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    题名 作者 年代 出处 被引量
1Corrosion and corrosion fatigue behaviors of 9Cr steel in a supercritical water condition显示文摘Yi Yongsun Lee Byeonghak Kim Sungho 2006Mater Sci Eng A2006,429,12:1
2Corrosion and Corrosion Fatigue Behaviors of 9Cr Steel in A Supercritical Water Condition显示文摘Yongsun Yi Byeonghak Lee Sungho Kim 0,,:1
3Corrosion and corrosion fatigue behaviors of 9Cr steel in a supercritical water condition 显示文摘Yongsun Yi Byeonghak Lee Sungho Kim 2006Materials Science and Engineering A2006,429,:1
4Corrosion and corrosion fatigue behaviors of 9cr steel in a supercritical water condition显示文摘Yongsun Yi Byeonghak Lee Sungho Kim Jinsung Jang 2006Materials Science & Engineering A2006,,1:1
5Corrosion and corrosion fatigue behav- iors of 9Cr steel in a supercritical water condition 显示文摘YONGSUN Y BYEONGHAK L SUNGHO K 2006Materials Science and Engineering A2006,429,:1
6Corrosion and corrosion fatigue behaviours of 9cr steel in a supercritical water condition显示文摘Yongsun Yi Byeonghak Lee 2006Material Science and Engineering2006,429,:1
79Cr钢在超临界水条件下的腐蚀和腐蚀疲劳性能研究显示文摘采用片状试样和紧凑拉伸(CT)试样研究了改进型9Cr-MoVNb钢(T91)在脱气超临界水(SEW)中的腐蚀和腐蚀疲劳性能。试验压力为25MPa,试验温度分别为370℃和500℃,试验时间200h。对试验前后的试样进行称重,结果表明,暴露于500℃水中的试样表现为增重,而在370℃时则表现为失重。对暴露于两种条件下的试样进行了扫描电镜-电子能谱(SEM-EDX)、俄歇分析(AES)和X射线衍射(XRD)分析,结果表明,在SCW条件下,试样表面只发生氧化(形成氧化物),而在亚临界条件下以阳极溶解为主。还测定了超临界和亚临界水环境中疲劳裂纹扩展速率(FCGR),并与空气条件下的结果进行了对比,结果表明,在超临界和亚临界水环境下,合金的FCGR值都比空气条件下要高。最后从腐蚀和氧化的角度讨论了钢在超临界条件下的腐蚀疲劳行为。Yongsun Yi Byeonghak Lee Sungho Kim Jinsung Jang 刘金华(译) 李长香(校) 姜峨(校) 2008国外核动力2008,29,3:0
8Fibrillary gelation and dedoping of PEDOT:PSS fibers for interdigitated organic electrochemical transistors and circuits显示文摘As one of conducting polymers,PEDOT:PSS,is commonly used in organic electronics,especially for bioelectronics due to its advantages such as high electrical and ionic conductivity,solution-processability and biocompatibility.Creating bioelectronics with the PEDOT:PSS requires advanced techniques to obtain physical/chemical modification of the PEDOT:PSS for improved performance and various applications.To satisfy these demands,fibrillary gelation of PEDOT:PSS by injection to choline acetate,an ionic liquid,with a constant flow rate was used in this study to make a conductive fiber and improve characteristics of PEDOT:PSS.Conductive fibers by fibrillary gelation showed enhanced electrical conductivity of about 400 S cm^(-1) and volumetric capacitance of about 154 F cm^(−3) which would be strongly beneficial to be utilized for organic electrochemical transistors(OECTs),resulting in a high transconductance of 19 mS in a depletion-mode.Moreover,dedoping of the conductive fibers by PEI(polyethyleneimine)enabled the creation of enhancement-mode OECTs.Interdigitated inverters were then fabricated by connecting depletion and enhancement-mode OECTs.These results demonstrate that these conductive fibers and electronic-textiles are suitable candidates for applications in bio-integrated electronics.Young Jin Jo Soo Young Kim Jeong Hun Hyun Byeonghak Park Seunghwan Choy Gyan Raj Koirala Tae-il Kim 2022npj Flexible Electronics2022,6,1:0
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