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  • AIME
    Technical Papers and Discussions - Properties of Metals; Sponge Iron - Grain-growth Inhibitors in Steel (Metals Tech., June 1946, T. P. 2030, with discussion)

    By James W. Halley

    "Fine-grained" steels have been standard products for many years. This paper describes an investigation of the effects of some of the more common grain-growth inhibitors used to produce these steels.

    Jan 1, 1947

  • AIME
    Technical Papers and Discussions - Properties of Metals; Sponge Iron - The Low-temperature Gaseous Reduction of Magnetite Ore to Sponge Iron (Metals Tech., June 1946, T. P. 1960 with discussion)

    By O. George Specht, Carl A. Zapffe

    In recent print, some remarkably contradictory statements have appeared regarding the importance to be attached to sponge Iron,1-6 a metallurgical commodity whose history goes back at least to the tim

    Jan 1, 1947

  • AIME
    Technical Papers and Discussions - Stainless Steel and Iron-silicon Alloys - A Test for Hydrogen Embrittlement and Its Application to 17 Per Cent Chromium, 17 Percent Carbon Stainless-steel Wire (Metals Tech., Jan. 1946, T. P. 1954, with dis

    By Carl A. Zapffe, M. Eleanor Haslem

    The present investigation has three principal purposes: 1. To develop a method for measuring hydrogen embrittlement that avoids cer, tain errors complicating previously used methods. 2. To exp

    Jan 1, 1947

  • AIME
    Technical Papers and Discussions - Stainless Steel and Iron-silicon Alloys - A Precipitation-hardening Stainless Steel of the 18 Per Cent Chromium, 8 Per cent Nickel Type (Metals Tech., June 1946, T. P. 2006, with discussion)

    By Gorr W. W., Wyche E. H, R. Smith

    The combination of high strength and corrosion resistance of cold-worked 18 Cr, 8 Ni steel has been advantageously utilized for some time, particularly in aircraft and rail car structures. There are,

    Jan 1, 1947

  • AIME
    Technical Papers and Discussions - Stainless Steel and Iron-silicon Alloys - Constitution of Commercial Low-carbon Iron-silicon Alloys (Metals Tech., Feb. 1946, T. P. 1966, with discussion)

    By R. L. Rickett, N. C. Fick

    Despite the large volume of literature on alloys of iron and silicon,' there is little published information dealing specifically with the constitution, at various temperatures, of the alloys con

    Jan 1, 1947

  • AIME
    Technical Papers and Discussions - Stainless Steel and Iron-silicon Alloys - Effect of Original Orientation on Orientation Changes during Recrystallization in Silicon Ferrite (Metals Tech., Aug. 1946, T. P. 1990, with discussion)

    By C. G. Dunn

    Nuclei that are formed during the recrystallization of a grain following plastic deformation generally have orientations that differ from the original. This aspect of recrystallization may be describe

    Jan 1, 1947

  • AIME
    Technical Papers and Discussions - Stainless Steel and Iron-silicon Alloys - Some Aspects of Crystal Recovery in Silicon Ferrite Following Plastic Strains (Metals Tech., Aug. 1946, T. P. 1991)

    By C. G. Dunn

    It is well known that plastic deformation alters many of the properties of a metal and subsequent heat-treatment partially or completely restores these properties.l In the deformed or strained state,

    Jan 1, 1947

  • AIME
    Technical Papers and Discussions - Stainless Steel and Iron-silicon Alloys - The Solubility of Hydrogen in Molten Iron-silicon Alloys (Metals Tech., Feb. 1946, T. P. 1975, with discussion)

    By Bever M. B., Floe Carl F., Hung Liang

    Data on the solubility of hydrogen in iron-silicon alloys are of practical interest, as hydrogen causes gas unsoundness and embrittlement in iron and steel and is also a factor in the metallurgy of ca

    Jan 1, 1947

  • AIME
    Technical Papers and Discussions - Transformation of Austenite - Some Factors Affecting Edgewise Growth of Pearlite (Metals Tech., Dec. 1945, T. P. 1857, with discussion)

    By W. H. Brandt

    ThEre has been much progress in the last two decades in understanding the hardenability of steel. Roughly, the progress has been along two lines, which may be designated as empirical and fundamental.

    Jan 1, 1947

  • AIME
    Technical Papers and Discussions - Transformation of Austenite - Anisothermal Decomposition of Austenite (Metals Tech., Aug. 1946, T. P 2008, with discussion)

    By J. H. Hollomon, L. D. Jaffe, M. R. Norton

    In the practical heat-treatment of steel the decomposition of austenite usually occurs during cooling rather than at constant temperature. Nevertheless, the course of this decomposition has generally

    Jan 1, 1947

  • AIME
    Technical Papers and Discussions - Transformation of Austenite - Relationship between Transformation at Constant Temperature and Transformation during Cooling (Metals Tech., June 1946, T. P. 2014, with discussion)

    By G. K. Manning, C. H. Lorig

    TWO metallurgical tools have acquired wide use within the past several years as a means of studying the transformation characteristics of steel. One is a technique used first by Bain and Davenport for

    Jan 1, 1947

  • AIME
    Technical Papers and Discussions - Transformation of Austenite - The Temperature Range of Martensite Formation (Metals Tech., June 1946, T. P. 1996, with discussion)

    By R. A. Grange, H. M. Stewart

    Man.; steel parts may crack if quenched directly into a bath near room temperature, but not if quenched at a temperature just above the range where martensite forms and then allowed to cool slowly to

    Jan 1, 1947

  • AIME
    Technical Papers and Discussions - Transformation of Austenite - Hardenability Effects in Relation to the Percentage of Martensite (Metals Tech., April 1946, T. P. 1994, with discussion)

    By M. A. Orehoski, J. M. Hodge

    The relationship between hardenability based on a 50 per cent martensite criterion, and that based on higher percentages of martensite in a number of low-alloy steels was discussed in a previous pa

    Jan 1, 1947

  • AIME
    Technical Papers and Discussions - Transformation of Austenite - Equilibrium Relations in Medium-alloy Steels (Metals Tech., Jan. 1946, T. P. 1856, with discussion)

    By Clarence Zener

    The heat-treatment of steels will not pass from the stage of an art into that of a science until the mechanism of the phase transformations associated therewith is thoroughly understood. Such an under

    Jan 1, 1947

  • AIME
    Technical Papers and Discussions - Transformation of Austenite - Phase Boundaries in Medium-alloy Steels (Metals Tech., Jan. 1946, T. P. 1924, with discussion)

    By W. A. West

    One who attempts to collect and classify equilibrium data from various iron-alloy systems is soon struck with the absence of any quantitative theory that can serve as a general background against whic

    Jan 1, 1947

  • AIME
    Technical Papers and Discussions - Transformation of Austenite - Kinetics of the Decomposition of Austenite (Metals Tech., Jan. 1946, T. P. 1925, with discussion)

    By Clarence Zener

    Contents Page General Principles................................................................. 551 Equilibrium Diagrams......................................................... 551

    Jan 1, 1947

  • AIME
  • AIME
    Symposia - Symposium on Hardenability - The Hardenability Concept (Metals Tech., Jan. 1946, T. P. 1926 with discussion)

    By J. H. Hollomon, L. D. Jaffe

    The hardenability concept has become widely used during the last few years for the choice and substitution of steels. Before the work of Grossmann,1 the systems for predicting hardenability from chemi

    Jan 1, 1947

  • AIME
    Symposia - Symposium on Hardenability - Hardenability and Quench Cracking (Metals Tech., Jan. 1946, T. P. 1927 with discussion)

    By L. D. Jaffe Hollomon, Hollomon John H.

    For many steel parts it is desired to obtain the maximum toughness consistent with the strength required by the mechanical design. It is generally recognized that the greatest toughness at any given s

    Jan 1, 1947

  • AIME
    Symposia - Symposium on Hardenability - Relationship between Hardenability and Percentage of Martensite in Some Low-Alloy Steels (Metals Tech., Sept. 1945, T.P. 1800 with discussion)

    By M. A. Orehoski, J. M. Hodge

    It is now generally conceded that if a steel is to develop optimum physical properties in the conventionally quenched and tempered condition, the microstruc- ture after quenching should consist who

    Jan 1, 1947