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1.
本文采用王仁等提出的塑性动力屈曲的能量准则讨论了圆柱壳在不均匀的外部径向冲击下的塑性动屈曲问题。获得了屈曲的占优波数公式及临界冲击速度公式,初步的实验证明本文的结论是合理的。同时进一步证明该能量准则的有效性。  相似文献   

2.
轴向应力波作用下圆柱壳塑性轴对称动力屈曲   总被引:2,自引:0,他引:2  
运用有限元特征值分析方法对应力波作用下圆柱壳塑性轴对称动力失稳问题进行了研究。基于应力波理论和相邻平衡准则导出了圆柱壳轴对称动力失稳时的特征方程,在分析中同时考虑了应力波效应及横向惯性效应,把圆柱壳塑性动力失稳问题归结为特征值问题。通过引入圆柱壳动力失稳时的波前约束条件实现了此类问题的有限元特征值解法。计算结果揭示了圆柱壳塑性轴对称动力屈曲变形发展的机理,以及轴向应力波和屈曲变形的相互作用规律。  相似文献   

3.
圆柱壳在侧向非对称冲击载荷下的塑性动力屈曲   总被引:2,自引:1,他引:2  
采用塑性动力屈曲能量准则,对圆柱壳非均匀局部径向冲击下的塑性动力屈曲进行了研究。文中分别采用弹性的角弹簧和位移弹簧模拟非屈曲部分对屈曲部分的影响,推导了有关模态和临界速度的冲击公式,并与有关的实验结果进行了比较,分析了两种边界对塑性动力屈曲的影响。  相似文献   

4.
弹—塑性正交梁系轴向冲击屈曲与塑性失效的实验研究   总被引:1,自引:0,他引:1  
本文对弹——塑性正交梁系(以下简称梁系)的流——固冲击屈曲和冲击塑性失效问题进行了实验研究.研究表明:在轴向流——固冲击作用下,梁系呈现出三种不同的动力临界状态:屈曲、塑性变形和塑性失效.本文通过对梁系临界状态时的动力响应特征的分析,分别建立了板架的临界动力屈曲准则,临界塑性准则和临界动力塑性失效准则,这些准则完整地定义了梁系在轴向流——固冲击作用下的弹——塑性动力特征,初步揭示了这一类非保守冲击屈曲和冲击失效现象的一些重要特性.  相似文献   

5.
受轴向冲击圆柱壳的塑性动力屈曲研究   总被引:5,自引:1,他引:4  
令屈曲模态同时包含轴向坐标x和环向坐标 ,通过最优模态的分析 ,直接得到各向同性线性强化刚塑性圆柱壳受轴向冲击时发生轴对称屈曲或非轴对称屈曲时的临界速度 ,在此基础上讨论了临界速度与径厚比的关系。  相似文献   

6.
非均匀径向冲击下圆柱壳塑性动屈曲   总被引:2,自引:0,他引:2  
本文采用王仁等提出的塑性动力屈曲的能量准则讨论了圆柱壳在不均匀外部径向冲击下的塑性动力屈曲问题,获得了屈曲的占优波数公式及临界冲击速度公式,初步的实验证明本文的结论是合理的.同时进一步证实该能量准则的有效性.  相似文献   

7.
本文采用王仁等提出的塑性动力屈曲的能量准则讨论了圆柱壳在不均匀的外部径向冲击下的塑性动屈曲问题,获得了屈曲的占优波数公式及临界冲击速度公式,初步的实验证明本文的结论是合理的。同时进一步证明该能量准则的有效性。  相似文献   

8.
本文对结构动力屈曲的特征、分类、屈曲准则等作了一般性讨论,对流固冲击屈曲,动力屈曲的缺陷模型等作了专题讨论。最后对圆柱壳的塑性动力屈曲作了全面回顾。  相似文献   

9.
本文研究在轴向冲击作用下,具有初始几何缺陷的圆柱壳的非线性弹性动力屈曲问题。由于冲击过程中作用时间极短,应力波的影响变得相当重要,同时认为圆柱壳经历大挠度变形。分析中不仅考虑圆柱壳的径向惯性力,而且也考虑轴向惯性力和几何非线性的影响。假设圆柱壳中位移和薄膜力可分成轴对称分量和非轴对称分量之和,并引入应力函数表示非轴对称内力,对平衡方程应用伽辽金方法,将导出的和冲击物体的质量对动屈曲性能的影响很大。  相似文献   

10.
充液圆柱壳轴向冲击屈曲的实验研究与计算机数值模拟   总被引:4,自引:0,他引:4  
借助落锤装置实现冲击加载,完成了一组充满水的金属薄壁圆柱壳试件轴向冲击屈曲过程的实验研究,同时利用LS-DYNA大型动力软件对冲击屈曲的全过程进行了计算机模拟,对于屈曲模态发展过程以及冲击力和液压的动态时程曲线,实验观察和数值结果均表现出较好的一致性,研究表明,在撞击过程中壳内形成很大的液体压力,在此内压和轴向压缩的联合作用下,壳壁发生轴对称塑性屈曲,屈曲模态为一系列依次发展的环带波纹。  相似文献   

11.
By using the energy criterion in[3],the impact torsional buckling for the rigid plastic cylindrical shell is studied.The linear dynamic torsional buckling equations for the rigid plastic shell is drived,and the critical impact velocity is given.  相似文献   

12.
圆柱壳的动态塑性屈曲问题的研究主要是集中在屈曲模态方面,至于屈曲的临介载荷与临介时时间则研究的较少,SHPB用于研究材料在高应变率下动态力学性能已为大家所熟悉,但用于研究结构的动态屈曲则未见报道,本文利用一装置对柱壳的动态塑性屈曲进行了实验研究,测出了壳体屈曲过程的载荷,轴向缩短量与时间的关系曲线,得到屈曲时的临介载荷与临介时间,同时发现壳体屈曲变形的一些规律并与静态实验的结果进行了比较,为理论分  相似文献   

13.
Some characteristic features of the dynamic inelastic buckling behaviour of cylindrical shells subjected to axial impact loads are discussed. It is shown that the material properties and their approximations in the plastic range influence the initial instability pattern and the final buckling shape of a shell having a given geometry. The phenomena of dynamic plastic buckling (when the entire length of a cylindrical shell wrinkles before the development of large radial displacements) and dynamic progressive buckling (when the folds in a cylindrical shell form sequentially) are analysed from the viewpoint of stress wave propagation resulting from an axial impact. It is shown that a high velocity impact causes an instantaneously applied load, with a maximum value at t=0 and whether or not this load causes an inelastic collapse depends on the magnitude of the initial kinetic energy.  相似文献   

14.
对有径向载荷的圆柱壳,受轴向冲击时塑性失稳的临界速度进行理论分析。分析结果与实验值相吻合,并给出一般的规律,它也适用于无径向载荷的情况。  相似文献   

15.
This article reports an experimental investigation on the axial impact buckling of thin metallic cylindrical shells fully filled with water. Low velocity impact tests are carried out by DHR-9401 drop hammer rig. The whole process of dynamic buckling is simulated using LS-DYNA computer code. The consistency between experimental observation and numerical simulation is quite satisfactory. The investigation indicates that quite high internal hydrodynamic pressure occurs inside the shell during the impact process. Under the combined action of the high internal pressure and axial compression plastic buckling occurs easily in the thin-walled shells and buckling modes take on regular and axisymmetric wrinkles. This project is supported by the National Natural Science Foundation of China(19672039) and the Shanxi Foundation for Returned Scholars from Abroad.  相似文献   

16.
In the present paper, experimental studies on dynamic plasticbuckling of circular cylindrical shells under axial impact are carried out. Hopkinson bar and drop hammer apparatus are used for dynamic loading. Three groups of circular cylindrical shells made of copper are tested under axial impact. From the experiments, the first critical velocity corresponding to the axi-symmetric buckling mode and the second critical velocity corresponding to the non-axisymmetric buckling mode are determined. The present results come close to those of second critical velocity given by Wang Ren[4–6]. Two different kinds of non-axisymmetric buckling modes oval-shaped and triangle shaped are founded. The buckling modes under two loading cases, viz. with small mass but high velocity and with large mass and low velocity using Hopkinson bar and drop hammer, are different. Their critical energies are also discussed. The project is supported by the National Natural Science Foundation of China (19672039) and the Foundation for Returned Scholar from Abroad of Shanxi Province  相似文献   

17.
Several experiments were performed with a Kolsky Bar (Split Hopkinson Pressure Bar) device to investigate the dynamic axial buckling of cylindrical shells. The Kolsky Bar is a loading as well as a measuring device which can subject the shells to a fairly good square pulse. An attempt is made to understand the interaction between the stress wave and the dynamic buckling of cylindrical shells. It is suggested that the dynamic axial buckling of the shells, elastic or elasto-plastic, is mainly due to the compressive wave rather than the flexural or bending wave. The experimental results seem to support the two critical velocity theory for plastic buckling, withV c1 corresponding to an axisymmetric buckling mode andV c2 corresponding to a non-symmetric buckling mode. The project supported by National Natural Science Foundation of China  相似文献   

18.
In this paper, experimental studies are carried out on the buckling of circular cylindrical thin shells under impact torque. Experiments of impact buckling are made on a Hopkinson torsional bar. The torsional bar gives a step torque on the shells. Through an analysis of the strain-time curve obtained in experiment, the dynamic buckling critical torqueM er and buckling waves numbern of the shell with different geometric data and some qualitative results are obtained. The buckling behavior of circular cylindrical thin shells under static and impact torque is compared.  相似文献   

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