首页> 外文会议>International conference on processing manufacturing of advanced materials;THERMEC 2009 >Explosively Driven Expansion and Fragmentation Behavior for Cylinders, Spheres and Rings of 304 Stainless Steel
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Explosively Driven Expansion and Fragmentation Behavior for Cylinders, Spheres and Rings of 304 Stainless Steel

机译:爆炸驱动的304不锈钢圆柱体,球体和环的膨胀和破碎行为

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Explosive loading techniques are applied to expand tubular cylinders, spherical shells and rings of 304 stainless steel to fragmentation, and the effects of wall thicknesses, explosive driver diameters and the constant proportionality of the in-plane biaxial stretching rates are investigated on the deformation and fracture behavior of three basic structures experimentally and numerically. In the cylinder tests, the driver is a column of high explosive PETN, inserted coaxially into the bore of a cylinder and initiated by exploding a fine wire bundle at the column axis using a discharge current from a high-voltage capacitor bank. In case of the ring tests, ring specimens are placed onto a single cylinder filled with the PETN as a expansion driver, and for sphere tests, specimens filled with the PETN are also initiated by exploding a fine copper wire line with small length located at the central point. Two types of experiments are conducted for every specimen and test condition. The first type uses high speed cameras to observe the deformation and crack generation of expanding specimens showing the final maximum in-plane stretching rate of above 10~4s~(-1), and the second uses soft capturing system recovering typically most fragments successfully. The fragments are measured and investigated using a fragmentation model. The effects of test parameters on the deformation and fracture behavior for three types of structures are discussed in need of modified fragmentation model for shell structural elements.
机译:爆炸加载技术用于将304不锈钢的圆柱体,球形壳体和环膨胀成碎片,并研究了壁厚,爆炸起子直径和平面双轴拉伸速率的恒定比例对变形和断裂的影响实验上和数值上三个基本结构的行为在汽缸测试中,驱动器是一列高爆炸性PETN,同轴插入汽缸孔中,并通过使用高压电容器组的放电电流使细线束在圆柱轴上爆炸而启动。在进行环形试验时,将环形样品放置在装有PETN的单个圆柱体上作为膨胀驱动器,对于球形试验,还通过将细小,长度短的铜线爆炸而开始填充PETN的样品。中心点。针对每个样本和测试条件进行两种类型的实验。第一类使用高速相机观察膨胀试样的变形和裂纹生成,这些试样的最终最大面内拉伸速率超过10〜4s〜(-1),第二类使用软捕获系统通常能成功地恢复大多数碎片。使用碎片模型测量和研究碎片。讨论了测试参数对三种类型结构的变形和断裂行为的影响,需要对壳结构单元进行修改的碎裂模型。

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