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ZrCuNi中间层瞬间液相焊扩散连接纯钛TA2工艺研究
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作者 杨浩哲 裴夤崟 +3 位作者 沈元勋 秦建 李秀朋 刘德运 《电焊机》 2023年第4期81-89,共9页
使用Cu、Ni纯金属箔厚度为0.01 mm,Zr纯金属箔厚度分别为0.01 mm、0.02 mm和0.03 mm的ZrCuNi中间层在880℃×30 min工艺条件下对TA2纯钛进行瞬间液相焊连接试验,研究了接头界面组织演化机理、中间层元素扩散作用及接头的力学性能。... 使用Cu、Ni纯金属箔厚度为0.01 mm,Zr纯金属箔厚度分别为0.01 mm、0.02 mm和0.03 mm的ZrCuNi中间层在880℃×30 min工艺条件下对TA2纯钛进行瞬间液相焊连接试验,研究了接头界面组织演化机理、中间层元素扩散作用及接头的力学性能。结果表明,接头界面组织由焊缝中心化合物层和两侧共析组织构成,在中间层Zr箔厚度为0.01 mm时,焊缝中心形成了厚度约10μm的连续带状(Ti,Zr)_(2)(Cu,Ni)金属间化合物,当Zr箔厚度提高到0.02 mm、0.03 mm时,焊缝中心形成含有(Ti,Zr)_(2)(Cu,Ni)化合物的共晶组织,共晶组织厚度先增加到80μm后降低到37μm。焊缝中(Ti,Zr)_(2)(Cu,Ni)化合物层维氏硬度在500 HV0.1以上,其厚度减小有助于提高接头强度,中间层Zr箔为0.01 mm时接头的剪切强度最高,平均值为207 MPa,裂纹沿焊缝中心化合物层和两侧共析组织扩展,断口具有韧窝特征和河流状花样,为韧性-脆性复合断裂模式,Zr箔厚度提高到0.02 mm、0.03 mm时,接头剪切强度分别为92 MPa和135 MPa,裂纹沿焊缝中心共晶组织扩展延伸,断口形貌显示的小平面解理特征是(Ti,Zr)_(2)(Cu,Ni)化合物断口的典型形貌。 展开更多
关键词 纯钛 瞬间液相焊 ZrCuNi中间层 显微组织 力学性能
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Insight into the Urea Binding and K166R Mutation Stabilizing Mechanism of TIpB: Molecular Dynamics and Principal Component Analysis Study
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作者 WU Yunjian ZHENG Qingchuan XU Yu CHU Wenting CUI Yinglu WANG Yan ZHANG Hongxing 《Chemical Research in Chinese Universities》 SCIE CAS CSCD 2014年第6期1011-1017,共7页
Chemoreceptor TlpB(Tlp=transducer-like protein), which has been demonstrated to respond to pH sensing function, is crucial for the survival ofHelicobacterpylori(H, pylori) in host stomach. Urea was proposed to be ... Chemoreceptor TlpB(Tlp=transducer-like protein), which has been demonstrated to respond to pH sensing function, is crucial for the survival ofHelicobacterpylori(H, pylori) in host stomach. Urea was proposed to be essen- tial for TlpB's pH sensing function via binding with the Per-ARNT-Sim(PAS) domain of TlpB. Additionally, KI66R mutation of the TlpB protein has also been proven to have a similar effect on TlpB pH sensing as urea binding. Al- though X-ray crystallographic studies have been carried out for urea-bound Tlpl3, the molecular mechanism for the stabilization of TIpB induced by urea binding and K166R mutation remains to be elucidated. In this study, molecular dynamics simulations combined with principal component analysis(PCA) for the simulation results were used to gain an insight into the molecular mechanism of the stabilization of urea on TlpB protein. The formed H-bonds and salt-bridges surrounding Aspll4, which were induced by both urea binding and K166R mutation of TIpB, were im- portant to the stabilization of TlpB by urea. The similarity between the urea binding and K166R mutation as well as their differences in effect has been explicitly demonstrated with computer simulations at atomic-level. The findings may Dave the wav for the further researches of TlpB. 展开更多
关键词 tlpb Per-ARNT-Sim(PAS) domain Molecular dynamics simulation Principal component analysis
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