承受低海拔冲击荷载的轴向加载 RC 柱的动态和残余静态行为

IF 3.1 3区 工程技术 Q2 CONSTRUCTION & BUILDING TECHNOLOGY
Abdullah Cengiz, Tuba Gurbuz, A. Ilki, Metin Aydogan
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引用次数: 0

摘要

柱子可能会因动态撞击效应而遭受严重损坏,但在设计时却忽略了这一点。撞击效应可能是车辆撞击路边建筑物、停车场或桥梁的支柱。然而,冲击荷载对钢筋混凝土柱行为的影响尚未得到充分研究。本研究对轴向加载的钢筋混凝土柱的冲击行为进行了实验和数值研究。通过从不同高度投掷质量块,对轴向加载的全尺寸(30 × 30 × 320 厘米)柱子施加低高度冲击,进行了动态实验。在评估了柱子在不同冲击荷载下的性能后,还通过静态加载获得了柱子的剩余承载能力。此外,还建立了一个三维有限元模型,并利用落重实验结果进行了验证。此外,还对增加冲击能量对 RC 柱行为的影响进行了数值研究。研究结果表明,随着施加冲击能量的增加,动态破坏/失效模式从挠曲变为剪切。当支柱受到其总冲击能量 75.8% 的冲击时,与之前未受冲击的状态相比,其刚度降低了 38.1%,承载能力降低了 49.7%。此外,柱子的静态耗能能力损失也达到了预加载状态的 81.7%。所开发的有限元模型还可用于确定柱子在车辆碰撞型低标高撞击下的动态性能和损坏模式,为结构工程师设计此类易损柱子提供指导,并有助于提高结构设计的安全性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dynamic and Residual Static Behavior of Axially Loaded RC Columns Subjected to Low-Elevation Impact Loading
Columns can suffer heavy damage due to dynamic impact effects, which are ignored during their design. The impact effect could be a vehicle crash to columns of streetside buildings, parking garages or bridges. However, the effect of impact loading on the behavior of reinforced concrete columns has not been sufficiently studied. In this study, an experimental and numerical investigation is carried out on the impact behavior of axially loaded reinforced concrete columns. Dynamic experiments were carried out by dropping a mass from different heights to apply low-elevation impact on axially loaded, full-scale (30 × 30 × 320 cm) columns. After evaluating the performance of the columns under varied impact loadings, the residual load carrying capacities of the columns were also obtained by static loading. Additionally, a three-dimensional finite element model was developed and validated by using drop weight experimental results. The effect of increasing the impact energy on the behavior of RC columns was also examined numerically. As a result of the research, it has been observed that, as the applied impact energy increases, the dynamic damage/failure mode changes from flexure to shear. When a column was impacted by 75.8% of its total impact energy capacity, a decrease of 38.1% in its stiffness and a decrease of 49.7% in its load carrying capacity were determined compared to its previous unimpacted state. Additionally, the static energy dissipation capacity loss of the column was reached, up to 81.7% of its preloading state. The developed finite element model can also be utilized to determine the dynamic performance and the damage modes of columns under vehicle collision-type low-elevation impacts, which can be a guide for structural engineers in the design of such vulnerable columns and will contribute to safer structural designs.
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来源期刊
Buildings
Buildings Multiple-
CiteScore
3.40
自引率
26.30%
发文量
1883
审稿时长
11 weeks
期刊介绍: BUILDINGS content is primarily staff-written and submitted information is evaluated by the editors for its value to the audience. Such information may be used in articles with appropriate attribution to the source. The editorial staff considers information on the following topics: -Issues directed at building owners and facility managers in North America -Issues relevant to existing buildings, including retrofits, maintenance and modernization -Solution-based content, such as tips and tricks -New construction but only with an eye to issues involving maintenance and operation We generally do not review the following topics because these are not relevant to our readers: -Information on the residential market with the exception of multifamily buildings -International news unrelated to the North American market -Real estate market updates or construction updates
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