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TiB2 基陶瓷/Ti-6Al-4V 合金梯度纳米复合材料组织演化与防弹性能

Translated title of the contribution: Microstructure Evolution and Ballistic Performance of the Laminated Composites of TiB2-based Ceramic and Ti-6Al-4V Alloy with Nano-structured Gradient
  • 韩保红
  • , 程兆刚
  • , 韩思辰
  • , 赵忠民
  • , 王民全

    Research output: Journal Publications and ReviewsRGC 21 - Publication in refereed journalpeer-review

    Abstract

    Based on liquid fusion and interdiffusion between the ceramic and the titanium alloy, the laminated composites of TiB2-based ceramic and Ti-6Al-4V alloy with the nano-structured gradient were prepared by centrifugal reactive casting processing. By performing DOP test with 14.5 mm army AP projectiles on TiB2-based ceramic and the laminated composite, the average ballistic effectiveness of the two materials is 3.05 and 7.30, respectively. Therefore, it is considered that since the interlaminar interface develops the nano-structured gradient from the ceramic to Ti-6Al-4V alloy, the laminated composite not only presents high interlaminar cleavage resistance and excellent mechanical properties, but also exhibits good ballistic performance through dual mechanisms of interlaminar load transfer and multi-scale(micro/micro-nano/nanometer) interface shear-coupling.
    Translated title of the contributionMicrostructure Evolution and Ballistic Performance of the Laminated Composites of TiB2-based Ceramic and Ti-6Al-4V Alloy with Nano-structured Gradient
    Original languageChinese (Simplified)
    Pages (from-to)123-126
    JournalRare Metal Materials and Engineering
    Volume47
    Issue numberS1
    Publication statusPublished - Jul 2018

    Bibliographical note

    Full text of this publication does not contain sufficient affiliation information. With consent from the author(s) concerned, the Research Unit(s) information for this record is based on the existing academic department affiliation of the author(s).

    Research Keywords

    • Ballistic performance
    • Centrifugal reactive casting processing
    • Interlaminar interface with nano-structured gradient
    • Laminated composite
    • Microstructure evolution

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