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Electromagnetic testing of wire ropes — New developmentsBy K. Leung, J. E. Udd, L. B. Geller, F. Kitzinger
"Sixteen miners died tragically at the Paymaster gold mine in Timmins, Ontario, in February 1945 when a badly corroded hoist rope broke. The investigation of the Royal Commission that followed arrived
Jan 1, 2003
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Electromagnetic Theory Of Techniques For The Non-Destructive Testing Of Wire RopesBy David A. Hill, James R. Wait
This report contains a summary of analytical research on electromagnetic methods of nondestructive testing of cylindrical conductors. The principal objective is to provide theoretical insight to the o
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Electromagnetic Through-The-Earth Mine Communications - IntroductionPart Two of this report is based upon six working memoranda prepared during the first half of 1972 at an early stage in our work for the Bureau of Mines. This work presents preliminary performance est
Jan 1, 1974
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Electromagnetic Transmission And Detection At Deep Depths - IntroductionBy D. B. Starkey
Investigation into the expressions of the field produced by a loop over a conducting half space or in an infinite conducting half space are well documented. Reasonably complex descriptions of the effe
Jan 1, 1973
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Electromagnetic Wire-Rope Testing --- Disparate LMA Results, an Ongoing ProblemBy Marcel M. Djivre
Electromagnetic wire rope testing is the only practical non-destructive method to evaluate the current condition of wire ropes in general, and in the mining industry in particular. The method has been
May 1, 2004
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Electrometallurgical Industries As Possible Consumers Of Electric Power PowerBy D. A. Lyon
Discussion of the paper of DORSEY A. LYON and ROBERT M. KEENEY, presented at the San Francisco meeting, September, 1915, and printed in Bulletin No. 104, August, 1915, pp. 1707 to 1730. LAWRENCE ADDI
Jan 12, 1915
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Electrometallurgical Relationships In Electric Smelting FurnacesBy J. Persson, N. G. Bliss
Electric furnaces used for smelting and those used for scrap melting exhibit different performance profiles in terms of electrical characteristics. However, the underlying principles are the same f
Jan 1, 2004
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Electrometallurgy - Now and in the FutureBy Tim Robinson, Georges Houlachi, Michael Moats, Marco Ginatta, Michael Free, David Creber, Neale Neelameggham, George Holywell
"Electrolytic processing is used commercially to recover and/or refine metals such as aluminum, copper, magnesium, nickel, and zinc. There are also new and exciting opportunities to utilize electromet
Jan 1, 2012
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Electrometallurgy In Extraction Of Rare Earth Metals And AlloysBy C. K. Gupta
Electrometallurgical processes have a definite place in the extraction technology of rare earth metals and alloys. Some of the advantages of the molten-salt electrometallurgical processes include fast
Jan 1, 1992
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Electrometallurgy. Past, Present, and FutureBy Fathi Habashi
"Davy, Faraday, and Bunsen laid the foundation of electrometallurgy which had a· great impact on other areas of metallurgy. Electrometallurgy is presently dominated by the production of aluminum, the
Jan 1, 1997
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Electron beam freeforming using brazing paste and solid wire as filler metalBy M. Jahazi, M. Brochu
This paper describes the advantages/disadvantages of electron beam freeforming using two different types of filler metal: (1) brazing paste and (2) solid wire. Sound buildups were obtained from both f
Jan 1, 2004
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Electron Beam Processes for Advanced Engineered Materials and the Application of Digital ManufacturingBy R. Edinger
Aerospace and space products depend, probably more than any other products in industry, on advanced materials. While there are many ways of producing aerospace parts, in many cases the process does no
Jan 1, 2006
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Electron Beam Processing of Waste TreatmentBy Vadim J. Jabotinski
Electron beam processing is potentially very attractive for the high temperature treatment of hazardous materials. The very high power efficiency of the electron beam energy source (80- 90% of the pow
Jan 1, 2000
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Electron Beam Skull Melting And Refining Of Secondary CopperBy Yuri Bychkov
The Electron Beam Melting is the most efficient technology for metals and alloys refining. For ,secondary metals processing the Electron Beam Skull Melting (EBSM) with the electromagnetic stirnng (EMS
Jan 1, 1995
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Electron Beam Techniques For The Analysis Of Fine Particles In The Minerals IndustryBy N. Rowlands
The importance of mineralogical and chemical characterization of fine particles in the fields of mineral and metallurgical processing is discussed. Emphasis is placed on electron beam analysis techniq
Jan 1, 1985
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Electron Diffraction Effects From Polished Zinc SurfacesBy M. L. Fuller
DURING the last several years many papers have appeared dealing with the structure of highly polished metal surfaces The awakening of interest in this subject is due to the applicability of the electr
Jan 1, 1938
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Electron Diffraction Effects from Polished Zinc Surfaces (04ffb1f7-cb34-4e89-8dba-f82995be6c81)By M. L. Fuller
DURING the last several years many papers have appeared dealing with the structure of highly polished metal surfaces. The awakening of interest in this subject is due to the applicability of the elect
Jan 1, 1938
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Electron Diffraction Study Of Oxide Films Formed On Molybdenum, Tungsten, And Alloys Of Molybdenum, Tungsten And NickelBy E. A. Gulbransen, J. W. Hickman
THE physical and chemical structure of the oxide films formed on metals and alloys is of interest in our understanding of their protective properties. According to Pilling and Bedworth,1 if the specif
Jan 1, 1947
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Electron Field Emission from Nitrogen-Doped Amorphous Carobn Thin Films Prepared by Arc Ion PlatingBy Osamu Takai, Yoshiki Sato, Nobuhiro Tajima, Hiroyuki Sugimura
"Amorphous carbon thin films doped with nitrogen ( a-C:N) have been synthesized by means of shielded arc ion plating (SAIP). Their electron field emission properties, that is, threshold field strength
Jan 1, 2000
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Electron Metallographic Methods And Some Results For Magnesium AlloysBy R. E. McNulty, R. D. Heidenreich, C. H. Gerould
TIIE electron microscope techniques and their application to magnesium alloys that are to be discussed in this paper are the result of research at The Dow Chemical Co. over the past three years. The v
Jan 1, 1946