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1.
复合材料圆柱壳的稳定性及其优化设计   总被引:1,自引:0,他引:1  
本文分别利用一阶剪切理论和Reddy高阶剪切理论计算了考虑横向剪切变形影响的复合材料层会圆柱壳的线性失稳载荷和几何非线性失稳载荷。分析了壳体的几何参数、铺层数、铺层角、半径厚度比值对失稳临界行值的影响。铺层的优化设计中利用随机试验法与可变容差法相结合,计算了寻求临界行值最大的铺层角最优问题,并利用约束非线性混合离散变量优化程序对铺层角为离散值的情况进行了优化。碳纤维环氧树脂圆柱壳模型试验表明本文计算结果是可靠的。  相似文献   
2.
文章分析了板裂结构地质背景及板裂介质岩体特征,研究了板裂围岩破坏模式及力学机理,并结合工程实例,利用随机有限元模型对板裂结构屈曲破坏进行分析。  相似文献   
3.
陈传杰  董科 《船舶工程》2017,39(8):78-83
由于复合材料具有高比强度、设计性强、扰腐蚀性能好等优点,而广泛应用于海洋立管中,但是复合材料立管设计还不够成熟。本文为探究提高复合材料立管抗面压屈曲能力的方法,研究了复合材料结构参数对复合材料立管抗面压屈曲能力的影响,发现铺层数和铺层角对其抗面压屈曲能力有较大影响。其后对复合材料立管增加止屈器,结果表明止屈器可以较大幅度提高其抗面压屈曲能力。对今后研究复合材料立管抗屈曲能力提供一定的指导意义。  相似文献   
4.
加筋板格屈曲及极限强度分析   总被引:12,自引:1,他引:11  
加筋板格是船体结构的主要组成部分,是船体最常用的结构单元。本文在消化相关文献后,作了一些修正和改进工作,提出了一套用于计算加筋板格屈曲及极限强度的方法,并开发了相应的计算软件。通过与试验及有限元计算结果的比较,考核了本方法的计算精度,证明了该方法完全可用于船体板架的工程设计计算。  相似文献   
5.
UHPC材料是一种新型纤维增强水泥基复合材料,利用材料强度高的特点设计建造桥梁通常为薄壁箱形结构,薄壁箱梁存在剪力滞效应、扭转畸变、翘曲失稳等问题。为研究UHPC箱梁顶板翘曲失稳,指导UHPC薄壁箱梁结构避免局部失稳破坏先于材料强度破坏,进行不同边界条件均布加载的19个UHPC薄板屈曲荷载试验研究。结果表明:UHPC板的屈曲主要有局部受压破坏、单方向裂缝破坏和双向裂缝破坏3种;屈曲荷载计算应引入材料和制作修正系数0.7;UHPC板最大幅值位于h/2高度,并只产生一个半波。最后对屈曲荷载试验值进行有限元计算分析对比,并通过欧拉公式推导UHPC箱梁顶板的临界板厚比限值。  相似文献   
6.
A general and efficient scaled method for stiffened plates subjected to combined longitudinal compression and lateral pressure is proposed based on slenderness, simply by adjusting the number of stiffeners. The design method makes it easier to determine the dimensions of the scaled model for a given scale ratio compared with the previously proposed method. The emphasis is on the influence of the plate slenderness, the column slenderness, and the non-dimensional parameter of the lateral pressure on the ultimate strength. By maintaining the consistency of the plate slenderness and column slenderness, the proposed method is applicable for designing scaled models with materials of different yield stresses and Young's moduli. A similar effect of the lateral pressure on the ultimate strength of the prototype and scaled models is achieved by maintaining the non-dimensional parameter. In addition, the applicability of the scaled method to the initial deflection is considered, which provides a reference for similar models. The similitude of the scaled method is verified for several typical buckling modes, including the beam–column, tripping, web and overall collapse modes. Given the numerical results, the proposed general and fast scaled method can provide reasonable dimensions of scaled stiffened plates subjected to combined loads.  相似文献   
7.
The objective of this paper is to describe the experimental assessment of the ultimate strength of a severely corroded box girder subjected to a uniform bending moment resulting from four-point loading. Three box girders that could simulate the behaviour of midship sections have been deteriorated in corrosive seawater environment to simulate different levels of corrosion degradation of ageing ship structures. During the deterioration process, various parameters have been controlled and the total weight lost was registered. Corroded plate thicknesses have been measured in 212 points and a statistical analysis has been performed. The resulting corrosion wastage has been fitted by a non-linear time variant degradation model. The experimental results of the ultimate strength test of a severely corroded box girder subjected to a four-point loading have been analysed. The load-displacement and moment-curvature relationship is discussed, different failure modes are identified, and the strain gauges readings are analysed.  相似文献   
8.
陈强 《中国造船》1999,(2):35-41
本文根据B.B.诺沃日洛夫~[1]薄壳理论,应用圆环壳稳定性控制方程,采用幂级数法求解 了静水压作用下半圆环壳非轴对称屈曲问题的屈曲载荷及屈曲模态。  相似文献   
9.
The average stress–strain curve for rectangular plates under uniaxial compression in ship hull structures is generated on the basis of the existing design formulae. The dual-term equation for ultimate strength of uniaxially compressed plates is employed to generate the average stress–strain curve for long plates. Two alternatives proposed by Faulkner and Frankland, respectively, are considered. An approximate method to take into account the effect of residual stresses is proposed. By investigating the variation of the stress distribution at different stages of compression, the average stress–strain relationship of the rectangular long plates with the effect of residual stresses is derived from equilibrium. The behaviors of the wide plates are also discussed. The assumption proposed by Valsgard for the idealized stress distribution of wide plates under uniaxial compression is adopted. The average stress–strain relationship for wide plates is derived from the existing design formulae. Two equations proposed by Hughes and recommended by API for critical stress of the central portion of the wide plate are considered. The effect of residual stresses is also taken into account for wide plates.  相似文献   
10.
通过非线性有限元方法分析波纹钢腹板剪切屈曲极限荷载和屈曲模态,采用一致缺陷模态法模拟波形尺寸缺陷,钢板厚度缺陷则通过钢板厚度分布函数对单元厚度的修正来引入。分析结果表明过大的波形尺寸缺陷会降低波纹钢腹板的剪切屈曲极限荷载,而波纹钢腹板对因钢板厚度缺陷而引起的过早屈曲要大大优于平钢腹板,微小的厚度缺陷对波纹钢腹板的剪切屈曲极限荷载影响很小。  相似文献   
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