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Rapid solidification technology an engineering guide by

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Published by Technomic Pub. in Lancaster, Pa .
Written in English

Subjects:

  • Metals -- Rapid solidification procesing.

Book details:

Edition Notes

Includes bibliographical references and index.

Statementedited by T.S. Srivatsan, T.S. Sudarshan.
ContributionsSrivatsan, T. S., Sudarshan, T. S., 1955-
Classifications
LC ClassificationsTS247 .R362 1993
The Physical Object
Paginationxviii, 737 p. :
Number of Pages737
ID Numbers
Open LibraryOL1747148M
ISBN 100877629269
LC Control Number92061491

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Additional Physical Format: Online version: Rapid solidification technology. Metals Park, Ohio: American Society for Metals, © (OCoLC) Rapid Solidification Technology: An Engineering Guide 1st Edition by T.S. Srivatsan (Author) ISBN ISBN Why is ISBN important? ISBN. This bar-code number lets you verify that you're getting exactly the right version or edition of a book Cited by: Elements of Rapid Solidification - Fundamentals and Applications - is the product of many years of concentrated work in the field of rapid solidification and quasi-monograph is unique in two ways. It brings together the talent of many international scientists in an effort to focus attention on all aspects of a new scientific field and it concentrates on fundamentals and.   Rapid solidification technology 1. RAPID SOLIDIFICATION TECHNOLOGY VAC is one of the pioneers in Rapid Solidification Technology to cast thin metallic ribbons of thickness 15 µm in a single process step directly from the molten metal.

Elements of Rapid Solidification: Fundamentals and Applications is the product of many years of concentrated work in the field of rapid solidification and processing. This quasi-monograph is unique in two ways. It brings together the talent of many international scientists in an effort to focus attention on all aspects of a new scientific field and it concentrates on fundamentals and practical Price: $ "SCIENCE AND TECHNOLOGY OF '!HE UNDEROLED MELT" This title was chosen as the topical headline of the Advanced Research Workshop (ARW) from March 17 to 22 , held at the Castle of Theuern. The usual term "Rapid Solidification" is an overlapping Brand: Springer Netherlands. Rapid solidification processing results in increased strength, and fracture and fatigue resistance of alloys, with concurrent improvements in mechanical, physical and chemical properties. This volume provides a systematic examination of this technology, including metallurgical aspects, processing methods, alloy design, and applications. Rapid solidification processing results in increased strength, and fracture and fatigue resistance of alloys, with concurrent improvements in mechanical, physical and chemical properties. This text examines this technology, including metallurgical aspects, processing methods, alloy design, and applications.

  The purpose of this technical manuscript is to present an explanation of rapid solidification processing in an easily understandable manner so that the technique is widely accepted and put to commercial practice by many working in the industries of materials processing and manufacturing engineering. The comprehensive review article presents a comprehensive overview of the widely Cited by: This book represents a collection of papers presented at the NATO Advanced Research Workshop (NATO/ARW) on "Science and Technology of Rapid Solidification and Processing", held at Hotel Thayer, West Point Military Academy, New York, N. Y., during June 21 . The set of journals have been ranked according to their SJR and divided into four equal groups, four quartiles. Q1 (green) comprises the quarter of the journals with the highest values, Q2 (yellow) the second highest values, Q3 (orange) the third highest values and Q4 (red) the lowest values. Rapid solidification and microstructure evolution of deeply undercooled bulk concentrated Ni% and Co% alloys are strictly and systematically evaluated. First, thermodynamics of the undercooled melt is discussed. Consideration is provided for not only the systematic microstructure evolution within a broad undercooling range, but also the dendrite growth mechanism and the rapid Author: Xiaolong Xu, Hua Hou, Feng Liu.