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Corrosion behavior of 2A97 Al-Cu-Li alloys in different thermomechanical conditions by quasi-in-situ analysis
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作者 You Lü Xiang-zhe MENG +2 位作者 Yan-yan LI Ze-hua DONG Xin-xin ZHANG 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2024年第9期2772-2786,共15页
As a promising material in the aircraft industry,2A97 Al-Cu-Li alloy exhibits high corrosion susceptibility that may limit its application.In the present work,to illustrate the influences of precipitate and grain-stor... As a promising material in the aircraft industry,2A97 Al-Cu-Li alloy exhibits high corrosion susceptibility that may limit its application.In the present work,to illustrate the influences of precipitate and grain-stored energy on localized corrosion evolution in 2A97 Al-Cu-Li alloy,cold working and artificial aging were carried out to produce 2A97 Al-Cu-Li alloys under different thermomechanical conditions.Quasi-in-situ analysis,traditional immersion test and electrochemical measurement were then conducted to examine the corrosion behavior of 2A97 alloys.It is revealed that precipitate significantly affects Cu enrichment at corrosion fronts,which determines corrosion susceptibility of alloys,whereas grain-stored energy distribution is closely associated with localized corrosion propagation.It is also indicated that quasi-in-situ analysis exhibits a consistent corrosion evolution with traditional immersion tests,which is regarded as a proper method to explore localized corrosion mechanisms by providing local microstructural information with enhanced time and spatial resolutions. 展开更多
关键词 Al−Cu−Li alloy corrosion behavior quasi-in situ analysis grain-stored energy thermomechanical treatment
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微生物浆液加固砂土外加剂的初步试验研究 被引量:4
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作者 王丽娟 李凯 +2 位作者 符平 李娜 赵卫全 《中国水利水电科学研究院学报》 北大核心 2020年第2期130-135,共6页
为提高微生物浆液固砂效果、减少固砂灌浆次数及烘干时间,基于晶格能机理尝试性提出A、B、C三种微生物浆液外加剂,并进行了外加剂对微生物浆液活性影响及外加剂对微生物浆液固砂效果影响试验。试验得出:培养过程中添加外加剂会导致菌种... 为提高微生物浆液固砂效果、减少固砂灌浆次数及烘干时间,基于晶格能机理尝试性提出A、B、C三种微生物浆液外加剂,并进行了外加剂对微生物浆液活性影响及外加剂对微生物浆液固砂效果影响试验。试验得出:培养过程中添加外加剂会导致菌种活性降低80%以上,不利于菌种生长;采用外加剂加入钙液的灌注方式,砂砾更易胶结固化,砂砾体渗透系数降低范围为20%~96%;可见外加剂B加入钙液灌注,单次灌浆且不烘干条件下,砂砾体渗透系数可降低到4.65×10-4,抗压强度可达到12.3 MPa。外加剂B具有提高微生物浆液加固砂土效果的作用,该外加剂有利于微生物浆液固砂技术的推广及应用。 展开更多
关键词 固砂效果 晶格能机理 外加剂 微生物活性 渗透系数 抗压强度
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