Phase transition and abnormal spallation in pure iron
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摘要: 采用VISAR、X射线衍射和金相处理联合测试分析技术,开展等厚对称碰撞实验,研究了纯铁材料的冲击相变与层裂行为特征。结果发现,冲击加载压力大于纯铁材料相变阈值(13 GPa)时,等厚对称碰撞样品发生反常2次层裂。结合相关文献的实验结果,从应力波相互作用的角度分析了反常层裂形成的原因,指出纯铁材料的冲击相变和卸载逆转变及引发的稀疏冲击波是导致反常2次层裂的物理机制。Abstract: An experimental setup, containing the pure iron flyer and sample with the same thickness, was applied to carry out symmetric impact tests on pure iron. The free-surface velocities of the pure iron samples were obtained by VISAR. The X-ray diffraction and metallographic examination of the recovered samples exhibit that abnormal multiple spalling behaviors happen in the pure iron samples as the impact pressure is above the phase transition pressure 13 GPa. By referring the experimental results by L.R.Veeser, et al, the spalling mechanism was explored by analyzing the interaction process of stress waves. It is found that the shock-induced phase transition, release-induced reverse phase transition and rarefaction shock wave lead to the abnormal (secondary) spalling phenomena in the pure iron samples.
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Key words:
- solid mechanics /
- phase transition /
- impact /
- pure iron /
- spalling
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