Network


Latest external collaboration on country level. Dive into details by clicking on the dots.

Hotspot


Dive into the research topics where Michael Raupach is active.

Publication


Featured researches published by Michael Raupach.


Archive | 2019

Development of a Test Method for the Durability of Carbon Textiles Under Anodic Polarisation

Amir Asgharzadeh; Michael Raupach

Cathodic protection (CP) is a widely used method to protect steel reinforcements against corrosion. In the course of the last half century, it has been established as a proven method for repairing corrosion-affected reinforced concrete structures, exposed mainly to chlorides. The impressed current anode system for the protection of steel in concrete is already known and applied in practice for more than 30 year. The CP anodes can be embedded in mortar, applied as coating or distinct anode on the repair structure surface. Using CP, the potential of the steel reinforcement is shifted in cathodic direction towards more negative values and consequently the anodic dissolution of iron is suppressed. The current densities on the surface of the reinforcement play a key role in shifting of the potential in cathodic direction. For the anode material nowadays Mixed Metal Oxide coated Titanium (MMO) is often used due to its high durability under anodic polarization. As an alternative anode material, Carbon Textiles embedded in mortar, which provide extraordinary mechanical properties and are also conductive, have already been studied. The results demonstrate that Carbon Textiles are generally suitable as an anode material for CP on reinforced concrete. Deterioration of Carbon is likely to occur in CP systems using carbon as anode material, when critical current densities are exceeded. Therefore the durability of Carbon Textiles at typical CP current densities of less than 20 mA/m2 with respect to concrete surface is considered of special interest.


Archive | 2008

BETOSCAN – An instrumented mobile robot system for the diagnosis of reinforced concrete floors

Michael Raupach; Kenji Reichling; Markus Stoppel; Gerd Dobmann; Jochen H. Kurz


Archive | 2015

Investigations on the suitability of technical textiles for cathodic corrosion protection

Amir Asgharzadeh; Michael Raupach; Detlef Koch


Archive | 2014

Bestimmung und Bewertung des elektrischen Widerstands von Beton mit geophysikalischen Verfahren

Kenji Reichling; Michael Raupach


Archive | 2016

METHOD AND APPARATUS FOR MONITORING AN UNDERGROUND OBJECT

Michael Raupach; Kenji Reichling; Christian Helm


Archive | 2010

Method and device for determining the location of corrosion sites in reinforced concrete

Michael Raupach; Kenji Reichling


Archive | 2010

Verfahren und Vorrichtung zur Bestimmung der Lage von Korrosionsstellen in bewehrtem Beton

Michael Raupach; Kenji Reichling


5. Kolloquium Erhaltung von Bauwerken, | 2017

Einsatzmöglichkeiten von carbontextilbewehrten Spezialmörteln für den KKS in der Betoninstandsetzung

Amir Asgharzadeh; Michael Raupach


Concrete Solutions, Proceedings of the Sixth International Conference on Concrete Repair | 2016

Determination of the electrical resistivity of concrete structures using electrical impedance tomography

Amir Asgharzadeh; Kenji Reichling; Michael Raupach


Bautechnik | 2016

Kathodischer Korrosionsschutz fuer Parkbauten mit carbontextilienbewehrtem Spezialmoertel

Amir Asgharzadeh; Michael Raupach; Detlef Koch; Majid Mahjoori

Collaboration


Dive into the Michael Raupach's collaboration.

Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar

Markus Stoppel

Bundesanstalt für Materialforschung und -prüfung

View shared research outputs
Researchain Logo
Decentralizing Knowledge