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Technical Papers and Discussions - Copper and Copper-rich Alloys - Structure after Working - Wire Textures of Copper and Its Binary Alpha Solid Solution Alloys with Aluminum, Nickel and Zinc (Metals Tech., Feb. 1948, TP 2334) With discussionBy Ming-Kao Yen, W. R. Hibbard
Various rationalizations of preferred orientations in cold worked polycrystalline metals have been based on the operation of at least two three2 five, an indefinite number, and all,6 slip systems of
Jan 1, 1949
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Technical Papers and Discussions - Copper and Copper-Rich Alloys - Structure of Copper-zinc Alloys Oxidized at Elevated Temperatures (Metals Technology, Sept. 1943)By B. J. Nelson, F. N. Rhinos
Studies upon the rates of oxidation of copper alloys containing small quantities of the alloying elementsl,2 have shown that steady growth of the scales at predictable rates is limited to a small conc
Jan 1, 1944
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Technical Papers and Discussions - Copper and Copper-Rich Alloys - Structure of Copper-zinc Alloys Oxidized at Elevated Temperatures (Metals Technology, Sept. 1943)By F. N. Rhinos, B. J. Nelson
Studies upon the rates of oxidation of copper alloys containing small quantities of the alloying elementsl,2 have shown that steady growth of the scales at predictable rates is limited to a small conc
Jan 1, 1944
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Technical Papers and Discussions - Gases in Steel - Apparatus for the Hot-extraction Analysis for Hydrogen in Steel (Metals Tech., June 1948, T.P. 2369) (with discussion)By G.A. Moore, C. E. Sims
In previous publications of the writers4-7 it has been shown that vacuum extraction of steel can be carried as close to quantitative completion as desired provided the steel is in the austenitic state
Jan 1, 1949
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Technical Papers and Discussions - Gases in Steel - Apparatus for the Hot-extraction Analysis for Hydrogen in Steel (Metals Tech., June 1948, T.P. 2369) (with discussion)By C. E. Sims, G. A. Moore
In previous publications of the writers4-7 it has been shown that vacuum extraction of steel can be carried as close to quantitative completion as desired provided the steel is in the austenitic state
Jan 1, 1949
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Technical Papers and Discussions - Howe Lecture - Toughness and Fracture of Hardened Steels (Metals Tech., April 1946, T. P. 2020)By Marcus A. Grossmann
The Institute has established this lectureship to honor the memory of a great American metallurgist, one whose fame has continued long after his passing. As one scientist recently stated it, "All meta
Jan 1, 1947
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Technical Papers and Discussions - Howe Lecture - Toughness and Fracture of Hardened Steels (Metals Tech., April 1946, T. P. 2020)By Marcus A. Grossmann
The Institute has established this lectureship to honor the memory of a great American metallurgist, one whose fame has continued long after his passing. As one scientist recently stated it, "All meta
Jan 1, 1947
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Technical Papers and Discussions - Lithium - Laboratory Preparation of Lithium Metal by Vacuum Metallurgy (Metals Tech., June 1947, TP 2179)By A. W. Schlechten, W. J. Kroll
As this paper is written, the only method for the commercial production of lithium metal is by the fusion electrolysis of LiC1-KC1 mixtures, as first proposed by Gunkz.2 The details of the industrial
Jan 1, 1949
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Technical Papers and Discussions - Magnesium Alloys - Some Properties of Sand-cast Alloys in the ;\lagnesium-rich Corner of the Magnesium-aluminum-zinc System (Metlas Tech., June 1946, T. P. 2009, with discussion)By R. S. Busk, R. F. Marande
The magnesium-aluminum-zinc 'system contains most of the magnesium-base alloys used commercially, although in practice the ternary alloys are usually modified by the addition of a small amount
Jan 1, 1946
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Technical Papers and Discussions - Magnesium Alloys - Some Properties of Sand-cast Alloys in the ;\lagnesium-rich Corner of the Magnesium-aluminum-zinc System (Metlas Tech., June 1946, T. P. 2009, with discussion)By R. F. Marande, R. S. Busk
The magnesium-aluminum-zinc 'system contains most of the magnesium-base alloys used commercially, although in practice the ternary alloys are usually modified by the addition of a small amount
Jan 1, 1946
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Technical Papers and Discussions - Magnesium Alloys - Superheating of hlagnesium Alloys (Metals Tech., Oct. 1945, T. P. 1935, with discussion)By N. Tiner
The mechanical properties of magnesium-alloy castings are greatly improved by grain refinement, and at present considerable attention is being paid to methods of obtaining fine-grained castings. One m
Jan 1, 1946
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Technical Papers and Discussions - Magnesium Alloys - Superheating of hlagnesium Alloys (Metals Tech., Oct. 1945, T. P. 1935, with discussion)By N. Tiner
The mechanical properties of magnesium-alloy castings are greatly improved by grain refinement, and at present considerable attention is being paid to methods of obtaining fine-grained castings. One m
Jan 1, 1946
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Technical Papers and Discussions - Magnesium and Magnesium Alloys - A Process of Augmenting Cold-drawability of the Magnesium +1.5 Percent Manganese Alloy (Metals Tech., April 1947, T. P. 2149, with discussion)By Louis A. Carapella, William E. Shaw
Magnesium and its alloys have long been characterized as possessing limited capacity for mechanical forming at atmospheric temperatures prior to rupturing despite their outstanding performances in thi
Jan 1, 1947
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Technical Papers and Discussions - Magnesium and Magnesium Alloys - A Process of Augmenting Cold-drawability of the Magnesium +1.5 Percent Manganese Alloy (Metals Tech., April 1947, T. P. 2149, with discussion)By William E. Shaw, Louis A. Carapella
Magnesium and its alloys have long been characterized as possessing limited capacity for mechanical forming at atmospheric temperatures prior to rupturing despite their outstanding performances in thi
Jan 1, 1947
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Technical Papers and Discussions - Magnesium and Magnesium Alloys - Factors Involved in Heat-treating a Magnesium Alloy (Metals Tech., Sept. 1947, TP 2282) With discussionBy J. T. Lapsley, I. I. Cornet, A. E. Flanigan, R. Hultgren, J. E. Dorn
With the greatly expanding use of magnesium during the war, it appeared necessary to the War Metallurgy Committee that procedures of heat treating common magnesium casting alloys be investigated syste
Jan 1, 1949
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Technical Papers and Discussions - Magnesium and Magnesium Alloys - Low Temperature Transformation in Lithium and Lithium-magnesium Alloys (Metals Tech., April 1948, TP 2346) With discussionBy C. S. Barrett, O. R. Trautz
Previous investigations have shown that lithium is body-centered cubic from near its melting point to the temperature of liquid air.1,2,3 Nevertheless there was an incentive to search again for a tran
Jan 1, 1949
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Technical Papers and Discussions - Magnesium and Magnesium Alloys - Some Effects of Zirconium on Extrusion Properties of Magnesium-base Alloys Containing Zinc (Metals Tech., Dec. 1946, T.P. 2107, with discussion)By J. P. Doan, G. Ansel
The important literature concerning zirconium in magnesium-base alloys is predominantly contained in patent references. Sauerwald, Eisenreich, and Holubl-4 discovered the profound grain-refining influ
Jan 1, 1947
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Technical Papers and Discussions - Magnesium and Magnesium Alloys - Some Effects of Zirconium on Extrusion Properties of Magnesium-base Alloys Containing Zinc (Metals Tech., Dec. 1946, T.P. 2107, with discussion)By G. Ansel, J. P. Doan
The important literature concerning zirconium in magnesium-base alloys is predominantly contained in patent references. Sauerwald, Eisenreich, and Holubl-4 discovered the profound grain-refining influ
Jan 1, 1947
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Technical Papers and Discussions - Mechanical Properties of Steel - Effect of Alloys in Steel on Resistance to Tempering (Metals Tech., Sept. 1946, T. P. 2036, with discussion)By J. L. Lamont, W. Crafts
Studies of the effect of composition of steel on hardenability by Grossmann,' and as-quenched hardness by Field2 and by the authors, have made it possible to predict the results of quenching when
Jan 1, 1948
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Technical Papers and Discussions - Mechanical Properties of Steel - Effect of Alloys in Steel on Resistance to Tempering (Metals Tech., Sept. 1946, T. P. 2036, with discussion)By W. Crafts, J. L. Lamont
Studies of the effect of composition of steel on hardenability by Grossmann,' and as-quenched hardness by Field2 and by the authors, have made it possible to predict the results of quenching when
Jan 1, 1948