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New bidirectional heavy device for launching bridges based on inverted carterpillar mechanism

Autor(es) y otros:
Alonso Martínez, MarAutoridad Uniovi; Coz Díaz, Juan José delAutoridad Uniovi; Castro Fresno, Daniel; Navarro Manso, AntonioAutoridad Uniovi
Palabra(s) clave:

Caterpillar mechanism

Construction

Conveyors

Friction force

Heavy structures

Launching bridges

Fecha de publicación:
2017-07-05
Editorial:

Bentham Science

Versión del editor:
http://dx.doi.org/10.2174/2212797610666170711094553
Citación:
Recent Patents on Mechanical Engineering, 10(3), p. 218-223 (2017); doi: 10.2174/2212797610666170711094553
Descripción física:
p. 218-223
Resumen:

Background: This patent is based on the combination of caterpillar mechanisms and conveyors. Caterpillar tracks support heavy loads and adapt this support according to the ground conditions. Conveyors displace distributed loads continuously and bidirectionally using the force of friction. This paper describes a revision of previous patents related to this innovative design. Objective: This paper presents an innovative patent to continuously displace heavy structures safely. The mechanism was patented in 2011 as Spanish Patent ES 2367737. The combination of these mechanisms provides the design of this patent to displace heavy structures continuously and bidirectionally, while adapting to the deflection of the structures. Method: The most important elements of this patent are detailed in the paper. The most innovative component is the load compensation system, which increases the safety of the displacement of heavy structures. This system controls the load applied on the mechanism, and the displacement can be stopped before the collapse of the heavy structure. Results: An application of the patent for launching bridges using the Incremental Launching Method is presented. This mechanism is used to displace heavy structures using the force of friction. Conclusion: The patented mechanism is an original contribution for the displacement of heavy structures continuously and bidirectionally. The patent can be used to launch bridges, improving the efficiency, sustainability, and safety of current systems

Background: This patent is based on the combination of caterpillar mechanisms and conveyors. Caterpillar tracks support heavy loads and adapt this support according to the ground conditions. Conveyors displace distributed loads continuously and bidirectionally using the force of friction. This paper describes a revision of previous patents related to this innovative design. Objective: This paper presents an innovative patent to continuously displace heavy structures safely. The mechanism was patented in 2011 as Spanish Patent ES 2367737. The combination of these mechanisms provides the design of this patent to displace heavy structures continuously and bidirectionally, while adapting to the deflection of the structures. Method: The most important elements of this patent are detailed in the paper. The most innovative component is the load compensation system, which increases the safety of the displacement of heavy structures. This system controls the load applied on the mechanism, and the displacement can be stopped before the collapse of the heavy structure. Results: An application of the patent for launching bridges using the Incremental Launching Method is presented. This mechanism is used to displace heavy structures using the force of friction. Conclusion: The patented mechanism is an original contribution for the displacement of heavy structures continuously and bidirectionally. The patent can be used to launch bridges, improving the efficiency, sustainability, and safety of current systems

URI:
http://hdl.handle.net/10651/46437
ISSN:
1874-477X
DOI:
10.2174/2212797610666170711094553
Patrocinado por:

The authors would like to acknowledge the help of the Spanish Ministry of Economics and Competitiveness through the Research Project ALCANZA, IPT-380000-2010-012 INNPACTO program. Furthermore, the authors are grateful to project GRUPIN14-004, co-financed with FEDER funds

Colecciones
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  • Construcción e Ingeniería de Fabricación [508]
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