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A Consideration Of Igneous Rocks And Their Segregation Or Differentiation As Related To The Occurrence Of OresBy Spurr
CONTENTS. [ ]
Jan 1, 1913
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Papers - New York Meeting – February, 1929 - Heat Treatment and Mechanical Properties of Copper-zinc and Copper-tin Alloys Containing Nickel and Silicon (With Discussion)By W.C Ellis, Earle E. Schumacher
Nonferrous alloys upon which desirable properties can be conferred by heat treatment are becoming of increasing industrial importance. The alloys of copper with a constituent which has a solubility va
Jan 1, 1929
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Papers - New York Meeting – February, 1929 - Heat Treatment and Mechanical Properties of Copper-zinc and Copper-tin Alloys Containing Nickel and Silicon (With Discussion)By Earle E. Schumacher, W. C. Ellis
Nonferrous alloys upon which desirable properties can be conferred by heat treatment are becoming of increasing industrial importance. The alloys of copper with a constituent which has a solubility va
Jan 1, 1929
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Technical Papers and Discussions - Copper and Copper-rich Alloys - Diffusion in R301 Alloy and Its Effect on the Corrosion Resistance (Metals Tech., Dec. 1945, T. P. 1940, with discussion)By L. F. Mondolfo
R301 is a clad aluminum alloy, composed of a core of a duralumin-type alloy clad with a magnesium silicide alloy. It differs from other well-known clad alloys in that the cladding and the core respond
Jan 1, 1946
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Technical Papers and Discussions - Copper and Copper-rich Alloys - Diffusion in R301 Alloy and Its Effect on the Corrosion Resistance (Metals Tech., Dec. 1945, T. P. 1940, with discussion)By L. F. Mondolfo
R301 is a clad aluminum alloy, composed of a core of a duralumin-type alloy clad with a magnesium silicide alloy. It differs from other well-known clad alloys in that the cladding and the core respond
Jan 1, 1946
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Equilibrium Relations in Aluminum-nickel Alloys of High PurityBy William Fink
NICKEL is used as an alloying element in several complex commercial aluminum alloys, among which are found some very interesting proper-ties, such as relatively high strength at elevated temperatures,
Jan 1, 1934
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Mining A Deep Limestone Deposit In OhioBy George A. Morrison
THE Columbia Chemical Division of the Pittsburgh Plate Glass Co. is at Barberton, Ohio, 35 miles south of Cleveland. For many years large tonnages of limestone have been brought to the Barberton plan
Jan 1, 1943
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Secondary Recovery and Pressure Maintenance - Recovery of Oil by Displacement with Water-Solvent MixturesBy R. J. Blackwell, J. R. Rayne, J. R. Henderson, W. M. Terry, D. C. Lindley
This paper presents the results of a laboratory investigation of the efficiency of water-solvent mixtures in recovery of oil. These mixtures may have the high displacement efficiencies characteristic
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Rock Mechanics - Inelastic Deformation of Rock Under a Hemispherical Drill BitBy J. Paone, S. Tandanand
This paper studies the behavior of rock at the initial state of crater formation resulting from stresses created under a drill bit. The purpose of this study is to determine which mechanical propertie
Jan 1, 1967
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Papers - Copper and Brass - Deoxidation of Copper with Calcium and Properties of Some Copper-calcium Alloys (With Discussion)By Earle E. Schumacher, W. C. Ellis, John F. Eckel
Copper-calcium alloys are of interest as materials for use in deoxidized conductors of high conductivity. That calcium is effective in deoxidizing and degasifying copper is well known. Brandenberg and
Jan 1, 1930
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The Grand Isle MineBy C. O. Lee, Z. W. Bartlett, R. H. Feierabend
The Grand Isle sulfur mine is located in the Gulf of Mexico, approximately seven miles off the coast of Grand Isle, Jefferson Parish, La. The deposit is on acreage covered by oil, gas, and mineral lea
Jan 6, 1960
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Mining - Change to Rotary Blasthole Drilling in Limestone Increases Footage, Cuts Time, Saves ManpowerBy D. T. Van Zandt
IN the late 1920's rotary drills began to replace the churn drills in the petroleum industry, but until the middle 1940's the churn drill was the only widely accepted means of drilling large
Jan 1, 1955
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Albany Paper - Notes on the Metallurgy of Copper of MontanaBy H. O. Hofman
PAGE I. Introductory,.......... 258 11. Condensed Account of Past and Present Plants,. .. 259 111. The Ores. Table I., Average Analyses,..... IV. Metallurgical Treatment—Roasting OF Ores,... The
Jan 1, 1904
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Institute of Metals Division - Effect of Heat Treatment in the Ferrite-Austenite Region on Notch Toughness of Low Carbon SteelsBy R. L. Rickett, W. C. Leslie, W. D. Lafferty
Notch toughness of 0.10'pct C steels, rimmed or killed, is improved by holding the steel at a temperature just above the Ae,, followed by air cooling. The improvement can be gained without appare
Jan 1, 1961
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Methods Of Evaluating Hot Malleability Of Nickel And High-Nickel Alloys - IntroductionBy L. O. Bieber, L. H. Martin
DIFFERENT MELTS OF THE same type of nickel and high-nickel alloys, while having almost identical mechanical properties at room temperature, may have widely varying hot malleability. Either the upper l
Jan 1, 1948
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Non-metallic Minerals - Preparation and Use of Industrial Special Sands (with Discussion)By W. M. Weigel
The general term "sand" applies to a multitude of similar materials consisting of fine granular mineral. As usually understood, it means the ordinary natural product used for structural purposes and m
Jan 1, 1926
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Members, Junior Members, Associates and Junior Associates Geographical List (34a839b4-c300-491f-b0b8-fe8e3adf5cfc)NORTH AMERICA Number Members Alaska 31 Canada 333 Mexico 186 Newfoundland 2 United States Alabama 60 Arizona 171 Arkansas 10 California 769 Colorado 196 Connecticut 106 Delaware 21 Dis
Jan 1, 1932
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Papers - Efficiency of the Blast-furnace Process (T. P. 943, with discussion)By J. B. Austin
In considering so complex a process as the smelting of iron in the blast furnace, there is obviously no single method of calculating efficiency that gives a complete appraisal of the performance of th
Jan 1, 1938
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Papers - Efficiency of the Blast-furnace Process (T. P. 943, with discussion)By J. B. Austin
In considering so complex a process as the smelting of iron in the blast furnace, there is obviously no single method of calculating efficiency that gives a complete appraisal of the performance of th
Jan 1, 1938