• Login
    View Item 
    •   DSpace Home
    • Journal Articles
    • School of Materials Engineering (Articles)
    • View Item
    •   DSpace Home
    • Journal Articles
    • School of Materials Engineering (Articles)
    • View Item
    JavaScript is disabled for your browser. Some features of this site may not work without it.

    The outcome of sintering parameters study toward the thermal properties of CuSiC composite

    No Thumbnail [100%x80]
    View/Open
    The outcome of sintering parameters study toward the thermal properties of CuSiC composite.pdf (131.7Kb)
    Date
    2014
    Author
    Mohabattul Zaman, S NS Bukhari, Prof. Madya Ir.
    M.S.J. Hashmi
    Dermot, Brabazon
    Metadata
    Show full item record
    Abstract
    Miniaturisation of electronic chips which have increasing functionality within the same package size has induced significant increases in requirements for extraction of heat from the integrated circuit (IC). Packaging materials therefore have to be capable to conduct heat efficiently and at the same time have low coefficient of thermal expansion (CTE) to minimize the thermal stress and warping. In the present study, copper silicon carbide was selected with an aim to solve thermal management problem presented by current IC systems. Powder metallurgy routes were chosen to fabricate the MMC based on this materials system. Copper and silicon carbide powders were mixed together in a planetary ball mill, and the green articles were then compacted and sintered to produce the final product of CuSiC. The sintering parameters were investigated for their effects towards the thermal conductivity of the composite. Sintering parameters investigated included temperature, heating duration and the gaseous environment. Upon sintering, the CuSiC particle bond to one another giving a higher strength and a possibility in attaining desirable density. Thus to achieve good thermal conductivity, the recommended sintering parameter suggests that the CuSiC composite should be sintered at 950°C for 7 hours in nitrogen gas.
    URI
    http://dspace.unimap.edu.my:80/dspace/handle/123456789/34467
    Collections
    • Mohabattul Zaman S NS Bukhari, Associate Prof.Ir. [2]
    • School of Materials Engineering (Articles) [553]

    Atmire NV

    Perpustakaan Tuanku Syed Faizuddin Putra (PTSFP) | Send Feedback
     

     

    Browse

    All of UniMAP Library Digital RepositoryCommunities & CollectionsBy Issue DateAuthorsTitlesSubjectsThis CollectionBy Issue DateAuthorsTitlesSubjects

    My Account

    LoginRegister

    Statistics

    View Usage Statistics

    Atmire NV

    Perpustakaan Tuanku Syed Faizuddin Putra (PTSFP) | Send Feedback
     

     

    NoThumbnail