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Shock Compressibility of Mixtures of Micro- and Nano-Sized Nickel and Aluminum Powders

机译:微型和纳米镍和铝粉混合物的冲击压缩性

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Shock compressibility of porous samples prepared from mixtures of micro- and nanosized nickel and aluminum powders is experimentally studied in the pressure range up to 60 GPa. Shock wave profiles in the samples are recorded, and Hugoniots are determined. The equation of state of the samples is derived within the framework of the Zel'dovich model. The shape of the shock wave profiles does not reveal any specific features that can be associated with a possible reaction between the components. The Hugoniots of the samples of two types of powder mixtures coincide within the experimental error despite significantly different sizes of powder particles, which implies that either there are no noticeable chemical transformations or, vice versa, they are completed within the shock loading time. The predicted Hugoniot with the reaction between the components being ignored passes in an immediate vicinity of the experimental data, which testifies to the absence of the reaction.
机译:通过微铝和纳米镍和铝粉的混合物制备的多孔样品的冲击压缩性在高达60gPa的压力范围内进行实验研究。 记录样品中的冲击波剖面,并确定Hugoniots。 样本状态的等式是在Zel'dovich模型的框架内推导出来的。 冲击波轮廓的形状不透露任何可以与组件之间可能的反应相关联的任何特定特征。 两种类型的粉末混合物的样品的Hugoniots在实验误差内重合,尽管粉末颗粒显着不同,但这意味着没有明显的化学转化,或反之亦然,它们在冲击加载时间内完成。 预测的Hugoniot在忽略的部件之间的反应在实验数据附近通过,这证明了不存在反应。

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