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Critical measurements for validation of constitutive equations under shock and impact loading conditions

机译:在冲击和冲击载荷条件下验证本构方程的关键测量

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摘要

Interpretation of the data often requires numerical simulations of the experiments and comparisons with the data. However, determination of an appropriate set of values for parameters in constitutive equations valid under shock and high strain rate loading remains one of the most difficult tasks for material model developers. Most researchers employ experimental data obtained under idealized stress/strain states in the model parameter calibration scheme. Since the dynamic response of materials is very complex, especially the failure response, the generality of the model parameters is highly questionable. For example, the fracturing of ceramic materials involves nucleation, propagation, and coalescence of microcracks under shock and impact. The dynamic deformation processes in ceramics include dynamic pore collapse, dislocation generation, twinning, and microcracking. When shocked above the Hugoniot elastic limit, the ceramic deformation becomes inelastic; therefore, the constitutive model formulation should consider modeling the effects of these various processes on the degradation of strength and stiffness of ceramic. This paper presents a brief summary of diagnostic measurements and modeling techniques associated with validation and verification of ceramic constitutive/damage models under high strain rate, shock, and penetration loading applications.
机译:数据的解释通常需要对实验进行数值模拟并与数据进行比较。然而,确定在冲击和高应变速率载荷下有效的本构方程中的参数的一组适当值,仍然是材料模型开发人员最困难的任务之一。大多数研究人员在模型参数校准方案中采用在理想应力/应变状态下获得的实验数据。由于材料的动态响应非常复杂,尤其是失效响应,因此模型参数的通用性值得高度质疑。例如,陶瓷材料的破裂涉及在冲击和冲击下微裂纹的成核,传播和聚结。陶瓷中的动态变形过程包括动态孔隙塌陷,位错产生,孪晶和微裂纹。当冲击超过Hugoniot弹性极限时,陶瓷变形变得无弹性;因此,本构模型的制定应考虑对这些不同过程对陶瓷强度和刚度降低的影响进行建模。本文简要介绍了在高应变率,冲击和穿透载荷应用下与陶瓷本构/损伤模型的验证和验证相关的诊断测量和建模技术。

著录项

  • 来源
    《Optics and Lasers in Engineering 》 |2003年第4期| p.249-262| 共14页
  • 作者

    A.M. Rajendran;

  • 作者单位

    US Army Research Office, P.O. Box 12211, Research Triangle Park, NC 27709-2211, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 光学 ;
  • 关键词

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