The invention relates to corrosion protection for a construction including a stay cable.
Designated by stay cable is particularly, but not exclusively, a cable used for the construction of suspended and stayed structures, such as suspension bridges, cable-stayed bridges, stadium roofs, buildings, telecommunication towers, etc.
The invention also relates to a stay cable construction, for example a stay cable bridge, which includes the aforementioned corrosion protection system.
A stay cable bridge generally includes:
A long stay cable bridge can comprise hundreds of tension members, and the presence of this great number of tension members leads to a significant problem in that the exposure to wind creates wind forces that are transferred to the rest of the structure. In particular, mechanical resistance of the deck and the pylon must be improved, and the cost of the construction is consequently higher.
Owing to the fact that the amount of wind forces depends on the diameter of the tension members, one of the aims of the invention is to reduce the diameter of the tension members.
The steel tensile elements used in the field of construction of stay cables bridges are generally corrosion-protected (for years) by a layer of grease and a sheath, which surrounds the layer of grease. The presence of the layer of grease and of the sheath increases the diameter of the strand.
The increase in diameter of each of the tensile elements constituting a tension member substantially increases the diameter of this tension member.
One result which the invention aims to obtain is a corrosion protection system, which overcomes in particular this drawback.
Another result which the invention aims to obtain is a continuous monitoring of the corrosion protection system.
To this end, proposed is, on the one hand, to use tensile elements which are not provided with a permanent corrosion protection during their fabrication (for example, which are not greased and sheathed in a conventional way), these tensile elements being referred to as unprotected tensile elements, and, on the other hand, to use a corrosion protection system which includes:
The invention will be better understood from reading the following description, given by way of non-limiting example, with reference to the attached drawing representing schematically:
Referring to the drawings, a stay cable construction 1 can be seen. This stay cable construction 1 includes a multiplicity of tension members 8, each tension member 8
For simplification of the drawings, only one of the aforementioned parallel steel tensile elements 9 has been shown.
According to the invention, the corrosion protection system 16 involves the use of tensile elements 9 which are not provided with a permanent corrosion protection during their fabrication (for example, which are not greased and sheathed in a conventional way), referred to as unprotected tensile elements 9, and this corrosion protection system 16 includes:
Sometimes the stay cable construction 1 includes
In a notable manner, each tension member 8 includes tensile elements 9 which
In a notable manner, the stay pipe 17 is free to move transversally or longitudinally in relation to the tension member 8 which is surrounded.
According to the invention:
When said stay cable construction 1 is a stay cable bridge, this stay cable bridge includes
For example the first structural part 2 includes a deck which includes a structural member 3 with at least one internal chamber 4.
Also for example, the structural member 3 is made of metal but should be made of metal or concrete or any suitable material.
In a known manner:
In this case, the plurality of pipes, referred to as dry air supply pipes 21, are intended to supply the dry air 20 from the dehumidification device 19 to predetermined points 22, which are each situated near each second anchorage 11 of a tension member 8.
Preferably, the second anchorage 11 and the first anchorage 10 of each tension member 8 are each situated in an enclosure respectively called second anchorage guide 29 and first anchorage guide 30.
In this way, the tensile elements and their anchorages are enclosed within an enclosure all along the length of the stay cable.
For example, the dehumidification device 19 and the ventilation device 23 are situated at the top level 28 of the respective at least one second structural part 5.
In a noteworthy way:
In a noteworthy way:
Preferably, the dry air 20 can escape through the second dry air outlet 33, and is exhausted into the outer atmosphere 34 of the stay cable construction 1.
Therefore, the tensile elements 9 and the anchorages of these tensile elements 9 are temporarily corrosion-protected, that is to say they are protected for storage or transport.
Thus, the surfaces that each internal chamber 4 includes are exposed to the dry air 20, and are thereby also corrosion-protected.
These technical features are particularly advantageous because no other corrosion protection system is necessary in order to protect the surfaces of internal chambers of a stay cable construction such as internal chambers of the deck of a stay cable bridge.
According to the invention, the ventilation device 23, which pushes the dry air 20 in the dry air supply pipes 21, provides a predetermined and continuous pressure of dry air 20 along each tension member 8 length to prevent any infiltration of water molecules from the outside environment into the stay pipe 17, the second anchorage guide 29, and the first anchorage guide 30 of each tension element.
In a preferred embodiment:
The ventilation device 23 and the dehumidification device 19 are preferably placed under the control of the pilot unit 43.
All these technical features allow a continuous monitoring of the corrosion protection system 16.
Furthermore, we note that the continuous circulation of the dry air 20 all along the tension member 8 also equalizes any variation of temperature in said tension member 8.
Preferably, when the stay cable construction 1 includes a predetermined number of distinct groups 44 of tension members 8:
The tensile elements 9 can be coated.
For example, the tensile elements 9 are zinc coated, or epoxy coated, or painted.
In a notable manner, the dehumidification device 19 produces dry air 20 from wet air, which is taken from an outer atmosphere 34 of the stay cable construction 1.
In another notable manner, when a tension member 8 includes a damping device 46, said damping device 46 is enclosed inside the enclosure that forms the first anchorage guide 30.
Preferably, each first anchorage guide 30 includes a water drainage pipe 49 connected to a tap (not represented) or closed by a drain-plug (not represented).
The corrosion protection system 16 according to the invention allows a continuous monitoring of the protection.
The corrosion protection system 16 according to the invention gives three levels of protection, which are
The standard operations of maintenance of the corrosion protection system 16 generally comprise replacing filters on dehumidification device 19.
The invention also relates to a stay cable construction 1, corrosion-protected with the afore-described system.
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/EP2004/052952 | 11/12/2004 | WO | 00 | 5/11/2007 |
Publishing Document | Publishing Date | Country | Kind |
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WO2006/050756 | 5/18/2006 | WO | A |
Number | Name | Date | Kind |
---|---|---|---|
4856254 | Jungwirth | Aug 1989 | A |
7200886 | Nuetzel et al. | Apr 2007 | B2 |
Number | Date | Country |
---|---|---|
19710170 | Sep 1988 | DE |
3723795 | Dec 1988 | DE |
2178046 | Jan 2002 | RU |
WO 8809847 | Dec 1988 | WO |
2004057112 | Jul 2004 | WO |
Number | Date | Country | |
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20070294913 A1 | Dec 2007 | US |