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Whether for coring and drilling, durability surveys, or information for building upgrades the range of tests given here will provide valuable information about reinforcement, prestressing tendon, duct and cable locations. They will also provide information on element thickness, pile length and defect locations.
Concrete Geometry Testing Products
/Products/Concrete-Gemetry/Profoscope/Image-1.aspx) The ProfoScope is the latest device in the Proceq range. It uses the best technology available to accurately locate rebar and combines it into to an extremely user friendly package. It also has the capability to determine bar depth and diameters. The ProfoScope is the perfect low cost option for the builder who is not interested in all the bells and whistles available on today’s Covermeters.
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/Products/Concrete-Gemetry/Covermeter/profometer-covermeter-small.aspx) The Profometer 5+ locates reinforcing bars and measures concrete cover - quickly, simply and with complete accuracy. It can also be used to give bar diameter. The Profometer 5+ works with non-destructive pulse-induction that is largely insensitive to external interferences.
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Non-destructive, battery-powered handhe /Products/Concrete-Gemetry/Concrete-Thickness-Gauge/Image-4.aspx) ld systems for measuring the thickness and integrity of concrete slabs, pavements, tunnel linings, walls and other plate-like structures. The Concrete Thickness Gauge reliably measures the thickness of concrete using the Impact Echo (IE) principle.
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/Products/Concrete-Gemetry/Aladdin/Image-1-(small).aspx) PCTE have a range of GPR equipment. From very small compact systems with limited data processing and depth (Handy Search), to larger systems specifically designed for 3D scanning of core sites, so as to miss services and reinforcing (Conquest), to cutting edge system with multi-frequency and polarisation antenna for the true professional (Aladdin).
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/Products/Concrete-Gemetry/IBIS-S/Image-1.aspx) The IBIS-S uses microwave interferometry, which is a new technology for remote static and dynamic monitoring of structures and/ or soil displacements.The instrument can operate remotely, with no contact required whatsoever with the target to be monitored and that it can supply practically continuous deformation maps (not just punctual information as provided by current contact sensors), all with an unprecedented measurement speed and accuracy compared to current technology.
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The Parallel Seismic (PS) method is applied to determine the lengths of deep foundations where foundation tops are not accessible, or when the piles are too long and slender (such as H piles or driven piles) to be tested by Impact Echo techniques. In addition, the PS method can provide information about the soil below the foundation bottom.
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Ultraseismic (US) investigations are performed to determine the length and evaluate the integrity of shallow and deep foundation elements. This investigation technique is suitable for a variety of structures, from shallow wall-shaped substructures, to deep drilled shafts. US investigations are the ideal method when access to the top surface of a foundation element is not possible. Many structures can be analyzed provided that there is 1 – 1.8m of exposed structure for mounting the instrument. This makes US particularly useful for testing abutments and wall piers of bridges due to the large exposed areas.
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