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龚友根,贺玲凤*.含有初始凹陷圆柱壳稳定承载能力的实验研究与数值计算[J].实验力学,2010,25(1):73~80
含有初始凹陷圆柱壳稳定承载能力的实验研究与数值计算
Experimental Study and Numerical Calculation of Stability andLoad-Carrying Capacity of Cylindrical Shell with Initial Dent
投稿时间:2009-07-06  修订日期:2009-11-16
DOI:
中文关键词:  凹陷圆柱壳  稳定承载能力  实验研究  数值计算
英文关键词:cylindrical shell with initial dent  load-carrying capacity  experimental study  numerical calculation
基金项目:
作者单位
龚友根 广州民航职业技术学院 机务工程系 广东广州 510403 
贺玲凤* 华南理工大学 土木与交通学院 广东广州 510640 
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中文摘要:
      对含有初始轴对称凹陷的圆柱壳在轴向载荷作用下的稳定承载能力进行了研究。首先,通过实验研究,得到了不同凹陷参数及不同壳长条件下的临界载荷。同时,不考虑凹陷成形过程,仅把凹陷部分当做结构的不规则变化时,对含有凹陷圆柱壳建立三维有限元模型进行稳定性分析。在分析中考虑了初始缺陷(圆柱壳成形加工中的不平直度、椭圆度、初始弯曲等因素引起)幅值f0=0.1t和f0=0.2t(t为壳体壁厚),得到了不同凹陷参数及不同壳长的临界载荷。结果表明:含有凹陷圆柱壳稳定承载能力对初始缺陷不太敏感,即:初始缺陷与凹陷相比,对稳定承载能力的影响极小。数值计算结果与实验结果吻合较好,共同给出了含有初始轴对称凹陷圆柱壳的承载能力随凹陷幅值、长度及圆柱壳长度的变化而改变的规律。
英文摘要:
      Study of the stability and load-carrying capacity of a cylindrical shell with initial axisymmetric dent under uniform axial compression was carried out. Through experimental investigation, the critical loads for different dent lengths and different cylindrical shell lengths were obtained. At the same time, the dent was just regarded as an irregular change of whole structure regardless of the process of dent formation, a 3-dimensional finite element model was established to analyze the stability of cylindrical shell with initial dent. Taking into account the initial defects such as non-flatness, ellipticity and initial bending formed in fabrication, under the initial defect amplitudes f0=0.1t and f0=0.2t, respectively (t is the cylindrical shell thickness), the critical loads were obtained for different dent amplitudes, longitudinal lengths and cylindrical shell lengths. Results show that the effect of initial defect on the stability and carrying capacity of cylindrical shell with initial defects is inconspicuous relative to the initial dent. Experimental and numerical simulation results are in good agreement and both of them provide a regulation describing the relations among the load-carrying capacity and the dent amplitude and length and the cylindrical shell length.
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