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相对论核——核碰撞中电磁离解的测量
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作者 许国发 郑蒲英 +1 位作者 刘福虎 孙淑荣 《山西师范大学学报(自然科学版)》 1992年第4期69-71,共3页
本文对电磁离解的机制进行了描述,并比较了200AGeV^(16)O+Em 与200AGeV^(32)S+Em 的实验结果.
关键词 电磁离解 平均自由程
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60 A GeV^(16)O原子核在核乳胶中的电磁离解 被引量:3
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作者 张东海 孙汉城 《物理学报》 SCIE EI CAS CSCD 北大核心 2000年第10期1938-1946,共9页
对 6 0AGeV16O在原子核乳胶中的电磁离解现象首次进行了高统计的研究 ,得到电磁离解截面随束流能量的增加而增加 ,射弹碎片电荷分布和 2 0 0AGeV16O在乳胶中电磁离解的电荷分布一致 ,但电荷为 3≤Z≤ 5的射弹碎片的发射概率低于 2 0 0A... 对 6 0AGeV16O在原子核乳胶中的电磁离解现象首次进行了高统计的研究 ,得到电磁离解截面随束流能量的增加而增加 ,射弹碎片电荷分布和 2 0 0AGeV16O在乳胶中电磁离解的电荷分布一致 ,但电荷为 3≤Z≤ 5的射弹碎片的发射概率低于 2 0 0AGeV能区 ,这些特点和Weiszacker和Williams的经典电磁理论模型计算结果一致 .6 0AGeV16O电磁离解下各反应道出现的概率和 2 0 0AGeV能区结果基本一致 ,但同 14 6AGeV能区的结果不同 ,在6 0AGeV能区16O电磁离解主要是由电偶及电四激发引起的巨偶极和巨四极共振及准氘核效应过程所致 ,这一点可以通过电磁离解下质子的多重数分布得到定性解释 .电磁离解下α射弹碎片的分布同非弹核作用下α碎片的分布规律不同 ,说明α碎片的产生机制不同 . 展开更多
关键词 电磁离解 射弹碎片 原子核 核乳胶 重离子碰撞
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Corrosion and wear resistance of AZ31 Mg alloy treated by duplex process of magnetron sputtering and plasma electrolytic oxidation 被引量:12
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作者 Bing-jian WEI Yu-lin CHENG +2 位作者 Yuan-yuan LIU Zhun-da ZHU Ying-liang CHENG 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2021年第8期2287-2306,共20页
In order to improve the wear and corrosion resistance of AZ31 magnesium alloy,a magnetron-sputtered Al layer with a thickness of 11μm was firstly applied on the alloy,and then treated by plasma electrolytic oxidation... In order to improve the wear and corrosion resistance of AZ31 magnesium alloy,a magnetron-sputtered Al layer with a thickness of 11μm was firstly applied on the alloy,and then treated by plasma electrolytic oxidation(PEO)in an aluminate and silicate electrolytes,respectively.The performance of PEO coatings was investigated by dry sliding wear and electrochemical corrosion tests.The aluminate coating exhibits excellent wear resistance under both 10 and 20 N loads.The silicate coating only shows low wear rate under 10 N,but it was destroyed under 20 N.Corrosion tests show that the Al layer after magnetron sputtering treatment alone cannot afford good protection to the Mg substrate.However,the duplex layer of PEO/Al can significantly improve the corrosion resistance of AZ31 alloy.Electrochemical tests show that the aluminate and silicate coatings have corrosion current densities of-1.6×10^(-6) and-1.1×10^(-6) A/cm^(2),respectively,which are two orders lower than that of the un-coated AZ31 alloy.However,immersion tests and electrochemical impedance spectroscopy(EIS)show that the aluminate coating exhibits better long-term corrosion protection than silicate coating. 展开更多
关键词 AZ31 magnesium alloy magnetron sputtering plasma electrolytic oxidation dry sliding wear CORROSION
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