152 resultados para 480


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针对如何定量测定纳米、微米尺度及低维材料的力性能,叙述了采用当今先进观测手段,结合设备特点和力学分析技术来评价材料的硬度、弹性模量、屈服应力、抗蠕变及抗疲劳性等力学性能的测试方法。

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Glass transition and crystallization process of bulk Nd60Al10Fe20Co10 metallic glass were investigated by means of dynamic mechanical thermal analysis (DMTA), differential scanning calorimetry (DSC), X-ray diffraction (XRD) and scanning electronic microscopy (SEM). It is shown that the glass transition and onset crystallization temperature determined by DMTA at a heating rate of 0.167 K/s are 480 and 588 K respectively. The crystallization process of the metallic glass is concluded as follows: amorphous alpha-->alpha' + metastable FeNdAl novel phase -->alpha' + primary delta phase-->primary delta phase + eutectic delta phase Nd3Al phase + Nd3Co phase. The appearance of hard magnetism in this alloy is ascribed to the presence of amorphous phase with highly relaxed structure. The hard magnetism disappeared after the eutectic crystallization of amorphous phase.

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Niobium-silicide alloys have great potential for high temperature turbine applications. The two-phase Nb/Nb5Si3 in situ composites exhibit a good balance in mechanical properties. Using the 52 in drop tube, the effect of undercooling and rapid solidification on the solidification process and micro-structural characterization of Nb-Si eutectic alloy was studied. The microstructures of the Nb-Si composites were investigated by optics microscope (OM), X-ray diffraction (XRD) and scanning electron microscope (SEM) equipped with X-ray energy dispersive spectrometry (EDS). Up to 480 K, deep undercooling of the Nb-Si eutectic samples was successfully obtained, which corresponds to 25% of the liquidus temperature. Contrasting to the conventional microstructure usually found in the Nb-Si eutectic alloy, the microstructure of the undercooled sample is divided into the fine and coarse regions. The most commonly observed microstructure is Nb+Nb5Si3, and the Nb3Si phase is not be found. The change of coarseness of microstructure is due to different cooling rates during and after recalescence. The large undercooling is sufficient to completely bypass the high temperature phase field.

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本文在文献[1]的基础上,探讨了四边简支的正交各向异性的多层、夹层和加筋的矩形扁壳,在考虑沿壳厚方向剪切变形时的应力、变形、稳定和固有振动频率的分析和计算问题。给出了复合材料扁壳(1)在薄膜力N_x~0,N_y~0,N_(xy)~0作用下临界载荷的算式;(2)在各种外载荷q_x,q_y,m_x,m_y,q_z作用下应力和变形的算式;(3)在初始薄膜力作用下,考虑惯量,Q和I时固有振动频率的算式。根据这些算式编成计算程序,即可计算在给定参数下所需的结果,也可变化参数以寻求最佳的设计方案。本文采用u_0,v_0,γ_x,γ_y和w作为广义位移,所得算式适用于各种剪切刚度的情况。对于经典理论的情况,也给出了相应的算式。

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<正>国际激波学术会议(International Sxmnosiumon Shock Waves,简称 ISSW)是国际上激波研究领域的重要系列学术会议.自1957年第一届会议在Boston召开以来,每隔两年召开一次,迄今共计举办了23次.美国、德国、加拿大、澳大利亚、英国、日本、以色列、法国等国家的著名大学和研究机构等都先后主持和承办了国际激波学术会议.该会议对交流激波研究的最新进展、激励和推动在工程、物理和

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<正>1会议概况由亚洲流体力学委员会(Asian Fluid Mechanics Com- mittee)主办,马来西亚工程师协会(The Institution of Engineers,Malaysia)承办的“第十一届亚洲流体力学会议’2006”(The Eleventh Asian Congress of Fluid Mechanics, 11ACFM’2006)于2006年5月22-25日在位于马来西亚首都吉隆坡市中心的Berjaya时代广场酒店会议中心(Ber- jaya Times Square Hotel&Convention Center)召开.会议的组织委员会由亚洲流体力学委员会和当地组委会组成.

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直接数值模拟了来流Mach数为6的钝楔边界层在特定扰动(音速点附近壁面吹吸)下的转捩到湍流的整个过程.分析了平均速度剖面,脉动速度均方根及剪切应力等统计量,并与不可压理论及实验结果进行了比较.展示了转捩过程中的涡结构并分析了压力梯度对转捩的影响.

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Niobium-silicide alloys have great potential for high temperature turbine applications. The two-phase Nb/Nb5Si3 in situ composites exhibit a good balance in mechanical properties. Using the 52 in drop tube, the effect of undercooling and rapid solidification on the solidification process and micro-structural characterization of Nb-Si eutectic alloy was studied. The microstructures of the Nb-Si composites were investigated by optics microscope (OM), X-ray diffraction (XRD) and scanning electron microscope (SEM) equipped with X-ray energy dispersive spectrometry (EDS). Up to 480 K, deep undercooling of the Nb-Si eutectic samples was successfully obtained, which corresponds to 25% of the liquidus temperature. Contrasting to the conventional microstructure usually found in the Nb-Si eutectic alloy, the microstructure of the undercooled sample is divided into the fine and coarse regions. The most commonly observed microstructure is Nb+Nb5Si3, and the Nb3Si phase is not be found. The change of coarseness of microstructure is due to different cooling rates during and after recalescence. The large undercooling is sufficient to completely bypass the high temperature phase field.

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利用光束变换技术得到不同光斑形状和不同强度分布的光束,可满足表面硬化所需要的硬化层均匀性等要求.激光硬化在材料表面产生的实际效果与光强分布密切相关,利用特定光强分布的光束进行激光硬化可以得到所需要的温度场及组织分布,直接影响材料表面硬化的效果.对高斯光束圆光束、平顶矩形光束、曲边矩形光束、点阵光斑等不同强度分布的激光表面硬化(LSH)技术进行了介绍.硬化层特定的硬度分布及组织结构等硬化效果是特定光强分布激光束与材料相互作用的结果,要获得所需硬化效果,则需要利用反求方法设计与硬化效果相对应的特定光强分布的光斑.给出了特定光强分布的激光表面硬化技术的发展趋势.

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采用Franz-Nodvik模型,通过模拟计算,系统地分析了啁啾脉冲放大(CPA)过程中抽运光和信号光能量密度以及晶体参量对放大器输出能量和转换效率的影响。将理论模拟与实验结果进行比较,证明了理论分析的有效性。计算结果表明:在啁啾脉冲放大系统中,存在一个抽运光最佳能量密度。合理选择抽运光的能量密度可以有效提高系统的能量转换效率和稳定性,而且还可以大大降低系统对注入信号光能量的要求以及由于信号光能量抖动所造成的输出不稳定性。

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We propose a plasma channel scheme to obtain an improved table-top laser driven fusion neutron yield as a result of explosions of large deuterium clusters irradiated by an intense laser pulse. A cylindrical plasma channel is created by two moderate intensity laser prepulses at the edge of a deuterium cluster jet along which an intense main laser pulse propagates several nanoseconds later. With the aid of this plasma channel, the main laser pulse will be allowed to deposit its energy into the central region of the deuterium gas jet where the cluster sizes are larger and the atomic density is higher. The plasma channel formation and its impact on the deuterium ion energy spectrum and the consequent fusion neutron yield have been investigated. The calculated results show that a remarkable increase of the table-top laser driven fusion neutron yield would be expected.

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The absorption characteristic of lithium niobate crystals doped with chromium and copper (Cr and Cu) is investigated. We find that there are two apparent absorption bands for LiNbO3:Cr:Cu crystal doped with 0.14 wt.% Cr2O3 and 0.011 wt.% CuO; one is around 480 nm, and the other is around 660 nm. With a decrease in the doping composition of Cr and an increase in the doping composition of Cu, no apparent absorption band in the shorter wavelength range exists. The higher the doping level of Cr, the larger the absorbance around 660 nm. Although a 633 nm red light is located in the absorption band around 660 nm, the absorption at 633 nm does not help the photorefractive process; i.e., unlike other doubly doped crystals, for example, LiNbO3:Fe:Mn crystal, a nonvolatile holographic recording can be realized by a 633 nm red light as the recording light and a 390 nm UV light as the sensitizing light. For LiNbO3:Cr:Cu crystals, by changing the recording light from a 633 nm red light to a 514 nm green light, sensitizing with a 390 nm UV light and a 488 nm blue light, respectively, a nonvolatile holographic recording can be realized. Doping the appropriate Cr (for example, N-Cr = 2.795 X 10(25)m(-3) and N-Cr/N-Cu = 1) benefits the improvement of holographic recording properties. (c) 2005 Optical Society of America.

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光学相位共轭(OPC)技术能够同时且高效地补偿光纤传输过程中色散及非线性效应所导致的信号失真,且该技术同脉冲调制方式无关。从理论上分析了在自陡峭效应(SS)作用下高斯脉冲信号在中距相位共轭系统中的传输演化特性,数值模拟了在其作用下超短飞秒高斯脉冲的动态传输过程,讨论了自陡峭效应对中距相位共轭系统复原性能的影响。结果表明自陡峭效应将导致高斯脉冲信号发生峰值漂移和脉冲后沿变陡,相位共轭系统不能补偿由此导致的脉冲失真和畸变。引入合适的色散可以减小这种信号失真,并使得相位共轭系统能够同时补偿由于色散、自相位调制和