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Aluminum - Alumina from Clay by the Lime-sinter Method (Metals Technology, Aug. 1944.) (With discussion)By F. R. Archibald, F. C. Jackson
The. prospect of winning aluvinum from clay was recorded almost a century ago at a time when the metal was no more than a curiosity.$ As the industry developed, and it has probably developed faster th
Jan 1, 1944
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Aluminum - The Ammonium Sulphate Process for Production of Alumina from Western Clays.By A. T. Sweet, C. E. Plummer, H. W. St. Clair, S. F. Ravitz
The ammonium sulphate process for recovering alumina from clays was proposed by Rinman, Buchner, and others many years ago, and more recently various modifications have been investigated both here ari
Jan 1, 1944
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Aluminum ? How to Utilize Surplus Capacity Is Postwar ProblemBy R. L. Sebastian
ALUMINUM'S war history is the record of a successful race to expand facilities fast enough to meet the multiple increases in military requirements, principally for aircraft. From the beginning of
Jan 1, 1946
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Aluminum Alloy 7050 T7451 Thin Wall High-Speed Machining Parts StudyBy V. Songmene, A. Tahan, J. P. Michaud
The machining of thin wall parts, often used in the aeronautical industry still creates a number of problems, including panel deformation. Quality and productivity are often affected. This study seeks
Jan 1, 2006
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Aluminum and Aluminum Alloys - Effect of a Dispersed Phase on Grain Growth in Al-Mn Alloys (Metals Tech., Sept. 1948, TP 2475)By P. R. Sperry, M. L. Holzworth, P. A. Beck
The basic work of Z. Jeffries 1,2,3 has long ago established the main features of grain growth in the presence of a dispersed second phase. Working with sintered specimens of initially fine grained tu
Jan 1, 1949
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Aluminum and Aluminum Alloys - Hydrogen in Aluminum (Metals Tech., Dec. 1948, TP 2484)By Y. Dardel
Since the first determination of Dumas1 in 1880, many authors have tried to measure the solubility of hydrogen in solid aluminum, or at least the amount of dissolved gas in it. However, the interpreta
Jan 1, 1949
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Aluminum and Its ApplicationsBy James W. Cameron
DESPITE the fact that, after oxygen and silicon, aluminum is the most abundant and widely distributed element in the earth's crust, it is, commercially, a modern metal. Attempts were made by Sir
Jan 1, 1939
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Aluminum And MagnesiumBy John D. Sullivan
MAJOR technical advances seldom occur in a single year, and this is especially true with aluminum and magnesium where marked improvements in metallurgical processes and products took place during the
Jan 1, 1948
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Aluminum and Magnesium ? Technology Goes Ahead Even With Curtailed ProductionBy John D. Sullivan
ALUMINUM and magnesium plants in the United States underwent enormous wartime expansion which made many wonder if ghost plants would result when industry swung back to a peacetime basis. Production ca
Jan 1, 1947
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Aluminum and Magnesium ? Wartime Production Had to be Cut Down But Technical Skill Acquired Likely to Have Big Postwar UtilityBy George C. Heikes
ALTHOUGH the application of light metals in war materiel increased during the year, based on the number of uses, the trend in aluminum and magnesium production in 1944 was characterized by a sharp dec
Jan 1, 1945
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Aluminum Castings of High StrengthBy Robert S. Archer
THE proper material of construction for a given purpose is that material which meets the requirements satisfactorily at the lowest ultirnatc cost. It is consistent with this principle that most alumin
Jan 1, 1927
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Aluminum Chloride Restoration Of In Situ Leached Uranium OresBy David C. Grant
During in situ uranium mining using ammonium bicarbonate lixiviant, the ammonium exchanges with cations on the ore's clay. Mter mining is complete, the ammonium may desorb into post-leach ground
Jan 1, 1982
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Aluminum Extraction Via Batch Recirculation Electrolysis In Ionic LiquidsBy Mingming Zhang
This paper describes the aluminum electrowinning in a batch recirculation cell system using 1-hexyl-3-methylimidazolium chloride and aluminum chloride (ionic liquids) as electrolyte at low temperature
Jan 1, 2006
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Aluminum from Cans to Cars: Recycling the Future / Opportunities and ChallengesBy G. M. Scamans
In the past ten years there has been considerable penetration of aluminum automotive body sheet (ABS) into automotive structures. The exponential increase in demand is resulting in major investments i
Jan 1, 2015
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Aluminum from Cans to Cars: Recycling the Future / Opportunities and ChallengesBy G. M. Scamans
In the past ten years there has been considerable penetration of aluminum automotive body sheet (ABS) into automotive structures. The exponential increase in demand is resulting in major investments i
Jan 1, 2015
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Aluminum from Domestic OresABOUT 2 lb. of alumina (aluminum oxide) of high purity is required to produce a pound of metallic aluminum. Projected production of metallic aluminum in the United States is now seven to ten times the
Jan 1, 1942
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Aluminum MetallurgyBy PAUL P. ZElGLER
Rapid growth of the aluminum industry continued through 1948 with an acute shortage of the metal in all forms marking the year. Estimates based on shipments made during the first nine months indicate
Jan 1, 1949
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Aluminum Oxide Produced by an Oxy-Chlorination ProcessBy Fabiola Alvarez, Ana E. Bote, Daniel Pasquevich
"The oxidation of aluminum and its alloys was extensively studied for improving the corrosion resistance in structural materials having high specific strengths. But this reaction involves the formatio
Jan 1, 2000
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Aluminum ProductionBy Philip D. Wilson
AS thin most important and vital component of an airplane aluminum hay rapidly become the heart and tome- of the war program. Its production ham increased amt will continue to increase, in comparison
Jan 1, 1943
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Aluminum Protective Coatings - Fatigue and Bond Strength Properties with Respect to Surface Preparation Techniques: Laser Ablation, Shot Peening and Grit BlastingBy B. Arsenault
Aluminum coatings can provide galvanic cathodic protection for several metals and alloys, In order to be a suitable protective solution on structural components, the mechanical integrity of the compon
Jan 1, 2005