Xu Xiao, Gao Shiqiao, Ou Zhuocheng, Ye Haifu
State Key Laboratory of Explosion Science and Technology, Beijing Institute of Technology, Beijing 100081, China.
Institute of Electronic Engineering, China Academy of Engineering Physics, Mianyang 621900, China.
Materials (Basel). 2018 Aug 30;11(9):1565. doi: 10.3390/ma11091565.
Quasi-static and dynamic compression experiments were performed to study the influence of liquid nitrile rubber (LNBR) on the mechanical properties of epoxy resin. The quasi-static experiments were conducted by an electronic universal machine under strain rates of 0.0001/s and 0.001/s, while a Split Hopkinson Pressure Bar (SHPB) system was adopted to perform the dynamic tests for strain rates up to 5600/s. The standard Zhu-Wang-Tang (ZWT) nonlinear viscoelastic model was chosen to predict the elastic behavior of LNBR/epoxy composites under a wide range of strain rates. After some necessary derivation and data fitting, a set of model parameters for the tested materials were finally obtained. Meanwhile, the incremented form of the ZWT nonlinear viscoelastic model were deduced and implemented into the user material program of LS-DYNA. A simulation-test contrast had been performed to verify the validity and feasibility of the algorithm. The results showed that the viscoelastic behavior of epoxy resin can be effectively simulated.
进行了准静态和动态压缩实验,以研究液态丁腈橡胶(LNBR)对环氧树脂力学性能的影响。准静态实验由电子万能材料试验机在0.0001/s和0.001/s的应变速率下进行,而动态实验则采用分离式霍普金森压杆(SHPB)系统,以进行高达5600/s应变速率的测试。选用标准的朱-王-唐(ZWT)非线性粘弹性模型来预测LNBR/环氧树脂复合材料在宽范围应变速率下的弹性行为。经过一些必要的推导和数据拟合,最终获得了一组测试材料的模型参数。同时,推导了ZWT非线性粘弹性模型的增量形式,并将其应用于LS-DYNA的用户材料程序中。进行了模拟-测试对比,以验证该算法的有效性和可行性。结果表明,环氧树脂的粘弹性行为能够得到有效模拟。