首页> 外文OA文献 >CALCULATION OF DEFLECTIONS OF HOLLOW CONCRETE-FILLED STEEL TUBULAR MEMBERS OF THREE-HINGE SUSPENSION STRUCTURE/KABAMOSIOS TRILANKSTĖS BETONŠERDŽZIŲ TUŠČIAVIDURIŲ VAMZDINIŲ PLIENO STRYPŲ KONSTRUKCIJOS ĮLINKIŲ SKAIČIAVIMAS
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CALCULATION OF DEFLECTIONS OF HOLLOW CONCRETE-FILLED STEEL TUBULAR MEMBERS OF THREE-HINGE SUSPENSION STRUCTURE/KABAMOSIOS TRILANKSTĖS BETONŠERDŽZIŲ TUŠČIAVIDURIŲ VAMZDINIŲ PLIENO STRYPŲ KONSTRUKCIJOS ĮLINKIŲ SKAIČIAVIMAS

机译:三铰链悬架结构/五金结构结构管钢结构中空混凝土填充钢管构件通气的计算

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摘要

Recently, in scientific literature, information on a new type of suspended straight-line 3-hinged roof structures has considerably increased. It was stressed that straight-line elements are easily manufactured and erected, roof decking service conditions are good. In the world building practice during last 30 years very effective composite structures have been introduced, even hollow concrete-filled steel tubular members. But no information on the application of such members for suspended roofs was obtained. In some sources very simple straight-line suspended roofs structures were analysed, and for those shapes an effective centrifuged hollow concrete-filled steel tubular members may be successfully applied. These members do not require additional roof stabilisation. These composite ropes may be attributed to the elements of final flexural stiffness, and they are effective and simple to decrease deflections of the suspended roof. However, for these composite ropes the methods of their deflection calculations must be developed because it is necessary to estimate their composite cross-section and interaction between components. This paper deals with analysis of these ropes' behaviour and their deflection calculation, which was made by exact I. Kalminzer's and other simplified methods. The vertical deflections in the middle of elements of the straight-line three-hinge composite suspended structure may be calculated as consisting of two parts depending on their bending and tension. The part of vertical deflection at mid-span of a composite member connected with its bending may be calculated as for hollow concrete-filled steel tubular beam taking into account the sum of flexural bending stiffness of its cross-sectional components (EJ) c . The I.Kalminzer's or other simplified methods taking into account the sum of flexural bending stiffness of cross-sectional components may calculate the vertical deflection called by tension of element as the member of final flexural stiffness (EJ) c . Comparison of experimental and theoretical data shows a good satisfaction when deflection calculation for the straight-line composite rope is made by dividing it into two parts depending on bending and tension. Investigation made into the deformation properties and methods of deflection definition of straight-line circular hollow concrete-filled steel tubular members allows declaring the possibility of useful application of such members as the ones of final flexural stiffness in suspended roof structures.First Published Online: 30 Jul 2012
机译:最近,在科学文献中,一种新型的悬浮直线3-铰接屋顶结构的信息已大大增加。有人强调,直线元素容易制造和架设,屋面板服务条件都不错。在在过去的30年世界建筑实践中已经引入了非常有效的复合材料结构,甚至空心钢管混凝土管状构件。但得到这种成员悬浮屋顶的应用的信息。在一些来源非常简单的直线悬浮屋顶结构进行了分析,并为这些形状可以被成功地应用于有效离心空心钢管混凝土管状构件。这些成员并不需要额外的屋顶稳定。这些复合绳索可以归因于最终抗弯刚度的元件,并且它们是有效的,简单的以减小悬吊屋顶的偏转。然而,对于这些复合绳索必须开发他们的偏转计算的方法,因为它必须估计部件之间的它们的复合横截面和相互作用。这与这些绳索行为的分析及其变形的计算,这是通过精确一Kalminzer的和其他的简化方法制成的纸张交易。在直线三铰链复合悬浮结构的元素的中间的垂直偏转可以被计算为取决于它们的弯曲和张力由两个部分组成。垂直偏转在与它的弯曲可以被计算为用于中空钢管混凝土管梁考虑到它的横截面的组件(EJ)C的弯曲的弯曲刚度的总和相连接的复合构件的跨距中点的部分。该I.Kalminzer的或其它方法简化考虑到横截面部件的弯曲的弯曲刚度的总和可以计算垂直偏转由元件的张力作为最终弯曲刚度(EJ)C的成员调用。的实验和理论数据显示比较时为直线复合缆绳偏转计算是通过将其分成两个部分取决于弯曲和张力取得了良好的满意度。调查制作成变形性能和直线圆形中空钢管混凝土管状构件的偏转定义的方法允许宣布该成员最终抗弯刚度的在悬吊屋顶结构的那些的有用的应用的可能性。2012年7月30日首次出版

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