By Jerry Scutts
Mosquito in motion half 2 КНИГИ ;ВОЕННАЯ ИСТОРИЯ Mosquito in motion half 2 (Aircraft 139)ByJerry ScuttsPublisher:Squadron/Signal courses Inc.1993 50PagesISBN: 0897473035PDF11 MBWith the flight checking out of the Mosquito prototype ongoing, authentic Air Ministry skepticism over the functions of the wood airplane speedy melted away and abruptly, the plane was once required for each possible operational position. one of many extra vital roles expected for the Mosquito used to be that of excessive pace evening fighter, to interchange the getting older and sluggish Blenheim IF and to complement the Bristol Beaufighter.The prototype Mosquito F Mk II (W4052) was once ordered lower than Specification F.21/40 in the course of 1940. This specification referred to as for changing the observer/bomb aimers glass nostril with a pretty good nostril containing an armament of 4 .303 inch Browning laptop weapons. also, 4 1 20mm Hispano cannon have been put in less than the cabin ground within the house as a rule taken up via the bomb bay. finally, a gun digicam used to be fastened within the nostril that operated instantly each time the weapons have been drained (it may be operated independently via a change situated subsequent to the gun button at the keep an eye on column). All armament used to be fired electro-pneumatically. taking air from a compressor positioned within the port engine nacelle. sharingmatrixletitbit eighty five
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42 A c-direction Figure I . Structure of graphite and approximate orientation in carbon fibers (ref. 6). Today commercial pitch-based carbon fiber is available with a tensile modulus that is 85 percent of the theoretical maximum for the perfect graphite crystal. By comparison, the tensile strength of this fiber is only 5 percent of that theoretically possible. Although increasing the layer plane alignment directly improves the tensile modulus of carbon fibers, flaws limit the tensile strength of these brittle fibers.
10. Singer, Leonard Sidney: High Modulus, High Strength Carbon Fibers Produced From Mesophase Pitch. S. Patent 4,005,183, Jan. 1977. 11. Singer, L. ; and Lewis, I. : ESR Study of the Kinetics of Carbonization. Carbon, vol. 16, no. 6, 1978, pp. 417423. 12. : Forming Optically Anisotropic Pitches. S. Patent 4,208,267, June 1980. 13. : Influence of Additives on Pyrolysis of Mesophase Pitch. Carbon ‘86Proceedings of the International Conference on Carbon, Deutschen Keramishchen Gesellschaft, Bad Honnef (Baden-Baden, Federal Republic of Germany), 1986, p.
Effect of Microstructure on Tensile Properties of Carbon Fibers Assuming that the brittle fracture mechanism proposed by Reynolds and Sharp (see Johnson, ref. 13) applies, the results of microstructural studies might explain the differences in strength and modulus of pitch-based and PAN-based carbon fibers. Given the strength and modulus of any carbon fiber, the Griffith relationship (ref. 18) can determine the critical crack size. o2 - 'Ya_ 2E TC _ ~ (1) where o is the ultimate tensile strength, E is the modulus, ya is the apparent surface energy, and C is the critical crack length.