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Prediction of three-dimensional elastic behavior of filament-wound composites based on the bridging model
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作者 Dong-mei Yin Bao-ming Li Hong-cheng Xiao 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2021年第2期609-616,共8页
This work provides a method to predict the three-dimensional equivalent elastic properties of the filament-wound composites based on the multi-scale homogenization principle.In the meso-scale,a representative volume e... This work provides a method to predict the three-dimensional equivalent elastic properties of the filament-wound composites based on the multi-scale homogenization principle.In the meso-scale,a representative volume element(RVE)is defined and the bridging model is adopted to establish a theoretical predictive model for its three-dimensional equivalent elastic constants.The results obtained through this method for the previous experimental model are compared with the ones gained respectively by experiments and classical laminate theory to verify the reliability of this model.In addition,the effects of some winding parameters,such as winding angle,on the equivalent elastic behavior of the filament-wound composites are analyzed.The rules gained can provide a theoretical reference for the optimum design of filament-wound composites. 展开更多
关键词 Lightweight design filament-wound composites Bridging model Three-dimensional elastic properties
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Finite Element Model of a Filament-Wound Composite Tube Subjected to Uniaxial Tension
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作者 Gyula Szabó Károly Váradi Dávid Felhos 《Modern Mechanical Engineering》 2017年第4期91-112,共22页
The aim of this paper is to demonstrate the mechanical behaviour of a filament-wound composite tube subjected to uniaxial tension by finite element analysis. Uniaxial tensile test experiments have been carried out on ... The aim of this paper is to demonstrate the mechanical behaviour of a filament-wound composite tube subjected to uniaxial tension by finite element analysis. Uniaxial tensile test experiments have been carried out on standard specimen and hose piece in order to verify finite element models and material properties and also to assess failure mode of composite plies. Composite reinforcement plies are modeled as linear orthotropic, while elastomer liners are described by hyperelastic material model. Results of finite element models and experiments show good agreement in the initial phase of uniaxial tension, which justifies utilized material models in the operating range. Results of finite element models show that transverse tension and shear load are dominant under tension. It is determined that principal failure mode of reinforcement plies is intra-ply yarn-matrix debonding caused by intensive shear of rubber matrix. 展开更多
关键词 filament-wound Composite Tube Uniaxial Tension Tensile Test DEBONDING DAMAGE Finite Element Analysis
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Bending Analysis of a Filament-Wound Composite Tube
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作者 Gyula Szabó Károly Váradi Dávid Felhos 《Modern Mechanical Engineering》 2018年第1期66-77,共12页
The aim of this paper is to present finite element model of a filament-wound composite tube subjected to three-point bending and bending in accordance with standard EN?15807:2011?(railway applications-pneumatic half c... The aim of this paper is to present finite element model of a filament-wound composite tube subjected to three-point bending and bending in accordance with standard EN?15807:2011?(railway applications-pneumatic half couplings) along with its experimental verification. In the finite element model, composite reinforcement plies have been characterized by linear orthotropic material model, while rubber liners have been described by a two-parameter MooneyRivlin model. Force-displacement curves of three-point bending show fairly good agreement between simulation results and experimental data. Reaction forces of FE simulation and experiment of standard bending test are in good agreement. 展开更多
关键词 filament-wound Composite Tube Three-Point Bending Test Bending Analysis Finite Element Model
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车用压缩天然气全缠绕复合材料气瓶强度试验及数值模拟 被引量:4
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作者 苏文献 祝彦寿 +1 位作者 马宁 李霁 《上海理工大学学报》 CAS 北大核心 2010年第2期174-178,共5页
对压缩天然气燃料汽车气瓶进行水压试验,考核其承压部件的强度,同时进行爆破试验,以确定其最小爆破压力和爆破部位.考虑了复合材料各向异性以及气瓶封头处纤维缠绕厚度变化的特点,采用有限元分析软件对车用压缩天然气全缠绕铝内衬复合... 对压缩天然气燃料汽车气瓶进行水压试验,考核其承压部件的强度,同时进行爆破试验,以确定其最小爆破压力和爆破部位.考虑了复合材料各向异性以及气瓶封头处纤维缠绕厚度变化的特点,采用有限元分析软件对车用压缩天然气全缠绕铝内衬复合气瓶在预紧压力、0压力、工作压力、水压试验压力和最小爆破压力作用下的应力分布情况对比国外相应标准进行了分析和研究,预测出该气瓶的实际爆破压力.结果证明,有限元分析的结果与实际情况吻合得较好. 展开更多
关键词 全缠绕 复合材料气瓶 试验 有限元分析
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