梯度双材料负泊松比蜂窝夹芯板局部冲击失效研究

Failure study of gradient bimaterial negative Poisson's ratio honeycomb sandwich panels subjected to local impact

  • 摘要: 夹芯板结构具有轻质、高抗弯刚度和良好的抗冲击等特性,将负泊松比材料作为夹芯板芯层,可以设计出具有优良动力学特征的防护结构。本文基于提出的双材料曲边内凹负泊松比胞元,通过改变胞元内纵横向材料,构建了正梯度、负梯度、对称正梯度及对称负梯度四种排列的负泊松比多胞蜂窝夹芯板。实验与仿真结果比较说明了本文数值方法的可行性。数值研究了不同排列方式时蜂窝夹芯板在受局部冲击作用下的失效力学性能,考察了冲头冲击速度和芯层梯度排列模式对夹芯板破坏模式、冲头接触力与能量吸收效果的影响。研究表明:芯层排列模式显著影响夹芯板的冲击破坏模式和冲击动力学性能;梯度双材料设计可以显著增强夹芯板的吸能效果。

     

    Abstract: The sandwich panel structure, known for its lightweight nature, high bending stiffness, and exceptional impact resistance, can be tailored with a core layer of negative Poisson's ratio materials. This design approach yields protective structures with outstanding dynamic characteristics. In this paper, a negative Poisson's ratio biomaterial cellular sandwich plate with positive gradient, negative gradient, symmetric positive gradient and symmetric negative gradient was constructed by changing the vertical and horizontal materials in the cell based on the proposed curved edge concave negative Poisson's ratio biomaterial cell. The comparison between experimental results and simulation results demonstrates the feasibility of the numerical method proposed in this paper. The effects of punch impact velocity and gradient arrangement on the failure mode of sandwich plate, punch contact force and energy absorption were investigated. The results show that the impact failure mode and impact dynamic performance of the sandwich panels are significantly affected by the arrangement mode of core layers. This design can significantly enhance the energy absorption effect of sandwich panels.

     

/

返回文章
返回