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含分层损伤复合材料弯曲变形与破坏实验研究 被引量:7
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作者 秦礽 李小童 +1 位作者 商雅静 周伟 《玻璃钢/复合材料》 CAS 北大核心 2019年第6期30-36,共7页
为研究含对称分层复合材料的损伤破坏特性,本文结合声发射(Acoustic Emission,简称"AE")技术和数字图像相关(Digital Image Correlation,简称"DIC")方法,对含对称多分层单向玻璃纤维增强复合材料试件在三点弯曲实... 为研究含对称分层复合材料的损伤破坏特性,本文结合声发射(Acoustic Emission,简称"AE")技术和数字图像相关(Digital Image Correlation,简称"DIC")方法,对含对称多分层单向玻璃纤维增强复合材料试件在三点弯曲实验下的屈曲破坏行为和变形场信息进行了研究,并利用k-means聚类分析对试件的损伤模式进行了辨识。结果表明:分层的存在将导致材料的承载能力降低且抵抗变形的能力变弱,压缩载荷下的分层损伤比拉伸载荷下的分层损伤更明显,含分层损伤复合材料在加载过程中会产生更多的AE损伤信号;损伤过程的AE信号通过聚类分析,大致可分为低频、中频和高频信号三类,分别对应含对称分层试件的基体开裂与分层扩展、纤维脱粘和纤维断裂三种损伤模式;含分层损伤试件的位移场变化不稳定且应变场分布比空白对照试件更分散。AE技术可以实时监测材料内部损伤信息,DIC方法能够分析试件表面位移场的变化,两种技术的结合对复合材料的结构健康监测有重要价值。 展开更多
关键词 复合材料 对称多分层 声发射 数字图像相关 聚类分析
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Three-dimensional consolidation deformation analysis of porous layered soft soils considering asymmetric effects 被引量:1
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作者 张治国 黄茂松 王卫东 《Journal of Central South University》 SCIE EI CAS 2014年第9期3639-3647,共9页
Long-term settlements for underground structures, such as tunnels and pipelines, are generally observed after the completion of construction in soft clay. The soil consolidation characteristic has great influences on ... Long-term settlements for underground structures, such as tunnels and pipelines, are generally observed after the completion of construction in soft clay. The soil consolidation characteristic has great influences on the long-term deformation for underground structures. A three-dimensional consolidation analysis method under the asymmetric loads is developed for porous layered soil based on Biot's classical theory. Time-displacement effects can be fully considered in this work and the analytical solutions are obtained by the state space approach in the Cartesian coordinate. The Laplace and double Fourier integral transform are applied to the state variables in order to reduce the partial differential equations into algebraic differential equations and easily obtain the state space solution. Starting from the governing equations of saturated porous soil, the basic relationship of state space variables is established between the ground surface and the arbitrary depth in the integral transform domain. Based on the continuity conditions and boundary conditions of the multi-layered pore soil model, the multi-layered pore half-space solutions are obtained by means of the transfer matrix method and the inverse integral transforms. The accuracy of proposed method is demonstrated with existing classical solutions. The results indicate that the porous homogenous soils as well as the porous non-homogenous layered soils can be considered in this proposed method. When the consolidation time factor is 0.01, the value of immediate consolidation settlement coefficient calculated by the weighted homogenous solution is 27.4% bigger than the one calculated by the non-homogeneity solution. When the consolidation time factor is 0.05, the value of excess pore water pressure for the weighted homogenous solution is 27.2% bigger than the one for the non-homogeneity solution. It is shown that the material non-homogeneity has a great influence on the long-term settlements and the dissipation process of excess pore water pressure. 展开更多
关键词 three-dimensional consolidation deformation porous layered soils asymmetric loads long-term deformation prediction transfer matrix method
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