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Discussion of Session TwoBy J. Parker
As a practicing mining engineer, I face many rock mechanics' problems daily and would like to mention one or two examples to illustrate the current gap between laboratory investigations and actua
Jan 1, 1967
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Augustus Braun Kinzel - Director, A.I.M.E.By AIME
DURING the happy and peaceful years between the Treaty of Versailles and the third New Deal, metallurgy became one of the most cosmopolitan of the sciences. Any metallurgist can name some twenty or th
Jan 1, 1946
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Rate of Solidification of Rimming IngotsBy John Chipman
IN the manufacture of rimming steel-which constitutes the bulk of the world's production of mild steel-the factors that determine the quality of the product are very closely associated with the p
Jan 1, 1937
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Corrosion of Tin and Its AlloysBy C. L. Mantell
ALTHOUGH SO common and well known a metal, tin is really a less abundant element than many of those less familiar and usually ranked with the scarce or rare elements, such as cerium, yttrium, lithium,
Jan 1, 1929
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Bridgeport Paper - Discussion of Mr. Firmstone's paper on magnesia and sulphur in blast-furnace cinder (see p. 498)E. K. Landis, Philadelphia, Pa. (communication to the Secretary) : Mr. Firmstone's paper is of great interest; but he has unfortunately otnitted to state the most important point, viz., the perce
Jan 1, 1895
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Papers - New York Meeting – February, 1929 - Corrosion of Tin and Its Alloys. (With Discussion)By C. L. Mantell
Although so common and well known a metal, tin is really a less abundant element than many of those less familiar and usually ranked with the scarce or rare elements, such as cerium, yttrium, lithium,
Jan 1, 1929
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Papers - New York Meeting – February, 1929 - Corrosion of Tin and Its Alloys. (With Discussion)By C. L. Mantell
Although so common and well known a metal, tin is really a less abundant element than many of those less familiar and usually ranked with the scarce or rare elements, such as cerium, yttrium, lithium,
Jan 1, 1929
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Institute of Metals Division - Seminar on the Kinetics of Sintering. (With discussion)By A. J. Shaler
The subject of the mechanism of sintering has received much attention in the past few years, particularly since the beginning of the series of AIME seminars in powder metallurgy of which this paper in
Jan 1, 1950
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The Sintering Process And Some Recent DevelopmentsBy John E. Greenawalt
IN view of the increasing importance of sintering in the beneficiation of iron ores preparatory to their reduction in the blast furnace, the writer believes the time is opportune for an up-to-date, th
Jan 1, 1938
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Part II – February 1968 - Papers - The Silver-Rich Solid Solutions in the System Silver-Magnesium: II) Short-Range OrderBy Amitava Gangulee, Michael B. Bever
The order-disorder transition in Ag-Mg alloys in the range 17 to 26 at. pct Mg was investigated and some thermodynamic, electrical and mechanical properties of ordered Ag-Mg alloys were measured. A mo
Jan 1, 1969
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Institute of Metals Division - Rate of Self-Diffusion in Polycrystalline MagnesiumBy P. G. Shewmon, F. N. Rhines
THE determination of the self-diffusion coefficient of magnesium has been made possible recently by discovery1-1 of a radioactive isotope, Mg28 having a half-life of 21.3 hr,1 and subject to manufactu
Jan 1, 1955
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Institute of Metals Division - Grain Size Control During Ingot Solidification Part II: Columnar - Equiaxed TransitionBy W. A. Tiller
The unidirectional freezing of a semiinfinite liquid from one end has been treated by calculating the solute and temperature distributions in the liquid and solid phases with time, when the solid-liqu
Jan 1, 1962
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Magnesium Alloys - Grain Size and Properties of Sand-cast Magnesium Alloys (Metals Technology, Feb. 1945) (With discussion)By C. W. Phillips, R. S. Busk
With most cast metals the grain size may vary within wide limits, depending upon the conditions at the moment of freezing. These conditions are subject to control in magnesium-base alloys, by proper m
Jan 1, 1945
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Grain Size And Properties Of Sand-Cast Magnesium AlloysBy C. W. Phillips, R. S. Busk
WITH most cast metals the grain size may vary within wide limits, depending upon the conditions at the moment of freezing. These conditions are subject to control in magnesium-base alloys, by proper m
Jan 1, 1945
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Part VI – June 1969 - Papers - Electrochemical Determination of Zinc Content in Molten BrassBy Thomas C. Wilder, Walter E. Galin
Measurements of the electromotive force of the cell at 995°C have shown that the cell may be used to detennine the zinc content of molten Cu-Zn alloys to the nearest 0.05 wt pct. The cell is used for
Jan 1, 1970
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Development Of Grain Boundaries In Heat-Treated Alloy Steels- DiscussionJ. A. MATHEWS, * Syracuse, N. Y. (written discussion?).-The reagent described by Mr. Archer seems to be a selective reagent, useful in one particular field. Nevertheless, the field is one in which it
Jan 5, 1919
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Positions Vacant (c5a87210-bf6a-4716-ab0a-149666f9a35b)No. 275. Chemist, assayer, and precipitate smelter, also an experienced shift man; both for a cyanide plant in Peru. Salary £30 Sterling per month; two years' contract and all traveling and livin
Jan 3, 1918
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Belt Conveyor Drive SelectionBy Owen S. Roberts
During the design phases of a conveyor system, the question arises regarding the type of drive required for each application. The paper shows that the correct drive for any particular application is t
Jan 1, 1973
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Iron and Steel Division - Kinetics of Steel Dissolution in Molten Pig IronBy R. D. Pehlke, P. D. Goodell, R. W. Dunlap
The rate of dissolution of steel bars in molten pig iron has been measured experimentally in the temperature range 2300° to 2650° F. The rate of solution is shown to be a .function of bath composition
Jan 1, 1965
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The Smelting Of Copper Ores In The Electric Furnace.Discussion of the paper of Dorsey A. Lyon and Robert M. Keeney, presented at the Butte meeting, August, 1913, and printed in Bulletin No. 80, August, 1913, pp. 2117 to 2149. C. D. WOODWARD, Butte, Mo
Jan 11, 1913