957 resultados para DSpace


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纳米硬度计,又称深度测量压入仪.该仪器在刚性压针上施加特定载荷,同时记录压入试样深度.此技术广泛应用于微纳米尺度力学性能的研究.以MTS Nano Indenter○ RXP为测试手段,参考试样熔融硅为研究对象,进行了不同压入深度的测试.结果显示,硬度和模量有随压入深度减小而增大的趋势.分析了接触零点的确定、压针尖端缺陷、试样表面的吸湿和粗糙度、弹塑性转变等因素对测试结果的影响.在压入深度为微米和亚微米量级时,上述因素对测试结果无显著影响;而在纳米量级时,有显著影响.所以,当压入深度为几十纳米时,纳米压入测试结果的可靠性值得注意.

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介绍一种可用于微电子封装局部应变场分析的实验/计算混合方法,该方法结合了有限元的整体/局部模型和实时的激光云纹干涉技术,利用激光云纹干涉技术所测得的应变场来校核有限元整体模型的计算结果,并用整体模型的结果作为局部模型的边界条件,对实验难以确定的封装结构局部位置的应力、应变场进行分析.用这种方法对可控坍塌倒装封装结构在热载荷作用下焊球内的应变场分布进行了分析,结果表明该方法能够提供封装结构内应力-应变场分布的准确和可靠的结果,为微电子封装的可靠性分析提供重要的依据. For the reliability analysis of electronic packages, strains in very localized areas, such as an interconnection or a corner, need to be determined. In this paper, a modified hybrid method of global/local modeling and real time moire interferometry is presented. In this method, a simplified, coarsely meshed global model is developed to get rough information about the deformation of the microelectronic package. In order to make sure the global model has been reasonably simplified and the material properties ...

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采用Hopkinson压杆装置,对4种时效处理的Al-Li合金在冲击压缩试验时变形局部化产生的力学条件和微结构进行了研究,结果指出,4种处理的合金均产生两种类型的剪切带即形变剪切带和白剪切带,它们是在局部化过程中不同形变阶段下形的。两者无本质上的差别。白色剪切带内未发生相变。大应变和高应变率是产生力剪切带的必要条件,即材料在一定的高应变率下形变到一定程度时才能形成剪切带,电镜研究表明,剪切带内无畸…

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建立了红壤农田水热动态耦合模式,分析了模式中温度变化与水分运动分层的物理原因,说明了气候状况对地表面能量交换的 影响,给出了净辐射和蒸散量的计算方法,提出了有限差分计算中具有二阶精度的Euler隐式格式,介绍了红壤站的气候概况和野外观 测情况.最后利用本模式对红壤花生地陆气水热交换过程进行了数值模拟,模拟值与实测值吻合较好.

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Based on the internal variable theory, a viscoelastic constitutive model of a highly deformable continuous medium is proposed. A set of second rank tensorial internal state variables corresponding to Biot's strain is introduced, and a nonlinear evolution

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We reported here a novel technique for laser high speed drillings on Printed Circuit Boards (PCBs). A CNC solid laser based system is developed to drill through and blind vias as an alternative to mechanical drilling. The system employs an Acousto-Optic Q-switched Nd: YAG laser, a computer control system and an X-Y moving table which can handle up to 400 x 400 mm PCB. With a special designed cavity the laser system works in a pulsed operation in order to generate pulses with width down to 0.5 mu s and maximum peak power over 10kW at 10k repetition rate. Delivered by an improved optical beam transforming system, the focused laser beam can drill hobs including blind vias on PCBs with diameter in the range of 0.1 - 0.4 mm and at up to 300 - 500 vias per second (depending on the construction of PCBs). By means of a CNC X-Y moving system, laser pulses with pulse-to-pulse superior repeatability can be fired at desired location on a PCBs with high accuracy. This alternative technology for drilling through or blind vias on PCBs or PWBs (printed wiring boards) will obviously enhance the capability to printed boards manufacturing.

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The main factors affecting interrill erosion-including runoff discharge, rainfall intensity, mean flow velocity, and slope gradient-were analyzed by using a gray relational analysis. An equation for interrill erosion was derived by coupling this analysis with dimensional and regression analyses. The values of erosion rates predicted by this equation were in good agreement with experimental observations.

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首先建立了一个一维水流、二维泥沙数学模型,以长江口南港北槽为实际背景,研究了径流和潮流共同作用下,泥沙输运的规律;讨论了泥沙近底边界条件,认为非恒定情况下泥沙底边界条件应考虑沉降效应。分析了径流和潮流的不同组合及其对长江口泥沙输运的影响。同时,对长江口实施整治工程后航道的变化进行了预测。

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应用有限元方法对层流等离子体射流不锈钢表面重熔工艺中的瞬态热物理现象进行了数值模拟研究.针对不同加热距离,确定了材料熔化和凝固过程中的瞬态温度场、温度梯度和凝固率的时间和空间分布特征.通过引入等效温度面积密度概念,研究了不锈钢重熔热处理的适合条件.结果表明,9~13mm的范围是较为适宜的加热距离,该结果与试验观察基本符合.

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根据两流体同心环状流线性稳定性分析的结果 ,对微重力气 /液两相流地面模拟实验所应遵循的相似准则进行了探讨 ,得到了一个新的重力无关性准则 ,即Bond数和环形区流体相的毛细数之比的绝对值不大于 1 .此外 ,微重力气 /液两相流模拟实验还必须满足两个条件 ,即流量比和气相表观Weber数应与所模拟的流动中对应数值相等 . In the present paper, the principle of similarity for two phase flows at microgravity is studied based on the results of the linear stability analysis of the two fluid concentric annular flow configuration. A new criterion of gravity independence, namely the absolute value of the ratio between the Bond number and the capillary number of the phase flowing in the annulus is no more than one, is achieved. It is also pointed out that the flowrate ratio and the gas superficial Weber number must have the same ...

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为寻求适用于大偏心率远距离航天器编队设计的方法,摒弃了简化航天器相对运动非线性微分方程的传统思路,致力于简化该微分方程的解析解。首先,在同周期假定前提下,由运动学得到了椭圆轨道航天器相对于圆轨道航天器运动的封闭解析解,然后将其展开成傅立叶级数,证明了在特定条件下,单倍频项是最主要的,从而导出了编队飞行设计的新公式。最后以空间圆形编队设计为例,阐明了利用新公式进行编队设计的步骤,并用精确的数值计算验证了设计结果的正确性。与C—W方法和一般轨道参数设计方法相比,推导过程中并未采用小偏心率近距离假定,因此导出的新公式可适用于大偏心率远距离航天器的编队设计。

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A strengthening mechanism arising from a type of inorganic nanostructure in the organic matrix layers is presented by studying the structural and mechanical properties of the interfaces in nacre. This nanostructural mechanism not only averagely increases the fracture strength of the organic matrix interfaces by about 5 times, but also effectively arrests the cracks in the organic matrix layers and causes the crack deflection in this biomaterial. The present investigation shows that the main mechanism governing the strength of the organic matrix interfaces relies on the inorganic nanostructures rather than the organic matrix. This study provides a guide to the interfacial design of synthetic materials.

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The surface tension of molten tin has been determined by the sessile drop method at The surface tension of molten tin has been determined by the sessile drop method at temperatures ranging from 523 to 1033 K and in the oxygen partial pressure (P-O2) range from 2.85 x 10(-19) to 8.56 x 10(-6) MPa, and its dependence on temperature and oxygen partial pressure has been analyzed. At P-O2 = 2.85 x 10(-19) and 1.06 x 10(-15) MPa, the surface tension decreases linearly with the increase of temperature and its temperature coefficients are -0.151 and -0.094 mNm(-1) K-1, respectively. However, at high P-O2 (3.17 x 10(-10), 8.56 x 10(-6) MPa), the surface tension increases with the temperature near the melting point (505 K) and decreases above 723 K. The surface tension decrease with increasing P-O2 is much larger near the melting point than at temperatures above 823 K. The contact angle between the molten tin and the alumina substrate is 158-173degrees, and the wettability is poor.

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利用分离式Hopkinson压杆装置,对三种粒径(3.5、15、20μm)的SiCp/2024铝基复合材料进行冲击压缩实验.结果表明,绝热剪切带易于在小尺寸颗粒增强的复合材料中形成.为了解释这种变形局部化的尺寸依赖现象,发展了一种具有细观变形机制的应变梯度依赖本构模型.研究发现,颗粒增强金属基复合材料的尺寸效应可以通过应变梯度效应表征.表现为:在相同的体积含量下,颗粒尺寸越小,材料中诱导的应变梯度越高.利用发展的应变梯度依赖本构模型,对颗粒增强金属基复合材料-维简单剪切问题进行线性稳定性分析,考察了颗粒尺寸或应变梯度对绝热剪切失稳的作用机制.分析表明,应变梯度越高(对应颗粒尺寸越小),临界剪切失稳应变越小,即剪切失稳更易发生,从而合理地解释了实验观测到的尺寸依赖现象.还对应变梯度对颗粒增强金属基复合材料绝热剪切失稳作用的物理机制进行了分析讨论,结果发现,高的应变梯度是颗粒增强金属基复合材料绝热剪切失稳的强驱动力.

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本文概括了三峡建库后引起下游水沙动力因子的基本变化,论述了三峡水库对下游及河口生态和环境的主要影响,并通过对目前仍难以确定的一些问题的仔细分析,为长江中下及河口地区的综合开发和环境保护提供准确的科学依据。