中间支撑附近连续穿孔梁的施工特点

Volodymyr Romanіuk , Leonid Bezniuk , Volodymyr Supruniuk , Oleksandr Kononchuk , Olga Meshcheryakova , Andrii Sorochak
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引用次数: 0

摘要

通过在 "Lira "综合软件中使用有限元法进行计算,获得了两跨连续穿孔梁中各类中间支撑的应力应变状态数据。计算是在跨间施加对称均匀分布荷载的情况下进行的。结果表明,中间支撑的设计对梁跨内的最大挠度和应力影响很小。然而,它在一定程度上改变了其工作性质,尤其是在使用不带横向加劲件和在支撑轴线左右两侧带有未焊接孔的支撑部件时。在横梁支撑部分有孔的横截面特征设计点处观察到最大法向应力,特别是在没有加劲肋和支撑两侧有未焊接孔的情况下。此外,尽管仍有未焊接的孔洞,但在加入加劲肋后也观察到了类似的应力值。在所有情况下,这些应力都低于钢材的计算屈服点阻力。事实证明,加入焊接孔和支撑加劲件有利于提高支撑部件的性能。这是因为切向应力和法向应力的集中程度显著降低,尽管所有情况下的应力值仍低于钢材的计算阻力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Features of the work of continuous perforated beams near intermediate supports

The stress-strain state data for various types of intermediate supports in two-span continuous perforated beams were obtained through calculations using the finite element method within the "Lira" software complex. The calculations were performed under the influence of a symmetrical evenly distributed load applied across the spans. It was determined that the design of the intermediate support has minimal influence on the magnitude of maximum deflections and stresses within the beam span. However, it somewhat changes the nature of its operation, especially in the case of using a support part without transverse stiffeners and with unwelded holes to the left and right of the axis of the support. The maximum normal stresses were observed at the characteristic design point of the cross-section with the hole in the supporting part of the beam, specifically without the stiffening rib and with unwelded holes on both sides of the support. Additionally, comparable stress values were noted with the inclusion of stiffeners, albeit still with unwelded holes. In all cases, these stresses remain below the calculated yield point resistance of the steel. The inclusion of welded holes and support stiffeners proves beneficial in enhancing the performance of the support components. This is attributed to a significant reduction in the concentration of both tangential and normal stresses, despite stress values in all scenarios remaining below the calculated resistance of steel.

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CiteScore
1.70
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