不銹鋼縫隙腐蝕行為的多物理場(chǎng)仿真模擬
發(fā)布時(shí)間:2021-09-04 16:04
304不銹鋼是應(yīng)用極為廣泛的一種鉻-鎳不銹鋼,具有良好的耐蝕性、耐熱性,無(wú)熱處理硬化現(xiàn)象,已成為石油化工、汽車、醫(yī)療、船舶、核電等領(lǐng)域廣泛使用的重要材料。盡管304不銹鋼具有良好的抗均勻腐蝕性能,但局部腐蝕卻是其主要的破壞形式,縫隙腐蝕就是不銹鋼這種易鈍化材料經(jīng)常發(fā)生的一種局部腐蝕,影響不銹鋼使用壽命,制約了不銹鋼應(yīng)用范圍?p隙腐蝕多物理場(chǎng)模擬涵蓋了電極動(dòng)力學(xué)、溶液化學(xué)以及無(wú)機(jī)化學(xué),它們會(huì)隨時(shí)間發(fā)生變化影響后續(xù)反應(yīng)進(jìn)程,而了解這些變化有助于深入了解不銹鋼縫隙腐蝕機(jī)理,做出相對(duì)應(yīng)的預(yù)防和控制措施。在本文中,通過(guò)多物理場(chǎng)耦合模擬技術(shù),研究了 304-304不銹鋼同種金屬在0.6 mol/L、pH=6.5的NaCl溶液中的縫隙腐蝕行為,以及304不銹鋼-碳鋼、304不銹鋼-鈦異種金屬縫隙腐蝕行為,揭示了縫隙生長(zhǎng)動(dòng)力學(xué)和溶液水化學(xué)的瞬態(tài)變化過(guò)程,力圖澄清縫隙腐蝕的微觀機(jī)制。(1)對(duì)于304-304不銹鋼縫隙,在腐蝕過(guò)程中,靠近縫隙開(kāi)口位置處腐蝕最嚴(yán)重,縫隙腐蝕從縫隙口向縫隙底逐漸減弱?p隙內(nèi)的電位從縫隙底部的-0.35V增加到縫隙開(kāi)口的-0.21V,而縫隙底部電流變化較平緩,最小電流僅為0.0...
【文章來(lái)源】:中國(guó)科學(xué)技術(shù)大學(xué)安徽省 211工程院校 985工程院校
【文章頁(yè)數(shù)】:82 頁(yè)
【學(xué)位級(jí)別】:碩士
【部分圖文】:
圖2.1縫隙幾何示意圖
?第三章304-304不銹鋼縫隙腐蝕模擬???12?F??|??|8:?:??t?6-?T??C?_??召??■??|?4-?:??a2.?J??0?-?—?’(b)??..<■■■■?I?....?I?.?...?I?....?I?....?I?....?I?....?I?....?I?■.??012345678??Distance?from?crevice?tip?/cm??圖3.3模型預(yù)測(cè)的t=90h?304不銹鋼沿縫隙底部至縫隙開(kāi)口處(a)電位分布(b)電流分布??Fig.?3.3.?(a)?Predicted?potential?and?(b)?current?distribution?vs.?distance?from?crevice?tip?to??opening?for?304?stainless?steel?at?t=90h.??1.0? ̄????8?V?j??JE:?\1??0.3?-?V??Q?2?I?■???1?■???■?_?i???■?■?■?■?■?■?■??.瞧■?■???■?i?■…■?i?■???????i?■?■?■???1?■?1???■:??'?0?1?2345678??Distance?from?crevice?tip?/cm??圖3.4?t=90時(shí)304不銹鋼沉淀孔隙度沿縫隙底至縫隙開(kāi)口分布??Fig.?3.4?Precipitation?porosity?distribution?for?304?stainless?steel?at?t=90h.??23??
?第三章304-304不銹鋼縫隙腐蝕模擬???12?F??|??|8:?:??t?6-?T??C?_??召??■??|?4-?:??a2.?J??0?-?—?’(b)??..<■■■■?I?....?I?.?...?I?....?I?....?I?....?I?....?I?....?I?■.??012345678??Distance?from?crevice?tip?/cm??圖3.3模型預(yù)測(cè)的t=90h?304不銹鋼沿縫隙底部至縫隙開(kāi)口處(a)電位分布(b)電流分布??Fig.?3.3.?(a)?Predicted?potential?and?(b)?current?distribution?vs.?distance?from?crevice?tip?to??opening?for?304?stainless?steel?at?t=90h.??1.0? ̄????8?V?j??JE:?\1??0.3?-?V??Q?2?I?■???1?■???■?_?i???■?■?■?■?■?■?■??.瞧■?■???■?i?■…■?i?■???????i?■?■?■???1?■?1???■:??'?0?1?2345678??Distance?from?crevice?tip?/cm??圖3.4?t=90時(shí)304不銹鋼沉淀孔隙度沿縫隙底至縫隙開(kāi)口分布??Fig.?3.4?Precipitation?porosity?distribution?for?304?stainless?steel?at?t=90h.??23??
【參考文獻(xiàn)】:
期刊論文
[1]Numerical Simulation for Crevice Corrosion of 304 Stainless Steel in Sodium Chloride Solution[J]. WANG Wei 1,2,3 , SUN Hu-yuan 1,3* , SUN Li-juan 1,3 , SONG Zu-wei 1,2,3 and ZANG Bei-ni 1,2,3 1. Institute of Oceanology, Chinese Academy of Sciences, Qingdao 266071, P. R. China; 2. Graduate University of Chinese Academy of Sciences, Beijing 100049, P. R. China; 3. Shandong Provincial Key Ialoratory of Corrosion Science, Qingdao 266071, P. R. China. Chemical Research in Chinese Universities. 2010(05)
[2]INVESTIGATION OF CHEMICAL AND ELECTROCHEMICAL CHANGES WITHIN CORROSION CRACKS——Ⅰ.Interrelations between Currents,C1- migration and pH values[J]. 左景伊,金志強(qiáng). Chinese Journal of Chemical Engineering. 1984(00)
本文編號(hào):3383574
【文章來(lái)源】:中國(guó)科學(xué)技術(shù)大學(xué)安徽省 211工程院校 985工程院校
【文章頁(yè)數(shù)】:82 頁(yè)
【學(xué)位級(jí)別】:碩士
【部分圖文】:
圖2.1縫隙幾何示意圖
?第三章304-304不銹鋼縫隙腐蝕模擬???12?F??|??|8:?:??t?6-?T??C?_??召??■??|?4-?:??a2.?J??0?-?—?’(b)??..<■■■■?I?....?I?.?...?I?....?I?....?I?....?I?....?I?....?I?■.??012345678??Distance?from?crevice?tip?/cm??圖3.3模型預(yù)測(cè)的t=90h?304不銹鋼沿縫隙底部至縫隙開(kāi)口處(a)電位分布(b)電流分布??Fig.?3.3.?(a)?Predicted?potential?and?(b)?current?distribution?vs.?distance?from?crevice?tip?to??opening?for?304?stainless?steel?at?t=90h.??1.0? ̄????8?V?j??JE:?\1??0.3?-?V??Q?2?I?■???1?■???■?_?i???■?■?■?■?■?■?■??.瞧■?■???■?i?■…■?i?■???????i?■?■?■???1?■?1???■:??'?0?1?2345678??Distance?from?crevice?tip?/cm??圖3.4?t=90時(shí)304不銹鋼沉淀孔隙度沿縫隙底至縫隙開(kāi)口分布??Fig.?3.4?Precipitation?porosity?distribution?for?304?stainless?steel?at?t=90h.??23??
?第三章304-304不銹鋼縫隙腐蝕模擬???12?F??|??|8:?:??t?6-?T??C?_??召??■??|?4-?:??a2.?J??0?-?—?’(b)??..<■■■■?I?....?I?.?...?I?....?I?....?I?....?I?....?I?....?I?■.??012345678??Distance?from?crevice?tip?/cm??圖3.3模型預(yù)測(cè)的t=90h?304不銹鋼沿縫隙底部至縫隙開(kāi)口處(a)電位分布(b)電流分布??Fig.?3.3.?(a)?Predicted?potential?and?(b)?current?distribution?vs.?distance?from?crevice?tip?to??opening?for?304?stainless?steel?at?t=90h.??1.0? ̄????8?V?j??JE:?\1??0.3?-?V??Q?2?I?■???1?■???■?_?i???■?■?■?■?■?■?■??.瞧■?■???■?i?■…■?i?■???????i?■?■?■???1?■?1???■:??'?0?1?2345678??Distance?from?crevice?tip?/cm??圖3.4?t=90時(shí)304不銹鋼沉淀孔隙度沿縫隙底至縫隙開(kāi)口分布??Fig.?3.4?Precipitation?porosity?distribution?for?304?stainless?steel?at?t=90h.??23??
【參考文獻(xiàn)】:
期刊論文
[1]Numerical Simulation for Crevice Corrosion of 304 Stainless Steel in Sodium Chloride Solution[J]. WANG Wei 1,2,3 , SUN Hu-yuan 1,3* , SUN Li-juan 1,3 , SONG Zu-wei 1,2,3 and ZANG Bei-ni 1,2,3 1. Institute of Oceanology, Chinese Academy of Sciences, Qingdao 266071, P. R. China; 2. Graduate University of Chinese Academy of Sciences, Beijing 100049, P. R. China; 3. Shandong Provincial Key Ialoratory of Corrosion Science, Qingdao 266071, P. R. China. Chemical Research in Chinese Universities. 2010(05)
[2]INVESTIGATION OF CHEMICAL AND ELECTROCHEMICAL CHANGES WITHIN CORROSION CRACKS——Ⅰ.Interrelations between Currents,C1- migration and pH values[J]. 左景伊,金志強(qiáng). Chinese Journal of Chemical Engineering. 1984(00)
本文編號(hào):3383574
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