不同支撑条件下薄板承载力分布规律

V. Kozhushko, S. Krasnov, Kateryna Berezhna, S. Oksak, R. Smolyanyuk
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引用次数: 0

摘要

本文报道了一种柔性板在其区域内任何地方受竖向集中外力作用时,其不同截面的分布能力的研究。考虑了一个有一个夹紧边的板和在夹紧处任意距离上排列的一系列机架。从弹性理论和数学的角度来看,解决这个问题是非常困难的。本研究发现,横向分布系数可用于简化旨在确定系统应力-应变状态的计算。在确定板的应力-应变状态时,采用工作[1]中描述的计算方法。该板被切割成一系列纵向条,从建筑力学的角度来看,这些条代表一个控制台条,一端夹紧,位于距离夹紧点任意距离的固定支架上。结果表明,在同一截面上,受测板的分布能力与集中荷载沿纵向条长施加点的关系不大(在2.6%至6.7%之间)。不同截面的分配能力差别很大(在10%到30%的范围内)。本研究的结果是提出了一种统一且易于实施的计算方法,用于计算任何条件下板在支撑上的休息和暴露于任何外部载荷下的板。计算两个方向上有棱的板块也没有困难。在这些情况下的其他估计方法需要不同的数学方法,并且,对于一系列外部负载的情况,或在困难的板休息条件下,与系统的应力-应变状态有关的问题仍然是开放的
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Patterns in the Distribution Capacity of Thin Plates Under Different Condition for Their Resting on Supports
This paper reports a study into the distribution capacity of a flexible plate in different cross-sections exposed to the external vertical concentrated forces applied in any place of its area. A plate with one pinched side and a series of racks arranged at any distance from the pinching has been considered. In terms of the theory of elasticity and mathematics, solving this problem poses significant difficulties. This has study found that a lateral distribution coefficient could be used to simplify calculations aimed at determining the stressed-strained state of the system. In determining the stressed-strained state of the plate, the calculation method described in work [1] was applied. The plate is cut into a series of longitudinal strips that represent, from the standpoint of construction mechanics, a console strip with one pinched end and resting on a stationary support located at any distance from the pinching. It has been revealed that the distribution capacity of the examined plate in the same cross-section depends insignificantly on the point of application of the concentrated load along the length of the longitudinal strip (between 2.6 and 6.7 %). The distribution capacity in different cross-sections does differ greatly (in the range of 10 to 30 %). The result of this study is the proposed unified and easy-to-implement method of calculating plates under any conditions for their resting on supports and when exposed to any external loads. There is also no difficulty in calculating the plates backed by edges in both directions. Other estimation methods in these cases require a different mathematical approach, and, for the case of a series of external loads, or under difficult plate rest conditions, the issue relating to the stressed-strained state of the system remains open
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