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Observation of shock wave convergence or collision induced by shaping of a plane shock front in solids

机译:固体中平面激波前沿成形引起的激波收敛或碰撞的观察

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Abstract: rocedure is proposed of generating converging or of colliding shock waves in solids. The method is based on the refraction phenomena of a plane shock front at a shaped material interface, due to the difference in shock velocity of the materials of each side. A high-pressure gas gun is used to produce plane shock waves in a composite target assembly. The assembly is composed of aluminum and of polyethylene. The conically converging shock wave is generated in a lower-impedance material, i.e., polyethylene. In this case, polyethylene material is machined to the shape of a cone, and is inserted and glued to the aluminum plate having just the same inner surface. The processes of shock convergence are observed by a compact high- speed streak camera together with a pulsed dye laser as a light source. We have performed a series of experiments by varying several parameters. The realized converging angle of shock waves is found to be about 55 - 60 degrees in polyethylene medium. It is shown that the converging wave front looks almost continuously curved, and it is not easy to discriminate the boundary of the Mach stem. In other words, the growth of the Mach region seems faster than expected. This result is attributed to the combined effects of wave convergence and Mach reflection. !6
机译:摘要:提出了在固体中产生会聚或碰撞激波的方法。该方法基于在成形的材料界面处的平面震动前沿的折射现象,这是由于每一侧的材料的震动速度不同所致。高压气枪用于在复合目标组件中产生平面冲击波。该组件由铝和聚乙烯组成。锥形会聚的冲击波是在低阻抗的材料即聚乙烯中产生的。在这种情况下,将聚乙烯材料加工成圆锥形,然后插入并粘合到内表面刚好相同的铝板上。紧凑型高速条纹相机与脉冲染料激光作为光源一起观察到了震荡会聚的过程。我们通过更改几个参数进行了一系列实验。在聚乙烯介质中,发现所实现的冲击波会聚角约为55-60度。结果表明,收敛波前看起来几乎是连续弯曲的,并且很难区分马赫杆的边界。换句话说,马赫地区的增长似乎快于预期。该结果归因于波会聚和马赫反射的综合作用。 !6

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