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Shock Wave Properties of Inert and Chemically Active Porous Media

机译:惰性和化学活性多孔介质的冲击波特性

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Shock wave properties of porous specimens made on the basis of matrices composed of inert and chemically active media (silicon rubber and emulsion, which is an aqueous solution of ammonium nitrate with mineral oil and emulsifier) are studied. The porosity of the specimens is generated by using a filler composed of glass microspheres. The wave velocity profiles are measured by a VISAR laser Doppler interferometer. It is shown that the shock compressibility of porous silicon rubber at pressures below 0.1 GPa displays an anomalous behavior, resulting in smearing of the compression pulse front propagating over the specimen. In the emulsion matrices without microspheres, there are no noticeable chemical transformations up to the pressure of 15 GPa. Addition of microspheres drastically decreases the threshold of chemical reaction initiation and leads to the formation of a steady detonation wave.
机译:研究了基于惰性和化学活性培养基组成的基质(硅橡胶和乳液)进行多孔标本的冲击波特性进行了研究。 通过使用由玻璃微球组成的填料产生标本的孔隙率。 波速度轮廓由VISAR激光多普勒干涉仪测量。 结果表明,低于0.1GPa的压力下的多孔硅橡胶的冲击压缩性显示出异常的行为,导致压缩脉冲前面传播在样品上的压缩脉冲前的涂抹。 在没有微球的乳液基质中,没有明显的化学转化达到15GPa的压力。 微球的添加大大降低了化学反应起始的阈值,并导致形成稳定的爆轰波。

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