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Study on Energy Output Characteristics of Explosives Containing B/Al in the Air Blast
Li X., Cao W., Song Q., Gao D., Zheng B., Guo X., Lu Y., Wang X.
Dielecric Relaxation in Energy Condensed Systems on the Basis of Polyefirretane Elastomer. II. Temperature Dependence and Ignition
Sadovnichii D., Milekhin Y., Lopatkin S., Skripina T., Malinin S., Gross I.
Computer simulation of the structure and electronic and detonation properties of energy materials
Prazyan T., Zhuravlev Y.
Direct Conversion of Chemical Energy into Electrical Energy in the Combustion of a Thin Three-Layer Charge
Barinov V., Kovalev D., Vadchenko S., Golosova O., Prosyanyuk V., Suvorov I., Gil’bert S.
Experimental Study on the Dynamic Strain of a Thin-Walled Pipe in the Gas Cloud Explosion with Ignition Energy
Zhou N., Yu Q., Zhang G., Liu X.
Energy release in multifront detonation
Vasil’ev A., Vasiliev V.
Combustion of Titanium Oxide Based Thermite Systems with a Complex Reducing Agent and an Energy Additive under the Influence of Overload
Yukhvid V., Andreev D., Ikornikov D., Sanin V., Sachkova N., Kovalev I.
Ignition and Combustion of Condensed Systems with Energy Fillers
Arkhipov V., Zhukov A., Kuznetsov V., Zolotorev N., Osipova N., Perfil’eva K.
Dielectric relaxation in energy condensed systems on the basis of polyefirretane elastomer. I. Frequency dependence
Sadovnichii D., Milekhin Y., Malinin S., Voropaev I., Bogdanova E.
Theoretical Design and Screening Potential High Energy Density Materials: Combination of 1,2,4-oxadiazole and 1,3,4-oxadiazole Rings
Lou N., Zhu S., Li H., Lin H., Yang D.
Using Terahertz Spectrometry to Study the Thermal Decomposition of Energy Materials
Lukyanenko I., Sheikov Y., Vaks V., Domracheva E., Yablokov A., Vakhmistrov S., Mikhailov A.
Mechanics of penetration of ceramic targets
Kobylkin I.
Equation of State of TATB Based on Static and Dynamic Experiments
Biryukova M., Petrov D., Garmashev A., Muzyrya A., Kovalev Y., Smirnov E., Badretdinova L.
Few-Parameter Equation of State of Copper
Gilev S.
Initiation of multifuel mixtures with bifurcation structures
Vasil’ev A., Vasiliev V.
Critical Conditions of Spark Ignition of a Bidisperse Aluminum Powder in Air
Moiseeva K., Krainov A., Dement’ev A.
Study of Ignition of High-Energy Materials with Boron and Aluminum and Titanium Diborides
Korotkikh A., Arkhipov V., Slyusarsky K., Sorokin I.
Electrical resistance of copper under shock compression: Experimental data
Gilev S., Prokop’ev V.
Combustion of Aluminum and Boron Agglomerates Free Falling in Air. II. Experimental Results
Glotov O., Surodin G.
Possible Negative Value of the Grüneisen Coefficient of Hydrogen in the Area of Pressures from 40 to 75 GPa and Temperatures from 3500 to 7500 K
Medvedev A.
Sound Velocity in Shock-Compressed Samples from a Mixture of Micro- and Nanodispersed Nickel and Aluminum Powders
Yakushev V., Anan’ev S., Utkin A., Zhukov A., Dolgoborodov A.
Combustion of Aluminum and Boron Agglomerates Free Falling in Air. I. Experimental Approach
Glotov O., Surodin G.
Numerical Simulation of Spark Ignition of a Coal Dust–Air Mixture
Moiseeva K., Krainov A.
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