988 resultados para CN
Resumo:
Both a real time optical interferometric experiment and a numerical simulation of two-dimension non-steady state model were employed to study the growth process of aqueous sodium chlorate crystals. The parameters such as solution concentration distribution, crystal dimensions, growth rate and velocity field were obtained by both experiment and numerical simulation. The influence of earth gravity during crystal growth process was analyzed. A reasonable theory model corresponding to the present experiment is advanced. The thickness of concentration boundary layer was investigated especially. The results from the experiment and numerical simulation match well.
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The concept of state vector stems from statistical physics, where it is usually used to describe activity patterns of a physical field in its manner of coarsegrain. In this paper, we propose an approach by which the state vector was applied to describe quantitatively the damage evolution of the brittle heterogeneous systems, and some interesting results are presented, i.e., prior to the macro-fracture of rock specimens and occurrence of a strong earthquake, evolutions of the four relevant scalars time series derived from the state vectors changed anomalously. As retrospective studies, some prominent large earthquakes occurred in the Chinese Mainland (e.g., the M 7.4 Haicheng earthquake on February 4, 1975, and the M 7.8 Tangshan earthquake on July 28, 1976, etc) were investigated. Results show considerable promise that the time-dependent state vectors could serve as a kind of precursor to predict earthquakes.
Resumo:
以往对滑坡体中软弱层与滑带的识别主要依赖十钻孔并辅之以工程师的经验。采用在钻孔中进行爆破的方法,通过对地表接收信号的波形分析即可十分方便地识别出软弱层与滑带。简耍阐述了该方法的理论依据,通过对现场爆破实验测量信号的分析可以发现,该方法可以减少钻孔数量以及提高滑带识别的精度与效率。
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岩石等脆性材料在加载过程中,随着载荷的增加,材料内部的微裂纹产生、扩展并伴随着声发射现象的发生。声发射是研究脆性材料损伤演化的良好工具,它能连续、实时地监测脆性物体内部微裂纹的产生与扩展,这是其他任何方法都不具有的优势。在三轴应力条件下进行了大尺度岩石(片麻岩)破坏声发射实验,试件尺寸达1.05m。为了模拟日、月潮汐力对地球的加载和卸载作用,在某一固定水平的轴向压力作用下,叠加上循环载荷。实验过程中记录到大量的声发射信息,它能够反映岩石试件内部每一个损伤(微裂纹)发生的时间、地点和强度。利用声发射记录研究了预测岩石宏观破坏的2种前兆现象:能量加速释放及加卸载响应比剧增,为地震预测提供了实验依据。同时还发现,实验中存在声发射的Felicity效应。
Resumo:
The partial-dislocation-mediated processes have so far eluded high-resolution transmission electron microscopy studies in nanocrystalline nc Ni with nonequilibrium grain boundaries. It is revealed that the nc Ni deformed largely by twinning instead of extended partials. The underlying mechanisms including dissociated dislocations, high residual stresses, and stress concentrations near stacking faults are demonstrated and discussed.
Resumo:
特征分析表明:对原始扰动量的抛物化稳定性方程组(PSE),它在亚超音速区分别具有椭圆和抛物特性,给出PSE特征对马赫数的依赖关系,阐明PSE仅把信息对流-扩散传播特性抛物化,而保留了信息对流-扰动传播特性,因此PSE应称为扩散抛物化稳定性方程(DPSE)。
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研究了狭长圆柱型燃烧室内的喷雾火焰燃烧的不稳定性,为了更清楚地了解火焰的构造,首先测量了火焰的温度场。在较大的一次风和二次风变化范围内,测量了压力的振荡特性,得出其均方根值图。结果表明,火焰的稳定是由回流区完成的,在较小的一次风燃料当量比和中等的二次风量时,振荡强度达到100Pa左右。其频率为200-230Hz,与空气/燃料比值关系不大,分析还表明燃烧室中的振荡是轴向驻波振荡。
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活塞的热疲劳性能对柴油发动机的全寿命至关重要。由于能量有限和可控性差等缺点,现有实验系统均不能满意地进行活塞热负荷模拟实验。为此,提出并建立了一套激光诱发活塞热负荷的实验系统。该系统通过对激光束的空间整形,使之投射到活塞表面后诱发的温度场分布满足特定要求。基于PROFIBUS-DP现场总线技术实现了系统集成和实验过程的全反馈控制。针对活塞的典型热负荷条件,即高周热疲劳和热冲击分别进行实验,以模拟正常工作循环和“启动一停车”等热负荷或转速突变工况。通过设置加热一冷却周期或上限下限温度,可以获得相应的热负荷模
Resumo:
The pull-in instability of two nanotubes under van der Waals force is studied. The cantilever beam with large deformation model is used. The influence of nanotube parameters such as the interior radius, the gap distance between the two nanotubes, etc, on the pull-in instability is studied. The critical nanotube length is determined for each specific set of nanotube parameters. The Galerkin method is applied to discretize the governing equations, and it shows good convergence.
Resumo:
采用体硅微机械加工技术和扩散技术,制作压阻式高量程微加速度计,设计量程为50000 g_n。芯片材料为单晶硅,采用双列扁平陶瓷封装。为了测量其动态灵敏度,使用Hopkinson杆在约40000 g_n的加速度水平下进行了冲击校准。在电桥电压为6.33V的情况下,被测微加速度计的灵敏度为1.26 μV/g_n。
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On the basis of the well-known shear-lag analysis of fibre/matrix interface stresses and the assumption of identical axial strains in the fibre and matrix, a new model for predicting the energy release rate of interfacial fracture of the fibre pull-out test model is attempted. The expressions for stresses in the fibre, matrix and interface are derived. The formula for interfacial debonding energy release rate is given. Numerical calculations are conducted and the results obtained are compared with those of the existing models.
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井眼轨道闭环控制校术是当今钻井技术领域的研究热点,而地面与井下的信息传输是这一高新技术中的重要环节。目前,地面与井下的无线信息传输系统主要是采用钻井液脉冲方式,如何提高传输深度和传输速率一直都是粘井液脉冲传输系统的研究主题。本文基于多相流理论,研究了粘井液脉冲信号的传输速度及其影响因素,分析了信号的动态传输特性和衰减规律。研究表明:脉冲信号在井筒中的往复传播类似于阻尼振荡;信号频率和钻井液粘度是影响信号衰减的主要可控因素。本文的研究对现有钻井液脉冲传输系统的改进具有参考价值。
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炸药装药发射安全性模拟实验表明,炮弹炸药装药底隙是诱发膛炸的最危险因素,证实“快速压缩间隙气体加热炸药”是炸药装药撞击起爆的最重要机制。本文分析炸药装药撞击起爆模拟实验,在忽略化学反应的条件下,建立了含气体间隙炸药装药撞击起爆一维模型,给出了描述低速气炮实验中气隙温度分布的方程及参数,即炸药最高温度的控制方程及参数。这些控制参数为气体的比热比、初始相对温度、气体压缩比、气体散热与输入功率比、界面传热系数比。
Resumo:
The mechanical behaviors of 2124, Al-5Cu, Al-Li and 6061 alloys reinforced by silicon carbide particulates, together with 15%SiCw/6061 alloy, were studied under the quasi-static and impact loading conditions, using the split Hopkinson tension/compression bars and Instron universal testing machine. The effect of strain rate on the ultra tensile strength (UTS), the hardening modulus and the failure strain was investigated. At the same time, the SEM observations of dynamic fracture surfaces of various MMC materials showed some distinguished microstructures and patterns. Some new characteristics of asymmetry of mechanical behaviors of MMCs under tension and compression loading were also presented and explained in details, and they could be considered as marks to indicate, to some degree, the mechanism of controlling damage and failure of MMCs under impact loading. The development of new constitutive laws about MMCs under impact loading should benefit from these experimental results and theoretical analysis.