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Improved relationships for the thermodynamic properties of carbon phases at detonation conditions

机译:改善爆轰条件下碳阶热力学性质的关系

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Accurate volumetric and heat capacity relationships have been developed for graphite and diamond carbon forms for use with the Jaguar thermochemical equilibrium program for the calculation of the detonation properties of explosives. Available experimental thermodynamic properties and Hugoniot values have been analyzed to establish the equations of state for the carbon phases. The diamond-graphite transition curve results from the equality of the chemical potentials of the phases. The resulting relationships are utilized to examine the actual phase behaviour of carbon under shock conditions. The existence of metastable carbon states is established by analyses of Hugoniot data for hydrocarbons and explosives at elevated temperatures and pressures. The accuracy of the resulting relationships is demonstrated by comparisons for several properties, including the Hugoniot behaviour of oxygen-deficient explosives at overdriven conditions.
机译:已经为石墨和金刚石碳形式开发了精确的体积和热容量关系,用于捷豹热化学均衡程序,用于计算炸药的爆轰性能。已经分析了可用的实验热力学性质和Hugoniot值以确定碳阶段的状态方程。钻石石墨过渡曲线来自相位的化学电位的平等。所得到的关系用于在休克条件下检查碳的实际相位行为。通过在高温和压力下的烃类和爆炸物的酸性数据分析来建立亚稳碳态的存在。通过比较若干性质的比较来证明所得到的关系的准确性,包括在过度的条件下的缺氧爆炸物的Hugoniot行为。

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