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3 edition of Recent advances in heat transfer and micro-structure modelling for metal processing found in the catalog.

Recent advances in heat transfer and micro-structure modelling for metal processing

Recent advances in heat transfer and micro-structure modelling for metal processing

presented at the 1995 ASME International Mechanical Engineering Congress and Exposition, November 12-17, 1995, San Francisco, California

by

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Published by American Society of Mechanical Engineers in New York .
Written in English

    Subjects:
  • Metal-work -- Mathematical models -- Congresses.,
  • Heat -- Transmission -- Mathematical models -- Congresses,
  • Metallurgy -- Mathematical models -- Congresses.

  • Edition Notes

    Includes bibliographical references and index.

    Statementsponsored by the Materials Division, ASME, the Manufacturing Engineering Division, ASME, the Heat Transfer Division, ASME ; edited by Remn-Min Guo, James J.M. Too.
    SeriesMD ;, vol. 67, MD (Series) ;, v. 67.
    ContributionsGuo, Remn-Min., Too, James J. M., American Society of Mechanical Engineers. Materials Division., American Society of Mechanical Engineers. Manufacturing Engineering Division., American Society of Mechanical Engineers. Heat Transfer Division., International Mechanical Engineering Congress and Exposition (1995 : San Francisco, Calif.)
    Classifications
    LC ClassificationsTS200 .R38 1995
    The Physical Object
    Paginationvi, 255 p. :
    Number of Pages255
    ID Numbers
    Open LibraryOL824796M
    ISBN 100791817490
    LC Control Number95081253
    OCLC/WorldCa33984583

    A metal foam is a cellular structure consisting of a solid metal (frequently aluminium) with gas-filled pores comprising a large portion of the volume. The pores can be sealed (closed-cell foam) or interconnected (open-cell foam).The defining characteristic of metal foams is a high porosity: typically only 5–25% of the volume is the base strength of the material is due to the. M E Conductive Heat Transfer (3) Analysis of steady-state and transient heat conduction in single- and multidimensional systems by mathematical, graphical, numerical, and analogical methods. Prerequisite: graduate standing in mechanical engineering or permission of instructor.   In this model the plastic powder was treated as a static layer in contact with the mold and heat transfer from the mold to the powder was analyzed much like heat transfer in a packed particle bed. Nugent (5) and Crawford and Nugent (6) developed the ROTOSIM program, which examines the biaxial motion of a hollow mold containing a powder mass. Friction stir welding (FSW) is a solid-state joining process that uses a non-consumable tool to join two facing workpieces without melting the workpiece material. Heat is generated by friction between the rotating tool and the workpiece material, which leads to a .


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Recent advances in heat transfer and micro-structure modelling for metal processing Download PDF EPUB FB2

Recent advances in heat transfer and micro-structure modelling for metal processing: presented at the ASME International Mechanical Engineering Congress and Exposition, November, San Francisco, California.

: Advances in Heat Transfer: Transport Phenomena in Materials Processing (Advances in Heat Transfer, 28) (): Dimos Poulikakos, James P.

A companion disc provides the files so models can be run (using COMSOL or other software) in order to observe real-world behavior of the applications. Historical background information is provided to show the progression of heat transfer science and mathematical modeling from the earliest developments to the most recent advances in : Layla S.

Mayboudi. Significant progress has been made in modelling of metal machining processes for predicting major fundamental variables such as stresses, strains, strain-rates, temperatures, etc. However, the use of such predictive models is limited due to the reasons listed in Section 6.

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Based on the experimental data and dynamic materials model, the processing maps at strain of and were generated to demonstrate the hot workability of the alloy. By application of heat transfer theory, it is possible to estimate the thickness of the thermal boundary layer.

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