中国有色金属学报
中國有色金屬學報
중국유색금속학보
THE CHINESE JOURNAL OF NONFERROUS METALS
2013年
12期
3294-3301
,共8页
郝雪龙%孙泽明%刘建华
郝雪龍%孫澤明%劉建華
학설룡%손택명%류건화
含钪2124铝合金%取样方向%楔入力%应力腐蚀开裂
含鈧2124鋁閤金%取樣方嚮%楔入力%應力腐蝕開裂
함항2124려합금%취양방향%설입력%응력부식개렬
2124 aluminum alloy containing Sc%sampling orientation%wedged action%stress corrosion cracking
采用光学显微镜和扫描电镜等研究新型含钪2124铝合金两种不同取向试样在3.5%NaCl(质量分数)溶液中的应力腐蚀开裂行为,并对裂纹尖端形貌和腐蚀形貌进行分析。结果表明:该铝合金在应力腐蚀时首先发生阳极溶解,裂纹尖端晶界处大量聚集的腐蚀产物产生的楔入力和外加应力的共同作用促使预制裂纹在腐蚀介质中进一步沿晶界向纵深方向扩展;两种取向试样在全浸腐蚀时均发生明显的晶间腐蚀,容易发生应力腐蚀开裂;得到了不同取向试样的应力腐蚀裂纹扩展规律及应力腐蚀强度因子门槛值,并探讨取向对应力腐蚀开裂行为的影响。
採用光學顯微鏡和掃描電鏡等研究新型含鈧2124鋁閤金兩種不同取嚮試樣在3.5%NaCl(質量分數)溶液中的應力腐蝕開裂行為,併對裂紋尖耑形貌和腐蝕形貌進行分析。結果錶明:該鋁閤金在應力腐蝕時首先髮生暘極溶解,裂紋尖耑晶界處大量聚集的腐蝕產物產生的楔入力和外加應力的共同作用促使預製裂紋在腐蝕介質中進一步沿晶界嚮縱深方嚮擴展;兩種取嚮試樣在全浸腐蝕時均髮生明顯的晶間腐蝕,容易髮生應力腐蝕開裂;得到瞭不同取嚮試樣的應力腐蝕裂紋擴展規律及應力腐蝕彊度因子門檻值,併探討取嚮對應力腐蝕開裂行為的影響。
채용광학현미경화소묘전경등연구신형함항2124려합금량충불동취향시양재3.5%NaCl(질량분수)용액중적응력부식개렬행위,병대렬문첨단형모화부식형모진행분석。결과표명:해려합금재응력부식시수선발생양겁용해,렬문첨단정계처대량취집적부식산물산생적설입력화외가응력적공동작용촉사예제렬문재부식개질중진일보연정계향종심방향확전;량충취향시양재전침부식시균발생명현적정간부식,용역발생응력부식개렬;득도료불동취향시양적응력부식렬문확전규률급응력부식강도인자문함치,병탐토취향대응력부식개렬행위적영향。
The stress corrosion cracking behavior of the novel 2124 aluminum alloy containing Sc with different sampling orientations in 3.5%NaCl (mass fraction) solution was studied by optical microscopy and scanning electron microscopy. Furthermore, the morphologies at the crack tip before and after corrosion were analyzed. The results show that the anodic dissolution occurs first during the stress corrosion, and the cooperation of the wedging action incured by the mass of corrosion products gathering at the grain boundaries and the applied stress drives the pre-cracks extending along the grain boundaries to the depth direction further in the corrosive medium. Obvious intergranular corrosion of the samples of the two orientations occurs under the total immersion corrosion and stress corrosion cracking takes places easily. The stress corrosion crack propagation law and the stress corrosion intensity factor threshold of the samples of different orientations are obtained. The effect of the sampling orientation on the stress corrosion cracking behavior was investigated.