Skip to main content

MIT researchers focus on stronger cement, the natural way

Scientists at MIT - the Massachusetts Institute of Technology, in the United States - have reportedly developed a type of concrete that may be stronger and more durable than traditional cement. According to the MIT News, a paper recently published in the journal Construction and Building Materials, scientists compared cement paste with the structure of natural materials including bones, shells and sea sponges. These are exceptionally strong because of the way they are arranged at both the microscopic lev
June 6, 2016 Read time: 2 mins
Scientists at MIT - the 4005 Massachusetts Institute of Technology, in the United States - have reportedly developed a type of concrete that may be stronger and more durable than traditional cement.

According to the MIT News, a paper recently published in the journal Construction and Building Materials, scientists compared cement paste with the structure of natural materials including bones, shells and sea sponges. These are exceptionally strong because of the way they are arranged at both the microscopic level as well as the macro - visual - level.

Nacre, which lines the inside of mollusks, has a brick-like arrangement of minerals that creates a strong bond between layers, according to the report.

Lead researcher professor Oral Buyukozturk, in MIT’s Department of Civil and Environmental Engineering, said buildings and bridges could be made to last longer by mimicking natural materials from the bottom up. “The way we tackle this problem is by using a ‘multi-scale’ approach, starting from the nano-level all the way to the macro, trying to come up with innovations in materials that have better properties.”

The strength of Portland concrete – a mixture of crushed rocks held together by cement paste - depends on how many pores are on the inside. Porous concrete is more vulnerable to cracking, and most mixing techniques have little control over the molecular structure of the final mixture.

The structures that make up sea sponges are not random composites, said Buyukozturk. There are layers of silica rods that wrap around each other to produce a structure that is four times stronger than the individual parts.

Co-author of the report, professor Admir Masic, told MIT News that there is a large body of research on materials that mimick nature, part of a field called bio-mimetics, and that cement is a logical step for new applications.

“Hopefully this will lead us to some sort of recipe for more sustainable concrete,” said Buyukozturk. “Typically, buildings and bridges are given a certain design life. Can we extend that design life maybe twice or three times? That’s what we aim for.”

The MIT News report can be found by %$Linker: 2 External <?xml version="1.0" encoding="utf-16"?><dictionary /> 0 0 0 oLinkExternal clicking here Visit MIT News report page false http://news.mit.edu/2016/finding-new-formula-for-concrete-0526 false false%>.

For more information on companies in this article

Related Content

  • Concrete cancer cure found?
    May 26, 2016
    Researchers at the University of British Columbia (UBC) in Canada believe they may have discovered a cure for ‘concrete cancer’, which afflicts many concrete structures. The Canadian claims for a concrete cancer cure revolve around a novel method for producing concrete using discarded glass. Researchers at UBC’s Okanagan campus were able to reduce the chemical reaction that previously caused glass-fed concrete to weaken, expand and crack. This reaction is widely referred to as concrete cancer. “Every
  • Sophisticated compaction recycling from Hamm
    January 29, 2014
    A novel variant of Hamm’s H i-series of soil compactors is now being offered for concrete road recycling applications. The H 25i VC model is a single-drum roller featuring a special drum that can be used to break up old concrete surfaces, with the broken material then being suitable for recycling in mobile crushing and screening equipment located nearby. The machine is offered with specially designed teeth that are said to break up worn concrete surfaces more effectively than special-purpose guillotine, fin
  • Slow down! Too many UK speeders being caught.
    February 19, 2015
    The UK’s police forces have been working with local communities to keep a watchful camera eye on speeders tearing up quiet village streets and suburban roads. The Community Speed Watch programme has successfully enabled volunteers to raise awareness of the dangers of speeding and poor driving. Many use hand-held cameras and speed-guns connected to warning signs to let drivers know they are breaking the law. Sometimes car details are noted and handed to the police which successfully prosecute the offending d
  • MOBA launches 3D-matic at Intermat
    January 6, 2017
    3D-matic is MOBA’s new levelling system for use with grader and dozer levelling blades. The system has a simple menu structure and works with latest GNSS technology or total station, to deliver exact results corresponding to project data. MOBA 3D-matic is compatible with all MOBA levelling systems, said the company, and it allows an easy upgrade from 2D to 3D.