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Image: Udo Jandrey
22.03.2024

New model for sustainable structures of textile-reinforced concrete

By reinforcing concrete with textiles instead of steel, it is possible to use less material and create slender, lightweight structures with a significantly lower environmental impact. The technology to utilise carbon fibre textiles already exists, but it has been challenging, among other things, to produce a basis for reliable calculations for complex and vaulted structures. Researchers from Chalmers University of Technology, in Sweden, are now presenting a method that makes it easier to scale up analyses and thus facilitate the construction of more environmentally friendly bridges, tunnels and buildings.

By reinforcing concrete with textiles instead of steel, it is possible to use less material and create slender, lightweight structures with a significantly lower environmental impact. The technology to utilise carbon fibre textiles already exists, but it has been challenging, among other things, to produce a basis for reliable calculations for complex and vaulted structures. Researchers from Chalmers University of Technology, in Sweden, are now presenting a method that makes it easier to scale up analyses and thus facilitate the construction of more environmentally friendly bridges, tunnels and buildings.

"A great deal of the concrete we use today has the function to act as a protective layer to prevent the steel reinforcement from corroding. If we can use textile reinforcement instead, we can reduce cement consumption and also use less concrete − and thus reduce the climate impact," says Karin Lundgren, who is Professor in Concrete Structures at the Department of Architecture and Civil Engineering at Chalmers.

Cement is a binder in concrete and its production from limestone has a large impact on the climate. One of the problems is that large amounts of carbon dioxide that have been sequestered in the limestone are released during production. Every year, about 4.5 billion tonnes of cement are produced in the world and the cement industry accounts for about 8 percent of global carbon dioxide emissions. Intensive work is therefore underway to find alternative methods and materials for concrete structures.

Reduced carbon footprint with thinner constructions and alternative binders
By using alternative binders instead of cement, such as clay or volcanic ash, it is possible to further reduce carbon dioxide emissions. But so far, it is unclear how well such new binders can protect steel reinforcement in the long term.

"You could get away from the issue of corrosion protection, by using carbon-fibres as reinforcement material instead of steel, because it doesn't need to be protected in the same way. You can also gain even more by optimising thin shell structures with a lower climate impact," says Karin Lundgren.

In a recently published study in the journal Construction and Building Materials, Karin Lundgren and her colleagues describe a new modelling technique that was proved to be reliable in analyses describing how textile reinforcement interacts with concrete.

"What we have done is to develop a method that facilitates the calculation work of complex structures and reduces the need for testing of the load-bearing capacity," says Karin Lundgren.

One area where textile reinforcement technology could significantly reduce the environmental impact is in the construction of arched floors. Since the majority of a building’s climate impact during production comes from the floor structures, it is an effective way to build more sustainably. A previous research study from the University of Cambridge shows that textile reinforcement can reduce carbon dioxide emissions by up to 65 percent compared to traditional solid floors.

Method that facilitates calculations
A textile reinforcement mesh consists of yarns, where each yarn consists of thousands of thin filaments (long continuous fibres). The reinforcement mesh is cast into concrete, and when the textile-reinforced concrete is loaded, the filaments slip both against the concrete and against each other inside the yarn. A textile yarn in concrete does not behave as a unit, which is important when you want to understand the composite material's ability to carry loads. The modelling technique developed by the Chalmers researchers describes these effects.

"You could describe it as the yarn consisting of an inner and an outer core, which is affected to varying degrees when the concrete is loaded. We developed a test and calculation method that describes this interaction. In experiments, we were able to show that our way of calculating is reliable enough even for complex structures," says Karin Lundgren.

The work together with colleagues is now continuing to develop optimisation methods for larger structures.

"Given that the United Nations Environment Programme (UNEP) expects the total floor area in the world to double over the next 40 years due to increased prosperity and population growth, we must do everything we can to build as resource-efficiently as possible to meet the climate challenge," says Karin Lundgren.

Source:

Chalmers | Mia Halleröd Palmgren

mtex+ and LiMA 2018 (c) Messe Chemnitz
22.05.2018

mtex+ and LiMA 2018: BRIDGE BUILDING BETWEEN TECHNICAL TEXTILES AND LIGHTWEIGHT

At May 29/30, 2018, 147 exhibitors from six countries present application-oriented textil and lightweight-solutions for all sectors from A to Z and introduce numerous innovations in Chemnitz - Special exhibitions and specialiced events deepen the trade fair topics and give inspiration for innovation development and business contacts

At May 29/30, 2018, 147 exhibitors from six countries present application-oriented textil and lightweight-solutions for all sectors from A to Z and introduce numerous innovations in Chemnitz - Special exhibitions and specialiced events deepen the trade fair topics and give inspiration for innovation development and business contacts

With a 10 % plus of exhibitors and an exhibition area which rose 20 % the trade fair duo mtex+ and LiMA starts at May 29/30, 2018. At hall 1 of the Messe Chemnitz 147 companies and research institutes present on 4.200 square metres application-oriented textil and lightweight-solutions for sectors from architecture to railway technology. On 3.500 square metres 134 exhibitors were represented at the previous trade fair in 2016 in Chemnitz. „We are pleased that the merging of the fields of technology technical textiles and lightweight becomes even more visible at our trade fair duo. Not only exhibitors from the Central German industry and research region demonstrate their know-how. We can as well welcome companies and research institutes from all over Germany adding Belgium, France, Austria, Switzerland and the Czech Republic in Chemnitz. To us this is the proof that the further merge of mtex+ and LiMA under the new slogan ‚Excellent connections: Technical textiles meet lightweight construction‘ works out“, emphasises Dr. Ralf Schulze, director C³ Chemnitzer Veranstaltungszentren GmbH, to which the Messe Chemnitz belongs.

Innovations from textil circuit boards to railway-components made of basalt and bamboo
The international trade fair for technical textiles mtex+ and the lightweight trade fair LiMA focus on functionalised and intelligent textiles as well as lightweight materials and –products, digitised production, process development-, process- and technology development, refinement and recycling. The exhibitors in 2018 put various innovations forward. The nonwoven-manufacturer Glatzeder arrives with a protective suit made of an entirely new material, which is suitable for work under extreme conditions. A especially for security forces made protective clothing will be shown by Wattana. Flexible textil circuit boards made of conductive nonwovens are the new development from Norafin. Vowalon presents a surface sealing for imitation leather padding which extends its service life. Light interactive components as well as tables and seating areas made of textile concrete will be shown by the TU Chemnitz. HÖRMANN Vehicle Engineering demonstrates trim - and interior components  for railway vehicles with basalt- and bamboo fibre.
New and proven special exhibitions offer insights into innovative developments besides the exhibition stands. A new addition at the program is „light.building“ belonging to lightweight in architecture and building trade and „flexible.protect“ belonging to  protection- and safety textiles for humans, nature, mobile and immobile goods. The successful exhibition „health.textil” with medicine-, health- and wellness textiles from 2016 will be continued.

Compact, intensive and international
The exhibition stand- and special exhibition-presentations demonstrate the growing application range of technical textiles and lightweight. „Hightech-textiles and lightweight solutions conquer more and more new fields of application. Compact seen should be the various possibilities in the Central German industrial metropolis Chemnitz, that is and was a centre of innovative textile industry. The atmosphere of the small but fine trade fair duo of short distances and intensive contacts is not only appreciated by the actors of the strong Saxon-Thuringian textile region but also by foreign companies and research institutes. So are the textile federation ATOK and the Techtex-Cluster CLUTEX from the Czech Republic with a multicompany stand and the Smart-Textiles-Network from Austria our guests again“, informs Dr. Jenz Otto, general manager of the Noth-Eastgerman textile- and clothing industry association (vti) and amends: „The exhibiton is not only an obligatory date for the specialised insiders but also the federal policy shows a great interest in the textil- and lightweight- competences of the region. Because of this the Commissioner for middle class and for the new Länder, Christian Hirte, follows our trade fair duo invitation.“ The vti is from the very beginning major partner and a generator of inputs for the continuous further development of the event.

You can find further information about the program as well as the trade fairs under: www.mtex-lima.de