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Dynamic deformations tests of Ni3Al based intermetallic alloy by using the split Hopkinson pressure bar technique

机译:基于Ni3Al基金金属间合金的动态变形试验使用拆分霍普金森钢筋技术

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摘要

In this work, the Ni3Al-based intermetallic alloy was subjected to room temperature dynamic plastic deformation tests by using a split Hopkinson pressure bar technique. The dynamic compression processes were carried out at strain rates in the range of =(1.9x102 / 1x104 s-1). A strong impact of applied deformation conditions on microstructure and mechanical properties evolution in the examined Ni3Al intermetallic, was documented. Generally, very high maximum compressive stress values were obtained, reaching 5500 MPa for the sample deformed at the highest strain rate (i.e. ɛ˙=1x104 s-1). The results of performed SEM/EBSD evaluation point towards an occurrence of dynamic recovery and recrystallization phenomena in Ni3Al samples deformed at high strain rates.
机译:在这项工作中,通过使用分裂的Hopkinson压力条技术对基于Ni3Al的金属间合金进行室温动态塑性变形试验。动态压缩过程以=(1.9x102 / 1x104 s-1)的应变速率进行。记录了应用变形条件对所检测的Ni3Al金属间化合物中的微观结构和机械性能的强烈影响。通常,获得非常高的最大压缩应力值,达到5500MPa以以最高应变率变形的样品(即= 1×10 4 S-1)。在高应变率下,对Ni3Al样品中的动态回收和再结晶现象进行的SEM / EBSD评估点进行的结果。

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