不同熱處理溫度下鐵素體單一相在0.5mol/L 硫酸溶液中的極化曲線如圖5.62所示,從圖中可以看出,鐵素體單一相在0.5mol/L 硫酸溶液中的極化曲線形貌與2205雙相不銹鋼不同,雙(shuang)相不銹(xiu)鋼整體在0.5mol/L 硫酸溶液中的極化曲線陽極區具有明顯的活化鈍化區以及很寬電位范圍的鈍化區,而鐵素體單一相沒有活化鈍化區,且鈍化區比較窄。具體擬合數據如表5.20所列,腐蝕電位和自腐蝕電流隨固溶溫度的變化曲線如圖5.63所示。



  結合圖5.63和表5.20分析可知,鐵素體單一相的自腐蝕電位隨固溶溫度的增大,后減小,當固溶溫度為1050℃時,Ecorr的值達到最大為0.304V;當固溶溫度達到1150℃后,Bm的值達到最小為-0.130V.自腐蝕電流的變化規律同自腐蝕電位相反,為先減小,后增大,于1050℃達到最小值2.67×10-8A/c㎡,于1150℃達到最大值6.42×10-7A/c㎡.結合自腐蝕電位和自腐蝕電流的變化趨勢可知,當固溶溫度為1050℃時,鐵素體單一相在0.5mol/L 硫酸溶液中耐蝕性能最佳,隨著固溶溫度的升高,其耐蝕性變差。這與雙相不銹鋼整體在0.5mol/L 硫酸溶液中的耐蝕規律相一致。產生以上現象的主要原因1050℃固溶后,鐵素體Cr元素和Mo元素含量最高,Cr元素是鈍化膜形成的要元素,并且可以提高鈍化膜的致密度和修復速度。有研究表明,金屬表面化膜的性質與Cr/Fe的值和金屬/氧的值有關,Cr/Fe、金屬/氧的比值越高,膜的耐蝕性能越好,而Cr元素含量提高會使Cr/Fe、金屬/氧比升高。Mo元素可以配合Cr元素提高材料的耐蝕性能。隨著溫度的升高,鐵素體含量的升高以及Cr和Mo含量的降低導致平均單位中Cr和Mo含量的降低,相當于Cr和Mo被不斷稀釋,因此,當固溶溫度達到1150℃后,鐵素體單一相的耐蝕性變差。


  圖(tu)5.64為不(bu)同固(gu)(gu)溶(rong)溫度(du)下(xia)2205 雙相(xiang)不(bu)銹鋼奧(ao)氏體(ti)單(dan)一(yi)相(xiang)在0.5mol/L 硫酸溶(rong)液(ye)中的極化曲(qu)(qu)線(xian)(xian)(xian),奧(ao)氏體(ti)單(dan)一(yi)相(xiang)極化曲(qu)(qu)線(xian)(xian)(xian)形(xing)狀與鐵素體(ti)單(dan)一(yi)相(xiang)相(xiang)似,均沒有雙相(xiang)不(bu)銹鋼整體(ti)在0.5mml/1.1,50,溶(rong)液(ye)中出現的法化鈍(dun)化區以及很寬的純化區間。當固(gu)(gu)溶(rong)溫度(du)較低時,剪氏體(ti)單(dan)一(yi)相(xiang)極化曲(qu)(qu)線(xian)(xian)(xian)靠近圖(tu)的左上方(fang)(fang),隨著固(gu)(gu)溶(rong)溫度(du)的升高(gao),曲(qu)(qu)線(xian)(xian)(xian)向(xiang)右(you)下(xia)方(fang)(fang)移(yi)動(dong),其(qi)具體(ti)批(pi)合數據如表5.20折列,自腐蝕電位和(he)自腐蝕電流隨溫度(du)的變(bian)化曲(qu)(qu)線(xian)(xian)(xian)如圖(tu)5.65所(suo)示。




  結(jie)合表(biao)5.21和(he)(he)圖(tu)5.65可(ke)知,奧(ao)氏體(ti)(ti)單一相(xiang)自(zi)腐蝕電(dian)(dian)位隨(sui)固溶溫度(du)的(de)升高呈現先增大(da)后減小的(de)趨勢,當(dang)固溶溫度(du)為(wei)1050℃時,具(ju)有最大(da)值(zhi)0.159V,隨(sui)著(zhu)固溶溫度(du)的(de)升高,自(zi)腐蝕電(dian)(dian)位變為(wei)1100℃的(de)0.079V和(he)(he)1150℃時的(de)-0.056V,說明1050℃奧(ao)氏體(ti)(ti)單一相(xiang)在0.5mol/L 硫酸溶液中耐蝕傾向最好,隨著溫度的升高,耐蝕傾向變差。自腐蝕電流在固溶溫度較低時比較小,分別為1000℃的4.02×10-8A/c㎡,1050℃的3.78×10-8A/c㎡,1100℃的3.73×10-8A/c㎡,其值相差不多,當固溶溫度達到1150℃時,自腐蝕電流增加了一個數量級,其值為6.37×10~7A/c㎡.綜合自腐蝕電位和自腐蝕電流的變化趨勢可知,當固溶溫度較低時,奧氏體單一相在0.5mol/L硫酸溶液中的耐蝕性較好,當固溶溫度升高至1150℃后,其耐蝕性能變差。奧氏體單一相在0.5mol/L 硫酸溶液中耐蝕性變化趨勢與(yu)在(zai)(zai)3.5%NaCl溶液中相同。當固(gu)溶溫度升(sheng)高(gao)時,Cr、Mo元素在(zai)(zai)奧氏體中的含(han)量變化不大,但是Ni元素含(han)量的下降,導致奧氏體單一相耐蝕性變差。


  圖5.66為(wei)(wei)不同(tong)(tong)固溶(rong)(rong)(rong)(rong)(rong)溫(wen)度(du)(du)(du)下素(su)體(ti)(ti)單(dan)(dan)一(yi)相(xiang)(xiang)(xiang)與(yu)奧(ao)氏(shi)(shi)體(ti)(ti)單(dan)(dan)一(yi)相(xiang)(xiang)(xiang)在(zai)(zai)硫(liu)酸(suan)溶(rong)(rong)(rong)(rong)(rong)液(ye)(ye)中(zhong)耐蝕(shi)(shi)(shi)(shi)性能的(de)對比(bi)圖,從圖中(zhong)可以(yi)看出,固溶(rong)(rong)(rong)(rong)(rong)溫(wen)度(du)(du)(du)較低時(shi),鐵(tie)(tie)素(su)體(ti)(ti)單(dan)(dan)一(yi)相(xiang)(xiang)(xiang)自(zi)腐(fu)(fu)蝕(shi)(shi)(shi)(shi)電(dian)(dian)位較高。隨著溫(wen)度(du)(du)(du)的(de)升(sheng)高,兩(liang)相(xiang)(xiang)(xiang)自(zi)腐(fu)(fu)蝕(shi)(shi)(shi)(shi)電(dian)(dian)位差值(zhi)變小(xiao),當(dang)固溶(rong)(rong)(rong)(rong)(rong)溫(wen)度(du)(du)(du)為(wei)(wei)1150℃時(shi),奧(ao)氏(shi)(shi)體(ti)(ti)單(dan)(dan)一(yi)相(xiang)(xiang)(xiang)自(zi)腐(fu)(fu)蝕(shi)(shi)(shi)(shi)電(dian)(dian)位較鐵(tie)(tie)素(su)體(ti)(ti)單(dan)(dan)一(yi)相(xiang)(xiang)(xiang)略微提(ti)高。比(bi)較不同(tong)(tong)固溶(rong)(rong)(rong)(rong)(rong)溫(wen)度(du)(du)(du)下的(de)兩(liang)相(xiang)(xiang)(xiang)的(de)自(zi)腐(fu)(fu)蝕(shi)(shi)(shi)(shi)電(dian)(dian)流可以(yi)發現,奧(ao)氏(shi)(shi)體(ti)(ti)單(dan)(dan)一(yi)相(xiang)(xiang)(xiang)與(yu)鐵(tie)(tie)素(su)體(ti)(ti)單(dan)(dan)一(yi)相(xiang)(xiang)(xiang)的(de)自(zi)腐(fu)(fu)蝕(shi)(shi)(shi)(shi)電(dian)(dian)流在(zai)(zai)不同(tong)(tong)固溶(rong)(rong)(rong)(rong)(rong)溫(wen)度(du)(du)(du)下都(dou)相(xiang)(xiang)(xiang)差很小(xiao)。相(xiang)(xiang)(xiang)對在(zai)(zai)3.5%NaCl溶(rong)(rong)(rong)(rong)(rong)液(ye)(ye),鐵(tie)(tie)素(su)體(ti)(ti)單(dan)(dan)一(yi)相(xiang)(xiang)(xiang)在(zai)(zai)0.5mol 硫(liu)酸(suan)溶(rong)(rong)(rong)(rong)(rong)液(ye)(ye)中(zhong)的(de)腐(fu)(fu)蝕(shi)(shi)(shi)(shi)速率有(you)了很明(ming)顯(xian)的(de)增加,這說明(ming)在(zai)(zai)0.5mol 硫(liu)酸(suan)溶(rong)(rong)(rong)(rong)(rong)液(ye)(ye)中(zhong),鐵(tie)(tie)素(su)體(ti)(ti)單(dan)(dan)一(yi)相(xiang)(xiang)(xiang)與(yu)奧(ao)氏(shi)(shi)體(ti)(ti)單(dan)(dan)一(yi)相(xiang)(xiang)(xiang)都(dou)表(biao)現出了較大的(de)腐(fu)(fu)蝕(shi)(shi)(shi)(shi)活性,在(zai)(zai)宏觀上表(biao)現出均勻腐(fu)(fu)蝕(shi)(shi)(shi)(shi)的(de)性質,其在(zai)(zai)0.5mol/L 硫(liu)酸(suan)溶(rong)(rong)(rong)(rong)(rong)液(ye)(ye)中(zhong)的(de)優先(xian)腐(fu)(fu)蝕(shi)(shi)(shi)(shi)行為(wei)(wei)不明(ming)顯(xian),這與(yu)其在(zai)(zai)3.5%NaCl溶(rong)(rong)(rong)(rong)(rong)液(ye)(ye)中(zhong)的(de)優先(xian)腐(fu)(fu)蝕(shi)(shi)(shi)(shi)行為(wei)(wei)明(ming)顯(xian)不同(tong)(tong)。


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