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Technical Papers and Notes - Institute of Metals Division - On the Use of Furnaces in the Measurement of the Rate of Oxidation of Platinum and other Metals Forming Volatile OxidesBy G. C. Fryburg, H. M. Murphy
ThE rates of oxidation of metals are usually obtained by heating the metal specimens in furnaces. Such a procedure is satisfactory for most metals. However, there are several metals that oxidize ac
Jan 1, 1959
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The Creep of MetalsBy D. Hanson
Fox most of their practical applications metals are required to with-stand stresses of appreciable magnitude: indeed, it is because they possess the quality of resisting stress without becoming perman
Jan 1, 1939
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Slag ControlTHE slag performs two useful functions. in open-hearth steel-making. First, it is the means of disposal of all the impurities, save carbon, which are removed from the charge materials in refining the
Jan 1, 1951
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The Effect of Lead and Tin with Oxygen on the Conductivity and Ductility of CopperBy Norman Pilling
The effects of lead and tin up to maximum contents of about 0.1 per cent. each, in the presence of oxygen between 0.04 and 0.30 per cent., have been studied. Tin is retained efficiently in the oxidize
Jan 2, 1926
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Recovery of Smelter Dust and Oxide at a Secondary Metals PlantBy William Romanoff
IN AN ARTICLE on "Recovering Smelter Dust and Oxide," published in the Engineering and Mining Journal (Vol. 131, No. 2), the authors briefly described some dust-recovery equipment and its operation at
Jan 1, 1933
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Papers - Metallography - Precipitation and Reversion of Graphite in Low-carbon Low-alloy Steel in the Temperature Range 900°F to 1300°F (Metals Technology, June 1944) (With discussion)By G. V. Smith, C. O. Tarr, R. F. Miller
Metallurgists have long recognized that the Fe3C type of carbide is not a stable phase in steel and that, given sufficient time, it will decompose with formation of graphite, at least at temperatures
Jan 1, 1944
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Papers - Metallography - Precipitation and Reversion of Graphite in Low-carbon Low-alloy Steel in the Temperature Range 900°F to 1300°F (Metals Technology, June 1944) (With discussion)By C. O. Tarr, G. V. Smith, R. F. Miller
Metallurgists have long recognized that the Fe3C type of carbide is not a stable phase in steel and that, given sufficient time, it will decompose with formation of graphite, at least at temperatures
Jan 1, 1944
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Experimental Data Obtained On Charpy Impact MachineBy F. C. Langenberg
IT is the purpose of this paper to present a limited amount of experimental data obtained on the Charpy impact machine. Several concrete examples will be given showing the relation existing between th
Jan 8, 1919
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Combustion In Cement-Burning.By Byron E. Eldred
(Pittsburg Meeting. March, 1010.) GENERALLY speaking, the practical study of combustion has been made mainly from the stand-point of the steam engineer. This. narrow view-point has left open a large
Jun 1, 1910
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Reservoir Engineering - General - Waterflooding a Highly Stratified ReservoirBy G. E. Warner
This paper presents a review and analysis of a highly stratified Burbank sand waterflooding project in Osage County, Okla. Permeability values in this reservoir range from less than 0.1 md to nearly 3
Jan 1, 1969
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Method Of Unloading Ores And Coarse-Crushing Practice At Magna Plant Of Utah Copper Co.By B. E. Mix
THE present methods of unloading ore and coarse-crushing at the Magna plant of the Utah Copper Co. are the developments of the past five years. Hand dumping and breaking have given way to the rotary c
Jan 8, 1925
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Precipitation And Reversion Of Graphite In Low-Carbon Low-Alloy Steel In The Temperature Range 900° To 1300°F.By C. O. Tarr, G. V. Smith, R. F. Miller
METALLURGISTS have long recognized that the Fe3C type of carbide is not a stable phase in steel and that, given sufficient time, it will decompose with formation of graphite, at least at temperatures
Jan 1, 1944
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New York Paper - The No. 2 Unit of the Mill of the Bunker Hill & Sullivan Mining & Concentrating Co.By R. S. Handy
The No. 2 unit of the West Mill of the Bunker Hill & Sullivan Mining & Concentrating Co., which went into commission Apr. 17, 1912, is structurally a twin of the No. 1 unit, which was started Nov. 9,
Jan 1, 1913
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New Industrial Motion Pictures ReleasedBy AIME AIME
AMONG the industrial motion pic¬tures released in the last year of possible interest to people in the mining industry are the following: "A New World Through Chemistry," made by the public relations
Jan 1, 1941
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Metallurgy of Copper ? Production Still the Problem, With Metallurgical Innovations FewBy Joseph Newton
MUCH the same story can be told about the copper industry for the year 1944 as for the three preceding years. Operators report few or no technical changes at their plants and the main endeavor has bee
Jan 1, 1945
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Minerals Beneficiation - Comparative Results with Galena and Ferrosilicon at MascotBy J. H. Polhems, R. B. Brackin, D. B. Grove
THE heavy media separation process plays an outstanding role in the concentration of 4000 tons of zinc ore per day at the Mascot mill of the American Zinc Co. of Tennessee. Of the total tonnage, 72 pc
Jan 1, 1952
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Drilling and Producing – Equipment, Methods, and Materials - A New Tool for Perforating Casing below TubingBy Blake M. Caldwell, Harrold D. Owen
The continued use of permanent-type, we11 completion Iras pointed LIP the need for more powerful through-tubing perforating equipment. A new expendable shaped charge perforator has been developed in w
Jan 1, 1955
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The Herculaneum Smelter - Sintering, Blast-Furnace Smelting, and Refining Produce Chemical and Corroding Grades of LeadBy W. T. lsbell
HERCULANEUM, MO., about thirty miles south of St. Louis on the Mississippi River, is the site of the lead smelter of the St. Joseph Lead Co. The lead concentrates come by rail from the Flat River dist
Jan 1, 1947
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Lead in the DepressionBy Clinton H. Crane
IN October, 1925, J. R. Finlay delivered an address entitled, "The Future Price of Lead." Lead was then selling at 8.85c. and Mr. Finlay and most of the rest of us were concerned about the shortage. N
Jan 1, 1932
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Mechanical Roof Pulling Technique for Evaluating the Effectiveness of Roof Bolting Systems (0cf2f4cc-040f-46e8-9445-670cff7f9e3f)By Chi-shing Wang
Recently the U.S. Bureau of Mines has undertaken a research project to develop the mechanical roof pulling technique as a method for evaluating the effectiveness and the comparative advantages and dis
Jan 1, 1976