By G. R. Kinney (auth.), K. D. Timmerhaus (eds.)
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Extra resources for Advances in Cryogenic Engineering: Proceedings of the 1958 Cryogenic Engineering Conference
High purity carbon tetrachloride or trichloroethylene are ideal for most cases. It must be remembered that even the oil of a fingerprint will detonate in LOX when impacted. Highly volatile flammable liquids and fuels are· extremely dangerous to handle near LOX. In most cases there is not enough information to be gained from the testing of a volatile hydrocarbon in LOX to justify the risk involved in handling the material during the test. Only one series of specimens is placed in a Lax tray at a time.
H. Ewald, W. B. J epson, and 1. S. Rowlinson, Discussions Faraday Soc. ~, 238 (1953). 16E . V. Franck, Z. Physik Chem. 345 (1956). , A-3 COMPATIBILITY OF MATERIALS WITH LIQUID OXYGEN H. M. Peckham and R. L. Hauser The Martin Company Denver, Colorado Introduction Insuring the compatibility of materials with liquid oxygen has been a problem with the missile industry from the fir st use of LOX in propellant systems. Many materials are compatible under static conditions; however, when they are used in missile systems where dynamic or shock producing conditions are ever present, a severe hazard of detonation exists.
186 for the 12-term equation. Integral Forms of Hand S It is weH known that the changes in entha1py and entropy with pressure at a given temperature can be computed by integrating certain partial derivatives which are based on 3 J. A. Beattie, ehern. Rev. 44, No. 1, February (1949) . -50- PVT properties. If, in addition, the changes in enthalpy and entropy at any one pressure are known as a function of temperature, the whole pressure temperature field is determinable. Beattie I s paper 3 provides a very detailed and satisfactory foundation for this work.
Advances in Cryogenic Engineering: Proceedings of the 1958 Cryogenic Engineering Conference by G. R. Kinney (auth.), K. D. Timmerhaus (eds.)