...
首页> 外文期刊>International journal of steel structures >Experimental Investigation on Tensile Properties of the Bolt in Sphere Joints Under Fire
【24h】

Experimental Investigation on Tensile Properties of the Bolt in Sphere Joints Under Fire

机译:火灾中球体接头螺栓拉伸性能的实验研究

获取原文
获取原文并翻译 | 示例
           

摘要

As a common type of joint used in spatial grid structures, the tensile performance of bolt-sphere joints directly affects the safety of the spatial grid structure under fire. To study the tensile properties of the bolts in sphere joints under fire, the four sets of 36 bolt-sphere joints consist of M20, M24, M30, and M36 high-strength bolts were conducted in elevated temperature by steady-state test. Therefore, the tensile bearing capacity of the bolt-sphere joint was obtained under different elevated temperatures. Experimental results show the destroyed section of the bolt-sphere joint that occurs in the thread of the high-strength bolt at the intersection of the sphere because of the maximum concentration of stresses that occurred in areas of destruction. The brittle fracture of bolt-sphere joints happened when the temperature is below 400 °C. As the temperature increased, the neck shrinkage of the damaged section of the bolt becomes more apparent, and the ductile failure of the bolt-sphere joint occurred. The stiffness and the bearing capacity of bolt-sphere joints decreased gradually as the temperature rose. Conversely, the ductility was gradually increasing. When the temperature was greater than 300 °C, the stiffness and the bearing capacity of the bolts in sphere joint decreased rapidly. The bearing capacity reduction coefficient of the high-strength bolts with different diameters were next to the same at elevated temperatures. According to the experimental data, the formulas of the tensile bearing capacity reduction coefficient of bolt-sphere joints were obtained.
机译:作为空间栅格结构中使用的常用关节,螺栓球接头的拉伸性能直接影响了在火灾中的空间网格结构的安全性。为了研究在火灾的球体中螺栓的拉伸性能,通过稳态试验在升高的温度下,由M20,M24,M30和M36高强度螺栓组成的四组36螺栓球接头。因此,在不同升高的温度下获得螺栓 - 球形接头的拉伸承载力。实验结果表明,由于在破坏区域发生的最大应力浓度的最大应力浓度,螺栓球接头的被破坏的部分发生在球体中的高强度螺栓的螺纹中。当温度低于400℃时,螺栓球接头的脆性断裂发生。随着温度的增加,螺栓的损坏部分的颈部收缩变得更加明显,并且螺栓球接头的延展性故障发生。随着温度升高,螺栓球接头的刚度和承载力逐渐降低。相反,延展性逐渐增加。当温度大于300℃时,球形接头中螺栓的刚度和承载力迅速下降。在升高的温度下,具有不同直径的高强度螺栓的承载能力降低系数在相同。根据实验数据,获得了螺栓球接头的拉伸承载能力降低系数的公式。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号