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Study on the fragmentation of shells

机译:贝壳碎裂研究

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Fragmentation can be observed in nature and in everyday life on a wide range of length scales and for all kinds of technical applications. Most studies on dynamic failure focus on the behaviour of bulk systems in one, two and three dimensions under impact and explosive loading, showing universal power law behaviour of fragment size distribution. However, hardly any studies have been devoted to fragmentation of shells. We present a detailed experimental and theoretical study on the fragmentation of closed thin shells of various materials, due to an excess load inside the system and impact with a hard wall. Characteristic fragmentation mechanisms are identified by means of a high speed camera and fragment shapes and mass distributions are evaluated. Theoretical rationalisation is given by means of stochastic break-up models and large-scale discrete element simulations with spherical shell systems under different extreme loading situations. By this we explain fragment shapes and distributions and prove a power law for the fragment mass distribution. Satisfactory agreement between experimental findings and numerical predictions of the exponents of the power laws for the fragment shapes is obtained.
机译:在自然界和日常生活中,可以在各种长度范围内以及各种技术应用中观察到碎片。大多数关于动力失效的研究都集中在冲击和爆炸载荷下在一维,二维和三维上的大体积系统行为,表明了碎片尺寸分布的通用幂律行为。但是,几乎没有任何研究致力于贝壳的碎裂。由于系统内部的过大负载和硬壁的撞击,我们对各种材料的封闭薄壳的破碎进行了详细的实验和理论研究。通过高速照相机识别特征性的碎裂机理,并评估碎裂形状和质量分布。通过随机破坏模型和球形壳系统在不同极限载荷情况下的大规模离散元素模拟,给出了理论上的合理化。由此我们解释了碎片的形状和分布,并证明了碎片质量分布的幂律。实验结果和片段形状的幂律指数的数值预测之间取得了令人满意的一致性。

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