Li Tiezhu. STUDY OF THE STABILITY BEARING CAPACITY OF CROSS-LAYER AND HEAVY-LOAD TRUSS STRUCTURE FOR DAQING RAILWAY STATION[J]. INDUSTRIAL CONSTRUCTION, 2014, 44(05): 152-156.
Citation:
Li Tiezhu. STUDY OF THE STABILITY BEARING CAPACITY OF CROSS-LAYER AND HEAVY-LOAD TRUSS STRUCTURE FOR DAQING RAILWAY STATION[J]. INDUSTRIAL CONSTRUCTION, 2014, 44(05): 152-156.
Li Tiezhu. STUDY OF THE STABILITY BEARING CAPACITY OF CROSS-LAYER AND HEAVY-LOAD TRUSS STRUCTURE FOR DAQING RAILWAY STATION[J]. INDUSTRIAL CONSTRUCTION, 2014, 44(05): 152-156.
Citation:
Li Tiezhu. STUDY OF THE STABILITY BEARING CAPACITY OF CROSS-LAYER AND HEAVY-LOAD TRUSS STRUCTURE FOR DAQING RAILWAY STATION[J]. INDUSTRIAL CONSTRUCTION, 2014, 44(05): 152-156.
A damage would occur to the plane truss structure of the Daqing West Railway Station due to the lack of
effective support outside the plane and the complexity of acting load on the structure,as well as to the huge span
crossing two layer floors and the high structure altitude,and also due to the rigid connection nets among the members.
In order to study the global stability of the cross-layer plane trusses with larger load of the Daqing West Railway
Station,the sub structure analysis method and large displacement control theory were used to analyze nonlinearity
stability bearing capacity of the plane structure,which confirmed the buckling mode and stability bearing capacity of
the plane truss structure and estimated the safety for the global structure. It was clearly found that the buckling mode
of the cross-layer plane truss structure to be a half wave curve outside the plane,which also showed the instability
characteristic for the truss after buckling. Obviously,by using nonlinearity stability bearing capacity analysis
methods,the global stability coefficient was greater than 2 in all cases,which could meet the requirements for the
stability bearing capacity in Chinese design code.