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壓應力引起的不銹鋼的應力腐蝕

Stree Corrosion Cracking of Austentic Stainless steel under Compressive Stress

  • 摘要: 用表面殘余壓應力試樣,U型彎曲試樣(用其壓縮區)和WOL恒位移缺口壓縮試樣,對18-8不銹鋼在沸騰MgCl2溶液中進行了壓應力條件下的應力腐蝕試驗。結果表明,三種試樣分別經110小時,73-100小時以及262-324小時后都觀察到了由壓應力所產生的應力腐蝕裂紋,并獲得了具有巖層狀特征的準解理脆性斷口,這和拉應力腐蝕時獲得的解理斷口明顯不同。
    壓應力條件下應力腐蝕裂紋的孕育期比拉應力要高一個數量級,而且裂紋擴展緩慢,加上裂紋不能張開而難于辨認,故當試樣中同時存在拉應力時將不會觀察到壓應力所產生的應力腐蝕裂紋。

     

    Abstract: Stress corrosion cracking (SCC) of austenitic stainless steel in a boiling 42% MgCl2 solution under compressive stress was investigated. Specimens with surface residual compressive stress, U-bend specimens and notched compressive specimens of modified WOL type were used. The results showed that SCC under compressive stress occurred for these three type specimens after 110, 73-100 and 262-324 hours respectively. Fracture surfaces of SCC under compressive stress were quasi-cleavage characterized by stratified rock structure and striation-like pattern rather than river marks or fan pattern under tensile stress.
    The incubation period of SCC under the compressive stress is much longer and the propagation rate of the crack is much slower than that under the tensile stress. Therefore, SCC under the compressive stress usually can not occur if there exists simultaneously the tensile stress in a apecimen or structure.
    The possible role of hydrogen in SCC of this system is discussed.

     

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