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通过实验和理论分析,研究了Al、V加入碱性焊条药皮对其吸湿性和焊缝金属扩散氢HD的影响.结果表明:Al、V对焊条药皮吸湿性均无影响,V能一定程度降低而Al却提高HD.  相似文献   
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改善Al对B4C润湿性的研究   总被引:1,自引:0,他引:1  
依据金属Al的特性及其与B4C相互作用的关系,在理论上分析Al对B4C的润湿性,分析理论润湿性与实际润湿性差异的原因,在此基础上,通过实验寻求改善Al对B4C润湿性的方法和工艺,发现升高温度可以改善润湿性,温度由1 050℃升至1 100℃时,润湿角θ由52°降至23°;在Al中添加小量Mg后,真空1×10-3Pa,温度1 100℃×3 h时Al对B4C润湿角由原来的23°降至9°.  相似文献   
4.
Abstract

This article answers three questions: What is the nature of the Long War? How is progress (or lack thereof) to be assessed? Where is it likely to go next? An appreciation of Clausewitz shows that practical centers of gravity exist for the Long War, and that the conflict pivots upon the ability to persuasively link ideology to events via a strategic narrative. A close examination of an illustrative case study, the interaction between the US and the late Abu Musab al-Zarqawi in Iraq 2004 – 2006, shows that Al Qaeda has suffered a severe setback, but also that the nature of the war is set to shift yet again. Further tangible progress for the US requires waging the Long War as a global counterinsurgency based on a strategy of ‘selective identification’ (versus pure ‘disaggregation’) as well as an understanding of how to more effectively craft a strategic narrative.  相似文献   
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The belief that the insurgency in southern Afghanistan is a singular entity and the assumption that negotiations with that entity can bring an end to the conflict are simplistic and do not take into account the other insurgent partners, nor the role of local power brokers. Care must be taken when providing advice in the public domain on how to end or limit conflict in Afghanistan.  相似文献   
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The responses of AI/PTFE reactive materials (RMs) under shock compression were investigated by a single-stage gas gun.A 3D mesoscale-model was established based on micro-computed tomography(micro-CT) slice images and confirmed with experimental results.In the high-pressure stage,the com-posites reacted partially,whereas there were no deviations between the partially reacted Hugoniot and the inert simulation results.The simulation reveals that the Teflon matrix melting on the high shock pressure.Melts and decomposition of the PTFE accelerated the diffusion of the atoms.Thus,the reactions of the Al/PrFE composites are more like a combustion rather than a detonation.  相似文献   
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PTFE/Al反应材料制备工艺及性能   总被引:11,自引:0,他引:11       下载免费PDF全文
氟聚物基反应材料是一种主要由氟聚物和金属填料组成的亚稳态含能复合材料,也是近年来国外研究报道较多的一种新型含能材料.采用冷压、热烧结法制备了PTFE/Al反应材料,测试了其理化性能、热分解性能和力学性能,在此基础上,进一步研究了压制成型和烧结工艺参数.  相似文献   
8.
本文研究了溶胶-凝胶(Sol-gel)法制备碳纤维三维编织物增强氧化铝(Al2O3)基复合材料的成型工艺及其力学性能,研究了两种主要起始物Al(NO3)3、AlCl3配制的氧化铝溶胶对复合材料成型工艺和力学性能的影响。分别以Al(NO3)3和AlCl3为起始物,制备得到Ⅰ#、I#复合材料。研究表明,以Al(NO3)3为起始物配制的溶胶粘度较小,利于材料的致密化。经过溶胶浸渍、凝胶、裂解13个周期后,Ⅰ#材料的密度和室温三点弯曲强度分别为1.86g/cm3和145.2MPa,而II#材料的密度和室温三点弯曲强度分别为1.63g/cm3和104.1MPa,材料均呈典型的韧性断裂模式。用扫描电子显微镜(SEM)观察试样的断口形貌,发现断口表面有大量的纤维拔出,纤维表现了较好的增韧效果。  相似文献   
9.
《防务技术》2020,16(4):802-810
During the electromagnetic railgun launching process, there will be a complex flow field with high temperature in the muzzle area because of the high-speed friction, transition and secondary arc-ignition. This paper models the muzzle area of railgun when the projectile is far away from the muzzle, and the dynamic simulation of the flow field with secondary arc in the muzzle area is carried out based on the magneto hydrodynamic equations. Meanwhile, a multi-component plasma transport model is used to analyze the muzzle arc plasma flow process of the mixed gas of Al vapor and the air. Furthermore, the pressure boundary conditions are fitted by the dynamic mesh simulation results. The current and voltage of the muzzle are obtained through the emission experiment of the railgun experimental prototype. We load the current data into the simulation model and the voltage of experiments and simulations are compared, which proves the accuracy of the simulation. Then the plasma temperature and the composition of Al vapor in the muzzle flow process are analyzed in-depth.  相似文献   
10.
引入自挤压工艺辅助超重力下燃烧合成制备Al2O3-ZrO2(4Y)共晶复合陶瓷,可有效地消除陶瓷制品的缩孔、缩松组织等缺陷,陶瓷致密性得到明显提高,同时又有效地抑制陶瓷裂纹萌生。XRD分析显示共晶陶瓷由α-Al2O3,t-ZrO2及少量的m-ZrO2三相组成,且随自挤压力增大,陶瓷中可相变的t-ZrO2的体积分数增加。SEM观察发现陶瓷的显微组织中的棒状共晶团随自挤压力的增大而细化,体积分数增加,且分布其上的t-ZrO2纤维直径变小,共晶团组织边缘处的ZrO2枝晶逐渐转变为细小的球晶,共晶团边界组织厚度逐渐减小,从而使陶瓷力学性能得以提升。  相似文献   
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