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  • About
  • The Global ETD Search service is a free service for researchers to find electronic theses and dissertations. This service is provided by the Networked Digital Library of Theses and Dissertations.
    Our metadata is collected from universities around the world. If you manage a university/consortium/country archive and want to be added, details can be found on the NDLTD website.
421

Avaliação do grau do dano das estruturas do subsolo de três edifícios situados na Região Metropolitana do Recife / Evaluation of the degree of damage in the subsoil structures of three buildings situated in the Region Metropolitan of Recife/PE

Lemos, Sérgio Pereira Pinto 20 April 2006 (has links)
Made available in DSpace on 2017-06-01T17:57:27Z (GMT). No. of bitstreams: 1 pre-textual.pdf: 28868 bytes, checksum: 1349eefd05bbc7c21b1dd3b9e4b92ecb (MD5) Previous issue date: 2006-04-20 / This work aims to evaluate the pathology of residential buildings structures located at the Metropolitan Region of Recife, Brazil using the quantification of damages to measure the degree of early deterioration of reinforced concrete. Three residential buildings (RB) with similar construction standards were studied. All buildings have approximate age and are inserted into environmental aggressiveness distinct. A visual inspection took place as well as a laboratorial sample analysis of their pillars, beams and underground water reservatories. It was verified that the RB1 case, located at a high environmental aggressiveness class (III), and the RB2 case, located significatively far from the sea and classified with a moderate environmental aggressiveness class (II), both presented a medium degree of deterioration (GDE). For both buildings it is suggested a periodic inspection recommendation and a medium term intervention (GD 1 = 36,98 ; GD 2 = 31,23). The third case (RB3), located at a high environmental aggressiveness class (III) and seafront with protection barriers, presented a high degree of deterioration (GD 3=103,94). It is suggested for RB3 an immediate intervention with collapse risks / Procurando conhecer o grau de deterioração precoce das estruturas de concreto armado dos edifícios residenciais da Região Metropolitana da Cidade do Recife, Estado de Pernambuco, este trabalho visa, utilizando um método de quantificação dos danos e o uso de ensaios, avaliar as patologias das estruturas estudadas. Estudou-se três edifícios residenciais (ER), com semelhante padrão de construção, idades construtivas aproximadas e inseridos em diferentes classes de agressividade ambiental. Foi realizada inspeção visual e ensaios em amostras dos pilares, vigas, lajes e reservatório inferior do subsolo dos três edifícios. Após análise dos três edifícios, verificou-se que o caso ER 1, localizado em classe ambiental de agressividade forte (III), a mais agredida pelo meio ambiente, e o estudo de caso ER 2, localizado a uma distância significativa da orla marinha em Classe de Agressividade Ambiental II, apresentaram grau de deterioração media (GD) de 36,98 e 31,23 respectivamente, com recomendação para inspeção periódica e intervenção a médio prazo. Já o estudo de caso ER 3, que está localizado dentro da uma classe de agressividade forte (III), em orla marinha, porém com barreiras de proteção que evitam a incidência direta da névoa salina, encontra-se com alto grau de deterioração (GD = 103,94), sugerindo uma intervenção imediata com riscos de colapso
422

Análise comparativa do custo da estrutura de edifícios de concreto armado quando projetados pela NBR-6118:2003 e NBR-6118:1978 / Comparative analysis of costs in the structure of buildings of armed concrete when projected by the NBR-6118:2003 and NBR-6118:1978

Magalhães, Carlos Wagne Ferreira de Souza 30 June 2006 (has links)
Made available in DSpace on 2017-06-01T17:57:34Z (GMT). No. of bitstreams: 1 pre-textual.pdf: 116369 bytes, checksum: 5b5524dbf0f0e113a677f87352842f60 (MD5) Previous issue date: 2006-06-30 / In March of 2004 the new version of the Brazilian Code for design of concrete structures, the NBR 6118(2003), has replaced its predecessor the NBR 6118(1978). Amongst the new presented concepts, the greatest impact is related to the question of the durability of the concrete structures. The present work evaluates the influence of the new normative criteria, with emphasis to the analysis of costs, in the structural design of three buildings of reinforced concrete of varied heights. The influence in the costs of the structures is analyzed, when designed in the different exposure classes related environmental conditions II and III, of the value adopted for the compressive resistance fck, of the use of models I and II for the calculation of the reinforcement of shear of beams, of the influence of the design of them columns with the new criteria of the minimum moment of first local order and geometric imperfections. Finally, it has been compared the global costs of the structures of the three buildings when designed according to criteria of NBR-6118(1978) and NBR- 6118(2003). The results had mainly shown that, despite the increase in concrete volume in accordance with the NBR 6118 (2003), the amount of steel was reduced, in them columns, in relation the NBR 6118(1978). The difference in final costs of the structures was favorable to the NBR 6118(1978), but it can be considered relatively low, in comparison with the increasing quality and durability proportioned by the adoption the NBR 6118(2003) / Em Março de 2004 entrou em vigor a nova versão da norma brasileira para projeto de estruturas de concreto, a NBR 6118(2003), substituindo sua antecessora que estava em vigor desde 1978. Dentre os novos conceitos apresentados, os de maior impacto no meio técnico estão relacionados à questão da durabilidade das estruturas de concreto. Assim o presente trabalho pretende avaliar a magnitude destas alterações, com ênfase à análise de custos, que ocorrem devido à aplicação dos novos conceitos normativos no Projeto estrutural de três edifícios de concreto armado de alturas variadas. Desta forma, será avaliado o impacto econômico sobre o Projeto dos edifícios, para valores de cobrimentos de concreto relativos as classes de agressividade ambiental CAA=II e CAA=III, a influência nos custos das estruturas, do valor da resistência à compressão do concreto fck, as vantagens da utilização dos modelos I e II para o cálculo das armaduras de cisalhamento de vigas. Também serão abordados o Projeto dos pilares com os novos critérios do momento mínimo de 1ª ordem e imperfeições geométricas locais, a ordem de grandeza dos esforços devidos ao desaprumo frente aos esforços devidos ao vento, e finalmente o impacto no custo global das estruturas dos edifícios, quando dimensionados segundo os critérios presentes na NBR-6118(1978) e NBR-6118(2003). Os resultados mostraram que, apesar do maior volume de concreto nos projetos de acordo com a NBR 6118(2003), a quantidade de aço foi reduzida, principalmente nos pilares,em relação a NBR 6118(1978). A diferença entre os custos finais das estruturas foi a favor da NBR 6118(2003)
423

Comportamento estrutural de edificações de concreto de múltiplos pavimentos considerando o efeito construtivo

Leite, Ana Cecilia Ferreira 29 December 2015 (has links)
Made available in DSpace on 2017-06-01T17:57:35Z (GMT). No. of bitstreams: 1 ana_cecilia_ferreira_leite.pdf: 2039908 bytes, checksum: 6d86ed0d28b48ab3130af3cf03bae779 (MD5) Previous issue date: 2015-12-29 / Coordenação de Aperfeiçoamento de Pessoal de Nível Superior / The building industry has experienced in recent years a strong growth in demand in general and in the case of reinforced concrete buildings this increase has been more marked. This fact has also contributed to accelerate all stages of the production process of these constructions with more pronounced effects on the methodologies used in the constructive steps that influence directly the structural design of the building. Structures loaded at ever earlier ages, in which the strength and deformation properties of materials are not yet sufficiently mature, it is a variable that needs to be taken into account already in the design phase so that the concrete structure behaves within acceptable level of reliability taking into account design code recommendations for service life. To understand the importance of constructive effects and to assess its magnitude in the execution of reinforced concrete buildings, this paper present result from nonlinear analyses using Finite Element Method adopting an approach commonly referred as staged construction applied to a typical building found in the practice. The effects of creep and shrinkage were considered and the results obtained demonstrate that the strains due to constructive effects can, in certain cases, assume representative values which, if ignored, can lead to important pathologies in the building. / Nos últimos anos, a indústria da construção civil experimentou um forte crescimento na demanda por edifícios de múltiplos pavimentos de concreto armado. Este comportamento do mercado impulsionou construtores a acelerar todas as etapas do processo de construção, a fim de entregar a edificação em um tempo cada vez mais curto. Como decorrência deste fato, as estruturas são carregadas mais precocemente, ocasião em que as suas propriedades de resistência e deformação ainda não se encontram suficientemente maduras para suportar o carregamento construtivo que a solicita. Com a finalidade de compreender quais consequências são provocadas por esse carregamento prematuro da estrutura e analisar a importância dos efeitos construtivos no projeto de edificações de concreto armado, o trabalho traz o resultado de análises não-lineares realizadas com o Método dos Elementos Finitos adotando uma abordagem usualmente referida como staged construction construção em estágios aplicada a uma edificação real, situada na Cidade do Recife, Estado de Pernambuco, Brasil. Nestas análises foram levados em consideração os efeitos da retração, fluência e envelhecimento do concreto. Os resultados obtidos demonstram que os deslocamentos verticais nos pilares, decorrentes dos efeitos construtivos, são fortemente alterados quando comparados com os deslocamentos verticais resultantes da análise sem a consideração dos estágios de construção. A não consideração desses efeitos construtivos podem, em alguns casos, conduzir a manifestações patológicas importantes na edificação.
424

Most přes silnici I/44 / Bridge over the I/44 road

Topinková, Petra January 2018 (has links)
My master's thesis aims to design a bridge construction spanning road III/443 over road I/44. Three versions were created one of which has been developed further. It is a three span bridge with a total spread of 77.5 meters. Proposal and evaluation of bridge construction is done unassisted. Static analysis is done using Scia Engineer program. Construcion evaluation is done by valid EU norms ČSN EN 1992-1-1. Mechanical drawing, building procedure and visualisation is also included.
425

Čistička odpadních vod / Sewage clarification plant

Stará, Anna January 2013 (has links)
The theme of the dissertation is structural survey of designed sewage clarification plant. The work deal about designed of reinforcement of the sewage clarification plant. The diameter of the reservoir is 17,8 m and the depth is 6,2 m.
426

Centrum Ponava Brno, Královo Pole / Ponava Centre Brno, Královo Pole

Chytilová, Markéta January 2014 (has links)
The main idea in dealing with my thesis was to design a high quality public space where people will feel comfortable, safely and have a reason to come back. Furthermore, this is the place to be full of life and will serve the general public. The cultural center, that was designed, to become part of Královo Pole cultural campus, so-called K2-center, which will create a basis for free time activities, relaxation and education. A significant part of the proposed building is made up of multi-functional hall, library, restaurant, teen center and spaces for leisure time activities. On the ground floor will be located business parter and coffee bar. The aim of my project was to take into account what is most needed for inhabitants of Královo Pole for the purpose to meet the demands for quality leisure time for the widest spectrum of people. There is an effort to place the object itself as the most sensitive, given the current surrounding areas. The aim was not to design a huge object but especially a pleasant environment functioning as a center of leisure time activities.
427

Rekonstrukce mostu přes údolí u Dobrušky / Reconstruction of the bridge acros the valley near Dobruška

Dočkal, Miloš January 2015 (has links)
The final thesis is focused on design a bridge construction. across the valley near Dobruška. The existing bridge is convenient and it will be replaced by a new bridge construction. The bridge is situated on motorway I/14 and it is used to transfer across the valley and Brtevsky brook.The bridge construction is designed in three alternatives. The chosen variant is a post-tensioned two-beam concrete construction with a lenght of 88,5 metres and a width of 14,0 metres. The calculation of load is solved in Scia Engineer 2014. The construction is designed in accordance with valid standards and it is made a drawing documentation.
428

Rezidence Austerlitz, vybrané části stavebně technologického projektu / Residence Austerlitz, selected parts of construction technology project

Helán, Tomáš January 2016 (has links)
Purpose of this master’s thesis is to compile structurally – technological aspects of the project of new housing building in Brno. Thesis concentrates on technological phase of upper rough construction, which involves prescriptions for masonry of walls and constructions from reinforced concrete. Thesis is also includes suggestions of constellation of machines, time plan, supplying of construction site, rules of workplace safety, quality requirements, solutions for organization of construction and maintenance of the building. Conclusion of this master’s thesis is comparison of different systematical variations of constructing peripheral wall based on many structurally – technological factors.
429

En studie av höghusbyggande med avseende på stomsystem och lastpåverkan / A study of the structural loads and systems of high-rise Buildings

Marcus, Micheal, Zhao, Kuang January 2014 (has links)
Vi har valt att undersöka vilka möjligheter och eventuella risker det finns att bygga högt i Stockholm. Undersökningen utgick på att jämföra olika byggtekniska lösningar för stomsystem. Hur tar stomsystemen hand om vertikala och horisontella laster? Vilket stomsystemen är lämpligast vid en viss höjd? Dessa är några av de frågor som besvaras i arbetet. De vertikala och horisontella lasterna är de faktorer som främst försvårar höghusbyggandet. Med en större belastning av laster ju högre det byggs måste stomsystemen dimensioneras med allt större noggrannhet för att lasterna ska nedföras till grundläggningen på ett säkert sätt. Stomsystemen måste även dimensioneras för de svajningar och stabilitetsproblem som uppstår av de transversella lasterna. Genom inläsning av litteratur och intervjuer angående ämnet så har vi kommit fram till att den största orsaken att det finns så få höghus i Sverige beror på den politiska inställningen i landet och efter Turning Torsos kostnad dubblerades så har många dragit sig undan höghusprojekt. Byggtekniskt har vi i Sverige erfarenheter att bygga upp till 100-150m. / We have in this thesis decided to examine the possibilities and the possible hazards of high-rise buildings in Stockholm. We compared the different structural systems to determine how the systems handle the vertical and transversal loads and which system is to recommend to a certain height. The vertical and transversal loads are the main factors that make high-rise buildings harder to dimension than normal buildings. The higher the building is the more vertical and transversal loads that needs to be accounted in the dimensioning of the structural systems. This needs to be done accurately to secure the safety of the building. The sway and stability problems that occurs from the transversal loads need to be taking into account when designing the structural system. By reading literature and conducting interviews about the subject we can come to the conclusion that the reason why Sweden is behind with recent high-rise development is because of political reasons rather than lack of knowledge. We in Sweden have the experience to successfully build high-rise buildings up to 100-150m.
430

SPP 1542: Leicht Bauen mit Beton: Grundlagen für das Bauen der Zukunft mit bionischen und mathematischen Entwurfsprinzipien (Abschlussbericht)

Scheerer, Silke, Curbach, Manfred 14 June 2022 (has links)
Bewehrter Beton ist das heutzutage am meisten verwendete Baumaterial. Es ist universell und preiswert nahezu überall auf der Welt herstellbar. Damit einhergehen allerdings ein hoher CO2-Ausstoß und ein beträchtlicher Verbrauch an natürlichen Ressourcen. Im DFG-Schwerpunktprogramm 1542 wurden deshalb verschiedenste Ansätze erforscht, wie das Material effizienter eingesetzt und damit der Betonbau zukunftsfähig gemacht werden kann. Im vorliegenden Abschlussbericht zum SPP 1542 „Leicht Bauen mit Beton“ (gefördert von 2011 bis 2022) werden die wichtigsten Ergebnisse vorgestellt.:S. Scheerer, M. Curbach: Vorwort | Preface S.13 Teil 1: SPP-Projekte | Part 1: SPP projects A. M. Bauer, M. Breitenberger, K.-U. Bletzinger: Nichtlineare Optimierung geometrisch definierter Fugen von räumlich gekrümmten Betonfertigteilen mit isogeometrischen Verfahren | Non-linear optimization of geometrically defined joints of spatially curved prefabricated concrete elements with isogeometric analysis S.18 L. Ledderose, S. Lehmberg, F. Wirth, H. Kloft, H. Budelmann: Entwicklung neuartiger Verbindungen für komplexe Stab-, Flächen- und Raumtragelemente aus UHPFRC | Development of novel jointing systems for complex beam surface and spatial elements made of UHPFRC S. 50 J. D. van der Woerd, J. Hegger, R. Chudoba: Entwurf und Herstellung von dünnwandigen Faltwerken aus zementbasierten Verbundwerkstoffen | Design and construction of folded plate structures made of novel cementitious composites S. 90 A. Schmidt, M. Curbach: Querschnittsadaption für stabförmige Druckbauteile | Cross sectional adaption for rod-shaped elements in compression S. 118 M. Frenzel, K. Farwig, M. Curbach: Leichte Deckentragwerke aus geschichteten Hochleistungsbetonen | Lightweight ceiling structures made of layered high-performance concrete S. 144 S. Baron, J. Mainka, H. W. Hoffmeister, K. Dröder, H. Kloft: Non-Waste-Wachsschalungen: Neuartige Präzisions-Schalungen aus 100 % recycelbaren Industrie-Wachsen zur Herstellung von geometrisch komplexen Beton-Bauteilen | Non-Waste-Wax-Formwork: Novel precise formwork-technology on basis of 100% recyclable industrial wax for the fabrication of geometrically complex concrete elements S. 170 D. Busse, M. Empelmann: Ultraleichte, dünnwandige stabförmige Betonhohlbauteile | Ultra-light, thin-walled hollow concrete members S. 196 M. Henke, O. Fischer: Formoptimierte filigrane Stäbe aus UHPC und korrosionsfreier CFK-Bewehrung für variable räumliche Stabtragwerke | Shape optimized filigree rods made of UHPC and non-corrosive CFRP reinforcement for variable three-dimensional trusses S. 226 D. Schmeer, M. Wörner, H. Garrecht, O. Sawodny, W. Sobek: Effiziente automatisierte Herstellung multifunktional gradierter Bauteile mit mineralischen Hohlkörpern | Efficient automated production of multifunctional graded components with mineral hollow bodies S. 250 S. Illguth, D. Lowke, T. Kränkel, C. Gehlen: Schalentragwerke mit funktionaler Gradierung | Shell structures with functional grading S. 284 D. Weger, D. Talke, D. Lowke, K. Henke, C. Gehlen, S. Winter: Additive Fertigung frei geformter Betonbauteile durch selektives Binden mit calciumsilikatbasierten Zementen | Additive manufacturing of free formed concrete elements by selective binding with calcium silicate based cements S. 300 C.-A. Graubner, U. Knaack, T. Proske, B. Freund, M. Michel, S. Hickert: Grundlagen zur Entwicklung adaptiver Schalungssysteme für frei geformte Betonbauteile | Fundamental research towards an adaptive formwork system development for freeform concrete building components S. 328 A. Stark, J. Hegger: Sandwichbauteile mit gefalteten und gekrümmten Betondeckschichten | Sandwich panels with folded plate and curved concrete facings S.356 W. Jäger: Untersuchungen zu Trageigenschaften von plattenförmigen Betonleichtbauelementen in Kreuz-Kanal-Technologie | Investigations into the load-bearing properties of slab-shaped lightweight concrete elements in CC technology S.390 M. Schneider, H. Andrä, C. Kohlmeyer, S. Oster: Konstruktion und Optimierung von Klebeverbindungen für Platten- und Scheibenbauteile aus hochfestem Beton | Construction and optimization of adhesive joints for plate and shell construction elements composed of high performance concrete S.412 H. Funke, A. Ehrlich, L. Ulke-Winter, C. Petzoldt, S. Gelbrich, L. Kroll: Flexible GFK-Schalungen zur Herstellung von doppelt gekrümmten Beton-Leichtbauelementen mit stabilisierten Abstandsgewirken | Flexible GFRP-formwork for the production of double curved concrete lightweight elements with stabilized spacer fabrics S.436 H. Funke, L. Ulke-Winter, C. Petzoldt, C. Müller, S. Gelbrich, L. Kroll: Gekrümmte Beton-Leichtbauelemente mit bionisch inspirierten Krafteinleitungssystemen durch Einsatz flexibler GFK-Schalungen | Curved lightweight concrete structures with bionic inspired force transmission elements by the use of flexible GFRP-formworks S.452 L. Lohaus, J. Markowski: Wickelverstärkte Hybridrohre | Wrapping-reinforced hybrid tubes S.472 M. Schlaich, A. Goldack, J. P. Osman-Letelier, D. Lordick, K. Noack, M. Friedrich Eichenauer, R. Päßler, M. Pott: Methoden und Werkzeuge für Entwurf und Herstellung schalenartiger und dünnwandiger Betonbauteile mit Regelflächengeometrie | Methods and tools for the design and construction of thin-walled concrete structures with ruled surface geometry S.488 D. Lordick, D. Klawitter, M. Hagemann: Liniengeometrie für den Leichtbau | Line geometry for lightweight structures S.514 C. Kämper, T. Stallmann, P. Forman, J. Schnell, P. Mark: Leichte verformungsoptimierte Schalentragwerke aus mikrobewehrtem UHPC am Beispiel von Parabolrinnen solarthermischer Kraftwerke | Light-weight shape-optimised shell structures made from high-performance concrete for collector modules of parabolic trough power plants S.536 L. Zhou, J. Simon, S. Reese: Modellreduktion und Substrukturtechnik am Beispiel von modularen Schalentragwerken aus ultrahochfestem Beton | Model order reduction and substructures – application to modular shell structures made of ultra-high performance concrete S.590 M. Schnellenbach-Held, J.-E. Habersaat: Leichte Platten aus Beton mit biaxialem Lastabtrag als bionische Strukturen S.610 O. Gericke, D. Kovaleva, W. Haase, W. Sobek: Abfallfreie Herstellung von Betonbauteilen durch die Verwendung einer gefrorenen Sandschalung | Waste-free production of concrete components by means of a frozen sand formwork S.626 M. Wörner, D. Schmeer, H. Garrecht, O. Sawodny, W. Sobek: Optimalstrukturen aus funktional gradierten Betonbauteilen – Entwurf, Berechnung und automatisierte Herstellung | Optimal structures made of functional graded concrete – design, dimensioning and automated production S.642 Teil 2: Demonstratoren und Anschlussprojekte | Part 2: Demonstrators and follow-up projects D. Busse, L. Ledderose: uni-con² – universal concrete construction S.676 C. Müller, H. Funke, S. Gelbrich, L. Kroll: Carbonbeton-Schalendemonstrator | Shell demonstrator out of carbon reinforced concrete S.682 M. Koschemann, S. Scheerer: CarboLight Bridge – eine ultraleichte Konstruktion aus kohlefaserverstärktem und infraleichtem Beton | CarboLight Bridge – an ultra-lightweight construction made of carbon reinforced and infra-lightweight concrete for the German Museum in Munich S.686 S. Scheerer, B. Beckmann, J. Bielak, S. Bosbach, C. Schmidt, J. Hegger, M. Curbach: Konstruktionsstrategien für materialminimierte Carbonbetonstrukturen – Grundlagen für eine neue Art zu bauen | CRC/Transregio 280: Design strategies for material-minimised carbon reinforced concrete structures – principles of a new approach to construction S.700 D. Talke, D. Weger, K. Henke, T. Kränkel, D. Lowke, C. Gehlen, S. Winter: Industrieller 3D-Betondruck durch selektive Zementaktivierung – Verfahren, Material, Anwendungen | Industrial 3D concrete printing by selective cement activation – process, material, applications S.706 D. Schönfelder, H. Funke, S. Gelbrich, L. Kroll: Automatisierte Herstellungstechnologie zur Fertigung von dünnwandigen 3D-geformten Verbundelementen für nachhaltige energie-effiziente Fassadenlösungen – „GreenFACE“ | Automated manufacturing technology for the production of thin-walled 3D-shaped composite elements for sustainable, energy-efficient facade solutions – “GreenFACE“ S.710 A.-C. von der Heid, N. Will, J. Hegger: Weitspannende Sandwichelemente mit vorgespannten Deckschichten aus Carbonbeton | Wide-span sandwich elements with prestressed facings made of carbon reinforced concrete S.714 L. Ledderose, H. Kloft: Magnetische Ausrichtung von Mikro-Stahldrahtfasern in UHPFRC | Magnetic alignment of microsteel fibers in UHPFRC S.720 C. Petzoldt, C. Müller, H. Funke, S. Gelbrich, L. Kroll: Wiederverwendbare flexible GFK-Schalungen zur Herstellung von doppelt gekrümmten Beton-Leichtbauelementen | Re-usable and flexible GFRP formwork for the production of double curved concrete lightweight elements S.726 L. Lohaus, J. Markowski, R. Rolfes, F. F. Tritschel: UHFB-Drucktragglieder (basierend auf wickelverstärkten Hybridrohren) in voll digital datengestützter Fließfertigung als Basis für eine modulare Betonbauweise | UHPC compression rods (based on wrapped hybrid tubes) in fully digitally data-supported flow production as the basis for a modular concrete construction method S.734 P. Forman, T. Stallmann, P. Mark, J. Schnell: Auslegung von Parabolrinnen für Solarkraftwerke im Originalmaßstab S.738 P. Forman, S. Penkert, P. Mark, J. Schnell: Punktfokussierende Heliostaten aus Hochleistungsbeton | Point-focusing heliostats made from high-performance concretes S. 754 D. Kovaleva, O. Gericke, W. Sobek: Herstellung von biomimetischen und biologisch inspirierten (modularen) Strukturen | Fabrication of biomimetic and biologically inspired (modular) structures S.758 O. Gericke, W. Haase, W. Sobek: Sandschalung zur Herstellung von dünnwandigen Sandwiches aus Carbonbeton | Sand formwork for the production of thin-walled sandwiches made from carbon concrete S.762 D. Nigl, D. Schmeer, W. Haase, B. Schönemann, K. Lenz, S. Steier, O. Sawodny, P. Leistner, L. Blandini, W. Sobek: Integrale Planung und Herstellung von ressourceneffizienten Betonbauteilen aus mineralischer Faserverbundbewehrung und gradiertem Beton | Design and production of resource-efficient concrete components made of mineral fibre composite reinforcement and graded concrete S.766 Teil 3: Koordination | Part 3: Coordination S. Scheerer, M. Curbach: Koordination des SPP 1542 | Coordination of SPP 1542 S.774 / Reinforced concrete is the most widely used building material today. It can be produced universally and cheaply almost anywhere in the world. However, this is accompanied by high CO2 emissions and considerable consumption of natural resources. In the DFG Priority Programme 1542, a wide variety of approaches were therefore investigated to find out how the material can be used more efficiently and thus how concrete construction can be made fit for the future. This final report on SPP 1542 “Concrete Light“ (funded from 2011 to 2022) presents the most important results.:S. Scheerer, M. Curbach: Vorwort | Preface S.13 Teil 1: SPP-Projekte | Part 1: SPP projects A. M. Bauer, M. Breitenberger, K.-U. Bletzinger: Nichtlineare Optimierung geometrisch definierter Fugen von räumlich gekrümmten Betonfertigteilen mit isogeometrischen Verfahren | Non-linear optimization of geometrically defined joints of spatially curved prefabricated concrete elements with isogeometric analysis S.18 L. Ledderose, S. Lehmberg, F. Wirth, H. Kloft, H. Budelmann: Entwicklung neuartiger Verbindungen für komplexe Stab-, Flächen- und Raumtragelemente aus UHPFRC | Development of novel jointing systems for complex beam surface and spatial elements made of UHPFRC S. 50 J. D. van der Woerd, J. Hegger, R. Chudoba: Entwurf und Herstellung von dünnwandigen Faltwerken aus zementbasierten Verbundwerkstoffen | Design and construction of folded plate structures made of novel cementitious composites S. 90 A. Schmidt, M. Curbach: Querschnittsadaption für stabförmige Druckbauteile | Cross sectional adaption for rod-shaped elements in compression S. 118 M. Frenzel, K. Farwig, M. Curbach: Leichte Deckentragwerke aus geschichteten Hochleistungsbetonen | Lightweight ceiling structures made of layered high-performance concrete S. 144 S. Baron, J. Mainka, H. W. Hoffmeister, K. Dröder, H. Kloft: Non-Waste-Wachsschalungen: Neuartige Präzisions-Schalungen aus 100 % recycelbaren Industrie-Wachsen zur Herstellung von geometrisch komplexen Beton-Bauteilen | Non-Waste-Wax-Formwork: Novel precise formwork-technology on basis of 100% recyclable industrial wax for the fabrication of geometrically complex concrete elements S. 170 D. Busse, M. Empelmann: Ultraleichte, dünnwandige stabförmige Betonhohlbauteile | Ultra-light, thin-walled hollow concrete members S. 196 M. Henke, O. Fischer: Formoptimierte filigrane Stäbe aus UHPC und korrosionsfreier CFK-Bewehrung für variable räumliche Stabtragwerke | Shape optimized filigree rods made of UHPC and non-corrosive CFRP reinforcement for variable three-dimensional trusses S. 226 D. Schmeer, M. Wörner, H. Garrecht, O. Sawodny, W. Sobek: Effiziente automatisierte Herstellung multifunktional gradierter Bauteile mit mineralischen Hohlkörpern | Efficient automated production of multifunctional graded components with mineral hollow bodies S. 250 S. Illguth, D. Lowke, T. Kränkel, C. Gehlen: Schalentragwerke mit funktionaler Gradierung | Shell structures with functional grading S. 284 D. Weger, D. Talke, D. Lowke, K. Henke, C. Gehlen, S. Winter: Additive Fertigung frei geformter Betonbauteile durch selektives Binden mit calciumsilikatbasierten Zementen | Additive manufacturing of free formed concrete elements by selective binding with calcium silicate based cements S. 300 C.-A. Graubner, U. Knaack, T. Proske, B. Freund, M. Michel, S. Hickert: Grundlagen zur Entwicklung adaptiver Schalungssysteme für frei geformte Betonbauteile | Fundamental research towards an adaptive formwork system development for freeform concrete building components S. 328 A. Stark, J. Hegger: Sandwichbauteile mit gefalteten und gekrümmten Betondeckschichten | Sandwich panels with folded plate and curved concrete facings S.356 W. Jäger: Untersuchungen zu Trageigenschaften von plattenförmigen Betonleichtbauelementen in Kreuz-Kanal-Technologie | Investigations into the load-bearing properties of slab-shaped lightweight concrete elements in CC technology S.390 M. Schneider, H. Andrä, C. Kohlmeyer, S. Oster: Konstruktion und Optimierung von Klebeverbindungen für Platten- und Scheibenbauteile aus hochfestem Beton | Construction and optimization of adhesive joints for plate and shell construction elements composed of high performance concrete S.412 H. Funke, A. Ehrlich, L. Ulke-Winter, C. Petzoldt, S. Gelbrich, L. Kroll: Flexible GFK-Schalungen zur Herstellung von doppelt gekrümmten Beton-Leichtbauelementen mit stabilisierten Abstandsgewirken | Flexible GFRP-formwork for the production of double curved concrete lightweight elements with stabilized spacer fabrics S.436 H. Funke, L. Ulke-Winter, C. Petzoldt, C. Müller, S. Gelbrich, L. Kroll: Gekrümmte Beton-Leichtbauelemente mit bionisch inspirierten Krafteinleitungssystemen durch Einsatz flexibler GFK-Schalungen | Curved lightweight concrete structures with bionic inspired force transmission elements by the use of flexible GFRP-formworks S.452 L. Lohaus, J. Markowski: Wickelverstärkte Hybridrohre | Wrapping-reinforced hybrid tubes S.472 M. Schlaich, A. Goldack, J. P. Osman-Letelier, D. Lordick, K. Noack, M. Friedrich Eichenauer, R. Päßler, M. Pott: Methoden und Werkzeuge für Entwurf und Herstellung schalenartiger und dünnwandiger Betonbauteile mit Regelflächengeometrie | Methods and tools for the design and construction of thin-walled concrete structures with ruled surface geometry S.488 D. Lordick, D. Klawitter, M. Hagemann: Liniengeometrie für den Leichtbau | Line geometry for lightweight structures S.514 C. Kämper, T. Stallmann, P. Forman, J. Schnell, P. Mark: Leichte verformungsoptimierte Schalentragwerke aus mikrobewehrtem UHPC am Beispiel von Parabolrinnen solarthermischer Kraftwerke | Light-weight shape-optimised shell structures made from high-performance concrete for collector modules of parabolic trough power plants S.536 L. Zhou, J. Simon, S. Reese: Modellreduktion und Substrukturtechnik am Beispiel von modularen Schalentragwerken aus ultrahochfestem Beton | Model order reduction and substructures – application to modular shell structures made of ultra-high performance concrete S.590 M. Schnellenbach-Held, J.-E. Habersaat: Leichte Platten aus Beton mit biaxialem Lastabtrag als bionische Strukturen S.610 O. Gericke, D. Kovaleva, W. Haase, W. Sobek: Abfallfreie Herstellung von Betonbauteilen durch die Verwendung einer gefrorenen Sandschalung | Waste-free production of concrete components by means of a frozen sand formwork S.626 M. Wörner, D. Schmeer, H. Garrecht, O. Sawodny, W. Sobek: Optimalstrukturen aus funktional gradierten Betonbauteilen – Entwurf, Berechnung und automatisierte Herstellung | Optimal structures made of functional graded concrete – design, dimensioning and automated production S.642 Teil 2: Demonstratoren und Anschlussprojekte | Part 2: Demonstrators and follow-up projects D. Busse, L. Ledderose: uni-con² – universal concrete construction S.676 C. Müller, H. Funke, S. Gelbrich, L. Kroll: Carbonbeton-Schalendemonstrator | Shell demonstrator out of carbon reinforced concrete S.682 M. Koschemann, S. Scheerer: CarboLight Bridge – eine ultraleichte Konstruktion aus kohlefaserverstärktem und infraleichtem Beton | CarboLight Bridge – an ultra-lightweight construction made of carbon reinforced and infra-lightweight concrete for the German Museum in Munich S.686 S. Scheerer, B. Beckmann, J. Bielak, S. Bosbach, C. Schmidt, J. Hegger, M. Curbach: Konstruktionsstrategien für materialminimierte Carbonbetonstrukturen – Grundlagen für eine neue Art zu bauen | CRC/Transregio 280: Design strategies for material-minimised carbon reinforced concrete structures – principles of a new approach to construction S.700 D. Talke, D. Weger, K. Henke, T. Kränkel, D. Lowke, C. Gehlen, S. Winter: Industrieller 3D-Betondruck durch selektive Zementaktivierung – Verfahren, Material, Anwendungen | Industrial 3D concrete printing by selective cement activation – process, material, applications S.706 D. Schönfelder, H. Funke, S. Gelbrich, L. Kroll: Automatisierte Herstellungstechnologie zur Fertigung von dünnwandigen 3D-geformten Verbundelementen für nachhaltige energie-effiziente Fassadenlösungen – „GreenFACE“ | Automated manufacturing technology for the production of thin-walled 3D-shaped composite elements for sustainable, energy-efficient facade solutions – “GreenFACE“ S.710 A.-C. von der Heid, N. Will, J. Hegger: Weitspannende Sandwichelemente mit vorgespannten Deckschichten aus Carbonbeton | Wide-span sandwich elements with prestressed facings made of carbon reinforced concrete S.714 L. Ledderose, H. Kloft: Magnetische Ausrichtung von Mikro-Stahldrahtfasern in UHPFRC | Magnetic alignment of microsteel fibers in UHPFRC S.720 C. Petzoldt, C. Müller, H. Funke, S. Gelbrich, L. Kroll: Wiederverwendbare flexible GFK-Schalungen zur Herstellung von doppelt gekrümmten Beton-Leichtbauelementen | Re-usable and flexible GFRP formwork for the production of double curved concrete lightweight elements S.726 L. Lohaus, J. Markowski, R. Rolfes, F. F. Tritschel: UHFB-Drucktragglieder (basierend auf wickelverstärkten Hybridrohren) in voll digital datengestützter Fließfertigung als Basis für eine modulare Betonbauweise | UHPC compression rods (based on wrapped hybrid tubes) in fully digitally data-supported flow production as the basis for a modular concrete construction method S.734 P. Forman, T. Stallmann, P. Mark, J. Schnell: Auslegung von Parabolrinnen für Solarkraftwerke im Originalmaßstab S.738 P. Forman, S. Penkert, P. Mark, J. Schnell: Punktfokussierende Heliostaten aus Hochleistungsbeton | Point-focusing heliostats made from high-performance concretes S. 754 D. Kovaleva, O. Gericke, W. Sobek: Herstellung von biomimetischen und biologisch inspirierten (modularen) Strukturen | Fabrication of biomimetic and biologically inspired (modular) structures S.758 O. Gericke, W. Haase, W. Sobek: Sandschalung zur Herstellung von dünnwandigen Sandwiches aus Carbonbeton | Sand formwork for the production of thin-walled sandwiches made from carbon concrete S.762 D. Nigl, D. Schmeer, W. Haase, B. Schönemann, K. Lenz, S. Steier, O. Sawodny, P. Leistner, L. Blandini, W. Sobek: Integrale Planung und Herstellung von ressourceneffizienten Betonbauteilen aus mineralischer Faserverbundbewehrung und gradiertem Beton | Design and production of resource-efficient concrete components made of mineral fibre composite reinforcement and graded concrete S.766 Teil 3: Koordination | Part 3: Coordination S. Scheerer, M. Curbach: Koordination des SPP 1542 | Coordination of SPP 1542 S.774

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