As shown in Figure 3 b, the temperature and solid–liquid phase distribution cloud of the TNT-based melt-cast explosive indicated that the high heat conductivity between the outer slurry and the inner wall of the body allowed heat exchange between the system and the environment during the solidification process compared with the inefficient heat transfer between the core slurry, which also led to the regular distribution of temperature and with a decreasing trend toward outside in the axial section.
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Equal-Material Manufacturing of a Thermoplastic Melt-Cast Explosive Using Thermal-Pressure Coupling Solidification Treatment Technology.
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