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Ductile fuses for special concentrically braced frames.

机译:用于特殊的同心支撑框架的延性熔断器。

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摘要

The behavior of Fuse Elements subjected to load reversals is explored for potential use in Steel Concentrically Braced Frames. Two fuse elements are investigated through experimental and computational analyses. The use of these fuse elements allows the braces to yield in a ductile manner while limiting the damage to the brace elements and the connections.;Both fuse elements are intended to maintain frame strength under repeated cycles beyond yield both in tension and compression, providing balance between the tensile and compressive lateral load resistance across the building in the direction of the braced frame which helps prevent the accumulation of inelastic drifts in one direction.;The first fuse element system consists of a reduced brace section with oval cutouts and is designated by the letters RXS. The tensile capacity of the fuse element is mainly a function of the cross sectional area whereas the fuse compressive capacity depends not only on the fuse cross sectional area but also on the fuse length. Experimental results showed that the response of the RXS fuse to the loading history was rather poor mainly because of its limited energy dissipation capacity. This fuse system is highly sensitive to eccentricities on axial loading and it is not suitable for the intended applications, although it provided valuable information for the development of the second fuse system presented.;The second fuse element is a brace composite element that consists of steel bars embedded in a polymer matrix that is confined by carbon fiber reinforced polymer. The letters BCE designate this second system. The tensile capacity is provided by the steel bars, similarly the buckling capacity is also provided by the steel bars but due to the slenderness of the bars, a confined polymer matrix is provided to improve the stiffness of the system under compressive loads. The polymer matrix is confined by a Carbon Reinforced Polymer layer.;The BCE fuse system has the ability to dissipate energy without loss in strength up to very large inelastic deformations. Experimental results showed that damage to the BCE fuse was very limited even at unit deformations beyond 3%, indicating that the fuse has remarkable toughness under load reversals.;The BCE fuse exhibited great potential as an energy dissipation device. The biggest benefit of the composite fuse is its inherent toughness. The fact that the fuse bars can be easily replaced after large inelastic deformations is another significant advantage. Even though the fuse was subjected to large inelastic deformations, there was virtually no loss in strength in tension and compression, and there was no meaningful overstrength in compression.
机译:研究了承受反向载荷的保险丝元件的性能,以潜在地用于钢制同心支撑框架中。通过实验和计算分析研究了两种保险丝元件。这些熔断器元件的使用允许支撑以延性的方式屈服,同时限制了对支撑元件和连接件的损坏。两个熔断器元件都旨在在反复循环下保持框架强度,超过拉伸和压缩的屈服,从而提供平衡沿支撑框架方向横跨建筑物的拉伸和压缩侧向载荷阻力之间的关系,这有助于防止一个方向上的无弹性漂移的累积。;第一个熔断器元件系统由带有椭圆形切口的减小的支撑部分组成,用字母RXS。保险丝元件的抗拉能力主要是横截面积的函数,而保险丝的压缩能力不仅取决于保险丝的横截面积,而且还取决于保险丝的长度。实验结果表明,RXS熔断器对负载历史的响应相当差,这主要是由于其有限的能量消散能力。该熔断器系统对轴向载荷的偏心高度敏感,尽管它为开发第二种熔断器系统提供了有价值的信息,但它不适合预期的应用。第二熔断器元件是由钢制成的支撑复合元件嵌入聚合物基质中的钢筋,该基质由碳纤维增强的聚合物限制。字母BCE表示第二个系统。拉伸强度由钢筋提供,类似的屈曲能力也由钢筋提供,但是由于钢筋的细长性,提供了一种受限的聚合物基体,以提高系统在压缩载荷下的刚度。聚合物基体由碳增强聚合物层限制。BCE熔断器系统具有耗散能量的能力,而不会损失强度,直至非常大的非弹性变形。实验结果表明,即使单元变形超过3%,BCE熔断器的损坏也非常有限,这表明该熔断器在反向负载下具有显着的韧性。BCE熔断器作为消能装置具有巨大的潜力。复合保险丝的最大好处是其固有的韧性。另一个重要的优点是,在发生较大的非弹性变形后,保险丝很容易更换。即使保险丝经受了很大的非弹性变形,拉伸和压缩强度实际上也没有损失,并且压缩也没有有意义的超强度。

著录项

  • 作者

    Bonetti, Santiago.;

  • 作者单位

    University of Kansas.;

  • 授予单位 University of Kansas.;
  • 学科 Engineering Civil.
  • 学位 D.Eng.
  • 年度 2008
  • 页码 855 p.
  • 总页数 855
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;
  • 关键词

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