为研究含能材料变泊松比粘弹力学行为,基于热流变简单材料假设,建立了一种采用时间相关泊松比的三维热粘弹性本构方程;利用积分算法对该本构进行数值离散,给出了相应的应力更新方法;基于 Abaqus 软件 UMAT 接口技术编制了相应材料子程序...为研究含能材料变泊松比粘弹力学行为,基于热流变简单材料假设,建立了一种采用时间相关泊松比的三维热粘弹性本构方程;利用积分算法对该本构进行数值离散,给出了相应的应力更新方法;基于 Abaqus 软件 UMAT 接口技术编制了相应材料子程序,完成了算例分析。结果表明,数值解与对应解析解吻合良好,并通过了合理性算例验证,分析方法及算法程序有效,可为后续三维装药精细结构完整性分析提供支持;粘弹材料泊松比具有时间相关性,其较小变化对计算结果影响显著,尤其是在短时加载或状态转变过程。展开更多
The discretization size is limited by the sampling theorem, and the limit is one half of the wavelength of the highest frequency of the problem. However, one half of the wavelength is an ideal value. In general, the d...The discretization size is limited by the sampling theorem, and the limit is one half of the wavelength of the highest frequency of the problem. However, one half of the wavelength is an ideal value. In general, the discretization size that can ensure the accuracy of the simulation is much smaller than this value in the traditional finite element method. The possible reason of this phenomenon is analyzed in this paper, and an efficient method is given to improve the simulation accuracy.展开更多
文摘为研究含能材料变泊松比粘弹力学行为,基于热流变简单材料假设,建立了一种采用时间相关泊松比的三维热粘弹性本构方程;利用积分算法对该本构进行数值离散,给出了相应的应力更新方法;基于 Abaqus 软件 UMAT 接口技术编制了相应材料子程序,完成了算例分析。结果表明,数值解与对应解析解吻合良好,并通过了合理性算例验证,分析方法及算法程序有效,可为后续三维装药精细结构完整性分析提供支持;粘弹材料泊松比具有时间相关性,其较小变化对计算结果影响显著,尤其是在短时加载或状态转变过程。
文摘The discretization size is limited by the sampling theorem, and the limit is one half of the wavelength of the highest frequency of the problem. However, one half of the wavelength is an ideal value. In general, the discretization size that can ensure the accuracy of the simulation is much smaller than this value in the traditional finite element method. The possible reason of this phenomenon is analyzed in this paper, and an efficient method is given to improve the simulation accuracy.