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951.
为建立有效的晶闸管模型来仿真晶闸管关断时过电压,减小晶闸管过压损坏的概率,以最大通流150 kA、耐压5.2 kV的脉冲晶闸管为研究对象,将其前置于脉冲形成单元回路中作为大功率开关使用,记录放电过程中晶闸管两端电压及电流。实验数据表明:恢复过程中的电流下降率、反向恢复电荷、反向恢复电流峰值随通态电流峰值的增大而增大,晶闸管关断时间随通态电流峰值的增大而减小。此外,在关断过程中,当电流下降率在-50~1000 A/s时,电流下降率与电流峰值为线性关系。因此,在大脉冲电流条件下,推导反向恢复过程参数与通态电流参数的关系时电流下降率可用与电流峰值的线性关系代替。基于Matlab仿真平台,建立了具有反向恢复过程的脉冲晶闸管模型。该模型仿真得到的晶闸管反向恢复电流峰值与实测结果较为吻合,反向恢复电压尚待进一步修正。  相似文献   
952.
采用高纯石墨环状阴极和有机玻璃绝缘子,研制了一套低阻抗大面积二极管系统。使用理论计算和数值模拟方法对二极管进行优化设计,在保证绝缘要求的同时,尽量优化二极管轴向长度和内外筒距离以减小二极管的回路电感。实验结果表明,优化后的二极管能在200 kV左右的电压上稳定工作,绝缘结构未发生击穿现象;实验中最高输出电压为213 kV,电流为221 kA,特性阻抗约为1 ,电流密度为8 kA/cm2,脉宽(FWHM)为50 ns。  相似文献   
953.
2015年9月15日,由中国工程物理研究院激光聚变研究中心承担研制的神光-Ⅲ主机装置成功完成了48束激光三倍频180 kJ/3 ns、峰值功率60 TW的输出测试实验,标志着神光-Ⅲ主机装置已全面建成并达到设计指标,成为现有输出能力世界排名第二、亚洲排名第一的惯性约束聚变激光驱动器。神光-Ⅲ主机装置可输出48束阵列化的大口径高功率脉冲激光(分为6个束组,每个束组为一个42的光束阵列),主要由前端、预放、主放、测量与光束控制、靶场、计算机集中控制等六大系统组成。神光-Ⅲ主机装置的研制,凝集了我国在光学、激光、脉冲功率、精密机械、快电子学、自动控制、化学清洗、超精密加工等多个学科领域的顶尖技术成就,堪称中国光学工程界的奇迹。神光-Ⅲ主机装置采用腔内四程放大+变口径90翻转U型反转器+助推三程放大的总体构型,在未使用大口径隔离组件的条件下,采用焦斑控制、精密准直、锥管镜面空间滤波及杂散光管理等技术措施,实现了基频光十万倍增益、10 kJ量级输出状态下的自激振荡抑制与反激光规避,在系统具备50%以上透过率的前提下确保了装置的运行安全,大大提高了装置的性价比。神光-Ⅲ主机装置的建设过程中攻克了高精度种子光源、高品质激光束的预放大、精密同步、辐射定标损伤检测、全光路精密波前校正、甚多束光路自动准直、自动化靶瞄准定位、计算机集中控制、高效谐波转换、一搁准精密安装、超精密光学加工、缺陷控制损伤阈值提升等多项光学工程技术难关,确保了装置具备优秀的技术指标性能。神光-Ⅲ主机装置打破了激光系统串行调试的规律,基于基准体系技术,通过不同束组间的错级并行,实现总体集成工作的满负荷运转,确保了装置建设的总体进度和集成效率。装置从第一个光机模块进场到基本完成集成调试,用时仅四年半,创造了又一个中国速度。在工程建设过程中以自主研发的传输放大动力学设计软件、激光泵浦动力学软件、杂散光树叉追迹软件等为基础,融合了部分光学设计商用软件,构建了覆盖光学、结构、电气、控制等多个学科的高功率激光装置数字化设计平台,基本实现了装置设计的全面数字化。工程建设过程中形成的质量、安全、进度控制体系保证了工程顺利进行。神光-Ⅲ主机装置的全面建成,标志着我国在大型激光驱动器方面的总体设计、总体集成、精密装校、加工制造、光学检测、关键技术等核心能力实现了体系化发展与成熟,面向更大规模的激光驱动器研制的光学工程体系已基本形成。  相似文献   
954.
针对甘油介质在形成线中的应用,总结了甘油作为储能介质已开展的相关研究工作,并在缩比的同轴电极试件中进行了电极表面、磁场、耐压极性、含气量等条件对甘油介质击穿特性影响的实验研究。搭建了基于晶闸管控制的空心脉冲变压器升压实验平台,设计了浸没于脉冲磁场中的同轴电极击穿试件,实验平台最大输出电压500 kV,上升时间26 s,最大磁场1 T,可通过控制晶闸管的先后触发使击穿过程发生于准稳衡磁场中,并制作了外形一致、表面不同的砂纸打磨、羊毛抛光、金属电镀和非金属电镀四种电极。实验结果表明:甘油的击穿是没有极性的;1 T量级磁场对甘油介质的击穿特性无影响;不同电极表面微观形貌差异较大,使甘油介质具有不同的击穿特性,说明甘油击穿在电极表面的过程具有较大影响;充分的排气能减少甘油中直径较大的气泡,减少概率性的低击穿场强,击穿后产生的大量微小气泡会整体降低甘油的击穿阈值,使甘油的平均击穿场强降低。  相似文献   
955.
脑疾病的诊疗、 探索高级脑功能机制和理解意识本源对脑科学研究具有重要意义. 成像技术在阐明脑科学神经系统结构和功能中发挥了重要作用. 迄今, 核磁共振成像、 光学成像和电子显微镜成像技术已为脑科学研究提供了强有力的手段, 取得了突出的进展. 同步辐射X射线显微成像技术具有高分辨率、 快成像速度和高穿透深度等优点, 是一类与已有技术互补的新型脑成像技术. 本文介绍了核磁共振波谱、 光学显微镜和电子显微镜等成像方法在脑成像领域中的应用, 重点阐述了同步辐射X射线成像的优势以及在脑结构成像和功能成像中的应用. 在此基础上, 展望了同步辐射X射线成像应用于脑科学研究的未来发展方向, 讨论了该技术在绘制人脑联接图谱中的优势及可行性.  相似文献   
956.
Silver nanowires, which have high optoelectronic properties, have the potential to supersede indium tin oxide in the field of electrocatalysis, stretchable electronic, and solar cells. Herein, four mainstream experimental methods, including Mayer–rod coating, spin coating, spray coating, and vacuum filtration methods, are employed to fabricate transparent conductive films based on the same silver nanowires to clarify the significance of preparation methods on the performance of the films. The surface morphology, conductive property, uniformity, and flexible stability of these four Ag NW-based films, are analyzed and compared to explore the advantages of these methods. The transparent conductive films produced by the vacuum filtration method have the most outstanding performance in terms of surface roughness and uniformity, benefitting from the stronger welding of NW-NW junctions after the press procedure. However, limited by the size of the membrane and the vacuum degree of the equipment, the small-size Ag films used in precious devices are appropriate to obtain through this method. Similarly, the spin coating method is suited to prepare Ag NWs films with small sizes, which shows excellent stability after the bending test. In comparison, much larger-size films could be obtained through Mayer-rod coating and spray coating methods. The pull-down speed and force among the Mayer-rod coating process, as well as the spray distance and traveling speed among the spray coating process, are essential to the uniformity of Ag NW films. After being treated with NaBH4 and polymethyl methacrylate (PMMA), the obtained Ag NW/PMMA films show great potential in the field of film defogging due to the Joule heating effect. Taken together, based on the advantages of each preparation method, the Ag NW-based films with desired size and performances are easier to prepare, meeting the requirements of different application fields.  相似文献   
957.
Polymerase Chain Reaction (PCR) is one of the most common technologies used to produce millions of copies of targeted nucleic acid in vitro and has become an indispensable technique in molecular biology. However, it suffers from low efficiency and specificity problems, false positive results, and so on. Although many conditions can be optimized to increase PCR yield, such as the magnesium ion concentration, the DNA polymerases, the number of cycles, and so on, they are not all-purpose and the optimization can be case dependent. Nano-sized materials offer a possible solution to improve both the quality and productivity of PCR. In the last two decades, nanoparticles (NPs) have attracted significant attention and gradually penetrated the field of life sciences because of their unique chemical and physical properties, such as their large surface area and small size effect, which have greatly promoted developments in life science and technology. Additionally, PCR technology assisted by NPs (NanoPCR) such as gold NPs (Au NPs), quantum dots (QDs), and carbon nanotubes (CNTs), etc., have been developed to significantly improve the specificity, efficiency, and sensitivity of PCR and to accelerate the PCR reaction process. This review discusses the roles of different types of NPs used to enhance PCR and summarizes their possible mechanisms.  相似文献   
958.
Rigid polyurethane (RPUF) was widely used in external wall insulation materials due to its good thermal insulation performance. In this study, a series of RPUF and RPUF-R composites were prepared using steel slag (SS) and dimelamine pyrophosphate (DMPY) as flame retardants. The RPUF composites were characterized by thermogravimetric (TG), limiting oxygen index (LOI), cone calorimetry (CCT), and thermogravimetric infrared coupling (TG-FTIR). The results showed that the LOI of the RPUF-R composites with DMPY/SS loading all reached the combustible material level (22.0 vol%~27.0 vol%) and passed UL-94 V0. RPUF-3 with DMPY/SS system loading exhibited the lowest pHRR and THR values of 134.9 kW/m2 and 16.16 MJ/m2, which were 54.5% and 42.7% lower than those of unmodified RPUF, respectively. Additionally, PO· and PO2· free radicals produced by pyrolysis of DMPY could capture high energy free radicals, such as H·, O·, and OH·, produced by degradation of RPUF matrix, effectively blocking the free radical chain reaction of composite materials. The metal oxides in SS reacted with the polymetaphosphoric acid produced by the pyrolysis of DMPY in combustion. It covered the surface of the carbon layer, significantly insulating heat and mass transport in the combustion area, endowing RPUF composites with excellent fire performance. This work not only provides a novel strategy for the fabrication of high-performance RPUF composites, but also elucidates a method of utilizing metallurgical solid waste.  相似文献   
959.
Previous studies have shown that silymarin protects against various types of drug-induced liver injury, but whether the protective mechanism of silymarin against acetaminophen-induced liver injury is related to the CYP2E1 enzyme remains unclear. In this study, we investigated the effect of silymarin on the activity and expression of CYP2E1 in vitro and in vivo. The results of in vitro studies showed that silymarin not only inhibited the activity of CYP2E1 in human and rat liver microsomes but also reduced the expression of CYP2E1 in HepG2 cells. In vivo studies showed that silymarin pretreatment significantly reduced the conversion of chlorzoxazone to its metabolite 6-OH-CLX and significantly increased the t1/2, area under the curve (AUC) and mean residence time (MRT) of chlorzoxazone. In addition, silymarin pretreatment significantly inhibited the upregulation of Cyp2e1 expression, reduced the production of 3-cysteinylacetaminophen trifluoroacetic acid salt (APAP-CYS), and restored the liver glutathione level. The results of our study show that silymarin plays an important protective role in the early stage of acetaminophen-induced acute liver injury by reducing the activity and expression of CYP2E1, reducing the generation of toxic metabolites, and alleviating liver injury.  相似文献   
960.
Polyoxometalates (POMs), a large family of anionic polynuclear metal–oxo clusters, have received considerable research attention due to their structural versatility and diverse physicochemical properties. Lacunary POMs are key building blocks for the syntheses of functional POMs due to their highly active multidentate O-donor sites. In this review, we have addressed the structural diversities of Ti/Zr-substituted POMs based on the polymerization number of POM building blocks and the number of Ti and Zr centers. The synthetic strategies and relevant catalytic applications of some representative Ti/Zr-substituted POMs have been discussed in detail. Finally, the outlook on the future development of this area is also prospected.  相似文献   
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