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Pulse shaping techniques for testing elastic-plastic materials with a split Hopkinson pressure bar

机译:使用霍普金森分体式压力棒测试弹塑性材料的脉冲整形技术

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摘要

We present pulse shaping techniques to obtain compressive stress-strain data for elastic-plastic materials with a split Hopkinson pressure bar. The conventional split Hopkinson pressure bar apparatus is modified by placing a combination of copper and steel pulse shapers on the impact surface of the incident bar. After impact by the striker bar, the copper-steel pulse shaper deforms plastically and spreads the pulse in the incident bar so that the sample is nearly in dynamic stress equilibrium and has a nearly constant strain rate in the plastic response region. We present analytical models and data that show a broad range of incident strain pulses can be obtained by varying the pulse shaper geometry and striking velocity. For an application, we present compressive stress-strain data for 4340 R-c 43 steel.
机译:我们提出了脉冲成形技术,以获取具有分开的Hopkinson压力棒的弹塑性材料的压缩应力-应变数据。通过将铜和钢脉冲整形器的组合放置在入射杆的冲击表面上,可以对传统的霍普金森分裂式压力杆设备进行改进。在撞针撞击后,铜钢脉冲整形器塑性变形并在入射棒中传播脉冲,从而使样品几乎处于动态应力平衡状态,并且在塑性响应区域具有几乎恒定的应变率。我们提供的分析模型和数据表明,可以通过改变脉冲成形器的几何形状和打击速度来获得大范围的入射应变脉冲。对于一个应用,我们提供了4340 R-c 43钢的压缩应力-应变数据。

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