MICROSTRUCTURE AND MICRODEFORMATION EFFECTS ON IGSCC OF ALLOY-600 STEAM-GENERATOR TUBING

被引:69
作者
BRUEMMER, SM
CHARLOT, LA
HENAGER, CH
机构
[1] Battelle, Pacific Northwest Lab, United States
关键词
Microscopic Examination--Transmission Electron Microscopy - Nickel and Alloys--Strain - Nickel Metallography--Microstructures - Tubes--Materials;
D O I
10.5006/1.3584948
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Microdeformation chracteristics in alloy 600 tubing have been examined after various tensile deformations. Microstructure developed during processing was found to control subsequent microdeformation behavior. Grain boundary carbides were the most effective source of dislocations, activating at lower macrostrains and continuing to operate at higher macrostrains than other sources. Ledges within grain boundaries, twin boundaries, and matrix carbides also acted as dislocation sources. Most dislocation activity at low strains was confined to planar arrays. A conceptual model is presented to explain the effects of interfacial and matrix microstructure on microdeformation and primary side stress corrosion cracking (SCC) of alloy 600 tubing. Microstructure is linked to intergranular stress corrosion cracking (IGSCC) resistance through its influence on microdeformation behavior and the resultant crack tip stress state.
引用
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页码:782 / 788
页数:7
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