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本文全面介绍了我国跟踪智能网世界先进技术,研究开发自主产权的国产智能网情况,简述了国产主流产品CIN系列智能网产品产业化和应用情况,对国产智能网的发展应用和产业化提出了建议。 相似文献
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有近20年历史的爱立信AXE10交换机在信息时代到来之际再放异彩,目前,它作为公共平台广泛应用于PSTN、ISDN、IN,PLMN、信令网和商务通信等。 相似文献
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采用有限元软件对高温合金IN690管材挤压损伤进行预测,研究挤压速度对损伤的影响规律,得到不同的挤压条件下的挤压阈值。不同挤压速度下损伤的变化随着挤压速度变化呈现先增大后减小的趋势。模拟摩擦系数为0.01、0.05、0.1、0.2条件下的损伤,在摩擦系数为0.01时,坯料表面比较光滑,损伤比较轻;摩擦系数为0.2时,表面凹凸不平,损伤严重。 相似文献
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Biwei Deng Rong Xu Kejie Zhao Yongfeng Lu Sabyasachi Ganguli Gary J. Cheng 《Materials Today》2018,21(5):467-474
Manufacturing ultralight and mechanical reliable materials has been a long-time challenge. Ceramic-based mechanical metamaterials provide significant opportunities to reverse their brittle nature and unstable mechanical properties and have great potential as strong, ultralight, and ultrastiff materials. However, the failure of ceramics nanolattice and degradation of strength/modulus with decreasing density are caused by buckling of the struts and failure of the nodes within the nanolattices, especially during cyclic loading. Here, we explore a new class of 3D ceramic-based metamaterials with a high strength–density ratio, stiffness, recoverability, cyclability, and optimal scaling factor. Deformation mode of the fabricated nanolattices has been engineered through the unique material design and architecture tailoring. Bending-dominated hollow nanolattice (B-H-Lattice) structure is employed to take advantages of its flexibility, while a few nanometers of carbonized mussel-inspired bio-polymer (C-PDA) is coherently deposited on ceramics’ nanolayer to enable non-buckling struts and bendable nodes during deformation, resulting in reliable mechanical properties and outperforming the current bending-dominated lattices (B-Lattices) and carbon-based cellulose materials. Meanwhile, the structure has comparable stiffness to stretching-dominated lattices (S-Lattices) while with better cyclability and reliability. The B-H-Lattices exhibit high specific stiffness (>106?Pa·kg?1·m?3), low-density (~30?kg/m3), buckling-free recovery at 55% strain, and stable cyclic loading behavior under up to 15% strain. As one of the B-Lattices, the modulus scaling factor reaches 1.27, which is lowest among current B-Lattices. This study suggests that non-buckling behavior and reliable nodes are the key factors that contribute to the outstanding mechanical performance of nanolattice materials. A new concept of engineering the internal deformation behavior of mechanical metamaterial is provided to optimize their mechanical properties in real service conditions. 相似文献
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支持智能网与IP网互通的呼叫/承载网关的设计与实现 总被引:1,自引:0,他引:1
Internet用户对电信新业务的需求促使智能网与IP网实现互通。该文首先介绍了两网互通的模型,并重点描述了该模型中的重要实体—呼叫/承载网关的功能。在此基础上,文章提出了两种呼叫/承载网关的实现方案,分析比较了它们各自的优缺点,并基于其中一种方案详细描述了呼叫/承载网关的软件结构 相似文献
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目前,移动电话的使用越来越普遍了,它的功能也不仅仅是打电话了,将能够提供更多的服务。移动商务服务提供商们正在想方设法提供更多的电话业务,使移动电话更加方便。日渐兴起的聊天正是其中之一,文字聊天已经不能满足人们的需要了,商家们把目光集中在语音甚至视频聊天,已经有少数地方使用了一种交互式语言应答系统的方式,但是这种系统本身有一定的不足,所以,有待于研究新方法。该文介绍了交互式语言应答系统的方式,主要是讨论了正在开发研制的智能网的方式来实现语音聊天。它也是在智能网上开展语音类增值业务的一种。 相似文献
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《钢铁冶炼》2013,40(6):414-424
AbstractMagnesium aluminate spinel (MgAl2O4) is an excellent castable refractory product due to its high temperature thermal, chemical and mechanical properties. Alumina spinel castables are produced by addition of synthetic spinel or in situ spinel formation during the firing process. In the first part of the experimental studies, alumina rich MgAl2O4 spinel castable was produced using a solid state reaction technique. Tabular alumina and sea water magnesia (<100 μm) were used as starting raw materials. In the second part of the experimental studies, commercial synthetic spinel added castables were produced. In order to compare experimental results, both parts of the experimental study involved compositions with the same proportions of MgO. α-500 hydratable alumina was used as binder. Castables were sintered at 1500 and 1600°C. Water absorption, apparent porosity, bulk density and cold crushing strength values were considered and the optimum sintering temperature, proportions of synthetic spinel and sea water magnesia were determined. The XRD patterns confirm the phase formation of MgAl2O4. Moreover, the physical properties of the castables were supported by this XRD analysis. Scanning electron microscopy investigations of the fired samples were carried out to compare the effect of synthetic spinel addition and in situ phase formation on the physical properties of the castables. The mechanism of slag penetration to two types of zero cement castables for steel ladles was examined and the penetration layer chemically analysed by energy dispersive X-ray analysis studies. 相似文献