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해양구조물용 알미늄 합금의 SCC에 의한 파괴연구 KCI 등재

The Fracture Study of SCC of Al - Alloy for Marine Structures

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수산해양기술연구 (Journal of the Korean Society of Fisheries and Ocean Technology)
한국수산해양기술학회(구 한국어업기술학회) (The Korean Society of Fisheriers and Ocean Technology)
초록

분극전위변화에 따른 고역 내식성 알미늄합금(5083)의 SCC 거동을 연구 검토한 결과를 요약하면 다음과 같다. 1. 5083 알미늄합금의 K 하(IC)은 134.81~148.38kg/mm 상(3/2)이며, 전위변화에 따라 K 하(Ii)은 75.92~145.78kg/mm 하(3/2)이다. 2. K 하(I)-V의 거동은 양분극시 Region I 과 II가 나타나고, K 하(Ii)/K 하(IC)의 비가 작을수록 crack성장속도도 빠르게 나타난다. 3. 분극전위 -987mV SCE에서 crack성장속도가 가장 지연되므로 122mV SCE을 음분극하면 SCC 방지효과를 얻을 수 있을 것으로 생각된다. 4. 입계의 β상의 석출은 분극전위가 클수록 크게 나타난다.

The test specimen, designated the double cantilever beam, was employed for a fracture mechanics study of stress corrosion cracking (SCC) of type 5083 Al-alloy in seawater. Stress intensities for this DCB specimen were calculated by using compliance, strain energy release rate and relation between stress intensity and strain energy release rate. Analytical expression for compliance as a function of crack length was obtained by applying beam theory. It was investigated that the polarization potentials affected the growth rate and surface of stress corrosion cracking. The results are as follows, The critical stress intensity was 134.81-148.38kg/mm super(3/2) and K sub(Ii) under polarization potentials was 75.92-145.78kg/mm super(3/2). The minimum stress corrosion crack growth rate was occurred at-987mV SCE. Insoluble compound on β phase was looked into through SCC. The greater anodic potential is, the larger insoluble compound on β phase becomes.

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