To simulate the fatigue characteristics of the pile-board structure under long-term dynamic load, using the in-situ dynamic testing system DTS-1, the forced vibration loading was repeated one million times at differen...To simulate the fatigue characteristics of the pile-board structure under long-term dynamic load, using the in-situ dynamic testing system DTS-1, the forced vibration loading was repeated one million times at different cross-sections of the pile-board structure for high-speed railway. The dynamic deformation, permanent deformation and dynamic stress of main reinforcements were measured. The test results show that the dynamic responses of the pile-board structure almost did not vary with the forced vibration times under the simulated trainload. After one million times of forced vibration, the permanent deformations of the midspan section of intermediate span and midspan section of side span were 0.7 mm and 0. 6 mm, respectively, and there was no accumulative plastic deformation at the bearing section of intermediate span.展开更多
采用石英二长岩全风化物填料填筑路基,其结构动态性能需要验证,有必要进行激振试验。利用激振试验系统,对京沪高速铁路石英二长岩全风化物填料路基试验段进行原位激振试验,测定路基各断面的振动响应、结构内力和累积沉降等,分析该路基...采用石英二长岩全风化物填料填筑路基,其结构动态性能需要验证,有必要进行激振试验。利用激振试验系统,对京沪高速铁路石英二长岩全风化物填料路基试验段进行原位激振试验,测定路基各断面的振动响应、结构内力和累积沉降等,分析该路基的振动特性和动力稳定性,以期为高速铁路路基填料的选择提供借鉴。结果表明:石英二长岩全风化物物理改良填料临界动应力在80 k Pa左右,塑性应变主要产生于基床底层中上部,加载150×104次后,基床表面最大弹性变形不足1 mm,满足其变形控制要求。展开更多
基金Key Subject for Science Research and De-velopment Plan of Railway Ministry (No.2006G004-B)
文摘To simulate the fatigue characteristics of the pile-board structure under long-term dynamic load, using the in-situ dynamic testing system DTS-1, the forced vibration loading was repeated one million times at different cross-sections of the pile-board structure for high-speed railway. The dynamic deformation, permanent deformation and dynamic stress of main reinforcements were measured. The test results show that the dynamic responses of the pile-board structure almost did not vary with the forced vibration times under the simulated trainload. After one million times of forced vibration, the permanent deformations of the midspan section of intermediate span and midspan section of side span were 0.7 mm and 0. 6 mm, respectively, and there was no accumulative plastic deformation at the bearing section of intermediate span.
基金Project supported by the Foundation of Jiangsu Collaborative Innovation Center for Building Energy Saving Construction Technology for Young Teachers(No.SJXTQ1515),China
文摘采用石英二长岩全风化物填料填筑路基,其结构动态性能需要验证,有必要进行激振试验。利用激振试验系统,对京沪高速铁路石英二长岩全风化物填料路基试验段进行原位激振试验,测定路基各断面的振动响应、结构内力和累积沉降等,分析该路基的振动特性和动力稳定性,以期为高速铁路路基填料的选择提供借鉴。结果表明:石英二长岩全风化物物理改良填料临界动应力在80 k Pa左右,塑性应变主要产生于基床底层中上部,加载150×104次后,基床表面最大弹性变形不足1 mm,满足其变形控制要求。