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Flux Assisted Dispersion of Ceramic Phases in Molten Aluminium AlloysBy Animesh Jha, Chris Dometakis
"Without the use of a flux, only a poor dispersion of ceramic phase can be achieved. A molten-flux-assisted ceramic phase dispersion technique for producing aluminium alloy metalmatrix composites has
Jan 1, 1996
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Fluxed pellet production at Minntac: an overviewBy Raymond D. Potts
"Minntac is a taconite mining, concentrating and pelletizing operation located near the town of Mountain Iron, Minnesota, U.S.A. It is totally owned and operated by USX Corporation and represents its
Jan 1, 1991
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Fluxing Molten Converter Slags with Spent Potlining (SPL) for Metal RecoveryBy Dawei Yu, Kinnor Chattopadhyay
In the nickel industry, molten slags produced from a Pierce-Smith converter contain significant amounts of valuable metals in the forms of oxides and physically entrained matte droplets. A slag cleani
Jan 1, 2015
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Fluxing Requirements for Copper Smelting SlagSilica and limestone fluxing levels in copper smelting slags were studied. Copper concentrates with flux additions were smelted to matte (55.5 per cent Cu) and slag in a pilot scale submerged combusti
Jan 1, 1985
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Fluxo De Líquido Num Molde De Beam Blank E A Remoção De InclusõesBy Weslei Viana Gabriel
Por meio do uso de técnicas de modelamento físico e matemático, caracterizou-se o fluxo de líquido, no interior de um molde de beam blank, quando alimentado por apenas uma válvula submersa constituída
Oct 30, 2017
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Fly Ash Beneficiation By Air ClassificationBy J. G. Groppo
In 1992, 48 million tons of fly ash (not including bottom ash, boiler slag and FGD material) was produced in the United States, according to the American Coal Ash Association. Of this amount, 27.2% wa
Jan 1, 1995
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Fly Ash In Production Of Blended CementBy C. E. "Sam" Lovewell
In approaching a discussion of production of cement, I hope I won't be like the porter in the bank who was asked if he could give some details on the rediscount rate. He replied, "Boss, when I sa
Jan 1, 1974
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Fly Ash Paste Utilization for Placement as Mine and Landfill Backfill at Great River Energy's Coal Creek StationBy D. Randall Crooke, Ron R. Jorgenson
Many coal combustion products (CCPs) have historically been unsuitable for placement as mine backfill because of their physical and geochemical properties and/or regulatory status. However, innovation
Jan 1, 2001
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Fly Ash Pelletizing ? Introduction:By Donald C. Violetta
During 1963 more than 200 million tons of coal was consumed by the public utility industry. Ash residual, from the burning of this coal has caused disposal problems. In order to prevent air pollution,
Jan 1, 1966
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Fly Ash Separation Using a Novel Rotary Triboelectrostatic SeparatorBy D. Tao
A novel rotary triboelectrostatic separator has been developed and patented recently at the University of Kentucky with unique features, including a high efficiency rotary charger, charger electrifica
Jan 1, 2014
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Fly-In, Fly-Out Operations ù Strategies for Managing Employee Well-BeingBy J Sibbel, K Goh
A key issue facing mine managers in remote locations in Australia and overseas is that of managing a fly-in, fly-out (FIFO) workforce. Current Australian research (Sibbel, in prep) indicates that FIFO
Jan 1, 2006
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Flyrock Control - By Chance or DesignBy Adrian J. Moore, Alan B. Richards
Responsible blasting requires that rock throw be controlled to ensure that no danger will result to people and property. This paper describes the development and testing of empirical field calibrated
Jan 1, 2004
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Flyrock Elimination Program Part 1: Corporate InitiativeBy Scott Scovira
All flyrock incidents have the potential to result in injuries or fatalities that can result in loss of company reputation, license to operate with clients, and bear the exposure to high cost liabilit
Jan 1, 2012
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Flyrock in surface mining – Limitations of current predictive models and a better alterative through modelling the aerodynamics of flyrock trajectoryBy T. Szendrei and S. Tose
Historical approaches to the problem of flyrock based on correlation studies and regression analysis, including artificial neural networks and similar techniques, are inherently incapable of addressin
Dec 13, 2022
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Flyrock in surface mining–Part 3: Shock wave, stress wave, blasthole expansionBy T. Szendrei, S. Tose
The generally accepted view in rock blasting is that the sources of energy for the fracture and movement of rock reside in the shock wave and gas action resulting from the explosion, and yet the mecha
Oct 9, 2024
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Flyrock in surface mining–part 4. Adaptation of Gurney model to predict burden velocity, flyrock velocity, and explosive energy partitioning in benchBy T. Szendrei, S. Tose
The Gurney approach to explosive/inert material interaction was adapted to analyse the face velocity in bench blasting. The model is based on the blasthole diameter, rock and explosive density, burden
Jan 30, 2026
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Flyrock Issues In Blasting (a15d27ae-7280-48e5-8596-7f5474a80521)By T. R. Rehak
Blasting operations are an essential element in the recovery of our Nation?s mineral resources. The mining industry uses billions of pounds of explosives annually. The majority of blasting occurs in
Jan 1, 2000
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Flyrock: A Continuing Blast Safety ThreatBy Harry Verakis
Flyrock is the second leading cause of all blasting related injuries in surface coal, metal and nonmetal mining operations. It is also a primary cause of property damage, monetary losses and “near mis
Jan 1, 2011
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FMC Corporation's North Carolina Phosphate Research ProjectBy Lewis Robert M.
The importance of phosphate in feeding the people of the world has been recognized by mining companies as they continue their search for new ore deposits and ways of improving phosphate production. An
Jan 1, 1975
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FMC Paradise Peak - an updateBy C. I. Wilmot
The paper presents an update of the Paradise Peak mill after the first year of operation. Process revisions, equipment modifications and additions, and personnel requirements are discussed with a comp
Jan 1, 1987