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Nonlinear dynamic buckling of pinned-fixed shallow arches under a sudden central concentrated load

机译:中心集中突然荷载作用下的浅埋拱的非线性动力屈曲

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The structural behavior of a shallow arch is highly nonlinear, and so when the amplitude of the oscillation of the arch produced by a suddenly-applied load is sufficiently large, the oscillation of the arch may reach a position on its unstable equilibrium paths that leads the arch to buckle dynamically. This paper uses an energy method to investigate the nonlinear elastic dynamic in-plane buckling of a pinned-fixed shallow circular arch under a central concentrated load that is applied suddenly and with an infinite duration. The principle of conservation of energy is used to establish the criterion for dynamic buckling of the arch, and the analytical solution for the dynamic buckling load is derived. Two methods are proposed to determine the dynamic buckling load. It is shown that under a suddenly-applied central load, a shallow pinned-fixed arch with a high modified slenderness (which is defined in the paper) has a lower dynamic buckling load and an upper dynamic buckling load, while an arch with a low modified slenderness has a unique dynamic buckling load.
机译:浅拱的结构行为是高度非线性的,因此,当突然施加的载荷所产生的拱的振动幅度足够大时,拱的振动可能会到达其不稳定平衡路径上的某个位置,从而导致拱起。拱动态扣紧。本文采用能量方法研究了在中心集中载荷作用下,无限连续施加的固定浅壁圆拱的非线性弹性动力面内屈曲。利用能量守恒原理建立了拱的动态屈曲准则,导出了动态屈曲载荷的解析解。提出了两种确定动态屈曲载荷的方法。结果表明,在突然施加中心载荷的情况下,具有较高修正细长度的浅钉固定拱(如本文所定义)具有较低的动态屈曲载荷和较高的动态屈曲载荷,而具有较低变形的曲拱改良的细长度具有独特的动态屈曲载荷。

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