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논문 기본 정보

자료유형
학술저널
저자정보
저널정보
한국해양공학회 한국해양공학회지 한국해양공학회지 제4권 제1호
발행연도
1990.6
수록면
88 - 100 (13page)

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초록· 키워드

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Among the test methods to evaluate stress-corrosion cracking(SCC) on the basis of fracture mechanics, constant displacement(bolt) loading method using modified-WOL specimen is practically convenient. In this test method, compliance formula is generally required to calculate load(consequently K<SUB>ISCC</SUB>). There are many problems in using the analytic compliance formula to calculate K<SUB>ISCC</SUB>, so we had proposed the experimental K<SUB>ISCC</SUB> evaluation technique in the previous report.
This study has employed the slightly altered configuration of modified-WOL specimen made of weldable structural steel(BS4360-50D). With these specimens, stress-corrosion tests have been performed in H₂S gas saturated 20% HCl solution. Through the test, the problems as mentioned earlier have been discussed again, and the proposed evaluation technique has been verified.
And the stress-corrosion cracks and hydrogen blisters have been investigated in the initiation step with the aids of metallurgical micrographs, SEM fractographs, and EPMA analysis.
The inclusions segregated in the mid-thickness region traps hydrogen to produce the hydrogen blistering. The applied or residual stress does not contribute the occurrence of the blister. Hydrogen absorbed into the mid-thickness region is consumed to produce the blistering so that stress-corrosion crack could hardly be detected at that region.
The stress-corrosion cracks initiate from the inclusions and propagate in radial pattern. And the initiation site is remote from the crack tip and is inclined from the crack plane, which is assumed to be caused by the triaxial stress and the amount of the absorbed hydrogen.

목차

Abstract
1. 緖論
2. 實驗裝置 및 方法
3. 實驗結果 및 考察
4. 結論
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