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作 者:R.Vladoiu A.Mandes V.Dinca M.Tichy P.Kudrna C.C.Ciobotaru S.Polosan
机构地区:[1]Ovidius University of Constanta,Faculty of Applied Sciences and Engineering,Dept of Physics,Mamaia Av.no 124,Constanta,900527,Romania [2]Charles University,Faculty of Mathematics and Physics,Department of Surface and Plasma Science,V Holesovickach 2,18000 Praha 8,Czech Republic [3]National Institute of Materials Physics,P.O.Box MG-7,Bucharest-Magurele 077125,Romania [4]Academy of Romanian Scientists,Ilfov no 3,Bucharest 050094,Romania
出 处:《Journal of Magnesium and Alloys》2024年第8期3115-3134,共20页镁合金学报(英文)
基 金:funded by CCDI-UEFISCDI project number PN-III-P2-2.1-PED-2021-0828,within PNCDI III and by the program Johannes Amos Comenius(cofunded by the European Union)QM4ST,project number CZ.02.01.01/00/22_008/0004572.
摘 要:Magnesium and magnesium thin alloy films were deposited using a thermionic vacuum arc(TVA),which has multiple applications in the field of metallic electrodes for diodes and batteries or active corrosion protection.An improved laser-induced TVA(LTVA)method favors the crystallization processes of the deposited magnesium-based films because the interaction between laser and plasma discharge changes the thermal energy during photonic processes due to the local temperature variation.Plasma diagnosis based on current discharge measurements suggests an inelastic collision between the laser beam and the atoms from the plasma discharge.The morphology and surface properties of the obtained thin films differ between these two methods.While the amorphous character is dominant for TVA thin films,enabling a smooth surface,the LTVA method produces rough surfaces with prominent crystallinity,less hydrophobic character and lower surface energy.The smooth surfaces obtained by the TVA methods produce metallic electrodes with good electrical contact,ensuring better diodes and battery charge transport.Both methods allow uniform magnesium alloys to be obtained,but the laser used in the LTVA on the discharge plasma controls the added metal or element ratio.
关 键 词:Magnesium Magnesium alloys Thermionic vacuum arc Laser induced Thin films
分 类 号:TG146.22[一般工业技术—材料科学与工程] TB383.2[金属学及工艺—金属材料]
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