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Numerical analysis of impact resistance of honeycomb structures with different Poisson's ratios北大核心CSCD
引用本文:宫晓博刘宇鸿于昌利桂洪斌.Numerical analysis of impact resistance of honeycomb structures with different Poisson's ratios北大核心CSCD[J].中国舰船研究,2023(2):38-47.
作者姓名:宫晓博刘宇鸿于昌利桂洪斌
作者单位:1.哈尔滨工业大学(威海)海洋工程学院264209;
基金项目:国家自然科学基金资助项目(11902100,11902099);山东省自然科学基金资助项目(ZR2019PA001);山东省重点研发计划资助项目(2019GHZ011,2021CXGC010702)。
摘    要:[Objectives]This papers aims to analyze the impact resistance of honeycomb structure with different Poisson's ratio. [Methods]Based on the explicit dynamic finite element method, this paper analyzes the dynamic mechanical properties of honeycomb structures with different Poisson's ratios under in-plane impact load, and explores the influence laws of Poisson's ratios on their impact resistance. Three typical honeycomb structures with negative/zero/positive Poisson's ratios (reentrant hexagon, hexagon and semi-reentrant hexagon) are selected, their geometric parameters are changed to give them the same relative density and different Poisson's ratios (−2.76 – +3.63), and their dynamic mechanical properties under low/medium/high-speed dynamic displacement loads are analyzed. [Results ] The results show that the zero Poisson's ratio semi-reentrant honeycomb structure has the best structural stability without transverse deformation under compression deformation; without structural instability, the platform stress has little correlation with the Poisson's ratio; and the compact strain and total energy absorbtion increases with the absolute value of the Poisson's ratio. Negative Poisson's ratio honeycomb structures with large t/l and small θ are suitable for applications with high platform stress (strong deformation resistance), and negative Poisson's ratio honeycomb structures with small t/l and small θ are suitable for high total energy absorbtion applications, while zero Poisson's ratio semi-reentrant honeycomb structures are suitable for applications with high platform stress (strong deformation resistance). [Conclusions]This study can provide references for the type selection and geometric parameter design of side impact honeycomb structures. © 2023 Authors. All rights reserved.

关 键 词:蜂窝结构  数值模拟  能量吸收  冲击载荷  泊松比
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