共查询到19条相似文献,搜索用时 78 毫秒
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在曲面复合材料胶接修补中,补片的形状尺寸对胶接强度有较大影响。采用“三板模型”对修补结构进行三维8节点各向同性体元和8节点各向异性层合板元的有限元建模分析,从多个参变量的计算结果得到如下结论:补片的面积为孔面积的5~10倍、厚度为孔深的40%-55%、补片端部的尖削比达到14时,修补结构的强度恢复能达到最大值。 相似文献
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复合材料胶接修补金属裂纹板的应力强度因子研究 总被引:2,自引:0,他引:2
主要在ABAQUS中建立了采用硼纤维,环氧复合材料胶接修补Ⅰ型金属裂纹板的三维有限元模型,对单面修补与双面对称修补的修补效果进行了对比,分析了补片厚度对应力强度因子的影响,研究了胶层的剪切模量对应力强度因子的影响.结果表明,在条件允许的情况下要尽可能采用双面对称胶接修补,应合理选择补片的厚度,并在保证修补效果的前提下,... 相似文献
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双向受载裂纹板的胶接修补效果分析 总被引:5,自引:0,他引:5
运用有限元方法,分析了双向受载裂纹板胶接复合材料补片后,裂纹尖端的应力强度因子、补片内的最大拉伸应力和胶层内的最大剪切应力。没有补片时,平行于裂纹方向的拉压应力对裂纹尖端的应力强度因子没有影响。而裂纹板经复合材料补片胶接修补后,平行于裂纹方向的拉压应力对裂纹尖端的应力强度因子具有耦合效应,并且这种耦合效应的大小与补片的铺层含量有很大的关系。 相似文献
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复合材料补片胶接修补结构的有限元分析 总被引:7,自引:0,他引:7
采用有限元分析方法,研究了裂纹板胶接复合材料补片后,裂纹尖端的应力强度因子值,结果表明:增加补片的宽度和厚度,或者减少补片的长度,都可以提高结构的修补效果。 相似文献
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复合材料加筋板的阶梯式挖补修理稳定性分析 总被引:3,自引:0,他引:3
复合材料已在飞机结构中得到了广泛应用,其中胶接修补研究是当前复合材料结构修补中急待解决的重要问题之一。主要针对层合板结构胶接修理中的阶梯式挖补进行研究,建立了复合材料加筋板阶梯式挖补修理结构的有限元分析模型,并进行了屈曲数值分析,详细探讨了补片半径、补片阶梯数、筋距对挖补修理结构稳定性的影响规律。 相似文献
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This paper seeks to outline a novel three-layer model and a new birth–death element solution technique to evaluate static strength of notched metallic panel repaired with bonded composite patch and to optimize material parameters. The higher order 3D, 8-node isotropic solid element and 8-node anisotropic layered solid element with three degrees of freedom per node are respectively implemented to model substrate panel, adhesive layer and composite patch to establish three-layer model of repaired panel. The new solving technique based on birth–death element is developed to allow solution of the stress pattern of repaired panel for identifying failure mode. The new model and its solution are used to model failure mode and residual strength of repaired panel, and the obtained results have a good agreement with the experimental findings. Finally, the influences of material parameter of adhesive layer and composite patch on the residual strength of repaired panel are investigated for optimizing material properties to meet operational and environmental constraints. 相似文献
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《中国航空学报》2021,34(1):266-280
The bonded repair techniques seem to be the most frequent procedures in the aviation maintenance. The achieved composite repaired perforated thin-walled plate is a complex geometry with high numerical analysis cost. The NURBS-based Isogeometric Analysis (IGA) proposes a sensible and affordable tool to carry out such geometry analysis. In this context, a well-known technique is to divide the original geometry assembly into number of simple neighbors connected geometries. In the present study the free vibration analysis of the perforated plates repaired on one side with an external bonded composite laminated patch is investigated. A multi-patch geometry modeling approach is implemented in line with the first order shear deformation theory of plates. In order to hold the geometry integrity and uniformity, all the degrees of freedom between adjacent geometry patches are completely tied through implementing a Nitsche method. To show the effectiveness and accuracy of the developed formulation, some representative results are extracted and compared with those from literature. The effects of geometrical as well as material parameters including boundary condition, cutout shape, and repair layup on the dynamic response of the repaired perforated plates are then investigated. 相似文献
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This paper seeks to mark the fruitful collaborative research between scholars in the University of Southampton and Beihang University for last 25 years on structural integrity. Their efforts addressed some important issues in structural integrity such as fatigue and fracture behavior,fatigue load spectra, fatigue and fracture lifetimes, reliability-based service period, adhesively bonded composite patch repairs, Plain Woven Fabric(PWF) composites and composite artefacts.New advances in engineering approaches, experimental methods, numerical algorithms and understanding of failure mechanisms relating to structural integrity are highlighted. Probable limits(or drawbacks) are also discussed. This review provides an insight into the general aspects on structural integrity and constitutes a basis for pointers to the further works on structural integrity. 相似文献
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对复合材料层合板挖补修理模型进行了稳定性优化分析。采用ARSM优化算法研究了挖补修理结构失稳载荷与挖补角、胶层厚度以及补片材料与母板材料匹配对挖补修理后复合材料薄板失稳载荷大小的影响,得到了各母板材料对应的稳定性最优挖补修理模型。结果表明,补片材料各方向上的模量匹配非常重要,硼纤维层合板的6个方向上模量搭配最优,硼纤维层合板补片为各个修理方案中的最佳补片材料。当胶层厚度和挖补角参数增大时,失稳载荷逐渐增大,在挖补角与胶层厚度最佳匹配范围内,失稳载荷很快达到最大。在挖补角与胶层厚度脱离最佳匹配范围内后,失稳载荷迅速减小,进一步说明ARSM优化算法可以高效地完成挖补修理结构的稳定性优化分析。 相似文献