雨果·格老秀斯(Hugo Grotius)在近现代国际法领域的地位是由他于1625年发表的《战争与和平法》(The Rights of War and Peace)所奠定的,在这之前,我们姑且不论他于1605年至1606年间撰写完成却直至1864年才为人知的《捕获法》(Comme...雨果·格老秀斯(Hugo Grotius)在近现代国际法领域的地位是由他于1625年发表的《战争与和平法》(The Rights of War and Peace)所奠定的,在这之前,我们姑且不论他于1605年至1606年间撰写完成却直至1864年才为人知的《捕获法》(Commentary on the Law of Prize and Booty)一书。展开更多
The effect of heat treatment on the transformation temperature of Ti?52.2%Ni (mole fraction) alloy was studied using differential scanning calorimetry (DSC). The transformation temperatures of the alloy can be adjuste...The effect of heat treatment on the transformation temperature of Ti?52.2%Ni (mole fraction) alloy was studied using differential scanning calorimetry (DSC). The transformation temperatures of the alloy can be adjusted effectively by heat treatment. Dense and stable SiO2 coatings were deposited on the surface of the pre-oxidized TiNi alloy by sol?gel method. The bonding strength of films and matrix was (65.9±1.5) N. The electrochemical corrosion test shows that the TiNi alloy with SiO2 coating has excellent corrosion resistance in the Hank’s simulated body fluid. The release behaviors of Ni ion of the alloy with and without SiO2 coating implanted in the acoustic vesicle of guinea pig were studied by EDS testing, which was inhibited effectively by the dense and stable SiO2 coating on the alloy.展开更多
文摘雨果·格老秀斯(Hugo Grotius)在近现代国际法领域的地位是由他于1625年发表的《战争与和平法》(The Rights of War and Peace)所奠定的,在这之前,我们姑且不论他于1605年至1606年间撰写完成却直至1864年才为人知的《捕获法》(Commentary on the Law of Prize and Booty)一书。
基金Project(81170609)supported by the National Natural Science Foundation of ChinaProject(11JJ6087)supported by the Nature Science Foundation of Hunan Province,ChinaProject supported by the Open Project of State Key Laboratory of Powder Metallurgy,Central South University,China
文摘The effect of heat treatment on the transformation temperature of Ti?52.2%Ni (mole fraction) alloy was studied using differential scanning calorimetry (DSC). The transformation temperatures of the alloy can be adjusted effectively by heat treatment. Dense and stable SiO2 coatings were deposited on the surface of the pre-oxidized TiNi alloy by sol?gel method. The bonding strength of films and matrix was (65.9±1.5) N. The electrochemical corrosion test shows that the TiNi alloy with SiO2 coating has excellent corrosion resistance in the Hank’s simulated body fluid. The release behaviors of Ni ion of the alloy with and without SiO2 coating implanted in the acoustic vesicle of guinea pig were studied by EDS testing, which was inhibited effectively by the dense and stable SiO2 coating on the alloy.