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Technical Papers and Discussions - Mercury - Concurrent Firing at the Sulphur Bank and Reed Quicksilver Plants (Metals Tech., December 1945, TP 1889)
By W. Bradley, R. G. Hall
This paper will attempt to show how a metallurgical problem at one California quicksilver mine was solved, and how the solution was applied successfully at another mine. The pronouns "we" and "our,
Jan 1, 1949
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Technical Papers and Discussions - Metallographic Methods - A New Method for Making Rapid and Accurate Estimates of Grain Size (Metals Tech., July 1947, T. P. 2160)
By F. C. Hull
The grain size of a metal or alloy is one of the most important factors determining its properties. In steels, for example, grain size affects hardenability, toughness and machinability; in brasses, g
Jan 1, 1948
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Technical Papers and Discussions - Metallographic Methods - A New Method for Making Rapid and Accurate Estimates of Grain Size (Metals Tech., July 1947, T. P. 2160)
By F. C. Hull
The grain size of a metal or alloy is one of the most important factors determining its properties. In steels, for example, grain size affects hardenability, toughness and machinability; in brasses, g
Jan 1, 1948
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Technical Papers and Discussions - Metallographic Methods - Quantitative Metallography by Point-counting and Lineal Analysis (Metals Tech., Aug. 1947, T. P. 2215, with discussion)
By M. Cohen, R. T. Howard
It has long been realized among metallurgists that a fast, reliable method for the quantitative determination of the percentage of microconstituents in an alloy would be of great benefit in studies of
Jan 1, 1948
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Technical Papers and Discussions - Metallographic Methods - Quantitative Metallography by Point-counting and Lineal Analysis (Metals Tech., Aug. 1947, T. P. 2215, with discussion)
By M. Cohen, R. T. Howard
It has long been realized among metallurgists that a fast, reliable method for the quantitative determination of the percentage of microconstituents in an alloy would be of great benefit in studies of
Jan 1, 1948
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Technical Papers and Discussions - Metallographic Methods - The Factorial Experiment in Engineering Research (Metals Tech., June 1947, T. P. 2161)
By M. K. Barnett
Engineering research consists, broadly speaking, in the investigation of the effect of the variations in a number of factors on some property of a product or characteristic of a process. The unambiguo
Jan 1, 1948
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Technical Papers and Discussions - Metallographic Methods - The Factorial Experiment in Engineering Research (Metals Tech., June 1947, T. P. 2161)
By M. K. Barnett
Engineering research consists, broadly speaking, in the investigation of the effect of the variations in a number of factors on some property of a product or characteristic of a process. The unambiguo
Jan 1, 1948
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Technical Papers and Discussions - Microstructure; Diffusion; Atmospheres - Austenite Grain Size in Cast Steels (Metals Tech., June 1947, T. P. 2170, with discussion)
By M. F. Hawkes
Austenite grain size has long been recognized by metallurgists as an important property of steels because of its influence on toughness, hardenability, ma-chinability and creep strength. Much research
Jan 1, 1948
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Technical Papers and Discussions - Microstructure; Diffusion; Atmospheres - Austenite Grain Size in Cast Steels (Metals Tech., June 1947, T. P. 2170, with discussion)
By M. F. Hawkes
Austenite grain size has long been recognized by metallurgists as an important property of steels because of its influence on toughness, hardenability, ma-chinability and creep strength. Much research
Jan 1, 1948
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Technical Papers and Discussions - Microstructure; Diffusion; Atmospheres - Controlled Atmospheres from City Gas for the Heat-treatment of Steels (Metals Tech., Jan. 1947, T. P. 2121, with discussion)
By Ivor Jenkins
Processes employing 'controlled at-mospheres in the heat-treatment of metals and alloys are now well established on an industrial scale, and the general principles involved and the advantages to
Jan 1, 1948
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Technical Papers and Discussions - Microstructure; Diffusion; Atmospheres - Controlled Atmospheres from City Gas for the Heat-treatment of Steels (Metals Tech., Jan. 1947, T. P. 2121, with discussion)
By Ivor Jenkins
Processes employing 'controlled at-mospheres in the heat-treatment of metals and alloys are now well established on an industrial scale, and the general principles involved and the advantages to
Jan 1, 1948
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Technical Papers and Discussions - Microstructure; Diffusion; Atmospheres - Hot Deformation Structures, Veining and Red-shortness Cracks in Iron and Steel (Metals Tech., Dec. 1946, T. P. 2106)
By A. Hultgren, B. Herrlander
The original aim of the present investigation was to study the mechanism of cracking on hot-deforming red-short steels. During the microscopical examination of hot-deformed soft steels attention was d
Jan 1, 1948
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Technical Papers and Discussions - Microstructure; Diffusion; Atmospheres - Hot Deformation Structures, Veining and Red-shortness Cracks in Iron and Steel (Metals Tech., Dec. 1946, T. P. 2106)
By B. Herrlander, A. Hultgren
The original aim of the present investigation was to study the mechanism of cracking on hot-deforming red-short steels. During the microscopical examination of hot-deformed soft steels attention was d
Jan 1, 1948
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Technical Papers and Discussions - Microstructure; Diffusion; Atmospheres - The Diffusion Rates for Carbon in Austenite (Metals Tech., Aug. 1947, T.P. 2216, with discussion)
By F. E. Harris
It has been said that carbon is "ubiquitous" with reference to iron alloys. Certainly at temperatures where carbon and iron form the solid solution, austenite, it may be readily added to, or removed f
Jan 1, 1948
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Technical Papers and Discussions - Microstructure; Diffusion; Atmospheres - The Diffusion Rates for Carbon in Austenite (Metals Tech., Aug. 1947, T.P. 2216, with discussion)
By F. E. Harris
It has been said that carbon is "ubiquitous" with reference to iron alloys. Certainly at temperatures where carbon and iron form the solid solution, austenite, it may be readily added to, or removed f
Jan 1, 1948
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Technical Papers and Discussions - Microstructure; Diffusion; Atmospheres - The Effect of Cobalt on the Rate of Nucleation and the Rate of Growth of Pearlite (Metals Tech., Aug. 1947, T. P. 2211)
By M. F. Hawkes, R. F. Mehl
The rate of isothermal transformation of austenite to pearlite depends upon the rate of nucleation, N, and the rate of growth, G, of pearlite in austenite. Values of N are given in terms of the number
Jan 1, 1948
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Technical Papers and Discussions - Microstructure; Diffusion; Atmospheres - The Effect of Cobalt on the Rate of Nucleation and the Rate of Growth of Pearlite (Metals Tech., Aug. 1947, T. P. 2211)
By M. F. Hawkes, R. F. Mehl
The rate of isothermal transformation of austenite to pearlite depends upon the rate of nucleation, N, and the rate of growth, G, of pearlite in austenite. Values of N are given in terms of the number
Jan 1, 1948
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Technical Papers and Discussions - Microstructure; Diffusion; Atmospheres - Transformation of Austenite in an Aluminum-chromium-molybdenum Steel (Metals Tech., Dec. 1946, T.P. 2109, with discussion)
By K. A. Grange, W. S. Holt, E. T. Tkac
Quantitative knowledge of the time clement involved in austenite transformation in a particular steel provides a sound basis for understanding and planning heat-treatment. Such knowledge is convenient
Jan 1, 1948
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Technical Papers and Discussions - Microstructure; Diffusion; Atmospheres - Transformation of Austenite in an Aluminum-chromium-molybdenum Steel (Metals Tech., Dec. 1946, T.P. 2109, with discussion)
By W. S. Holt, K. A. Grange, E. T. Tkac
Quantitative knowledge of the time clement involved in austenite transformation in a particular steel provides a sound basis for understanding and planning heat-treatment. Such knowledge is convenient
Jan 1, 1948
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Technical Papers and Discussions - Miscellaneous Alloys - Liquidus Determinations in Zinc-rich Alloys (Zn-Fe; Zn-Cu; Zn-Mn). (Metals Technology, June 1944) (With discussion)
By Gerald Edmunds
The liquidus line on the phase diagram for temperature versus composition of a binary alloy system, representing the boundary between the homogeneous melt and the heterogeneous melt plus solid, beside
Jan 1, 1944