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- ja (18) (entfernen)
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- Stainless steel (5)
- Corrosion (4)
- Atmospheric corrosion (3)
- KorroPad (3)
- Korrosion (3)
- Pitting corrosion (3)
- Atmosphärische Korrosion (2)
- Concrete (2)
- Electrochemical noise (2)
- Nichtrostende Stähle (2)
Organisationseinheit der BAM
Samples of the austenitic stainless steel grade X5CrNi18‐10 (1.4301, AISI 304) were ground industrially with various grinding parameters to study their influence on corrosion resistance. The ability of the mechanically ground surfaces to form a stable passive layer was evaluated by KorroPad test and a modified electrochemical potentiodynamic reactivation test based on a single loop (EPR‐SL). Furthermore, the surfaces were characterized by surface analytical methods. The main influence was determined regarding abrasive belt type. Surfaces mechanically ground with granulate abrasive belts constantly had a lower corrosion resistance than surfaces ground with single‐coated grain. The granulate abrasive belts generated more sensitized surface areas and left formations of welded sample material on the mechanically ground surfaces. A post‐treatment with a nonwoven abrasive proved to be an effective finishing process by which the surface defects and sensitized material got removed and the surfaces regained the expected corrosion resistance.
In order to clarify under which practical conditions real risks for hydrogen-induced stress corrosion cracking of prestressing steels exist laboratory investigations in aqueous solutions and concrete as well as tests with stressed prestressing steels were carried out. While different distances between steel and zinc (cathode and anode) showed only a negligible influence on the polarisation of the steel a significant dependence on the area ratio steel/zinc was observed. A critical area ratio of 10:1 can be defined above which polarisation of the steel to hydrogen evolution potentials is unlikely. The results obtained in the laboratory concerning the critical area ratio were confirmed by on-site investigations in a precasting plant. Exposure tests with hydrogen loading did not lead to fractures during the testing time for approved prestressing steels. The characteristic mechanical values determined immediately after the hydrogen loading tests did not show significant changes. Thus, an indirect contact between prestressing steels and galvanised elements can be estimated as uncritical. But a direct contact has to be excluded by compliance with DIN 1045-1, i.e minimal distance of 2 cm between prestressing steel and galvanised elements.
Anhand der hier vorgestellten Untersuchungsergebnisse kann
eine umfassende Einschätzung des Korrosionszustands einer Gabionenkonstruktion aus Drähten mit Zink-Aluminium-Überzug nach 20 Jahren Einsatzzeit in Abhängigkeit von unterschiedlichen Expositionsbedingungen vorgenommen werden. Die festgestellten Massenverluste der Zink-Aluminium-Überzüge waren an den Untersuchungspositionen, insbesondere hinsichtlich der verschiedenen Expositionsbedingungen der Probenentnahmestellen, unterschiedlich ausgeprägt. Gabionendrähte, die im direkten Bodenkontakt standen, wiesen dabei die geringsten Restauflagen auf. Atmosphärisch beanspruchte sowie durch Vlies vor direktem Bodenkontakt geschützte Gabionendrähte zeigten dagegen etwas größere Restauflagen. Über den Drahtumfang wurden bei allen untersuchten Drahtproben stark variierende Schichtdicken festgestellt, was offensichtlich herstellungsbedingte Ursachen hat. Die Untersuchungen an der Gabionenkonstruktion haben gezeigt, dass die Annahme einer mittleren linearen Abtragsrate des metallischen Überzugs von 1 mm/a unter den hier untersuchten Bedingungen ein realistischer Wert ist. An Positionen mit direktem Bodenkontakt kann dieser Wert aber deutlich größer ausfallen, sobald sich die Aggressivität des Bodens erhöht. Eine Rotrostbildung war an den Drahtproben nicht feststellbar.
The presented investigations have proved the principal suitability of the KorroPad method to assess the passive layer stability of stainless steels. The electrochemical mode of action could be described in detail and limitations of the applicability have been demonstrated. The influence of different surface finishes has been investigated and verified by known methods for describing corrosion resistances. As a result, the increased corrosion susceptibility of two ground surfaces has been detected, but also the corrosion resistance of further surface finishes could be confirmed.
Surface treatments usually are used to modify the appearance and properties of stainless steel surfaces. Simultaneously, the corrosion resistance of the stainless steel surface being related intrinsically to the spontaneous formation of a passive layer also will be affected. In this respect, the influence of different surface treatments on the corrosion resistance of Type 304 (UNS S30400) stainless steel to pitting corrosion has been evaluated by means of potentiostatic electrochemical noise measurements and surface characterization. Typical industrial treatments including mechanical grinding, glass blasting, and pickling were taken into account. Additionally, special consideration was put on the effect of aging conditions of the passive layer after surface treatments, in particular on the relative humidity. Benefits and limitations of the different applied surface treatments concerning protectiveness of the stainless steel surface were determined and discussed.
The reduction of the chromate contents in cements affects the electrochemical reactions of galvanized reinforcing steels in fresh concrete. By means of electrochemical measurements and bar pull-out tests the effect of chromates on the formation of protective coatings at the zinc and the bond behaviour have been investigated using chromate-containing and chromate-reduced cements. The results have shown that the bond zone was affected as a result of chromate reduction for cement types CEM I and CEM II. The disturbance to the bond zone should be considered as long-term in relation to the pore structure which is formed. The effects on the bond are largely compensated for as the concrete ages. The results of the related bond strength with displacement paths of 0.1 and 0.5?mm, respectively, are still within the range of expected figures for non-galvanized reinforcing steel despite the structural disturbance. Under practical aspects it is not necessary that the existing structural disturbance with respect to bond strength is taken into consideration.
Korrosions- und Verbundverhalten verzinkter Betonstähle in Betonen mit chromatreduzierten Zementen
(2011)
Durch die Absenkung des Chromatgehalts der Zemente verändern sich die elektrochemischen Reaktionen von verzinkten Betonstählen in der Frischbetonphase. Mit Hilfe von elektrochemischen Messungen sowie Stabauszugsversuchen wurde an chromathaltigen und chromatreduzierten Zementen die Auswirkung des Chromats auf die Deckschichtbildung am Zink und auf das Verbundverhalten untersucht.
Mit den Ergebnissen konnte eine Beeinträchtigung der Verbundzone als Folge der Chromatreduzierung für die Zementarten CEM I und CEM II nachgewiesen werden. Die Störung der Verbundzone ist in Bezug auf die sich ausbildende Porenstruktur als dauerhaft anzusehen. Die Auswirkungen auf das Verbundverhalten werden mit zunehmendem Betonalter weitgehend kompensiert. Die Ergebnisse der bezogenen Verbundspannung bei Verschiebewegen von 0,1 mm und 0,5 mm liegen trotz der Gefügestörung noch im Bereich der Erwartungswerte für den unverzinkten Betonstahl. Unter baupraktischen Gesichtspunkten muss die auftretende Gefügestörung hinsichtlich der Verbundspannung daher keine Berücksichtigung finden.
Investigation of chloride-induced pitting corrosion of steel in concrete with innovative methods
(2016)
The combination of electrochemical and 3D computed tomography (CT) investigations offers the possibility of verifying electrochemical measurements non-destructively. Determining the steel surfaces damaged by pitting corrosion allows developing specimens having damage pattern corresponding to practice. Corrosion phenomena like decoupled pitting corrosion cannot be verified by electrochemical measurements only, but with the combination of those two kinds of investigations it is possible. Another advantage is the minimization of the number of samples. The classical experimental procedure requires the destruction of samples after each damage step.This can be avoided by the use of 3D computed tomography. As long as the corrosion phenomena are completely within the examination zone shown by the 3D computed tomography, the electrochemical measurements can be calculated on an area basis to get the specific corrosion rate or polarization resistance.
Nine different stainless steel alloys were exposed for 5 years under marine environment and their corrosion behaviour was compared and assessed. The investigation of four different surface finishes for all alloys tested further enabled to consider industry-specific features of the surface finish for the material comparison. The results of the exposure tests yield conclusions regarding the influence of alloy composition, surface finish and exposure duration under marine environment. The three duplex stainless steels revealed excellent corrosion resistance even in case of crevices during the 5 years of exposure under the given exposure conditions. Also the molybdenum-alloyed ferritic steel 1.4521 showed good corrosion resistance comparable to the classical austenitic materials 1.4301 and 1.4404.
Durch systematische Labor- und Auslagerungsuntersuchungen ist es möglich, sieben unterschiedliche nichtrostende Stahllegierungen hinsichtlich verschiedenster Anwendungen untereinander und auch in Bezug auf zwei austenitische Standardwerkstoffe (1.4301, 1.4404) zu vergleichen. Die parallele Untersuchung von fünf verschiedenen Oberflächenausführungen der jeweiligen Werkstoffe ermöglicht zudem, branchenspezifische Besonderheiten der Oberflächenausführung beim Werkstoffvergleich zu berücksichtigen. Der Einfluss der Oberflächenausführung wird überwiegend bei den Ergebnissen der Auslagerungsversuche in kritischen Atmosphären sichtbar, weniger bei den elektrochemischen Untersuchungen.
Die drei Vertreter aus dem Bereich der Duplexstähle zeigten unter den meisten Untersuchungsbedingungen eine hervorragende Korrosionsbeständigkeit. Insbesondere für Anwendungen im Bauwesen können die Lean-Duplexstähle deutliche Vorteile bieten. Der Manganaustenit 1.4376 sowie der Ferrit 1.4509 sind nur eingeschränkt als Alternativen geeignet, da die Werkstoffe bei einigen Versuchen signifikante Schwächen zeigten.---------------------------------------------------------------------------
The systematic laboratory and field exposure tests allow to compare seven different stainless steels among each other and also regarding two standard austenitic materials (1.4301, 1.4401) with respect to various applications. Parallel investigations with five different surface finishes of the respective materials enable to consider also industry-specific features of the surface finish. The influence of the surface finish can mainly be seen in the results of the exposure tests in critical atmospheres and less in the electrochemical investigations.
The three duplex stainless steels showed under most of the test conditions excellent corrosion resistance. Especially for applications in civil engineering the lean duplex steels offer clear advantages. The manganese alloyed 1.4376 and the ferritic steel 1.4509 are only limited suitable as alternatives as these materials showed significant weaknesses in some of the tests.