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- W2035374911 abstract "Abstract Whisker bridging and whisker pull-out represent two dominant non-linear mechanisms of crack wake toughening that operate in a whisker-reinforced ceramic. Due to the non-linearity, finite element modeling was used to study the toughening behaviour of these mechanisms. The material modeled was a Al 2 O 3 (matrix)/α-SiC (whisker) ceramic composite with 25 volume-percent whiskers. A study was made of the effects of 1, 5, 13, and 25 whiskers in the wake of a mode-I crack in a center-cracked plate. The stress intensity factor was found to decrease as the number of whiskers in the crack wake increased. Whiskers that pull-out of the matrix intact were found to decrease the calculated stress intensity factor more than those which fracture. This work is part of the U.S. Bureau of Mines, Department of the Interior, study of the wear of ceramics." @default.
- W2035374911 created "2016-06-24" @default.
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- W2035374911 date "1991-06-01" @default.
- W2035374911 modified "2023-09-25" @default.
- W2035374911 title "Crack wake toughening mechanisms in a whisker-reinforced ceramic" @default.
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- W2035374911 doi "https://doi.org/10.1016/0168-874x(91)90054-3" @default.
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