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Damage Mechanisms for 93W and 97W Tungsten-Based Alloys
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National Natural Science Foundation of China (60971094)

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    Abstract:

    Dynamic compression and in-situ tensile tests were carried out for two kinds of W-Ni-Fe alloys with 93wt% and 97wt% tungsten contents fabricated by P/M technique; their microstructures and damage model were examined and discussed. The damage mechanisms for 93wt% W alloy belongs to ductile separation of W-W interface, and that for 97wt% W alloy belongs to initiation and propagation of microcracks inside tungsten grains. On the base of Ostwald ripening theory for the sintering process, the microstructures of the two kinds of alloys with different tungsten volume fractions under various sintering conditions were predicted, and the results agreed with the tests very well. With the help of Ostwald ripening and micromechanical theory, we set up a relationship for sintering condition, volume fraction of tungsten and mechanical properties to help material design, production and mechanical property prediction

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[Ma Honglei, Hu Gengkai, Tan Chengwen, Yu Xiaodong, Bai Yanqiang, Liu Bingkun, Zhu Yu. Damage Mechanisms for 93W and 97W Tungsten-Based Alloys[J]. Rare Metal Materials and Engineering,2010,39(8):1344~1347.]
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History
  • Received:August 22,2009
  • Revised:July 08,2010
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