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Drilling and Blasting at the Phoenix MineBy J S. Kermeen
This paper deals with drilling and blasting techniques at the Phoenix mine, near Grand F1nks, B.C., which is now operated by The Granby Mining Company Ltd. The difficulties of open-pit mining through
Jan 1, 1965
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Iron and Steel Division - The Mechanism of Iron Oxide ReductionBy B. B. L. Seth, H. U. Ross
A generalized rate equation for the reduction of iron oxide was derived from which two particular equations were obtained: one for rate controlled by the transportation of gas, the other for rate cont
Jan 1, 1965
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Recent Developments In Air ClassificationBy Fred T. Towne
There are a number of air classifiers manufactured throughout the United States and the rest of the world. The classifiers manufactured by Alpine, A. G. of Augsburg, Germany, are unique in their abili
Jan 1, 1965
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Technical Notes - Extraction of Silica from Certain Siliceous Iron Ores by Digestion in Sodium Hydroxide SolutionsBy T. D. Tiemann
The purpose of this writing is to make available additional data, not previously published, on the extraction of silica from certain iron ores of Wisconsin and Minnesota and to discuss a possible meth
Jan 1, 1965
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RI 6591 Effects Of Substituting Cobalt For Nickel On The Corrosion Resistance Of Two Types Of Stainless SteelBy Tilman M. M.
The effects of substituting cobalt for nickel on the acid corrosion resistance of two types of austenitic stainless steel were determined. Cobalt substitutions to a maximum 2.2 weight-percent were mad
Jan 1, 1965
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Institute of Metals Division - The Relation Between Flow Stress and Dislocation Structure During Recovery of High-Purity AluminumBy J. L. Lytton
The flow-stress recovery of high-purity aluminurn following a 10 pct tensile prestrain was studied in terms of a fractional flow-stress recovery parameter fr. The flow-stress recovery behavior was rel
Jan 1, 1965
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Institute of Metals Division - Internal Grain Boundary Sliding During CreepBy Nicholas J. Grant, Yoichi Ishida, Arthur W. Mullendore
An inert particle -marker technique was developed to provide a direct measurement of grain boundary sliding during creep in tile interior of aluminum specimens. Groin boundary sliding in the interior
Jan 1, 1965
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Institute of Metals Division - The Effect of Heat Treatment on the Microstructure and Superconducting Properties of a 45 Pct Nb (Cb)-55 Pct Zr AlloyBy K. M. Rolls, R. M. Rose, H. B. Shukovsky
Studies of the phase structure, critical current density, and resistive critical magnetic field of a 45 pct Nb-55 pct Zr superconducting alloy after final-size heat treatments are reported in this pap
Jan 1, 1965
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Institute of Metals Division - Discussion: The Hot Ductility of NickelBy P. Shahinian, M. R. Achter
P. Shahinian and M. R. Achter (U.S. Naval Research Laboratory)—We should like to point out another instance where concentration of impurities in grain boundaries led to an embrittlement. In this case
Jan 1, 1965
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Institute of Metals Division - Experimental Techniques for the Direct Observation of Fatigue- Induced Deformation Faulting in Thin-Foil Stainless SteelBy L. E. Murr, P. J. Smith
A study has been made by transmission electron microscopy of thin foils of 304 stainless steel fatigued external to the electron microscope in reversed bending, and of thin foils fatigued directly wit
Jan 1, 1965
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Institute of Metals Division - Electron-Microprobe Analyses of Segregation Produced During Cellular Solidification of "Pure" AluminumBy H. A. Domian, H. Biloni, G. F. Bolling
Jan 1, 1965
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Institute of Metals Division - Hot Pressing of Molybdenum PowderBy R. W. Heckel
The densification of molybdenum powder by hot pressing has been studied as a function of time (up to about 3 x 104 sec) at pressures of 5000, 15,000, and 30,000 psi in the temperature range from 3700o
Jan 1, 1965
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Industrial Minerals in NewfoundlandBy John H. McKillop
Industrial minerals production in Newfoundland in--creased in gross value by a total of 175 per cent during the ten-year period from 1954 to 1964. The Province accounts for all of ?Canada's fluor
Jan 1, 1965
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RI 6708 High-Temperature Heat Contents And Entropies Of Two Zinc Sulfides And Four Solid Solutions Of Zinc And Iron SulfidesBy L. B. Pankratz
Heat contents, measured above 298.15° K, and derived entropy increments are presented in tabular and equation form for the two crystalline forms of zinc sulfide (sphalerite and wurtzite) and for four
Jan 1, 1965
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Foreword by Jack M. Ehrhorn, PresidentJan 1, 1965
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Institute of Metals Division - The Zirconium-Hafnium-Hydrogen System at Pressures Less Than 1 Atm: Part I – A Thermochemical StudyBy J. Alfred Berger, O. M. Katz
The Zv-Hf-H ternary system was studied between 500° and 900°C at pressures less than 1 atm of hydrogen gas between 1 and 60 at. pct H. A new and unique microgravimentric apparatus was used. Cizanges o
Jan 1, 1965
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Institute of Metals Division - The Nickel-Nickel Carbide Eutectic and Its Variation with PressureBy H. M. Strong
Nickel and carbon form a metastable nickel-nickel carbide eutectic system which was ohsen)able by freezing latent-heat arvests at pressures 210 khars. The eutectic freezing temperature Is pressure had
Jan 1, 1965
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Reservoir Engineering - General - A Numerical Method for Computing the Dynamical Behavior of Fluid-Fluid Interfaces in Permeable MediaBy E. L. Dougherty, J. W. Sheldon
A numerical method for computing the dynamical behavior of fluid- fluid interfaces is described. Results of studies made to assess the accuracy and economy of the method on a computer are reported. It
Jan 1, 1965
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RI 6648 A Computer Program For Electron Probe MicroanalysisBy James D. Brown
The Bureau of Mines has written a computer program in FORTRAN to facilitate the calculation of concentrations from X-ray intensities in electron probe microanalysis. Philibert's absorption and Ca
Jan 1, 1965
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Extractive Metallurgy Division - Kinetics of the Thermal Decomposition of Cupric Sulfate and Cupric OxysulfateBy P. Marier, T. R. Ingraham
When anhydrous cupric sulfate is heated in a stream of nonreactive gas, cupric oxysulfate is formed. When this reaction is complete, the cupric oxysulfate then decomposes to cupric oxide, which is the
Jan 1, 1965