusion involves the interchange o

    Jan 1, 1944

  • AIME
    Diffusion In Solid Metals

    By Robert Mehl

    IN examining the progress of metallurgical science, the critic must remember that most of our present knowledge of metals and alloys has been accumulated through the needs of industry and commerce rat

    Jan 1, 1936

  • AIME
    Diffusion Model for Heap Leaching and Its Application to Scale-Up

    By George W. Becker, Blair R. Benner, Ronald J. Roman

    A computer model for the leaching of oxide copper heaps is developed and verified in laboratory tests. The model can be used to scale-up laboratory test data and to simulate the results of various ope

    Jan 1, 1975

  • AIME
    Diffusion of Carbon from Steel into Iron

    By Leonard Grimshaw

    DIFFUSION Of carbon from gases into iron has been the object of much research, because of its long recognized importance in carburizing processes, but the direct diffusion of carbon from steel into ir

    Jan 1, 1937

  • AIME
    Diffusion Of Carbon In Austenite With A Discontinuity In Composition

    By L. S. Darken

    IT has long been recognized that the driving force in an isothermal diffusion process may be regarded as the negative gradient of the chemical potential (partial molal free energy) of the diffusing su

    Jan 1, 1948

  • AIME
    Diffusion of Copper and Magnesium into Aluminum

    By R. M. Brick

    THE Institute of Metals Division Lecture in 1936, given by R. F. Mehl, on diffusion in solid metals1, was introduced with the statement that "the phenomena of diffusion are intimately related to many

    Jan 1, 1937

  • AIME
    Diffusion Of Indium In Bearings

    By A. A. Smith

    THE application of indium to bearings was first advocated by C. F. Smart1 in 1938, for the purpose of inhibiting corrosion of certain bearing alloys. He found that a thin layer of indium plated on the

    Jan 1, 1944