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首页> 外文期刊>The Physics of Metals and Metallography >Deformation and Thermal Processes That Occur during the High-Speed Collapse of a Bulky Copper Cylindrical Shell
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Deformation and Thermal Processes That Occur during the High-Speed Collapse of a Bulky Copper Cylindrical Shell

机译:在庞大的铜圆柱壳的高速塌陷期间发生的变形和热过程

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A bulky copper cylindrical shell with an internal diameter of 118 mm and a wall thickness of 5.9 mm has been exposed to an explosion of a cylindrical explosive charge uniformly distributed around it. A cylinder with a diameter of 57–58 mm has been obtained as a result of high-speed deformation caused by the explosion. A metallographic analysis of the cylinder structure shows that the shell collapses under the influence of axially symmetric radial deformation, which is accomplished by both twinning and sliding mechanisms. It is determined that axial deformation occurs along with the radial deformation. The microstructure of the cross-section consists of three zones. A wide annular deformation zone is formed on the outside, an annular recrystallization zone is formed closer to the center, and a circular region with a dendritic structure is formed at the center. The presence of dendrites indicates that the temperature at the boundary of this region reaches the melting point of copper. The temperature change along the radius of the cylinder has been calculated.
机译:一个庞大的铜圆柱形壳,内径为118毫米,壁厚为5.9mm,已经暴露于均匀分布在其周围的圆柱爆炸电荷的爆炸中。由于爆炸引起的高速变形,已经获得了直径为57-58mm的圆柱体。气缸结构的金相分析表明,壳体在轴向对称径向变形的影响下塌陷,这通过孪晶和滑动机构实现。确定轴向变形以及径向变形发生。横截面的微观结构由三个区域组成。在外部形成宽环形变形区,环形再结晶区更靠近中心,并且在中心形成具有树突结构的圆形区域。树突的存在表明该区域边界处的温度达到铜的熔点。已经计算沿圆柱体的半径的温度变化。

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