By Frank Dehn, Hans-Dieter Beushausen, Mark G Alexander, Pilate Moyo
The Fourth overseas convention on Concrete fix, Rehabilitation and Retrofitting (ICCRRR 2015) was once held 5-7 October 2015 in Leipzig, Germany. This convention is a collaborative enterprise through researchers from the South African study Programme in Concrete fabrics (based on the Universities of Cape city and The Witwatersrand) and the fabric technological know-how workforce at Leipzig collage and The Leipzig Institute for Materials Research and trying out (MFPA) in Germany.
ICCRRR 2015 keeps to hunt and to increase a legitimate base of concept and perform in fix and rehabilitation, via either theoretical andexperimental reports, and during stable case learn literature. key facets have to be addressed: that of constructing sound and simply utilized common practices for fix, in all likelihood codified, and the necessity to examine heavily the carrier functionality of repaired buildings and service structures. in truth, with no making monstrous efforts to enforce the latter target, a lot of the trouble in fix and rehabilitation may possibly turn out to be under low-budget or satisfactory.
The convention complaints include papers awarded on the convention that are grouped less than the six major topics of (i) Concrete longevity points, (ii) situation overview of concrete constructions, (iii) smooth fabrics know-how, (iv) Concrete fix, rehabilitation and retrofitting, (v) functionality and well-being tracking and (vi)
Education, learn and standards. the big variety of top of the range papers provided and the wide variety of appropriate subject matters coated ascertain that those lawsuits may be a valued reference for lots of operating during this vital box and they will shape an appropriate base for dialogue and supply feedback for destiny improvement and learn. Set of publication of abstracts (244 pp) and a searchable complete paper CD-ROM (1054 pp).
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Additional resources for Concrete Repair, Rehabilitation and Retrofitting IV: Proceedings of the 4th International Conference on Concrete Repair, Rehabilitation and Retrofitting
5 + 1⎟⎠ ⎪⎭ r) r Photograph 1. surface. 18 (8) The attenuation coefficient with the penetration and the reflection of the electromagnetic wave is shown in the following equation where influences of both of the equation (7) and (8) are considered as well as the degree of roughness of concrete surface is also considered.
1998. Zuverlässige Prüfung des Frost- und Frost-Tausalz-Widerstandes von Beton mit dem CDFund CIF-Test. Mitteilungen aus dem Institut für Bauphysik und Materialwissenschaft, Dissertation. indb 24 8/27/2015 9:07:30 AM Concrete Repair, Rehabilitation and Retrofi tting IV – Dehn et al. (Eds) © 2016 Taylor & Francis Group, London, ISBN 978-1-138-02843-2 Effects of electrochemical chloride extraction on microstructure of various cement paste systems Nguyen Thi Hai Yen, Yokota Hiroshi & Hashimoto Katsufumi Division of Engineering and Policy for Sustainable Environment, Hokkaido University, Sapporo, Japan ABSTRACT: The adverse effects of the long term application of electrochemical chloride extraction on binding capacity of hydrated cement products are innegligible.
J. 2009. Physikalische Grundlagen der Frostschädigung von Beton. In 6. Symposium Baustoffe und Bauwerkserhaltung, Tagungsband, 5–12. Siebel, E. et al. 2005. Übertragbarkeit von Frost-Laborprüfungen auf Praxisverhältnisse. DAfStB, 560, Beuth, Berlin. The paper presented the potential of a new NMR set-up which allows a time-dependent, nondestructive and highly spatially resolved scanning of the water transport of hardened cement paste subject to a freeze-thaw exposition. First, to obtain accurate quantitative moisture profiles, a calibration method of the measured NMR signal for hardened cement paste had to be developed by converting the signal into a degree of saturation.
Concrete Repair, Rehabilitation and Retrofitting IV: Proceedings of the 4th International Conference on Concrete Repair, Rehabilitation and Retrofitting by Frank Dehn, Hans-Dieter Beushausen, Mark G Alexander, Pilate Moyo