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1

Pulyaev, I., and S. Pulyaev. "Experience of Using Self-Compacting Concrete Mixes in Transport Construction." Materials Science Forum 992 (May 2020): 135–42. http://dx.doi.org/10.4028/www.scientific.net/msf.992.135.

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The creation of self-compacting concrete (SCC) is associated with the introduction of plasticizing additives based on polycarboxylate esters (PCE). The first patent for a group of substances proposed for use as superplasticizers for concrete, was declared in the early 80-ies of the last century in Japan. In the mid 90-ies superplasticizers based on esters of polycarboxylates began to be used in Europe. In Russia, the use of self-compacting concrete began much later, and in bridge and tunnel construction almost a few years ago. Currently, in the European Union, 70-80% of reinforced concrete str
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2

Haist, Michael, Tobias Schack, Max Coenen, Christian Vogel, Dries Beyer, and Christian Heipke. "Concrete 4.0 ‐ Sustainable concrete construction with digital quality control." ce/papers 6, no. 6 (2023): 1555–62. http://dx.doi.org/10.1002/cepa.2965.

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AbstractConcrete is a mass commodity with more than approx. 250 Mio. batches of concrete being produced every year in Europe alone. Despite this enormous repetition rate, both the quality inspection of the concrete raw materials as well as of the mixed concrete are still primarily batch‐based, relying on manual processes, thus hindering the application of modern process control schemes. The reasons for this lack are on the one hand to be seen in the lack of suitable sensor technologies and on the other hand in missing control algorithms. The paper at hand gives an overview on the current state
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3

Dr., R. N. Uma, Suganya S., and V. Saranya C. "A REVIEW ON PERFORMANCE OF SELF COMPACTING CONCRETE USING MINERAL AND CHEMICAL ADMIXTURE." International Journal of Engineering Research and Modern Education Special Issue, April 2017 (2017): 157–61. https://doi.org/10.5281/zenodo.573200.

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Self-Compacting Concrete Originally developed in Japan, SCC technology was made possible by the much earlier development of Superplasticisers for concrete. The self-compacting concrete (SCC), has been used in precast constructions like bridge, building and tunnel construction since the early 1990’s. In the last five years, a number of SCC bridges have been constructed in Europe. The application of SCC in highway bridge construction is very limited at this time. However, the U.S. precast concrete industry is beginning to apply the technology to architectural concrete. SCC has high potential for
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4

Mikulica, Karel, and Rudolf Hela. "Hempcrete - Cement Composite with Natural Fibres." Advanced Materials Research 1124 (September 2015): 130–34. http://dx.doi.org/10.4028/www.scientific.net/amr.1124.130.

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The paper describes use of hemp boon as a natural organic filler for building materials, especially concrete designed as heat - insulating filler material around the load-bearing structure of wooden buildings. In constructions, hemp has been used in the form of mats made of hemp fiber, with the addition of bonding bicomponent fibers and soda solution for protection against burning and rots. Mats are formed by pneumatic fleece, they are subsequently thermally treated and then cut to the desired dimensions. Calcium-hemp building material is a revolutionary construction and thermal insulating mat
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5

Russell, Henry G., Mary Lou Ralls, and Benjamin M. Tang. "Prefabricated Bridge Elements and Systems in Japan and Europe." Transportation Research Record: Journal of the Transportation Research Board 1928, no. 1 (2005): 102–9. http://dx.doi.org/10.1177/0361198105192800111.

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In April 2004, a scanning tour of Japan, the Netherlands, Belgium, Germany, and France was made to obtain information about bridge construction methods being used to minimize traffic disruption, improve work zone safety, minimize environmental impact, improve constructibility, increase quality, and lower life-cycle costs. From information obtained from the tour, 10 technologies were identified for further consideration and possible implementation into U.S. practices. These included two technologies that allow bridges to be built off site and then moved to their final location in a short time,
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6

Zhang, Yuying. "A Comprehensive Review on Water Permeability Testing and Sealing Techniques in Concrete Construction." Journal of Engineering Research and Reports 26, no. 4 (2024): 67–72. http://dx.doi.org/10.9734/jerr/2024/v26i41114.

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The durability of concrete is determined by the permeability resistance to a large extent. The permeability resistance of concrete is an important index of concrete durability. This paper introduces the water permeability test process of concrete in China, Europe and the United States, and explains the sealing method of specimens in the water permeability test of concrete according to the Chinese standard, so that the construction inspection industry personnel can choose according to the actual situation of the project and the evaluation needs.
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7

Ramesh, Gomasa. "Pervious Concrete: A Review." Indian Journal of Structure Engineering 1, no. 1 (2021): 12–14. http://dx.doi.org/10.35940/ijse.b8010.051121.

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Pervious Concrete is a new type of concrete used widely in the construction industry. It has good physical and also mechanical properties, and it gives good strength. It is used mainly in the water management of the system. So, by using this application, concrete is very famous. There are many advantages to using pervious concrete, and compared to regular conventional concrete, it has some special properties. The special property of permeability. In this transfer or transmission of air or water into the soil or system. This paper author mainly explains the importance and uses, and advantages o
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8

Ramesh, Gomasa. "Pervious Concrete: A Review." Indian Journal of Structure Engineering 1, no. 1 (2021): 12–14. http://dx.doi.org/10.54105/ijse.b8010.051121.

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Pervious Concrete is a new type of concrete used widely in the construction industry. It has good physical and also mechanical properties, and it gives good strength. It is used mainly in the water management of the system. So, by using this application, concrete is very famous. There are many advantages to using pervious concrete, and compared to regular conventional concrete, it has some special properties. The special property of permeability. In this transfer or transmission of air or water into the soil or system. This paper author mainly explains the importance and uses, and advantages o
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9

Gomasa, Ramesh. "Pervious Concrete: A Review." Indian Journal of Structure Engineering (IJSE) 1, no. 1 (2021): 12–14. https://doi.org/10.54105/ijse.B8010.051121.

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Pervious Concrete is a new type of concrete used widely in the construction industry. It has good physical and also mechanical properties, and it gives good strength. It is used mainly in the water management of the system. So, by using this application, concrete is very famous. There are many advantages to using pervious concrete, and compared to regular conventional concrete, it has some special properties. The special property of permeability. In this transfer or transmission of air or water into the soil or system. This paper author mainly explains the importance and uses, and advantages o
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10

Seyam, Ahmed M., and Rita Nemes. "Comparing the European Standards and the American Standards for Testing Concrete Mechanical Properties." Concrete Structures 24 (2023): 97–104. http://dx.doi.org/10.32970/cs.2023.1.14.

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Europe and the United States have a worldwide significance in the field of concrete control and construction, as well as the cleared and specified standards, according to many countries adopted their standards and regulations in the field of concrete quality control and assurance as proof of the Europe and US strong standards and due to lack of their regulations. This research compares the European standards, the American Society for Testing and Materials (ASTM) and American Concrete Institute (ACI) standards for testing the mechanical properties of concrete. The research focuses on compressiv
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11

Kappos, Andreas J., Themelina S. Paraskeva, and Ioannis F. Moschonas. "Response Modification Factors for Concrete Bridges in Europe." Journal of Bridge Engineering 18, no. 12 (2013): 1328–35. http://dx.doi.org/10.1061/(asce)be.1943-5592.0000487.

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12

Vetta, Theodora, and Jaime Palomera. "Concrete Stories in Southern Europe: Financialisation and Inequality in the Construction Chain." Antipode 52, no. 3 (2020): 888–907. http://dx.doi.org/10.1111/anti.12620.

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13

Berge, Bernard. "FRC – exclusive to continental Europe or will the UK join the mix?" Structural Engineer 89, no. 2 (2011): 21–23. http://dx.doi.org/10.56330/olkg2419.

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Bernard Berge of Maccaferri asks why the take up of fibre-reinforced concrete in the UK lags behind the rest of Europe, where it has proved very successful, as reflected by its use in the construction of the extension to Barcalona's metro system.
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14

Tatarinsky, Viktor, Roman Rybalko, Yuri Petrenko, and Vladimir Suponyev. "Project management methodology of automated technological process development of Warm asphalt concrete mixes production." Bulletin of Kharkov National Automobile and Highway University, no. 95 (December 16, 2021): 74. http://dx.doi.org/10.30977/bul.2219-5548.2021.95.0.74.

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Today the world modern practice in the field of road construction widely uses warm asphalt concrete mixes (WMA), which are used in the construction of roads for various purposes and ensure their long service life, increasing the construction season, reducing energy costs, as well as reducing the negative impact on the environment. In the United States and Europe, the use of WMA is growing rapidly and now counts tens of millions of tons. The number of asphalt concrete plants equipped with asphalt mixing plants intended for their production is already about 20% of the total number of asphalt con
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15

Bonoli, Alessandra, Sara Zanni, and Francisco Serrano-Bernardo. "Sustainability in Building and Construction within the Framework of Circular Cities and European New Green Deal. The Contribution of Concrete Recycling." Sustainability 13, no. 4 (2021): 2139. http://dx.doi.org/10.3390/su13042139.

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Climate change and ecological crisis are a huge threat to Europe and the world. To overcome these challenges, Europe adopted the New Green Deal as a strategy transforming the Union into a competitive resource-efficient economy without greenhouse gas emissions and become carbon neutral in a few decades. The European Green Deal includes the new circular economy action plan, highlighting the importance of a products’ “green design”, saving raw materials, and waste prevention oriented along the entire life cycle of products. Construction and buildings represent one of the key topics for the green
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16

Vancura, Mary, Derek Tompkins, and Lev Khazanovich. "Freeze–Thaw Durability and Salt Scaling Resistance Assessment of Portland Cement Concrete Composite Pavement." Transportation Research Record: Journal of the Transportation Research Board 2290, no. 1 (2012): 76–83. http://dx.doi.org/10.3141/2290-10.

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The SHRP 2 R21 project on composite pavement investigated the durability of various mixtures of portland cement concrete (PCC) used in the construction of a two-layer composite PCC pavement. Project consultants in Europe, where composite PCC over PCC pavement was more common than in the United States, advised the R21 research team to consider using the CIF (capillary suction, internal damage, and freeze–thaw) standard of the International Union of Laboratories and Experts in Construction Materials, Systems, and Structures (RILEM), Paris, rather than the familiar ASTM standards. As a result, th
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17

Rossi, Laura, Luiz Miranda de Lima, Yubo Sun, et al. "Future perspectives for alkali-activated materials: from existing standards to structural applications." RILEM Technical Letters 7 (January 12, 2023): 159–77. http://dx.doi.org/10.21809/rilemtechlett.2022.160.

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The production of cement and concrete contributes significantly to global greenhouse gas emissions. Alkali-activated concretes (AACs) are a family of existing alternative construction materials that could reduce the current environmental impact of Portland cement (PC) production and utilisation. Successful applications of AACs can be found in Europe and the former USSR since the 1950s and more recently in Australia, China and North America, proving their potential as construction materials. However, their utilisation is limited presently by the lack of normative and construction guidelines. Ra
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18

Hrčka, Richard, Patrik Štompf, Stanislav Jochim, Marek Eduard Mikuš, and Milan Iskra. "The Measurement of Hemp Concrete Thermal and Moisture Properties for an Effective Building Construction Proposal in Region of Slovakia (Central Europe)." Materials 18, no. 7 (2025): 1651. https://doi.org/10.3390/ma18071651.

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The construction industry is facing an increased demand to adopt sustainable green building materials to minimize the carbon footprint. Hemp concrete is a green building material not only because of its low embodied carbon but also because of its ability to regulate heat and relative humidity. Its thermal characteristics are often viewed as favorable for reducing the energy used to heat or cool indoor buildings. The current research is focused on the properties of hemp concrete from Slovak manufacturers which can be effectively used in construction as a replacement for conventional building ma
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19

Müller, Christoph. "How standards support sustainability of cement and concrete in Europe." Cement and Concrete Research 173 (November 2023): 107288. http://dx.doi.org/10.1016/j.cemconres.2023.107288.

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20

Stefanowski, Tadeusz, Piotr Supeł, and Wojciech Trochymiak. "Analysis of Changes of Forces and Normal Stress in Extradosed Tendons of the MS-3B Bridge Located on the Ring Road in Ostróda." MATEC Web of Conferences 196 (2018): 02050. http://dx.doi.org/10.1051/matecconf/201819602050.

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The article discusses the analyses of a numerical model of an extradosed bridge built as part of the project called “Construction of S7 expressway connecting Miłomłyn and Olsztynek, together with construction of Ostróda Bypass as a section of national road no. 16.” The constructed facility fits in with the global trends of construction of next generation concrete bridges with tensioned tendons. The bridge is the best in its class in Europe in terms of the length of its main span. It is also one of the first concrete bridges in Poland which have been built using cantilever technology in which t
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21

Turski, Robert, and Wojciech Rogala. "Current situation and further development of AAC in Europe." Cement Wapno Beton 27, no. 3 (2022): 154–65. http://dx.doi.org/10.32047/cwb.2022.27.3.1.

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The article presents the current situation of the industry manufacturing autoclaved aerated concrete and the possibilities for further development. It presents a roadmap for the industry to achieve net-zero-emission during production and life cycle till 2050, and discusses the sources of carbon dioxide emissions in the production of AAC and methods, which can be taken to reduce them. The article also discusses ways to increase the competitiveness of the AAC manufacturing industry as well as current and future ways of using digitisation and mechanisation on construction sites.
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22

Raj, P. Santhi, G. V. V. Satyanarayana, and M. Sriharshavarma. "Investigation on Workability Of M20 Grade Concrete With Partial Replacement Of Crumb Rubber And M Sand For Fine Aggregates And Flyash For Cement." E3S Web of Conferences 184 (2020): 01098. http://dx.doi.org/10.1051/e3sconf/202018401098.

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Concrete has a key role in construction. Study focus on workability of the concrete, Fine Aggregate is partially filled with crumb rubber and M sand, a part of cement is replaced with fly ash. In this investigation the crumb rubber is utilised in place of fine aggregate. The scrap tyre treatment is currently a serious issue against environmental pollution. India stud in forth position in the entire world for rubber tyre market world after china, Europe and the US. Fly ash and M sand is an industrial waste which is included in the concrete. In this investigation workability of concrete is condu
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23

Jasiczak, Józef, Marcin Kanoniczak, and Jędrzej Suchecki. "W sprawie nowoczesnego budownictwa wielkopłytowego. Postulaty rozwiązań technicznych i kierunki rozwoju." Środowisko Mieszkaniowe, no. 42 (June 2023): 66–79. http://dx.doi.org/10.4467/25438700sm.23.005.17806.

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The general substance of Polish housing construction in cities is largely represented by buildings made in prefabricated, large panel technology. Traditional construction methods, with the use of earlier craftsmanship technologies, turned out to be too inefficient to meet the growing demand for apartments, and therefore in the 1920s, when the so-called "International style” was introduced, new materials and technologies paved the way for their use in the construction industry, i.e. slabs, steel, reinforced concrete and industrial methods of manufacturing elements. As a result, after 1945 in Eu
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24

Köllő, Szabolcs Attila, Attila Puskás, and Gavril Köllő. "Ballasted Track versus Ballastless Track." Key Engineering Materials 660 (August 2015): 219–24. http://dx.doi.org/10.4028/www.scientific.net/kem.660.219.

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First concrete sleepers were made of normal reinforced concrete and used during the 1930s and 1940s. Concrete railroad ties became popular in Europe after World War II because of the advances in design, material quality and production of pre-stressed concrete. Now as before, concrete sleepers on ballast represent the primary basis of track construction, around the world, but the twin block concrete sleepers are also popular and widely used. The continuously increasing operational loads and speeds forced the railway companies to update their technical and economic system to keep their vital rol
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25

Špak, Matej, Tomáš Mandičák, Marcela Spišáková, and Dominik Verčimák. "Risk Management on Concrete Structures as a Tool for the Control of Construction Efficiency." Sustainability 15, no. 12 (2023): 9577. http://dx.doi.org/10.3390/su15129577.

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Risk management in the construction industry has a significant role in the impact of a construction project. Risk management is needed to make processes more efficient in terms of the implementation of construction projects. This research is oriented to the management of risks regarding the concrete structures of residential buildings in Central Europe. This research provides insights into risk management procedures, based on a risk’s frequency, the probability of occurrence, and its impact on the effectiveness of construction projects for concrete structures. The aim of the research is to ana
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26

Konca, Piotr, Iwona Szer, Jacek Szer, et al. "Sustainable Infrastructure: Recycled Concrete Aggregates for Cycle Paths." Materials 18, no. 1 (2024): 131. https://doi.org/10.3390/ma18010131.

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The application of recycled concrete aggregates (RCAs) has become increasingly popular for different types of structures, as presented in several studies. However, depending on the type of structure and the region, RCAs might have different properties. This study aims to investigate the application of RCAs of different origins for substructure layers of the cycle paths located in Central Europe, which was not analysed previously. Recycled aggregates from an airport, road overpass, and building demolition were tested according to European standards and used to produce concretes, in which compre
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27

Yang, Lu, Yuan Qing Wang, and Yong Jiu Shi. "Loading Capacity of Simply Supported Steel-Concrete Composite Slim Beams." Advanced Materials Research 163-167 (December 2010): 2185–93. http://dx.doi.org/10.4028/www.scientific.net/amr.163-167.2185.

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A steel-concrete composite slim beam, with its steel section encased in a concrete slab, provides a composite steel-concrete floor construction with minimum depth and high fire resistance. It has become popular in multi-storey steel buildings throughout Europe in recent years and also been used in some projects in China. For the structural engineer, it is critical to understand the behavior of composite slim beam in the sagging moment region. In this paper, the bending capacity and flexural stiffness of the composite slim beams in sagging moment region are investigated theoretically. Meanwhile
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28

Havlíček, Peter, and Július Šoltész. "Design of Concrete Hinges According to Leonhard." Solid State Phenomena 309 (August 2020): 163–68. http://dx.doi.org/10.4028/www.scientific.net/ssp.309.163.

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Concrete hinges are characterized by a high load-bearing capacity and deformability. They are nearly maintenance-free and have a high durability if designed and constructed properly. Concrete hinges are perfectly suited to control the flow of forces and to efficiently reduce constraints. The concept more than 130 years old. The first massive joints were developed by Claus Kӧpcke already in 1880. However, due to the difficult construction process, an alternative type of joint was developed, where the concrete contact surface was replaced with embedded lead or steel plates. The breakthrough in
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29

Lestari, Ratri Yuli. "CLT (Cross Laminated Timber): Produksi, Karakteristik dan Perkembangannya (CLT (Cross Laminated Timber): Production, Characteristics and Development)." Jurnal Riset Industri Hasil Hutan 9, no. 1 (2017): 41–55. http://dx.doi.org/10.24111/jrihh.v9i1.3126.

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Cross laminated timber (CLT) is an engineered wood product as a laminated board that was arranged in cross order and applied as floor, roof, and wall. This product is an innovation in overcoming the scarce of wood material especially in large diameter and high quality as a building material. The review discusses the history of CLT, the characteristics, and its developments. CLT was first developed in Europe especially in Austria and Germany and then spread around the world. CLT has superiority in term of characteristics such as renewable, recyclable, easy to design and form, good insulation, e
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30

Mrázek, Martin, and Ludvika Kanická. "Street Furniture for Seniors." Acta Universitatis Agriculturae et Silviculturae Mendelianae Brunensis 68, no. 1 (2020): 81–94. http://dx.doi.org/10.11118/actaun202068010081.

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Street furniture is an independent discipline. It addresses detailed solutions of products designed for human use in an exterior environment. Based on present-day studies, senior citizens constitute the fastest growing segment of the population. The sample element with defined ergonomic parameters has been defined by analyzing the standard and most used component of street furniture – bench, by the comparison of used materials and chosen construction. During the comparison and the subsequent conclusions, a great emphasis was placed on the functionality and durability of the individual componen
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31

Bostenaru Dan, Maria. "Building the Future on Lessons of Historic Reinforced Concrete." Sustainability 12, no. 15 (2020): 5925. http://dx.doi.org/10.3390/su12155925.

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This contribution presents the way the construction material reinforced concrete was introduced at the beginning of the 20th century, from both the technical (Hennebique system) and the philosophical points of view. The philosophy underlying the use of this material is evident in the theories on finding a language of form corresponding to tectonics, and its dialogue with timber, formulated by certain notable practicing architects of the time across Europe. Not to be neglected are aspects relating to the conservation of material and to interventions carried out over time. In Modernist times, th
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32

Velichko, Evgeniy, Nikita Polkovnikov, and Yuliya Sadchikova. "Efficient concrete increased water resistance modified with mineral and polymeric additives." E3S Web of Conferences 97 (2019): 02017. http://dx.doi.org/10.1051/e3sconf/20199702017.

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The article deals with issues of optimizing the composition of efficient concrete increased water resistance, reducing its cost without losing or increasing its basic properties. In recent years, the most effective method of tightness to water in the construction of buried and underground structures, as opposed to the use of bituminous and other traditional materials, is a method based on the use of concrete with increased water resistance. This type of tightness to water is called “White bath” in Europe. The essence of the technology is that the role of the impervious layer is performed direc
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33

Courcelle, Thibault, and François Taulelle. "Does the EU Regional Policy reinforce the European citizenship?" Debater a Europa, no. 12 (February 1, 2015): 155–71. http://dx.doi.org/10.14195/1647-6336_12_9.

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The European institutions are often described as distant, inaccessible and understandable to citizens. The EU Regional Policies, which starts at the local and regional level, however, shows that Europe is also a concrete construction. The files for EU funds, although it is often tedious, requires local and regional authorities to adopt a proactive and conscious approach and opt for an approach based on cooperation and partnership. Many politicians therefore consider that cohesion policy has helped to bring Europe closer to the citizens, giving the European project a more palpable face. We try
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34

Žegarac Leskovar, Vesna, and Miroslav Premrov. "A Review of Architectural and Structural Design Typologies of Multi-Storey Timber Buildings in Europe." Forests 12, no. 6 (2021): 757. http://dx.doi.org/10.3390/f12060757.

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Numerous countries across the globe have witnessed the recent decades’ trend of multi-storey timber buildings on the rise, owing to advances in engineering sciences and timber construction technologies. Despite the growth and numerous advantages of timber construction, the global scale of multi-storey timber construction is still relatively low compared to reinforced concrete and steel construction. One of the reasons for a lower share of high-rise timber buildings lies in the complexity of their design, where the architectural design, the selection of a suitable structural system, and the ene
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35

Bogdanić, Anton, Daniele Casucci, and Joško Ožbolt. "Numerical and Experimental Investigation on Concrete Splitting Failure of Anchor Channels." CivilEng 2, no. 2 (2021): 502–22. http://dx.doi.org/10.3390/civileng2020028.

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Concrete splitting failure due to tension load can occur when fastening systems are located close to an edge or corner of a concrete member, especially in thin members. This failure mode has not been extensively investigated for anchor channels. Given the current trend in the construction industry towards more slender concrete members, this failure mode will become more and more relevant. In addition, significantly different design rules in the United States and Europe indicate the need for harmonization between codes. Therefore, an extensive numerical parametric study was carried out to evalu
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36

Kastiukas, Gediminas, Shaoqin Ruan, Cise Unluer, Shuang Liang, and Xiangming Zhou. "Environmental Assessment of Magnesium Oxychloride Cement Samples: A Case Study in Europe." Sustainability 11, no. 24 (2019): 6957. http://dx.doi.org/10.3390/su11246957.

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This study is the first in the literature to systematically assess the environmental impacts of magnesium oxychloride cement (MOC) samples, which are regarded as a more eco-friendly construction material than Portland cement. The environmental impacts of MOC samples prepared with various molar ratios of MgO/MgCl2∙6H2O and sources of reactive magnesia were obtained via a life cycle assessment (LCA) approach (from cradle to grave), and the obtained outcomes were further compared with the counterparts associated with the preparation of Portland cement (PC) samples. Meanwhile, a sensitivity analys
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37

Sretenovic, Predrag, and Branko Glavonjic. "Market of innovative timber products in Europe and Serbia and their contribution to climate change mitigation." Bulletin of the Faculty of Forestry, no. 110 (2014): 159–73. http://dx.doi.org/10.2298/gsf1410159s.

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The paper shows results of researching the market of glued laminated timber as the most frequent innovative timber product in constructing timber framed residential facilities in Europe and Serbia. The research included the development of production, consumption and trade flows for the most significant countries in the European Union and Serbia. Additionally, the paper gives characteristics of this innovative timber product regarding dimensions, allowed deviations of dimensions defined in adequate European standard, wood species it is made of and fire resistance. The last part of the paper sho
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38

Theocharis, Christoforos, Ernst Kainmüller, Josef Lechleitner, Ulrich Pont, and Ardeshir Mahdavi. "Improving the Impact Sound Insulation of an Existing and Refurbished Wooden Beam Floor Construction." Applied Mechanics and Materials 861 (December 2016): 527–36. http://dx.doi.org/10.4028/www.scientific.net/amm.861.527.

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A common source of dissatisfaction in buildings pertains to acoustical issues. Specifically, in existing buildings, exposure to impact noise represents a frequent problem. In Central Europe generally, and in Vienna (Austria) specifically, there is a significant number of existing buildings with floor constructions involving wooden beams as structural elements. Given the steady rise in inhabitants' expectations regarding buildings' acoustical quality, such existing floor constructions do not sufficiently provide the sufficient impact noise insulation. In many instances, the replacement of these
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Salles, Pedro Valle, Thiago Marques Viana, Camila Lacerda Gomes, Flávia Cristina Silveira Braga, Flávia Spitale Jacques Poggiali, and Conrado de Souza Rodrigues. "Mechanical characterization of concretes produced with construction and demolition waste." Research, Society and Development 9, no. 1 (2020): e56911597. http://dx.doi.org/10.33448/rsd-v9i1.1597.

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The construction industry is responsible for the generation of large volumes of waste, known as construction and demolition waste (CDW). Around the world, millions of tons of these wastes are generated annually, which often become important environmental liabilities. The situation gets worse as the sector develops. In Europe, only 15 of the 27 countries in the European Union annually produce around 180 million tonnes of CDW, in Brazil, the data about this indicates that in 2014 the municipalities collected about 45 million tons of CDW, quantity 4.1% higher than in 2013. In this scenario, the p
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ARAD, VICTOR, NICOLAE ILIAŞ, SUSANA ARAD, MARIAN TICU, LIVIU POPA, and DORIN DRAGAN. "Geotechnical research regarding the use of solid mineral tailings from the mining industry in construction, in the context of circular economy." Journal of Engineering Sciences and Innovation 6, no. 2 (2021): 203–12. http://dx.doi.org/10.56958/jesi.2021.6.2.9.

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The extractive activity and processing of useful mineral substances results in a significant amount of mining waste, in the form of mineral waste. According to European statistical institutions, mining and quarrying in Europe generates over 50% of total industrial waste. Most of this waste is stored in dumps and ponds. The processing of solid mineral tailings and the production of economically usable by-products is of major importance, both from an economic point of view and from the point of view of environmental management, having a major impact on the protection of the environment. The pape
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41

Petrovski, Aleksandar, Jelena Ivanovic-Sekularac, and Nenad Sekularac. "Comparison of wooden and conventional houses sustainability: Increasing application of modified wood in R. of Macedonia." Thermal Science 23, no. 3 Part B (2019): 1943–55. http://dx.doi.org/10.2298/tsci180705292p.

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The residential sector in Republic of North Macedonia, situated in south-east Europe, is responsible for the consumption of significant amounts of resources and for the production of large amount of emissions and waste. The increased application of wood products can substantially improve these conditions and contribute towards increasing the sustainability in the construction industry and the creation of sustainable homes. The contribution of this paper is the simulation of four different alternatives of residential buildings in the Republic of North Macedonia, evaluated in terms of energy per
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42

Akerele, Daniel D., and Federico Aguayo. "Evaluating the Impact of CO2 on Calcium SulphoAluminate (CSA) Concrete." Buildings 14, no. 8 (2024): 2462. http://dx.doi.org/10.3390/buildings14082462.

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The construction industry is a significant contributor to global CO2 emissions, primarily due to the extensive use of ordinary portland cement (OPC). In response to the urgent need for sustainable construction materials, calcium sulphoaluminate (CSA) cement has emerged as a promising alternative. CSA cement is renowned for its low carbon footprint, high early-age strength, and superior durability, making it an attractive option for reducing the environmental impact of construction activities. While CSA cement offers benefits in carbon emissions reduction, its susceptibility to carbonation pres
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43

Ustabas, Ilker, Sakir Erdogdu, Cihan Akyuz, Zafer Kurt, and Talip Cakmak. "Heavy aggregate and different admixtures effect on pavings: pyrite, corundum and water-retaining polymer." Revista de la construcción 23, no. 1 (2024): 31–46. http://dx.doi.org/10.7764/rdlc.23.1.31.

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Concrete pavings are widely used in the construction industry as flooring for decorative and structural purposes in the gardens, parks, and roads of America, and Europe. In the present study, the effects of pyrite, corundum, and water-retaining polymer additives on the surface wear resistance of concrete pavings were investigated. Concrete pavings were poured in 2 stages and all of the bottom layers of samples were the same, but upper layers of pavings were produced by adding pyrite in the ratio of 0.10, 0.20, 0.30, 0.40 according to the mass of the aggregate, 5 kg /m2 corundum-based surface h
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44

Al-Jabri, Khalifa S. "Research on the use of Ferro-Chrome slag in civil engineering applications." MATEC Web of Conferences 149 (2018): 01017. http://dx.doi.org/10.1051/matecconf/201814901017.

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Over recent decades there has been rapid increase in the industrial waste materials and by-products yields due to the progressive growth rate of population, development of industry and technology and the growth of consumerism. With the growing environmental pressures to reduce waste and pollution, Intensive research studies have been conducted to explore all suitable reuse methods. Wastes such as construction waste, blast furnace, steel slag, coal fly ash and bottom ash have been approved in many places as alternative materials in bridges, roads, pavements, foundations and building constructio
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Visser, Gerrit, Kees Van Ijselmuijden, Ernst Klamer, and Gideon Van Zijl. "Retrofit and Renovation of Concrete Bridges with Fibre Reinforced Polymer (FRP): The Third Alternative." MATEC Web of Conferences 199 (2018): 09010. http://dx.doi.org/10.1051/matecconf/201819909010.

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This paper presents Fibre Reinforced Polymer (FRP) as a third alternative construction material worth considering when retrofitting a bridge structure. FRP offers the following advantages: lighter than steel and concrete, non-corrosive, low in maintenance, stronger than structural steel and fatigue resistant. FRP has been used in Europe and more specifically in the Netherlands for almost 20 years in the retrofitting of road bridges, in new pedestrian bridges, road bridges and lock doors for sluices. The Netherlands has recently developed the updated Dutch Design Code CUR Recommendation 96, whi
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46

Fleming, Patrick, Simon Smith, and Michael Ramage. "Measuring-up in timber: a critical perspective on mid- and high-rise timber building design." Architectural Research Quarterly 18, no. 1 (2014): 20–30. http://dx.doi.org/10.1017/s1359135514000268.

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Architects, engineers and researchers alike often cite practical reasons for building with wood. Since the development of curved glulam beams and columns over a century ago, the widespread use of massive structural timber elements has allowed architects and engineers to design and build in wood with unprecedented speed and scale. Moreover, rising concerns of climate change and the carbon-dioxide emissions associated with construction encourage the use of wood as a viable alternative to steel and concrete, due to CO2 sequestration in trees.In mid- and high-rise buildings, the current shift from
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Kvocak, Vincent, Daniel Dubecky, and Viktoria Kozlejova. "Experimental Verification of Design Models in a Static and Dynamic Loading Test." Key Engineering Materials 763 (February 2018): 394–99. http://dx.doi.org/10.4028/www.scientific.net/kem.763.394.

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Nowadays more and more often investors and constructors are building constructions by combining two of the most common materials: reinforced concrete and steel. By understanding their behavior we can squeeze a mountain of used material with better results. They make it possible to take advantage of good mechanical properties of concrete in compression and steel in tension. One of the commonest types of composite structures is deck bridges with encased filler beams. These types of construction have been employed in Slovakia and all over Europe without any major change since the beginning of the
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Fülöp, Ludovic. "Prospects of Seismic Upgrading a Weak R.C. School Building Using Light Gauge Steel Walls." Applied Mechanics and Materials 777 (July 2015): 179–84. http://dx.doi.org/10.4028/www.scientific.net/amm.777.179.

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Significant number of reinforced concrete building frames executed in the ‘50’s-60’s in Europe need seismic upgrading. At those times understanding of earthquake effects was insufficient and quality control on construction sites lacking. This combination resulted in buildings framed in reinforced concrete with bad quality materials and inadequate reinforcement. The low-medium rise buildings often house public functions today. In this paper, we analyze the potentials and limitations of using light prefabricated steel wall systems (LGSW) to upgrade frames to higher seismic standard. Results show
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Chougule, M. B., and Vaishnavi M. Chougule. "STUDY ON FIBRE REINFORCED AUTOCLAVED AERATED CONCRETE USING FABRICS OF WOVEN GLASS FIBRES." International Journal of Research in Informative Science Application & Techniques (IJRISAT) 4, no. 4 (2020): 1–7. http://dx.doi.org/10.46828/ijrisat.v4i4.74.

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Fibre Reinforced Autoclaved Aerated Concrete (FRAAC) is one of the eco – friendly and certified green building materials. AAC is porous, non-toxic, reusable, renewable and recyclable. Autoclaved Aerated Concrete, also known as aircrete, is a lightweight, load-bearing, high insulating, durable building product, which is produced in a wide range of sizes and strengths. FRAAC offers incredible opportunities to increase building quality and at the same time reduce costs at the construction site. The Autoclaved Aerated Concrete material was invented by a Sweden Architect, Johan Axel Eriksson in 192
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Wevelsiep, Christian. "“Europe in the face of the Other”." Ennen ja nyt: Historian tietosanomat 20, no. 1 (2020): 91–105. http://dx.doi.org/10.37449/ennenjanyt.88660.

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The following considerations ask for an ideal Europe, they raise the question of how a continent positions itself to the challenge of the foreigner. The range of possible answers is conceivably wide; and this forces a detour via social-theoretical reflection. There is an ethical foundation of the political, which is abstract and imprecise, but at the same time remains indispensable. The political is the category conceived by Hannah Arendt and other political thinkers to enable resistance to concrete politics permeated by power (1). Another social concept should be clarified: cosmopolitanism. I
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