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紧凑型脉冲成形模块的设计与实验研究 被引量:6
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作者 康强 李名加 +4 位作者 王朋 谭杰 罗敏 张北镇 向飞 《强激光与粒子束》 EI CAS CSCD 北大核心 2014年第6期6-9,共4页
采用了人工线、开关和直线变压器结构一体化的设计方法,为重复运行的长脉冲直线变压器驱动源(LTD)装置研制了一种紧凑型低阻抗脉冲成形模块。为优化空间结构、减小分布参数、提高波形质量,脉冲单模块由两条20ΩBlumlein脉冲成形网络(PFN... 采用了人工线、开关和直线变压器结构一体化的设计方法,为重复运行的长脉冲直线变压器驱动源(LTD)装置研制了一种紧凑型低阻抗脉冲成形模块。为优化空间结构、减小分布参数、提高波形质量,脉冲单模块由两条20ΩBlumlein脉冲成形网络(PFN)并联储能,人工线采用相向L型布局,通过一个同轴开关同步放电,分两路向直线变压器初级线圈对称馈入快前沿的高压电脉冲。为了进一步减小线路电感,缩短脉冲前沿,研制了新型的嵌入式激光触发开关。与同轴开关相比,引线长度缩短了一半,脉冲前沿减小了10%。两级LTD模块实验装置在18.5Ω负载上获得了电压240 kV、半宽180 ns的脉冲输出,重复频率可达25 Hz。 展开更多
关键词 直线变压器驱动源 脉冲成形模块 脉冲成形网络 激光触发开关 直线变压器
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Improved wettability and mechanical properties of metal coated carbon fiber-reinforced aluminum matrix composites by squeeze melt infiltration technique 被引量:11
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作者 Jian-jun SHA Zhao-zhao LÜ +6 位作者 Ru-yi SHA Yu-fei ZU Ji-xiang DAI Yu-qiang XIAN Wei ZHANG Ding CUI Cong-lin YAN 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2021年第2期317-330,共14页
In order to improve the wettability and bonding performance of the interface between carbon fiber and aluminum matrix,nickel-and copper-coated carbon fiber-reinforced aluminum matrix composites were fabricated by the ... In order to improve the wettability and bonding performance of the interface between carbon fiber and aluminum matrix,nickel-and copper-coated carbon fiber-reinforced aluminum matrix composites were fabricated by the squeeze melt infiltration technique.The interface wettability,microstructure and mechanical properties of the composites were compared and investigated.Compared with the uncoated fiber-reinforced aluminum matrix composite,the microstructure analysis indicated that the coatings significantly improved the wettability and effectively inhibited the interface reaction between carbon fiber and aluminum matrix during the process.Under the same processing condition,aluminum melt was easy to infiltrate into the copper-coated fiber bundles.Furthermore,the inhibited interface reaction was more conducive to maintain the original strength of fiber and improve the fiber−matrix interface bonding performance.The mechanical properties were evaluated by uniaxial tensile test.The yield strength,ultimate tensile strength and elastic modulus of the copper-coated carbon fiber-reinforced aluminum matrix composite were about 124 MPa,140 MPa and 82 GPa,respectively.In the case of nickel-coated carbon fiber-reinforced aluminum matrix composite,the yield strength,ultimate tensile strength and elastic modulus were about 60 MPa,70 MPa and 79 GPa,respectively.The excellent mechanical properties for copper-coated fiber-reinforced composites are attributed to better compactness of the matrix and better fiber−matrix interface bonding,which favor the load transfer ability from aluminam matrix to carbon fiber under the loading state,giving full play to the bearing role of carbon fiber. 展开更多
关键词 carbon fiber metal matrix composite Cf/Al composite COATING WETTABILITY mechanical properties
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