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Experimental Technique for Dynamic Fragmentation of Liquid-Driving Expanding Ring

机译:液体驾驶膨胀环动态碎片实验技术

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摘要

Expanding ring experiment is an important method for dynamic fragmentation of solid under 1D tensile loading. Based on the split Hokinson pressure bar (SHPB), a liquid-driving experimental technology was developed for conducting expanding ring tests. The loading fixture includes a hydraulic cylinder filled with water, which is pushed by a piston connected to the input bar. As the water is driven, it expands the metallic ring specimen in the radial direction. The approximately incompressible property of the water makes it possible to drive the specimen in very high radial velocity by low velocity movement of piston, according to the large sectional area ratio of the cylinder to specimen. Using liquid-driving expanding ring device, 1060 aluminum rings (ductile materials)/PMMA rings (brittle materials) were fragmented and the fragments were recovered. Impact deformation of free-flying fragments was avoided through the use of “sample soft-capture” technology. The fragmentation process was observable by high speed camera through modifying the driving direction of the water. From the observations of the fracture morphology and the residual internal cracks of the recovered fragments, it is concluded that the fracture of the rings is caused by the circumferential tensile stress.
机译:膨胀环实验为下1D拉伸载荷的固体动态断裂的重要方法。基于分割Hokinson压杆(SHPB)上,驱动液体的实验技术被用于进行膨胀环测试开发的。装载固定装置包括一个装满水的液压缸,其通过连接到输入杆的活塞推动。随着水被驱动时,它扩展在径向方向上试样中的金属环。水的不可压缩大约属性使得可以驱动试样在通过活塞的低速移动非常高的径向速度,根据各气缸以试样的大截面积比。采用液 - 驱动膨胀环装置,1060个铝环(韧性材料)/ PMMA环(脆性材料)的片段化,并回收所述片段。通过使用“样本软捕捉”技术避免了自由飞行碎片撞击变形。碎裂过程中,通过改变水的驱动方向是由高速照相机观察到。从裂缝形态观察和回收的片段的剩余内部裂纹,可以得出结论,该环的断裂是由周向的拉伸应力引起的。

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