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Electroslag remelting and plasma arc melting report of the Committee on Electroslag Remelting and Plasma Arc Melting, National Materials Advisory Board, Commission on Sociotechnical Systems, National Research Council. by National Research Council. Committee on Electroslag Remelting and Plasma Arc Melting.

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Published by National Academy of Sciences in Washington .
Written in English

Subjects:

  • Electroslag process,
  • Plasma arc melting

Book details:

Classifications
LC ClassificationsTN686.5.E4 N37 1976
The Physical Object
Paginationxv, 202 p. :
Number of Pages202
ID Numbers
Open LibraryOL4883779M
ISBN 100309025052
LC Control Number76013351
OCLC/WorldCa3017810

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Committee on Electroslag Remelting and Plasma Arc Melting. Electroslag remelting and plasma arc melting: report of the Committee on Electroslag Remelting and Plasma Arc Melting, National Materials Advisory Board, Commission on Sociotechnical Systems, National Research Council National Academy of Sciences Washington Australian/Harvard. These include the ESR (electroslag re­ melting) process, the ESC (electroslag casting) process, skull remelting based on electron-beam processes, plasma arc processes, and electric arc processes. Along with the ESR process for ingot production is the commercial plasma arc remelt process for specialty steels, particularly where high nitrogen. The most common remelting techniques for nickel alloys are vacuum arc remelting (VAR) and electroslag remelting (ESR). Both techniques are consumable electrode melting processes in which the heat is generated by an electric arc between the ingot electrode cast from the primary melting process and some type of base plate located at the bottom of. These include the ESR (electroslag re­ melting) process, the ESC (electroslag casting) process, skull remelting based on electron-beam processes, plasma arc processes, and electric arc processes. Along with the ESR process for ingot production is the commercial plasma arc remelt process for specialty steels, particularly where high nitrogen Format: Paperback.

Dr. Boris Medovar, a member of the Soviet Academy of Sciences, is a promi­ nent member of the E.O. Paton Electric Welding Institute in Kiev, one of the pre-eminent institutes of the USSR. The Paton Institute, internationally famous for its entrepreneurial efforts in electrical welding.   These include the ESR (electroslag re melting) process, the ESC (electroslag casting) process, skull remelting based on electron-beam processes, plasma arc processes, and electric arc processes. Along with the ESR process for ingot production is the commercial plasma arc remelt process for specialty steels, particularly where high nitrogen. Designs and manufactures furnace systems for a variety of metallurgical processes, including: vacuum arc remelting, vacuum induction melting, electroslag refining, electroslag hot-topping, electron beam melting, plasma melting, induction skull melting and vacuum . The method combines the possibilities of treatment of liquid metal with the electric arc in the gas atmosphere and the liquid slag and the advantages of plasma-arc and electro slag remelting. The technological possibilities, design features of melting systems and results of experimental and industrial melting trials of steels and alloys are.

Fragmentation of titanium sponge to the pieces of small size [5] and using of melting methods that increase the time of treatment in liquid state (triple vacuum-arc, electron-beam and plasma remelting) improve the situation, but can not guarantee the complete removal of inclusions. Ultrasonic inspection is used as a final step to identify and. Vacuum arc remelting and electroslag remelting processes are used to produce large (five tonne) ingots of nickel-based superalloys, titanium alloys, and other high-value-added alloys. Improved fracture toughness and fatigue characteristics of electroslag welds [microform] Electroslag remelting and plasma arc melting: report of the Committee on Electroslag Remelting and Plas The influence of forge reduction ratio on the tensile and impact properties of a low-alloy ESR steel / G. Application to ingot castings and spray forming. Continuous casting --Direct chill casting --Vacuum arc remelting and electroslag remelting --Electron beam melting and plasma arc melting --Spray forming. Series Title: Materials engineering (Marcel Dekker, Inc.), Responsibility: edited by Kuang-O (Oscar) Yu. More information: Table of contents.