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91.
In this paper, we consider one-dimensional compressible isentropic Navier-Stokes equations with the viscosity depending on density and with the free boundary. The viscosity coefficient μ is proportional to ρθ with θ>0, where ρ is the density. The existence, uniqueness, regularity of global weak solutions in H1([0,1]) have been established by Xin and Yao in [Z. Xin, Z. Yao, The existence, uniqueness and regularity for one-dimensional compressible Navier-Stokes equations, preprint]. Furthermore, under certain assumptions imposed on the initial data, we improve the regularity result obtained in [Z. Xin, Z. Yao, The existence, uniqueness and regularity for one-dimensional compressible Navier-Stokes equations, preprint] by driving some new a priori estimates.  相似文献   
92.
We present first-principle calculations of electric and thermo spin transfer torques (STT) in Fe/Vacuum(Vac)/Fe magnetic tunnel junctions (MTJs). Our quantitative studies demonstrate rich bias dependence of STT and tunnel magneto resistance (TMR) behaviors with respect to the interface roughness. Thermoelectric effects in Fe/Vac/Fe MTJs is remarkable. We observe larger ZT of 6.2 in 8 ML clean Vacuum barrier, where the heavily restrained thermal conductance should be responsible for. Thermo-STT in Fe/Vac/Fe MTJs show same order as that in Fe/MgO/Fe MTJs with similar barrier thickness.  相似文献   
93.
激光诱导击穿光谱(LIBS)技术是应用于冶金在线分析最具前景的技术之一。为了研究真空和高温条件下LIBS光谱特性和物质成分定量分析方法,设计并搭建了可实现真空环境高温熔融金属LIBS光谱测量的实验系统。系统以调Q Nd: YAG脉冲激光器为光源,采用不同焦距透镜实现激光聚焦和信号光采集,并利用光谱仪进行光谱检测,真空获取和高温加热通过真空泵和中频感应电炉实现,感应加热线圈通过陶瓷封接引线法兰与真空系统进行整合。经过安装测试,搭建系统在未加热情况下真空度可达1×10-4Pa,加热温度可达到1 600 ℃,可实现真空环境下铁、铝等金属加热或熔融,并获得相应环境下的LIBS测量光谱。利用该系统进行真空和熔融条件下标准钢样品的LIBS实验,得到了固态钢样品LIBS光谱在不同真空度下的光谱对比,以及真空环境熔融态和固态钢样品光谱对比。通过对测得的LIBS光谱进行数据处理和理论分析,所得初步实验结果与现有研究结论相符合,表明该系统工作状况良好,可满足真空环境下的熔融金属成分分析研究的基本需求。  相似文献   
94.
介绍了真空隔断的结构设计,并利用ANSYS分析软件建立了真空隔断的三维有限元模型,对其进行热力耦合分析,计算得到了结构在正常和故障状态下的温度分布和热应力。通过对计算结果的分析,验证了真空隔断结构设计的合理性,为其进一步的优化奠定基础。  相似文献   
95.
Al-pillared mesoporous montmorillonite was facilely synthesized from concentrated Al13 solution obtained by vacuum concentrating-ultrasonic pillaring strategy.Concentrated Al13 solution could reduce the process of pillare and increase pillaring efficiency.The absolute value of layer distance could be increased by 0.96 nm via concentrated Al13 solution pillare.27Al NMR indicates that Al Keggin ions of concentrated Al13 are arranged in a more regular way by vacuum concentrating method.The Al-pillared mesoporous montmorillonite from concentrated Al13 solution has bigger specific surface area and even pore size distribution which were characterized by X-ray diffraction(XRD) and nitrogen adsorption measurement.Furthermore the catalytic activity of Ai-pillared montmorillonite loaded Ni and Mo catalysts was tested by the hydrodesulfurization of thiophene.The thiophene conversion reached 77.5%,which was higher than the corresponding value reported in the literature.  相似文献   
96.
通过测量不同聚合体系下的阴离子聚合尼龙6(APA-6)反应过程中转化率随时间的变化, 结合真空导入成型的特点, 研究了适合于真空导入成型的APA-6的聚合体系. 研究发现, 己内酰胺钠盐/双酰化内酰胺-1,6-己二胺(C10/C20)(100℃)和己内酰胺钠盐/甲苯二异氰酸酯(C10/TDI)体系反应初期均存在一个转化率线性缓慢增长期, 随后, 聚合体系开始快速反应, 转化率呈指数增长, 反应很快达到平衡. 初步判定这两种体系是适合真空导入成型APA-6复合材料的聚合体系. 在转化率测试的基础上, 利用DSC热分析从活性中心的形成机理进一步分析了C10/TDI体系更适合于较大、 较厚和结构复杂制品的整体成型的原因. 此外, 与普通PA6相比, 真空导入成型APA-6的结晶度、 模量和Tg显著提高, 并且在2种理想体系下聚合的APA-6的性能也有差别, 从活化剂的封端和解封端机理上进行了初步探讨.  相似文献   
97.
In this paper, the design and structure of a vacuum variable-temperature blackbody system were described, and the steady-state thermal analysis of a 3-D blackbody model was presented. Also, the thermal performance of the blackbody was evaluated using an infrared camera system. The blackbody system was constructed to operate under vacuum conditions (2.67 × 10−2 Pa) to reduce its temperature uncertainty, which can be caused by vapor condensation at low temperatures usually below 273.15 K. A heat sink and heat shield including a cold shield were embedded around the radiator to maintain the heat balance of the blackbody. A simplified 3-D model of the blackbody including a radiator, heat sink, heat shield, cold shield, and heat source was thermophysically evaluated by performing finite elements analysis using the extended Stefan–Boltzmann’s rule, and the infrared radiating performance of the developed system was analyzed using an infrared camera system. On the basis of the results of measurements and simulations, we expect that the suggested blackbody system can serve as a highly stable reference source for the calibration and measurement of infrared optical systems within operational temperature ranges.  相似文献   
98.
《Current Applied Physics》2014,14(3):282-286
Zinc telluride (ZnTe) thin films were sublimated on a glass substrate using closed space sublimation (CSS) technique. ZnTe thin films of same thickness were tailored with copper (Cu) & silver (Ag) doping, considered for comparative study. X-ray diffraction (XRD) patterns of as-deposited ZnTe thin film and doped ZnTe samples exhibited polycrystalline behavior. The preferred orientation of (111) having cubic phase was observed. XRD patterns indicated that the crystallite size had increased after silver and copper immersion in as-deposited ZnTe thin films. Scanning electron microscopy (SEM) was used to observe the change of as-deposited and doped sample's grains sizes. EDX confirmed the presence of Cu and Ag in the ZnTe thin films after doping respectively. The optical studies showed the decreasing trend in energy band gap after Cu and Ag-doping. Transmission also decreased after doping. Resistivity of as-deposited ZnTe thin film was about 106 Ω cm. The resistivity was reduced to 68.97 Ω cm after Cu immersion, and 104 Ω cm after Ag immersion. Raman spectra were used to check the crystallinity of as-deposited, Cu and Ag-doped ZnTe thin film samples.  相似文献   
99.
100.
We study the evolution of primordial black holes by considering present universe is no more matter dominated rather vacuum energy dominated. We also consider the accretion of radiation, matter and vacuum energy during respective dominance period. In this scenario, we found that radiation accretion efficiency should be less than 0.366 and accretion rate is much larger than previous analysis by Nayak et al. (2009) [1]. Thus here primordial black holes live longer than previous works Nayak and Singh (2011) [1]. Again matter accretion slightly increases the mass and lifetime of primordial black holes. However, the vacuum energy accretion is slightly complicated one, where accretion is possible only up to a critical time. If a primordial black hole lives beyond critical time, then its? lifespan increases due to vacuum energy accretion. But for presently evaporating primordial black holes, critical time comes much later than their evaporating time and thus vacuum energy could not affect those primordial black holes.  相似文献   
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