A platform for research: civil engineering, architecture and urbanism
Load Bearing Capacity Analysis of Squeezed Branch and Plate Pile under Vertical and Lateral Loads
Considering the initial stress field and concrete damage, no-linearity caused by crack of concrete, non-linear of reinforcement, elastic-plastic of soil around pile, couple interaction between concrete and steel, non-linearity contact of interface between pile and soil, the lateral load bearing capacity of squeezed branch and plate pile under vertical and lateral load is studied with infinite element and finite element couple method. The results indicate that the vertical load decreases the lateral displacement of pile top and increase the pile lateral load bearing capacity at the same time.
Load Bearing Capacity Analysis of Squeezed Branch and Plate Pile under Vertical and Lateral Loads
Considering the initial stress field and concrete damage, no-linearity caused by crack of concrete, non-linear of reinforcement, elastic-plastic of soil around pile, couple interaction between concrete and steel, non-linearity contact of interface between pile and soil, the lateral load bearing capacity of squeezed branch and plate pile under vertical and lateral load is studied with infinite element and finite element couple method. The results indicate that the vertical load decreases the lateral displacement of pile top and increase the pile lateral load bearing capacity at the same time.
Load Bearing Capacity Analysis of Squeezed Branch and Plate Pile under Vertical and Lateral Loads
Advanced Materials Research ; 255-260 ; 3110-3113
2011-05-31
4 pages
Article (Journal)
Electronic Resource
English
Load Bearing Capacity Analysis of Squeezed Branch and Plate Pile under Vertical and Lateral Loads
British Library Conference Proceedings | 2011
|Numerical Simulation of Squeezed Branch and Plate Pile Subjected to Vertical and Lateral Loads
Trans Tech Publications | 2014
|Uplift Bearing Capacity of Squeezed Branch Pile Group
Online Contents | 2022
|Analysis and Application of Ultimate Bearing Capacity of Squeezed Branch Pile
Online Contents | 2023
|