Ultra-High Performance Concrete (UHPC), with its high compressive strength of more than 200 MPa and an improved durability, marks a quantum leap in concrete technology. This high performance material offers a variety of interesting applications. It allows the construction of sustainable and economic buildings with an extraordinarily slim design. Its high strength and ductility makes it the ultimate building material for e.g. bridge decks, storage halls, thin-wall shell structures, and highly loaded columns. Due to its outstanding resistance against several kinds of corrosion, it is deemed suitable for new fields of application where concrete has not been considered viable before. To make use of its superior properties, special knowledge of production, construction, and design is required. To facilitate the fruitful exchange of knowledge and experience both between international researchers and engineers in the field was the objective of the 3rd International Symposium on UHPC that took place in Kassel on March 7-9, 2012, the proceedings of which are contained in this publication. As an impressive amount of new knowledge could be obtained by leveraging the growing experience in the fields of nanotechnology and chemistry, the symposium was rebranded to honor this influence. It now bears the name HiPerMat, derived from Nanotechnology for High Performance Materials in Construction. This volume thus contains about 120 contributions from many research disciplines that are influenced by High Performance Materials and UHPC in particular: material sciences, structural engineering, environmental engineering, nanotechnology, chemistry, architecture, codification, and economy.
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Softcover. Zustand: Fair. Spuren von Feuchtigkeit / Nässe; Leichte Kratzer / Abnutzungen / Druckstellen. Ultra-High Performance Concrete (UHPC) represents a significant advancement in concrete technology, boasting a compressive strength exceeding 200 MPa and enhanced durability. This high-performance material enables the construction of sustainable, economically viable buildings with exceptionally slim designs. Its remarkable strength and ductility make it ideal for applications such as bridge decks, storage halls, thin-wall shell structures, and heavily loaded columns. Additionally, UHPC's exceptional resistance to various forms of corrosion opens new avenues for its use in areas previously deemed unsuitable for concrete. However, leveraging its superior properties necessitates specialized knowledge in production, construction, and design. The 3rd International Symposium on UHPC, held in Kassel from March 7-9, 2012, aimed to foster knowledge exchange among international researchers and engineers, and its proceedings are included in this publication. The symposium was rebranded to HiPerMat, reflecting the influence of nanotechnology and chemistry on high-performance materials in construction. This volume features approximately 120 contributions from diverse research fields impacted by High Performance Materials and UHPC, including material sciences, structural engineering, environmental engineering, nanotechnology, chemistry, architecture, codification, and economics. Artikel-Nr. 9e7f1274-26c8-40e6-9d61-32b16d158027
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1036 pp. -TEXT IN ENGLISH- Sprache: Englisch Gewicht in Gramm: 1500 8vo. Hardcover, no dust jacket, binding a bit rubbed, else fine. Artikel-Nr. 335307
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