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The influence of the admixture of the fullerene C60 on the strength properties of aluminum and copper under shockwave loading

机译:富勒烯C60混合物对冲击波荷载作用下铝和铜强度性能的影响

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Hugoniot elastic limit (HEL) and dynamic (spall) strength measurements of pressed aluminum and copper samples with an admixture of the fullerene C60 with 2-5 wt% under shock-wave loading were carried out. The peak pressure in the shock-wave was equal to 6 GPa. The measurements of the elastic-plastic and strength properties were based on the recording and the subsequent analysis of the sample free surface velocity histories, recorded by Velocity Interferometric System for Any Reflection (VISAR). It was found that the admixture of 5 wt% fullerene in aluminum samples led to an increase of the Hugoniot elastic limit for aluminum samples by a factor of ten. The copper samples with the admixture of 2 wt% fullerene also demonstrated an increase of the Hugoniot elastic limit in comparison with commercial copper. The measured values of the Hugoniot elastic limit were equal to 0.82-1.56 GPa for aluminum samples and 1.35-3.46 GPa for copper samples, depending on their porosity. As expected, the spall strength of the samples with fullerene decreased by about three times in comparison with the undoped samples as a result of the influence of the solid fullerene particles which were concentrators of tension stresses in the material under dynamic fracture.
机译:进行了浓缩铝和铜样品的Hugoniot弹性极限(HEL)和动态(SPALL)强度测量,富勒烯C60的混合物进行了富勒烯C60,在冲击波载荷下进行2-5wt%。冲击波中的峰值压力等于6GPa。弹性塑料和强度特性的测量基于记录和随后的自由表面速度历史分析,记录由速度干涉系统进行任何反射(VISAR)。结果发现,铝样品中5wt%富勒烯的混合物导致铝样品的Hugoniot弹性极限增加了10倍。与商业铜相比,具有2wt%富勒烯混合的铜样品也表明了Hugoniot弹性极限的增加。根据其孔隙率,Hugoniot弹性极限的测量值等于铝样品的0.82-1.56GPa,铜样品为1.35-3.46GPa。正如预期的那样,与未掺杂的样品在动态骨折下的张力应力的浓度的浓度的浓度的影响下,与未掺杂的样品相比,富勒烯样品的泡力强度约为三次。

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