Published 1998 | Version v1
Miscellaneous Open

Corrosion Characteristics and Kinetics of Zircaloys and Aluminium Alloys

  • 1. Nuclear Fuel Element Development Centre, National Atomic Energy Agency, Serpong, Indonesia (Indonesia)

Description

Corrosion rate characterization of cladding materials has been done by dynamic method. The materials are zircaloy-2,zircaloy-4,AIMg2,and AIMgSi.The zircaloy alloys are characterized in the electrolytes of boric ion,iodide ion,lithium ion and cesium ion with a pH variation.The aluminum alloys are characterized in the cooling water of RSG-GAS reactor in different temperatures and Ph values .The results, show that corrosion product of iodine on zircaloy is not passivated, meanwhile the corrosion product of cesium undergoes passivation. However, the deposited substance in the surface of the specimens as indicated using WDX-SEM shows the same deposition rate.it is concluded therefore that iodine is diffused into the materials without getting resistance from the deposited substances on the surface. The effect of pH to corrosion rate of iodine on the zircaloy fluctuates meanwhile the cesium has the minimum corrosion rate at pH 7.5 At the concentration of 0.1 gram/1,cesium ion is more reactive than iodine but at higher concentration the reactivity becomes competitive . Furthermore , the interaction between zircaloy and boric ion at concentration of 300 ppm and lithium ion at 10 ppm shows an outstanding corrosion rate, i.e. 0.1 mpy. if both substances are mixed then the corrosion rate decreases drastically in the order of 10-2 mpy.The reason of such a decrease may be due to the formation of complexes of boron lithium on the electrode surface. The arrhenius activation energies for such reaction have been found to be 37629.322 joule/mole 0K for Al Mg2 and 41609.822 joule /mole 0K for AIMgSi ,respectively. This underlies the argument that AI Mg2 is more reactive than AI Mg Si besides , AI Mg2 is more reactive under acid condition meanwhile AI Mg Si more reactive under basic condition. Both alloys over come the minimum corrosion rate at the pH in between 4.7 to 7.5 and the level of the corrosion rate in the pH interval was outstanding

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Part of:
Proceedings of the second Scientific Presentation on Nuclear Fuel Cycle

Additional details

Additional titles

Original title (Indonesian)
Karakteristik dan Kinetika Korosi Zircaloy dan Paduan Aluminium

Publishing Information

Publisher
Nuclear Fuel Element Development Centre, National Atomic Energy Agency
Imprint Place
Jakarta (Indonesia)
Imprint Title
Proceedings of the second Scientific Presentation on Nuclear Fuel Cycle
Imprint Pagination
400 p.
Journal Page Range
p. 113-122
ISSN
1410-1998
Report number
INIS-ID--010

Conference

Title
2. Scientific Presentation on Nuclear Fuel Cycle
Original Conference Title
Presentasi Ilmiah Daur Bahan Bakar Nuklir II
Dates
19-20 Nov 1996
Place
Jakarta (Indonesia)

INIS

Country of Publication
Indonesia
Country of Input or Organization
Indonesia
INIS RN
32062181
Subject category
S36: MATERIALS SCIENCE;
Resource subtype / Literary indicator
Conference
Descriptors DEI
ALUMINIUM; CORROSION; ELECTROCHEMICAL CORROSION; KINETICS; POTENTIOMETRY; RESEARCH REACTORS; ZIRCALOY
Descriptors DEC
ALLOYS; CHEMICAL ANALYSIS; CHEMICAL REACTIONS; CORROSION; ELEMENTS; METALS; QUANTITATIVE CHEMICAL ANALYSIS; REACTORS; RESEARCH AND TEST REACTORS; TITRATION; TRANSITION ELEMENT ALLOYS; VOLUMETRIC ANALYSIS; ZIRCONIUM ALLOYS; ZIRCONIUM BASE ALLOYS

Optional Information

Notes
author; 4 refs; 3 tabs; 8 figs Imprint:Prosiding: Presentasi ilmiah daur bahan bakar nuklir 2