首页> 外文学位 >Dynamic testing to determine some mechanical properties of aluminum, copper, and dry Eglin sand using Split Hopkinson Pressure Bar (SHPB), high speed photography, and Digital Image Correlation (DIC).
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Dynamic testing to determine some mechanical properties of aluminum, copper, and dry Eglin sand using Split Hopkinson Pressure Bar (SHPB), high speed photography, and Digital Image Correlation (DIC).

机译:使用Split Hopkinson压力棒(SHPB),高速摄影和数字图像关联(DIC)进行动态测试以确定铝,铜和干燥的Eglin砂的某些机械性能。

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摘要

The compressive response or the dynamic mechanical behavior of aluminum, copper, and dry Eglin sand coupled with high-speed photography and Digital Image Correlation (DIC) analysis was investigated. Variables for the sand samples include the specimen initial mass density, particle size, and pulse shapers used at approximately constant strain rates and pressure applied. A modified SHPB has been used employing a pulse shaping technique to produce controlled dynamic load pulses that allows the specimen to deform uniformly under dynamic equilibrium conditions at constant strain rate. During each dynamic test the stress equilibrium conditions are maintained. The pulse-shaping technique was found to be independent of the confinement. The deformation and dynamic mechanical behavior of annealed copper sample were observed using a high speed digital camera. DIC technique was used to determine the surface strains through a series of images acquired using high speed photography. The absolute uniform axial strain obtained from DIC analysis was ∼18%, compared to strain gage analysis of ∼19% axial strain.;Dynamic compressive behavior of dry Eglin sand (received from Air Force Base (AFB) Florida), under confinement was characterized using an advanced long split Hopkinson pressure bar (SHPB). Sand grains were confined inside a hollow cylinder of hardened steel and capped by cemented tungsten carbide cylindrical rods. This assembly was subjected to repeated shaking to consolidate sand to reach given bulk mass densities. It is then sandwiched between the incident and transmission bars on SHPB for dynamic compression measurements. Sand specimens of three initial mass densities, namely, 1.51, 1.57, and 1.63 g/cm3, were characterized to determine the mechanical properties at high strain rates near 700 s- 1. The compressive mechanical response of fine sand was experimentally investigated. The initial mass density, pulse shapers, and particle size are systematically varied. The results show that the compressive response of the fine sand is not sensitive to strain rate under the loading conditions used in this study but significantly dependent on the initial mass density and grain size used in the confinement. The sand becomes stiffer as initial mass density increases and/or finer sand grain sizes are used.
机译:研究了铝,铜和干燥的Eglin砂的压缩响应或动态力学行为,并结合了高速摄影和数字图像相关性(DIC)分析。砂样品的变量包括样品的初始质量密度,粒径和在近似恒定的应变速率和施加压力下使用的脉冲整形器。已使用一种经过改进的SHPB并采用脉冲整形技术来产生可控的动态负载脉冲,该脉冲使试样在动态平衡条件下以恒定应变率均匀变形。在每个动态测试期间,保持应力平衡条件。发现脉冲整形技术与限制无关。使用高速数码相机观察了退火铜样品的变形和动态力学行为。使用DIC技术通过一系列使用高速摄影获得的图像确定表面应变。通过DIC分析获得的绝对均匀轴向应变为〜18%,而相比之下,通过应变计分析获得的轴向均匀应变为〜19%。;对干燥的Eglin砂(从佛罗里达空军基地(AFB)接收)的动态压缩行为进行了表征使用先进的长裂霍普金森压力杆(SHPB)。沙粒被限制在硬化钢制的空心圆柱体内,并用硬质合金碳化钨圆柱棒覆盖。对该组件进行反复摇晃以固结沙子,以达到给定的堆积质量密度。然后将其夹在SHPB的入射和传输条之间,以进行动态压缩测量。对三种初始质量密度分别为1.51、1.57和1.63 g / cm3的砂样品进行表征,以确定在700 s-1附近的高应变速率下的机械性能。对细砂的压缩机械响应进行了实验研究。初始质量密度,脉冲整形器和颗粒大小会系统地变化。结果表明,在本研究中使用的加载条件下,细砂的压缩响应对应变速率不敏感,但在很大程度上取决于初始质量密度和约束中使用的晶粒尺寸。随着初始质量密度的增加和/或使用更细的沙粒尺寸,沙变得更硬。

著录项

  • 作者

    Sankaye, Swapnil S.;

  • 作者单位

    Oklahoma State University.;

  • 授予单位 Oklahoma State University.;
  • 学科 Engineering Mechanical.
  • 学位 M.S.
  • 年度 2011
  • 页码 117 p.
  • 总页数 117
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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