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Technical Papers and Discussions - Copper and Copper-rich Alloys - Thermodynamic Activities and Diffusion in Metallic Solid Solutions (Metals Tech., June 1947, T.P. 2168 with discussion)By C. Ernest Birchenall, Robert F. Mehl
Application of diffusion laws in the customary form to experimental studies in binary metallic solid solutions has shown the diffusion cocfficient to vary with concentration for all systems investigat
Jan 1, 1947
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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 - The Blast-furnace Process and Means of Control (Metals Tech., April 1946, T. P. 2021)By T. L. Joseph
It is a distinct privilege to participate in this meeting convened to honor the memory of Henry Marion Howe, a distinguished scientist and metallurgist. Many have added to our rapidly growing fund of
Jan 1, 1947
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Technical Papers and Discussions - Howe Lecture - The Blast-furnace Process and Means of Control (Metals Tech., April 1946, T. P. 2021)By T. L. Joseph
It is a distinct privilege to participate in this meeting convened to honor the memory of Henry Marion Howe, a distinguished scientist and metallurgist. Many have added to our rapidly growing fund of
Jan 1, 1947
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Technical Papers and Discussions - Lithium - Vacuum Process for Preparation of Lithium Metal from Spodumcne (Metals Tech., September 1947, TP 2268) (With discussion)By R. A. Stauffer
The chief ore of lithium is spodumene, a lithium-aluminum silicate containing up to 3 pct lithium. The preparation of lithium salts from spodumene is costly because of the low concentration of the met
Jan 1, 1949
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Technical Papers and Discussions - Magnesium Alloys - Properties of Cerium-containing klagnesium Alloys at Room and Elevated Temperatures (Metals Tech., Apr. 1995, with discussion)By T. E. Leontis, J. P. Murphy
During the last few years, the trend in the aircraft and automotive industries has been toward higher and higher operating engine temperatures. This has created considerable interest in the effect of
Jan 1, 1946
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Technical Papers and Discussions - Magnesium Alloys - Properties of Cerium-containing klagnesium Alloys at Room and Elevated Temperatures (Metals Tech., Apr. 1995, with discussion)By J. P. Murphy, T. E. Leontis
During the last few years, the trend in the aircraft and automotive industries has been toward higher and higher operating engine temperatures. This has created considerable interest in the effect of
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 - 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 - Solubility of Iron in Liquid Magnesium (Metals Tech., Jan. 1948, TP 2309)By D. W. Mitchell
While pure magnesium does not corrode rapidly the presence of even very small quantities of certain other metals accelerates corrosion remarkably. Because magnesium is such an electropositive metal (E
Jan 1, 1949
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Technical Papers and Discussions - Mechanical Properties of Steel - Anomalous Changes in Tensile Properties of Quenched Iron-cobalt (35 per cent Co) Alloys (Metals Tech., Aug. 1947, T. P. 2221, with discussion)By J. K. Stanley
Iron-cobalt alloys in the range of 35-50 pct cobalt are of interest in the electrical industry because they possess the highest magnetic saturation of any magnetic material known. l1,2The magnetic sat
Jan 1, 1948
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Technical Papers and Discussions - Mechanical Properties of Steel - Anomalous Changes in Tensile Properties of Quenched Iron-cobalt (35 per cent Co) Alloys (Metals Tech., Aug. 1947, T. P. 2221, with discussion)By J. K. Stanley
Iron-cobalt alloys in the range of 35-50 pct cobalt are of interest in the electrical industry because they possess the highest magnetic saturation of any magnetic material known. l1,2The magnetic sat
Jan 1, 1948
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Technical Papers and Discussions - Mechanical Properties of Steel - Boron in Certain Alloy Steels (Metals Tech., Oct. 1946, T. P. 2085, with discussion)By M. C. Udy, P. C. Rosenthal
The use of minute boron additions to steel has been given considerable attention in recent years. Comparisons made between boron-free and boron-containing heats of otherwise identical analysis have in
Jan 1, 1948
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Technical Papers and Discussions - Mechanical Properties of Steel - Boron in Certain Alloy Steels (Metals Tech., Oct. 1946, T. P. 2085, with discussion)By M. C. Udy, P. C. Rosenthal
The use of minute boron additions to steel has been given considerable attention in recent years. Comparisons made between boron-free and boron-containing heats of otherwise identical analysis have in
Jan 1, 1948
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Technical Papers and Discussions - Mechanical Properties of Steel - Calculation of Tensile Strength and Yield Point from the Chemical Composition and Cooling Rate (Metals Tech., Sept. 1946, T. P. 2067, with discussion)By I. R. Kramer, P. D. Gorsuch, D. L. Newhouse
Although many methods have been suggested for the calculation of tensile strength and yield point from chemical composition, their usefulness has been limited to a particular cooling rate or section s
Jan 1, 1948
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Technical Papers and Discussions - Mechanical Properties of Steel - Calculation of Tensile Strength and Yield Point from the Chemical Composition and Cooling Rate (Metals Tech., Sept. 1946, T. P. 2067, with discussion)By P. D. Gorsuch, I. R. Kramer, D. L. Newhouse
Although many methods have been suggested for the calculation of tensile strength and yield point from chemical composition, their usefulness has been limited to a particular cooling rate or section s
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 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