Skip to main content

CONTROLS tackles fibre-reinforced concrete with new testing system

Fibre-reinforced concrete (FRC) has long been used for road pavements and is now a common material for civil engineering applications such as precast tunnel segments and sprayed concrete linings. However, testing FRC is challenging because the fibres – which are usually steel or macro-synthetic – rupture suddenly, causing the specimen to lose its bearing capacity. During this critical phase any sudden release of elastic energy by the frame of the testing machine may cause the premature rupture of the specim
July 19, 2017 Read time: 2 mins
Configuration of ADVANTEST controls system with flexural testing frame
Fibre-reinforced concrete (FRC) has long been used for road pavements and is now a common material for civil engineering applications such as precast tunnel segments and sprayed concrete linings.


However, testing FRC is challenging because the fibres – which are usually steel or macro-synthetic – rupture suddenly, causing the specimen to lose its bearing capacity. During this critical phase any sudden release of elastic energy by the frame of the testing machine may cause the premature rupture of the specimen and the consequent loss of the test results. For this reason, the International Standards require a minimum frame stiffness of 200 kN/mm.

2139 CONTROLS has recently added to its range of flexural testing frames with a new 200 kN capacity model especially designed to test FRC and sprayed concrete specimens, exceeding the Standards' stiffness requirements. The additional stiffness comes from the construction of the frame sections and the layout which keeps the specimen aligned with the frame crossbeams maximising structural rigidity. The new layout also allows easier frontal specimen loading and positioning, according to CONTROLS. It can accommodate large specimens such as slabs, flagstones, concrete beams and kerbs up to 650mm long. The frame is fitted with a high-accuracy load cell and can be provided with a LDT displacement transducer to read piston travel.

For more information on companies in this article

Related Content

  • Italy's new southern highway route
    May 13, 2021
    An important new highway route is currently under construction in South Italy
  • RCC road paving technology growing in demand
    November 13, 2014
    US contractor Robert Smith based in Chattanooga has long experience in the asphalt paving market but has recently added roller compacted concrete (RCC) to its paving portfolio. This heavy-duty cement mix can be poured as quickly as asphalt and the company has now developed its skills at laying large areas of RCC in just a few days for its industrial client base. Demand has grown and RCC work now accounts for over 90% of the firm’s workload, which it carries out using a Volvo CE paver.
  • PERI’s balancing act at the Harpe Bru Bridge in Norway
    May 24, 2016
    Plans for the European Route E6 expansion in Norway include the 320m-long Harpe Bru Bridge over the Gudbrandsdalen Lågen River, at Sør-Fron in Oppland province. For the superstructure, PERI civil engineering technology experts developed a balanced cantilevered solution based on the VARIOKIT Engineering Construction Kit. Statens vegvesen, Norway’s agency for public road building, selected an extradosed cable-stayed bridge design – the first such bridge in Norway. It combines the load-bearing behaviour
  • Bridges in Sunderland and Poland are being slid into place
    February 6, 2017
    Sunderland sees a bridge slide into place and two bridges inch their way across a Polish highway Slowly but surely, a 2,500 tonne section of a new bridge deck was eased out from the banks of the River Wear near Sunderland in northern England. It now straddles the water, pointing towards the opposite bank which it will eventually reach after another sliding operation likely to take place next year. The project to build the New Wear Crossing is now halfway through with the first half of the steel deck b