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  • AIME
    Institute of Metals Division - Ordering Reaction of the Cu4Pd Alloy

    By J. B. Newkirk, A. H. Geisler

    The alloy Cu4Pd has a disordered face-centered-cubic structure when quenched from temperatures between 478ºC and the melting point (about 1100°C). Below 478ºC an ordered phase is stable. The results o

    Jan 1, 1955

  • AIME
    New York Paper - Physical Changes in Iron and Steel Below the Thermal Critical Range (with Discussion)

    By Zay Jeffries

    It has been known for centuries that iron and steel could be hardened by cold hammering and that the metal could be restored to the normal condition by heating to a red heat arid cooling, either rapid

    Jan 1, 1922

  • AIME
    New York Paper - Physical Changes in Iron and Steel Below the Thermal Critical Range (with Discussion)

    By Zay Jeffries

    It has been known for centuries that iron and steel could be hardened by cold hammering and that the metal could be restored to the normal condition by heating to a red heat arid cooling, either rapid

    Jan 1, 1922

  • AIME
    Papers - The Source of Martensite Strength

    By R. C. Ku, A. J. McEvily, T. L. Johnston

    The microplastic response of a series ofas-quenched Fe-Ni-C martensites has been measured at 77°K. At strains less than JO'3 the flow stress is governed primarily by the transformation-induced di

    Jan 1, 1967

  • AIME
    The Manufacture of Bessemer Pig-Metal at the Fletcherville Charcoal Furnace, Near Mineville, Essex County, New York

    By T. F. Witherbee

    THE Fletcherville Furnace was built in 1864 and 1865, making its first blast from August until October of the latter year, when it was blown out to prevent its "bunging-up." Repairs were made in time

    Jan 1, 1874

  • AIME
    Membership (5e7669d7-919d-4d5f-8ada-37105937c4ec)

    NEW MEMBERS. The following list comprises the names of those persons who became members during the month of April, 1913: BARNES, BLAKESLEE, Min. Engr Burrwood, La. BOYLSTON, HERBERT M., Cons. Met.

    Jan 5, 1913

  • AIME
    The Gold-aluminum System (a0e70963-92ae-475e-a1a7-30e81aa509f8)

    By Arthur Coffinberry

    EVE have studied the gold-aluminum system by X-ray diffraction and by the microscope over the entire range of composition for temperatures between 300° and 500° C. Results obtained are shown in Fig. 1

    Jan 1, 1938

  • AIME
    Institute of Metals Division - Homogeneous Yielding of Carburized and Nitrided Single Iron Crystals

    By A. N. Holden, J. H. Hollomon

    Inhomogeneous yielding during the early stages of plastic flow has been observed in many metals and has long been a subject of controversy. Low carbon steel, when strained at room temperature, exhi

    Jan 1, 1950

  • AIME
    The Plastic Flow of Metals (97ac129f-4343-4a89-ad62-19311435a3d8)

    By C. W. Mac Gregor

    THE observation of the flow layers, or Lüders' lines, produced in mild steel when it is stressed into the plastic range often provides considerable useful information for the study of the fundame

    Jan 1, 1939

  • AIME
    Institute of Metals Division - Deformation Mechanisms and Work Hardening in Rhenium

    By A. T. Churchman

    The deformation modes of rhenium have been identified as those typical of the hexagonal metals, titanium, zirconium, and beryllium whose c/a ratios, in common with rhenium, are less than ideal for clo

    Jan 1, 1961

  • AIME
  • AIME
    Professional Divisions (f7823a58-d4b3-4edd-8461-39857f353b97)

    Institute of Metals Division Ferrous and Nonferrous Physical Metallurgy Established as a Division April 26, 1918 (Bylaws published In the 1944 TRANSACTIONS Volume of the Division) A A SMITH, JR, Ch

    Jan 1, 1952

  • AIME
    Environmental Aspects

    By A. W. Ashbrook

    The constraints which are being imposed on metallurgical operations in respect to the environment and worker hygiene are having a substantial influence on the various processes which are being studied

    Jan 1, 1978

  • AIME
    Iron and Steel Division - Silicon-Oxygen Equilibrium in Liquid Iron - Discussion

    By N. A. Gokcen, John Chipman

    D. C. Hilty (Union Carbide and Carbon Research Laboratories, Niagara Falls, N. Y.)—This paper is a very nicely detailed analysis of a difficult problem. I would like to point out that the results that

    Jan 1, 1953

  • AIME
    Uranium Exploration Activities in the US

    By B. J. Guarnera

    There have been major changes in the makeup and nature of the uranium exploration industry in recent years. Significant price increases precipitated an increase in exploration activity-according to th

    Jan 10, 1978

  • AIME
    Papers - Observing Formation of Martensite in Certain Alloy Steels at Low Temperatures (With Discussion)

    By O. A. Knight, Helmut Muller-Stock

    The suppression of the austenite-martensite transformation that can be brought about by the addition of certain alloying elements, such as manganese or nickel, to plain carbon steel has been known for

    Jan 1, 1934

  • AIME
    C. H. Mathewson, New President, A.I.M.E.

    By AIME AIME

    MODERN metallurgy is an art and a science. The art is process metallurgy-extracting metals from their ores, refining them, and alloying them with one another and with certain nonmetals to produce ther

    Jan 1, 1942

  • AIME
    Papers - - Produciton - Domestic- Oil and Gas Development in Arkansas in 1934

    By H. K. Shearer

    Drilling for oil and gas in Arkansas in 1934 showed more activity than in any year since 1929; with a total of 96 completions, including 36 oil wells, 1 gas well and 59 dry holes. Of the producers, th

    Jan 1, 1935

  • AIME
    Extractive Metallurgy Division - Thermodynamic Properties for the Zn-Cd System from Electromotive Force Measurement

    By D. J. Wynnemer, G. W. Preckshot

    Precise electromotive force measurements have been made on the zinc-cadmium system over the temperature range 700° to 900°C. Activity coefficients, partial free energies, enthalpies, and entropies hav

    Jan 1, 1962

  • AIME
    Institute of Metals Division - Tensile Properties of Wrought Austenitic Manganese Steel in the Temperature Range from +100 to -196°C.

    By H. C. Doepken

    Wrought Hadfield steel was tested in axial tension at from 100° to —196°C, to determine flow and fracture stresses as well as conventional properties. Ductility and related properties, such as fractur

    Jan 1, 1953