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排序方式: 共有1210条查询结果,搜索用时 15 毫秒
51.
以Ti4040Zr4040Ni2020合金为研究对象,用铜 模吸铸法制备出直径为3mm的致密单相准晶棒,通过维氏显微硬度测定和单向压缩实验方 法研究了该合金的室温力学性能 .结果表明:Ti4040Zr4040Ni2020准晶具有良好 的弹性变形能力,室温弹性应 变可达125%.同时,它具有相对高的室温硬度(约55GPa),是普通Ti合金的15倍.T i4040
关键词:
准晶
Ti-Zr-Ni合金
解理断裂 相似文献
52.
Yao-li Chuang Maria R. D’Orsogna Lincoln S. Chayes 《Physica D: Nonlinear Phenomena》2007,232(1):33-47
We study a class of swarming problems wherein particles evolve dynamically via pairwise interaction potentials and a velocity selection mechanism. We find that the swarming system undergoes various changes of state as a function of the self-propulsion and interaction potential parameters. In this paper, we utilize a procedure which connects a class of individual-based models to their continuum formulations and determine criteria for the validity of the latter. H-stability of the interaction potential plays a fundamental role in determining both the validity of the continuum approximation and the nature of the aggregation state transitions. We perform a linear stability analysis of the continuum model and compare the results to the simulations of the individual-based one. 相似文献
53.
修正了传统的Navier-Stoke方程,并利用修正后的方程与Fluent软件对微尺度型腔内Zn-Al合金微流动规律进行了数值模拟.模拟结果表明:液态金属在微尺度管道内的流动规律在管径为0.5mm时出现临界状态,管径越细,速度附面层相对厚度就越大.同时,微管流动存在着宏观流动中没有的“凸进效应”,且随着入口压力增大,流动前沿自由液面的凸进效应减弱.在流动前沿区域和上游区域之间出现负压力梯度区,且管径越细越明显.
关键词:
微管道
微流动
Zn-Al合金 相似文献
54.
M. C. Nuss P. C. M. Planken I. Brener H. G. Roskos M. S. C. Luo S. L. Chuang 《Applied physics. B, Lasers and optics》1994,58(3):249-259
The observation of terahertz electromagnetic dipole radiation from quantum well structures has finally proven the existence of charge oscillations in semiconductors associated with wave packet dynamics. This article closely examines the physics behind the emission of terahertz electromagnetic radiation from excitonic charge oscillations in such quantum well structures, points out similarities and differences between the various generation schemes, and discusses the various relaxation mechanisms involved. Finally, we show how both amplitude and phase of charge oscillations and the corresponding terahertz emission can be manipulated using phase-locked optical pulses. 相似文献
55.
We propose an image watermarking scheme based on the phase retrieval algorithm in gyrator domain. The watermark is converted into a noise-like image by Arnold transform. The scrambled image is regarded as the amplitude of gyrator spectrum. The Gerchberg-Saxton algorithm is employed to obtain the unknown phase function in gyrator pair, in which the host image is the amplitude of input function. The phase information and the parameters of the two transforms serve as the key of watermarking algorithm. The numerical simulation has demonstrated the performance of the proposed algorithm. 相似文献
56.
Jie Liu Xiaohui Li Jiangjiang Feng Chuang Zheng Yamin Wang Aocheng Wang Xinfeng Liu 《Annalen der Physik》2020,532(3):1900454
Zinc sulfide (ZnS), which belongs to transition metal monochalcogenides, is a semiconductor material with wide direct band gap. It can potentially show some special applications (such as luminescence, phosphor, sensors, infrared window materials, photocatalysis) by changing the morphology, size, and crystal structure of semiconductor materials. However, ZnS nanospheres have not been studied as optical modulators until now. Herein, ZnS nanospheres are synthesized by the hydrothermal method and are used to realize optical modulators in an Er-doped fiber laser. The evanescent field effect is utilized to incorporate the ZnS nanospheres on a tapered fiber. Furthermore, with the increase in pump power, the modulation interval gradually decreases to a minimum of 34.36 ns corresponding to the modulation frequency of 29.1 MHz, which is the highest modulation frequency to our knowledge in a ring cavity all-fiber laser. These results demonstrate ZnS nanospheres together with the interaction of dispersion and nonlinearity in optical fibers can modulate the proposed lasers. This not only provides a new method for controlling the power and frequency of all optical modulators, but also marks an important step for ZnS materials in optics research and device applications. 相似文献
57.
58.
Phthalocyanines have been used as photodynamic therapy (PDT) agents because of their uniquely favorable optical properties and high photostability. They have been shown to be highly successful for the treatment of cancer through efficient singlet‐oxygen (1O2) production. However, due to their hydrophobic properties, the considerations of solubility and cellular location have made understanding their photophysics in vitro and in vivo difficult. Indeed, many quantitative assessments of PDT reagents are undertaken in purely organic solvents, presenting challenges for interpreting observations during practical application in vivo. With steady‐state and time‐resolved laser spectroscopy, we show that for axial ligated silicon phthalocyanines in aqueous media, both the water:lipophile ratio and the pH have drastic effects on their photophysics, and ultimately dictate their functionality as PDT drugs. We suggest that considering the presented photophysics for PDT drugs in aqueous solutions leads to guidelines for a next generation of even more potent PDT agents. 相似文献
59.
Nonlinear Dynamics - This paper investigates the parameter and state estimation problems for a class of fractional-order nonlinear systems subject to the perturbation on the observer gain. The... 相似文献
60.