超高层混凝土建筑无法通过铰接、后安装等措施释放收缩、徐变效应导致的附加变形、附加内力。CEBFIP Model Code 90、CEB-FIP Model Code 2010与ACI209规范对混凝土收缩、徐变效应的计算公式不同,考虑的参数也不同,但计算方法类似。考...超高层混凝土建筑无法通过铰接、后安装等措施释放收缩、徐变效应导致的附加变形、附加内力。CEBFIP Model Code 90、CEB-FIP Model Code 2010与ACI209规范对混凝土收缩、徐变效应的计算公式不同,考虑的参数也不同,但计算方法类似。考虑混凝土构件的含钢率后,收缩、徐变效应会随着含钢率的增大而降低。超高层混凝土建筑可采用分段补偿法施工,将每一分段内各层竖向构件的施工预留长度之和在分段底层内进行补偿,以降低混凝土收缩、徐变效应导致的竖向构件变形差,确保结构安全。展开更多
An example of using ultrasonic method to detect the compactness of complicated concrete-filled steel tube in certain high-rise building was discussed in this study.Because of the particularity of the complicated concr...An example of using ultrasonic method to detect the compactness of complicated concrete-filled steel tube in certain high-rise building was discussed in this study.Because of the particularity of the complicated concrete-filled steel tubular column,the plane detection method and embedded sounding pipe method were adopted in the process of effectively detecting the column.According to the results of the plane detection method and embedded sounding pipe method,the cementing status of steel tube and concrete can be concluded,which cannot be judged by the hammering method in the rectangular steel tube-reinforced concrete.展开更多
文摘超高层混凝土建筑无法通过铰接、后安装等措施释放收缩、徐变效应导致的附加变形、附加内力。CEBFIP Model Code 90、CEB-FIP Model Code 2010与ACI209规范对混凝土收缩、徐变效应的计算公式不同,考虑的参数也不同,但计算方法类似。考虑混凝土构件的含钢率后,收缩、徐变效应会随着含钢率的增大而降低。超高层混凝土建筑可采用分段补偿法施工,将每一分段内各层竖向构件的施工预留长度之和在分段底层内进行补偿,以降低混凝土收缩、徐变效应导致的竖向构件变形差,确保结构安全。
文摘An example of using ultrasonic method to detect the compactness of complicated concrete-filled steel tube in certain high-rise building was discussed in this study.Because of the particularity of the complicated concrete-filled steel tubular column,the plane detection method and embedded sounding pipe method were adopted in the process of effectively detecting the column.According to the results of the plane detection method and embedded sounding pipe method,the cementing status of steel tube and concrete can be concluded,which cannot be judged by the hammering method in the rectangular steel tube-reinforced concrete.