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首页> 外文期刊>International Journal of Solids and Structures >When Heyman's Safe Theorem of rigid block systems fails: Non-Heymanian collapse modes of masonry structures
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When Heyman's Safe Theorem of rigid block systems fails: Non-Heymanian collapse modes of masonry structures

机译:当刚性块系统的海曼安全定理失败时:砌体结构的非海曼崩溃模式

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摘要

Heyman's Safe Theorem is the theoretical basis for several calculation methods in masonry analysis. According to the theorem, the existence of an internal force system which equilibrates the external loads guarantees that the masonry structure is in a stable equilibrium state, assuming that a few conditions on the material behaviour are satisfied: the stone blocks have infinite compressional resistance, and the contacts between them resist only compression and friction. This paper presents simple examples in which the Safe Theorem fails: collapse occurs in spite of the existence of an equilibrated force system. A theoretical analysis of the stability of assemblies of rigid blocks with frictional contacts is then introduced: the virtual work theorem is derived, and a refined formulation of the Safe Theorem is given.
机译:海曼安全定理是砌体分析中几种计算方法的理论基础。根据该定理,假设满足材料行为的一些条件,则存在一个平衡外力的内力系统,可确保砌体结构处于稳定的平衡状态:石块具有无限的抗压性,并且它们之间的接触仅抵抗压缩和摩擦。本文给出了一些简单的例子,其中安全定理失败了:尽管存在一个平衡的力系统,但仍然发生崩溃。然后介绍了带有摩擦接触的刚性块组件的稳定性的理论分析:推导了虚拟功定理,并给出了安全定理的精细表述。

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