US2019119819A1PendingUtilityA1
Method for laying an anode system for cathodic corrosion protection
Est. expirySep 10, 2035(~9.2 yrs left)· nominal 20-yr term from priority
C23F 2201/02C23F 13/10C23F 13/16C23F 13/20C23F 13/06
34
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Claims
Abstract
An anode system for cathodic corrosion protection should be able to be laid in a simple, quick and cost-effective manner. For this purpose, a method comprising the following steps is provided: laying a carbon fibre multifilaments in a planar and meandering or strip-shaped manner; laying at least two primary anode ribbons, which are arranged so as to be spaced apart from one another, such that the carbon fibre multifilament is arranged between the primary anode ribbons and the primary anode ribbons are connected to the carbon fibre multifilament in an electrically conductive manner in a number of contact regions.
Claims
exact text as granted — not AI-modified1 . Method for laying an anode system for cathodic corrosion protection, comprising the following steps:
laying a carbon fibre multifilament in a planar manner; laying at least two primary anode ribbons, which are arranged so as to be spaced apart from one another, such that the carbon fibre multifilament is arranged between the primary anode ribbons and the primary anode ribbons are connected to the carbon fibre multifilament in an electrically conductive manner in a number of contact regions, characterised in that, the carbon fibre multifilament is arranged in a meandering configuration or in individual strips that are arranged in parallel with one another and that are interconnected by the anode ribbon.
2 . Method for laying the anode system according to claim 1 , further comprising connecting the primary anode ribbons to a primary anode wire.
3 . Method for laying the anode system according to claim 2 , characterised in that, in the case of protecting reinforced concrete structures, the carbon fibre multifilament is laid in prepared grooves in concrete.
4 . Method for laying the anode system according to claim 3 , characterised in that the carbon fibre multifilament is fastened by means of an adhesive.
5 . Method for laying the anode system according to claim 1 , characterised in that, in the case of protecting reinforced concrete structures, the carbon fibre multifilament is laid in fresh concrete or mortar.
6 . Method for laying the anode system according to claim 5 , characterised in that the carbon fibre multifilament is wound at least in part around the primary anode ribbon in the contact regions.
7 . Method for laying the anode system according to claim 6 , characterised in that epoxy resin is used to connect the carbon fibre multifilament and the primary anode ribbon in the contact regions.
8 . Method for laying the anode system according to claim 7 , characterised in that the carbon fibre multifilament and/or the primary anode ribbon is covered with a conductive mortar.
9 - 10 . (canceled)
11 . Method for laying the anode system according to claim 1 , characterised in that, in the case of protecting reinforced concrete structures, the carbon fibre multifilament is laid in prepared grooves in concrete.
12 . Method for laying the anode system according to claim 1 , characterised in that the carbon fibre multifilament is fastened by means of an adhesive.
13 . Method for laying the anode system according to claim 1 , characterised in that the carbon fibre multifilament is wound at least in part around the primary anode ribbon in the contact regions.
14 . Method for laying the anode system according to claim 1 , characterised in that epoxy resin is used to connect the carbon fibre multifilament and the primary anode ribbon in the contact regions.
15 . Method for laying the anode system according to claim 1 , characterised in that the carbon fibre multifilament and/or the primary anode ribbon is covered with a conductive mortar.
16 . Method for laying the anode system according to claim 1 , characterised in that the carbon fibre multifilament is arranged in the meandering configuration.Cited by (0)
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