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Experimental study of concrete-filled multiplanar circular hollow section tubular trusses

机译:钢管混凝土多平面空心截面管状桁架的试验研究

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This paper presents an experimental study on concrete-filled multiplanar tubular trusses made of circular hollow section (CHS) members. A total of four types of concrete-filled multiplanar tubular trusses including Triangular truss (TT), Inverse-Triangular truss (IT), Square truss (ST) and Trapezoid truss (TZ) were tested under static loading. The failure mode, load carrying capacity, overall deflection and strain intensity of all specimens are reported. The effects of top and bottom chord members, straight and diagonal brace members and lateral bracings on the load carrying capacity, flexural rigidity and ductility of all specimens were also investigated. The typical failure modes observed from the tests include the local buckling of straight brace members, the surface plasticity and shear failure of the bottom chord members, the weld fracture around tubular joints at the bottom chord members, and the end support failure of the top chord member. The load carrying capacity, flexural rigidity and ductility of different types of multiplanar tubular trusses made of identical CHS members are quite different due to the remarkable changes of the mechanical behaviour of CHS members. On the other hand, the lateral bracings play different roles under different load levels in enhancing the load carrying capacity of different types of multiplanar tubular trusses. It is demonstrated from the comparison that the Inverse-Triangular truss (IT) has optimum flexural rigidity, ductility and efficiency in practice. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文对由圆形空心截面(CHS)构件制成的混凝土填充多平面管状桁架进行了实验研究。在静态载荷下,总共测试了四种类型的混凝土填充多平面管状桁架,包括三角形桁架(TT),倒三角形桁架(IT),方形桁架(ST)和梯形桁架(TZ)。报告所有样品的破坏模式,承载能力,总挠度和应变强度。还研究了顶部和底部弦杆构件,直角撑杆和对角撑杆构件以及侧向撑杆对所有试样的承载能力,抗弯刚度和延性的影响。从测试中观察到的典型破坏模式包括直撑构件的局部屈曲,底部弦构件的表面塑性和剪切破坏,底部弦构件的管状接头周围的焊接断裂以及顶部弦的末端支撑失效会员。由于CHS构件的机械性能发生了显着变化,因此由相同的CHS构件制成的不同类型的多平面管状桁架的承载能力,抗弯刚度和延展性差异很大。另一方面,在不同的载荷水平下,侧向支撑在提高不同类型的多平面管状桁架的承载能力方面起着不同的作用。从比较中可以看出,倒三角形桁架(IT)在实践中具有最佳的弯曲刚度,延展性和效率。 (C)2015 Elsevier Ltd.保留所有权利。

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