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1)  incompressible hyper-elastic cylindrical shell
不可压缩超弹性圆柱壳
2)  compressible hyper-elastic spherical shell
可压缩的超弹性球壳
3)  thermo-hyperelastic cylindrical shells
热超弹性圆柱壳
1.
The finite oscillation and destruction of thermo-hyperelastic cylindrical shells subjected to a suddenly applied dead-load on the inner surface under different temperature fields were studied.
研究了热超弹性圆柱壳在内表面突加载荷及不同温度场作用下的运动与破坏问题。
4)  hyper-elastic cylindrical shells
超弹性圆柱壳
1.
The dynamical response such as the motion and destruction of hyper-elastic cylindrical shells subjected to periodic or a suddenly applied constant load on the inner surface are studied within the framework of finite elasto-dynamics.
研究了不可压超弹性圆柱壳在内表面周期载荷及突加常值载荷作用下的运动与破坏等动力响应问题。
5)  incompressible hyperelastic material
不可压缩超弹性材料
6)  elastic cylindrical shell
弹性圆柱壳
1.
A symplectic method and dynamic buckling of elastic cylindrical shells under both axial impact and internal or external pressure;
辛方法和弹性圆柱壳在内外压和轴向冲击下的动态屈曲
2.
In this paper,non axisymmetric buckling of an elastic cylindrical shell,which is impacted on the end by axial step loads,is discussed with the aid of the stress wave propagating.
讨论弹性圆柱壳端部受冲击载荷作用,在应力波传播过程中的非对称屈曲问题。
3.
This paper deals with the bifurcation problem of the propagation of axial waves for semi infinite elastic cylindrical shells, whose ends are considered by three kinds of end supports and impacted by step and impulse loads.
考虑应力波的传播,讨论了半无限长弹性圆柱壳在端部轴向冲击下动态屈曲问题。
补充资料:不可压缩流体
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性质:一般指体积不随压力变化的液体。实际上液体体积多少会随压力的增大而缩小,即都具有某些可压缩性,“不可压缩”只具有相对意义。由于液体的可压缩性很小,一般都将它视为不可压缩流体;气体的可压缩性则大得多,常称之为可压缩流体,且在体积变化时常伴随有明显的温度变化。即使气体在过程中体积的变化很小,可不考虑其压缩性时,也常称之为“未压缩流体”,不称“不可压缩流体”,意为可压缩而来压缩。

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