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多向受力状态下复合材料预紧力齿连接接头应力分析

晏孝强 刘亚文 赵启林 李飞

玻璃钢/复合材料Issue(11):25-31,7.
玻璃钢/复合材料Issue(11):25-31,7.

多向受力状态下复合材料预紧力齿连接接头应力分析

STRESS ANALYSIS OF COMPOSITE PRE-TIGHTENED TEETH CONNECTION JOINT UNDER MULTIAXIAL LOADING CONDITION

晏孝强 1刘亚文 1赵启林 2李飞3

作者信息

  • 1. 解放军理工大学野战工程学院,南京 210007
  • 2. 南京工业大学机械与动力工程学院,南京 210007
  • 3. 解放军后勤工程学院,重庆400000
  • 折叠

摘要

Abstract

To explore the composite space truss bridge key node pre-tightened teeth joint stress distribution under the multiaxial loading state,multiscale finite element model of the composite space truss bridge was established.The multi-scale model can not only obtain the overall structural performance of the truss bridge and the stress distribution of the local joint,but also can effectively reflect the interaction between the two.Through this model,the stress distribution of the joint in the multi-directional loading state is studied.The results show that when the joint force is applied,the normal stress of the tooth surface attenuation is within 5 MPa with respect to when the assembly is completed,and the multi-directional force joint attenuation is mitigatory relative to the one-way force connector.After the attenuation,the normal stress of the multi-direction joint is slightly higher than that of the uniaxial joint.The ratio of each tooth load distribution of the multi-directional force joint is basically the same with that of the unidirectional force joint,and distribution is high on both sides and low in the middle.The transverse shear stress of the composite of the joint is higher than that of the uniaxial force joint,but the transverse shear stress is much smaller than the transverse shear strength of the material.The joint is in the safe state.The results can provide a reference for the design of composite pre-tightened teeth joint.

关键词

FRP空间桁架桥/预紧力齿连接/多尺度有限元/多向受力/应力分析

Key words

FRP space truss bridge/pre-tightened teeth connection/multiscale finite element/multiaxial loading state/stress analysis

分类

通用工业技术

引用本文复制引用

晏孝强,刘亚文,赵启林,李飞..多向受力状态下复合材料预紧力齿连接接头应力分析[J].玻璃钢/复合材料,2017,(11):25-31,7.

基金项目

国家自然科学基金资助项目(11372355) (11372355)

玻璃钢/复合材料

OA北大核心CSCD

2096-8000

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