Development of Rhombus Hanging Basket Walking Track Robot for Cantilever Casting Construction in Bridges

Author:

Ouyang Yuping12,Huang Jiarui12,Song Kaifang12

Affiliation:

1. School of Mechanical and Electrical and Vehicle Engineering, East China Jiaotong University, Nanchang 330013, China

2. National and Local Joint Engineering Research Center for Fruit Intelligent Photoelectric Detection Technology and Equipment, Nanchang 330013, China

Abstract

For enhancing the efficiency of cantilever casting construction in a bridge, a novel rhombus traveling track for a hanging basket was developed and optimized. The business-oriented software called MIDAS was applied to analyze the mechanical properties of the hanging basket with a full load and a control load. The strength and distortion of the walking mechanism are within the specified range when the maximum beam unit internal force is 149.69 MPa, which is less than the allowable stress of steel of 175 Mpa, and the anti-overturning safety factor of the hanging basket is 2.5, which meets the requirements. Through the comparative analysis of the key components and the finite element calculation, it was found that there is about a 30% redundancy in the structure performance. Therefore, further optimization of each structure was carried out, and the front elevation of the main truss of 20° was achieved. It obtained the best performance in all aspects.

Funder

Key research and development project of Jiangxi Province

Key research and application of Key Technologies of efficient intelligent Freight System of mountainous orchard

Publisher

MDPI AG

Subject

Fluid Flow and Transfer Processes,Computer Science Applications,Process Chemistry and Technology,General Engineering,Instrumentation,General Materials Science

Reference23 articles.

1. Span ratios in bridges constructed using a balanced cantilever method;Hyo;Constr. Build. Mater.,2004

2. Innovative key-segment closing method using thermal pre-stressing technique for partially earth-anchored cable-stayed bridges;Won;Adv. Struct. Eng.,2008

3. Key technology of hanging basket suspension casting construction of yelanghu super large bridge;Liu;World Bridge,2019

4. Simulation analysis of the construction process of front fulcrum hanging basket of cable-stayed bridge;Zhao;J. Shenzhen Univ. (Sci. Eng. Ed.),2017

5. Low-damage seismic design for accelerated bridge construction;Mashal;J. Bridge Eng.,2019

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