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pro vyhledávání: '"carbon-reinforced concrete"'
Deck caps of bridges—in Germany shortly known as “bridge caps”—are usually made of steel reinforced concrete to form the anchoring area for the guardrail of bridge deck edges on existing cantilever slabs. Combined with protective devices, the
Externí odkaz:
https://tud.qucosa.de/id/qucosa%3A91982
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Publikováno v:
Buildings, Vol 14, Iss 7, p 1975 (2024)
The use of non-metallic reinforcement can significantly reduce the carbon footprint of the construction sector. Mixed structures made out of steel and non-metallic reinforcement should be avoided due to the risk of galvanic corrosion. So far, researc
Externí odkaz:
https://doaj.org/article/fa2f3f5a164e4ef99dd98228e58836d9
Analysis of Curing and Mechanical Performance of Pre-Impregnated Carbon Fibers Cured within Concrete
Publikováno v:
Textiles, Vol 2, Iss 4, Pp 657-672 (2022)
In carbon-reinforced concrete, the commonly used steel reinforcement is replaced with carbon fiber reinforcement textiles, enabling thin-walled elements by using new construction principles. The high drapability of textiles offers design opportunitie
Externí odkaz:
https://doaj.org/article/dce6f306605f4d99aa7ab491fa6a82f5
Autor:
SFB/Transregio 280
Der Alleskönner Beton ist grundsätzlich einfach, schnell und kostengünstig in der Herstellung. Er kann nahezu jede beliebige Form annehmen und wird als einziger Baustoff auch flächendeckend in Entwicklungs- und Schwellenländern eingesetzt. Beton
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https://tud.qucosa.de/id/qucosa%3A87812
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Akademický článek
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Akademický článek
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Autor:
Curbach, Manfred, Hegger, Josef, Bielak, Jan, Schmidt, Christopher, Bosbach, Sven, Scheerer, Silke, Claßen, Martin, Simon, Jaan-Willem, Maas, Hans-Gerd, Vollpracht, Anya, Koch, Andreas, Hahn, Lars, Butler, Marko, Beckmann, Birgit, Adam, Viviane, Cherif, Chokri, Chudoba, Rostislav, Gries, Thomas, Günther, Edeltraud, Kaliske, Michael, Klinke, Sven, Löhnert, Stefan, Lautenschläger, Thea, Matschei, Thomas, Mechtcherine, Viktor, Nagel, Wolfgang E., Neinhuis, Christoph, Niemeyer, Alice, Noennig, Jörg Rainer, Raupach, Michael, Reese, Stefanie, Scheffler, Christina, Schladitz, Frank, Traverso, Marzia, Marx, Steffen
In civil engineering, carbon is typically regarded as a modern material to serve as reinforcement in concrete structures. Compared to steel reinforcement, it features two substantial benefits: It is not sensitive to corrosion, and has an enormously i
Externí odkaz:
https://tud.qucosa.de/id/qucosa%3A93670
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This article presents the cracking and load-bearing behaviour of carbon-reinforced prismatic concrete tensile specimens. Grids with different geometries and impregnations were used as carbon reinforcement. In addition, the roving surfaces were partia
Externí odkaz:
https://tud.qucosa.de/id/qucosa%3A93634
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Autor:
Juliane Wagner, Carolin Würgau, Alexander Schumann, Elisabeth Schütze, Daniel Ehlig, Lutz Nietner, Manfred Curbach
Publikováno v:
CivilEng, Vol 3, Iss 2, Pp 400-426 (2022)
The strengthening of existing reinforced concrete structures (RC) with carbon reinforced concrete (CRC) has a high potential to save resources and to increase the lifespan of the whole strengthened structure immensely. However, when strengthening str
Externí odkaz:
https://doaj.org/article/cc2a525673e248909f1e04e80f050ed9
Autor:
Julia Neumann, Rolf Breitenbücher
Publikováno v:
Acta Polytechnica CTU Proceedings, Vol 33, Pp 404-410 (2022)
In many countries, concrete pavements are normally built as Jointed Plain Concrete Pavements. Due to a lack of alternatives, repairing deteriorated concrete pavements usually requires the replacement of the complete pavement structure and maintaining
Externí odkaz:
https://doaj.org/article/67f5466a9959405ba1ddd781101b9a1c