Lead-induced stress corrosion behavior of Alloy 690
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摘要: 采用反U型試樣,對690合金樣品在高壓釜內進行了4400 h的應力腐蝕實驗,以研究其在含Pb溶液中的應力腐蝕規律.利用掃描電鏡和能譜儀等分析了690合金在含Pb高溫高壓水環境中的應力腐蝕行為.掃描電鏡結果表明,690合金在測試溶液中發生穿晶型應力腐蝕開裂,裂紋內部堆積著腐蝕產物,并且Pb摻雜在其中.裂紋區域的元素面掃描表明,690合金表面生成的腐蝕產物膜內層富Cr、外層富Ni,腐蝕產物與基體膨脹系數的差異導致裂紋快速擴展.試樣內外表面的腐蝕形貌差異明顯,內壁呈晶格網狀,外壁呈一定方向性腐蝕溝塹,主要是由于內外表面狀態不同造成的.Abstract: Reverse U type specimens of Alloy 690 were put in an autoclave to conduct the stress corrosion test for 4400 h. The stress corrosion behavior of the alloy in a high-temperature and high-pressure water solution containing Pb was studied by scanning electron microscopy (SEM) and energy dispersive spectrometry (EDS). The results show that transgranular stress corrosion cracking occurs in the alloy. Corrosion products with Pb can be found to accumulate in the crack. EDS face scanning of the crack zone indicates that the corrosion film formed in the test solution is a double-layer structure, the outer layer is rich in Ni and the inner layer is rich in Cr. The difference of expansion coefficients between corrosion products in the crack and the matrix causes a faster crack propagation. Due to different surface treatments, the inner surface and outer surface of the specimens have different corrosion morphologies, the inner surface is lattice-like, but the outer surface shows a certain direction groove.
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Key words:
- nickel alloys /
- stress corrosion cracking /
- lead /
- corrosion /
- nuclear power plants
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