A universal alternating immersion simulator for accelerated cyclic corrosion tests

被引:10
|
作者
Hassel, A. W. [1 ]
Bonk, S. [1 ]
Tsuri, S. [1 ]
Stratmann, M. [1 ]
机构
[1] Max Planck Inst Eisenforsch GmbH, D-40237 Dusseldorf, Germany
来源
关键词
ATMOSPHERIC CORROSION; CHLORIDE; ELECTRODE; NITI;
D O I
10.1002/maco.200804167
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
A new device for performing accelerated cyclic immersion tests is described. The main achievement is to realise a high cycling rate without a proportional increase in the test duration. The device is also capable of performing tests according to EU ISO 11130 specification. A minimal invasive drying system is used that neither heats air nor sample and the flow rate is still low as to prevent a mechanical delamination of paints or loose corrosion products. A multiple sample set-up is realised that provides individual reference electrodes. The random access through a multiplexer allows individual investigation of the samples even by electrochemical impedance spectroscopy under immersion conditions. The device and its test principle are applicable in both industrial and laboratorial scale applications. Two application examples are given to demonstrate the versatility of the alternating immersion tester. One addresses the corrosion protection performance of different zinc-coated steel sheets; the other quantifies the patina formation kinetics of low-alloyed steels with weathering properties.
引用
收藏
页码:175 / 180
页数:6
相关论文
共 50 条
  • [21] Cyclic corrosion tests in Japanese industries
    Suga, S.
    Suga, S.
    ASTM Special Technical Publication, 1995, (1238): : 99 - 112
  • [22] Modelling and Simulation of Cyclic Corrosion Tests
    Seifritz, Steffen
    Troßmann, Torsten
    Janoske, Uwe
    BHM Berg- und Huttenmannische Monatshefte, 2018, 163 (07): : 258 - 269
  • [23] Formulation of accelerated stress tests for corrosion failure
    Richard Haynes Consultants
    Proc AESF Annu Tech Conf, 1600, (589-600):
  • [24] ACCELERATED CORROSION TESTS ON COPPER WATER TUBING
    LEVELTON, BH
    KILBURN, DG
    MATERIALS PROTECTION, 1966, 5 (08): : 37 - &
  • [25] The Intelligent Control system of Immersion cyclic corrosion test chamber
    Fang Kangling
    Li Xiao
    Chen Guonian
    CONFERENCE ON MODELING, IDENTIFICATION AND CONTROL, 2012, 3 : 172 - 176
  • [26] Impacts of carbon corrosion, freeze/thaw, and acidic solution immersion accelerated stress tests on the durability degradation of the membrane electrode assembly
    Sim, Jaebong
    Chang, Junghyo
    Kim, Jiwoong
    Chun, Hyunsoo
    Kim, Yebeen
    Kim, Byeongjae
    Kang, Sanggyu
    Min, Kyoungdoug
    JOURNAL OF POWER SOURCES, 2025, 641
  • [27] Application of automated corrosion sensors for monitoring the rate of corrosion during accelerated corrosion tests
    Prosek, T.
    Le Bozec, N.
    Thierry, D.
    MATERIALS AND CORROSION-WERKSTOFFE UND KORROSION, 2014, 65 (05): : 448 - 456
  • [28] SELECTED CYCLIC CORROSION TESTS IN AUTOMOTIVE INDUSTRY
    Bialo, L.
    Grodniewicz, T.
    Zabinski, P.
    ARCHIVES OF METALLURGY AND MATERIALS, 2020, 65 (04) : 1469 - 1476
  • [29] Titanium corrosion in molten glasses - Part 1. Immersion tests and corrosion kinetics
    Podor, R
    Rapin, C
    David, N
    Berthod, P
    GLASS SCIENCE AND TECHNOLOGY, 2004, 77 (01): : 36 - 43
  • [30] Comparing Modeled and Experimental Accelerated Corrosion Tests on Steel
    Van den Steen, N.
    Simillion, H.
    Thierry, D.
    Terryn, H.
    Deconinck, J.
    JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 2017, 164 (09) : C554 - C562