Abstract

In order to answer dangling fracture problems of highway, the suspended pavement equivalent for non - suspended pavement, through the special boundary conditions has been suspended highway stress field of expression, in accordance with the 3D fracture model of crack formation, and establish a vacant, a general mathematics model for fracture problems of highway and analysis in highway suspended segment weight and vehicle load limit of highway capacity of Pu For overturning road inPu is less than the force of carrying more than compared to the work and fruit Bridge Hydropower Station Road engineering examples to verify suspended highway should force field expressions for the correctness and applicability. The results show that: when the hanging ratio R 0. 243177 limits of Pu design axle load 100kN. When the vertical crack in the vacant in the direction of length greater than 0. 1, the ultimate bearing capacity is less than the design axle load 100kN; when the hanging ratio R is less than 0. 5, the road to local fracture, the ultimate bearing capacity of suspended stress field expressions in solution; when the hanging ratio is greater than or equal to 0. 5, the road does not reach the limit bearing capacity of the whole body; torque shear surface of the effect is far less than the bending moments on shear planes.

Highlights

  • The problem of fracture and damage of suspended highway is related to the safety of driving and the progress of construction

  • In the same way, assuming that the vehicle load is Q, b3 is the distance from the P8 P5 P6 P7 section, and the MQ is the moment of the driving load, and TQ is the torque generated by the driving load

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Summary

Introduction

The problem of fracture and damage of suspended highway is related to the safety of driving and the progress of construction It is a common concern of hydraulic engineering, road engineering and civil engineering field [1, 2]. Generalized mathematical integral to solve water conservancy engineering problems, B Hill [8] and others based on Li Chuang's idea obtained the fatigue crack growth rate model.

Derivation of stress field
Generalized mathematical model of crack
Engineering example
Ultimate bearing capacity
Crack size
Conclusion
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