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  • AIME
    Technical Papers and Discussions - Copper and Copper-rich Alloys - Physical Properties of Copper-manganese-zinc Alloys Containing 60 Per Cent Copper and 5 to 25 Per Cent Manganese (Metals Tech., Jan. 1946, T. P. 1956)

    By J. R. Long, T. R. Graham, R. G. Feustel, R. S. Dean

    The comprehensive study of the copper-manganese-zinc alloy system in the Bureau of Mines Laboratories has so far been principally concerned with alloys that lie within the alpha solid solution field o

    Jan 1, 1946

  • AIME
    Technical Papers and Discussions - Copper and Copper-Rich Alloys - Preferred Orientation in Annealed 70-30 Brass Wire (Metals Technology, April 1944) (With discussion)

    By H. l. Burghoff, J. S. Porter

    This paper presents the results of an investigation of the effect of cold-working and annealing treatments upon the occurrence of preferred orientation in annealed brass wire. The subject has received

    Jan 1, 1944

  • AIME
    Technical Papers and Discussions - Copper and Copper-Rich Alloys - Preferred Orientation in Annealed 70-30 Brass Wire (Metals Technology, April 1944) (With discussion)

    By H. l. Burghoff, J. S. Porter

    This paper presents the results of an investigation of the effect of cold-working and annealing treatments upon the occurrence of preferred orientation in annealed brass wire. The subject has received

    Jan 1, 1944

  • AIME
    Technical Papers and Discussions - Copper and Copper-rich Alloys - Solubility of Carbon in Molten Copper (Metals Tech., Sept. 1945, T. P. 1802, with discussion)

    By Michael B. Bever, Carl F. Floe

    he possibility that carbon may be soluble in copper to a limited extent has bten recognized for over a century. The quantitative investigation of this problem, however, requires more sensitive techniq

    Jan 1, 1946

  • AIME
    Technical Papers and Discussions - Copper and Copper-rich Alloys - Solubility of Carbon in Molten Copper (Metals Tech., Sept. 1945, T. P. 1802, with discussion)

    By Carl F. Floe, Michael B. Bever

    he possibility that carbon may be soluble in copper to a limited extent has bten recognized for over a century. The quantitative investigation of this problem, however, requires more sensitive techniq

    Jan 1, 1946

  • AIME
    Technical Papers and Discussions - Copper and Copper-rich Alloys - Solubility of Carbon in Molten Copper-manganese and Copper-nickel Alloys (Metals Tech., April 1947, T. P. 2151, with discussion)

    By Michael B. Bever, John R. Anderson

    Carbon may affect the alloys of copper in several ways. Provided an alloying element does not oxidize preferentially, even minute quantities of carbon dissolved in liquid alloys of high copper content

    Jan 1, 1947

  • AIME
    Technical Papers and Discussions - Copper and Copper-rich Alloys - Solubility of Carbon in Molten Copper-manganese and Copper-nickel Alloys (Metals Tech., April 1947, T. P. 2151, with discussion)

    By John R. Anderson, Michael B. Bever

    Carbon may affect the alloys of copper in several ways. Provided an alloying element does not oxidize preferentially, even minute quantities of carbon dissolved in liquid alloys of high copper content

    Jan 1, 1947

  • AIME
    Technical Papers and Discussions - Copper and Copper-Rich Alloys - Solubility of Hydrogen in Molten Copper-tin Alloys (Metals Technology, April 1944) (With discussion)

    By Michael B. Bever, Carl F. Floe

    The solubility of hydrogen in molten copper-tin alloys is of both practical and theoretical interest. From a practical standpoint, data on the equilibrium solubility as a function of temperature, pres

    Jan 1, 1944

  • AIME
    Technical Papers and Discussions - Copper and Copper-Rich Alloys - Solubility of Hydrogen in Molten Copper-tin Alloys (Metals Technology, April 1944) (With discussion)

    By Carl F. Floe, Michael B. Bever

    The solubility of hydrogen in molten copper-tin alloys is of both practical and theoretical interest. From a practical standpoint, data on the equilibrium solubility as a function of temperature, pres

    Jan 1, 1944

  • AIME
    Technical Papers and Discussions - Copper and Copper-Rich Alloys - Stress-corrosion Cracking of 70-30 Brass by Amines (Metals Technology, Feb. 1944) ('With discussion)

    By A. L. Jamieson, H. Rosenthal

    The action of mercury on stressed brass to produce cracks was known before Moore, Beckinsale and Mallinson1 showed that actual season cracking did not occur spontaneously but could be induced by ammon

    Jan 1, 1944

  • AIME
    Technical Papers and Discussions - Copper and Copper-Rich Alloys - Stress-corrosion Cracking of 70-30 Brass by Amines (Metals Technology, Feb. 1944) ('With discussion)

    By H. Rosenthal, A. L. Jamieson

    The action of mercury on stressed brass to produce cracks was known before Moore, Beckinsale and Mallinson1 showed that actual season cracking did not occur spontaneously but could be induced by ammon

    Jan 1, 1944

  • AIME
    Technical Papers and Discussions - Copper and Copper-rich Alloys - Structure after Working - Deformation Lines in Cold-rolled Copper and Its Binary Alpha Solid Solution Alloys with Aluminum, Nickel and Zinc (Metals Tech., Feb. 1948, TP 2336)

    By Harold Margolin, W. R. Hibbard, R. W. Fenn, H. P. Moore

    Deformation lines, also called etch markings or strain markings, are non-effaceable lines developed in individual grains by etching a metal specimen which has been cold worked sufficiently to cause at

    Jan 1, 1949

  • AIME
    Technical Papers and Discussions - Copper and Copper-rich Alloys - Structure after Working - Deformation Lines in Cold-rolled Copper and Its Binary Alpha Solid Solution Alloys with Aluminum, Nickel and Zinc (Metals Tech., Feb. 1948, TP 2336)

    By H. P. Moore, R. W. Fenn, Harold Margolin, W. R. Hibbard

    Deformation lines, also called etch markings or strain markings, are non-effaceable lines developed in individual grains by etching a metal specimen which has been cold worked sufficiently to cause at

    Jan 1, 1949

  • AIME
    Technical Papers and Discussions - Copper and Copper-rich Alloys - Structure after Working - Preferred Orientation in Drawn and Annealed 70-30 Alpha Brass Tubes (Metals Tech., Sept. 1947, TP 2245) With discussion

    By W. R. Hibbard

    Although extensive pole figure studies have been reported by Brick1 and others2,3 showing preferred orientations in rolled and annealed 70-30 alpha brass, and by Hermann and Sachs4 in 70-30 alpha bras

    Jan 1, 1949

  • AIME
    Technical Papers and Discussions - Copper and Copper-rich Alloys - Structure after Working - Preferred Orientation in Drawn and Annealed 70-30 Alpha Brass Tubes (Metals Tech., Sept. 1947, TP 2245) With discussion

    By W. R. Hibbard

    Although extensive pole figure studies have been reported by Brick1 and others2,3 showing preferred orientations in rolled and annealed 70-30 alpha brass, and by Hermann and Sachs4 in 70-30 alpha bras

    Jan 1, 1949

  • AIME
    Technical Papers and Discussions - Copper and Copper-rich Alloys - Structure after Working - Some Observations of Lineage in Copper Crystals (Metals Tech., Sept. 1947, TP 2244) With discussion

    By W. R. Hibbard

    The term lineage was first introduced by Buergerl to denote dendritic branches, grown from a crystal nucleus during solidification from the liquid, with imper- fections in alignment of the order of

    Jan 1, 1949

  • AIME
    Technical Papers and Discussions - Copper and Copper-rich Alloys - Structure after Working - Some Observations of Lineage in Copper Crystals (Metals Tech., Sept. 1947, TP 2244) With discussion

    By W. R. Hibbard

    The term lineage was first introduced by Buergerl to denote dendritic branches, grown from a crystal nucleus during solidification from the liquid, with imper- fections in alignment of the order of

    Jan 1, 1949

  • AIME
    Technical Papers and Discussions - Copper and Copper-rich Alloys - Structure after Working - The Effect of Mechanical Deformation on Grain Growth in Alpha Brass (Metals Tech., Sept. 1947, TP 2265) With discussion

    By Y. G. Shiau, J. E. Burke

    Several attempts have been made to account for the fact that grains in a fully recrystallized metal will coarsen on annealmg. Two fundamentally different hypotheses have been advanced, with several va

    Jan 1, 1949

  • AIME
    Technical Papers and Discussions - Copper and Copper-rich Alloys - Structure after Working - The Effect of Mechanical Deformation on Grain Growth in Alpha Brass (Metals Tech., Sept. 1947, TP 2265) With discussion

    By J. E. Burke, Y. G. Shiau

    Several attempts have been made to account for the fact that grains in a fully recrystallized metal will coarsen on annealmg. Two fundamentally different hypotheses have been advanced, with several va

    Jan 1, 1949

  • AIME
    Technical Papers and Discussions - Copper and Copper-rich Alloys - Structure after Working - The Nature of Strain Markings in Alpha Brass (Metals Tech., Feb. 1948, TP 2327) With discussion

    By J. E. Burke, C. S. Barrett

    The fine lines shown in Fig I are typical of markings that ma): be detected after polishing and etching deformed specimens of alpha brass and other alloys. Although they have long been the subject

    Jan 1, 1949