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Changing and optimizing the projectile nose shape is an important way to achieve specific ballistic performance. One special ballistic performance is the embedding effect, which can achieve a delayed high-explosive reaction on the target surface. This embedding effect includes a rebound phase that is significantly different from the traditional penetration process. To better study embedment behavior, this study proposed a novel nose shape called an annular grooved projectile and defined its interaction process with the ductile metal plate as partial penetration. Specifically, we conducted a series of low-velocity-ballistic tests in which these steel projectiles were used to strike 16-mm-thick target plates made with 2024-O aluminum alloy. We observed the dynamic evolution characteristics of this aluminum alloy near the impact craters and analyzed these characteristics by corresponding cross-sectional views and numerical simulations. The results indicated that the penetration resistance had a brief decrease that was influenced by its groove structure, but then it increased significantly-that is, the fluctuation of penetration resistance was affected by the irregular nose shape. Moreover, we visualized the distribution of the material in the groove and its inflow process through the rheology lines in microscopic tests and the highlighted mesh lines in simulations. The combination of these phenomena revealed the embed-ment mechanism of the annular grooved projectile and optimized the design of the groove shape to achieve a more firm embedment performance. The embedment was achieved primarily by the target material filled in the groove structure. Therefore, preventing the shear failure that occurred on the filling material was key to achieving this embedding effect. 相似文献
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We study the problem of recovering a production plan after a disruption, where the disruption may be caused by incidents such as power failure, market change, machine breakdown, supply shortage, worker no‐show, and others. The new recovery plan we seek after has to not only suit the changed environment brought about by the disruption, but also be close to the initial plan so as not to cause too much customer unsatisfaction or inconvenience for current‐stage and downstream operations. For the general‐cost case, we propose a dynamic programming method for the problem. For the convex‐cost case, a general problem which involves both cost and demand disruptions can be solved by considering the cost disruption first and then the demand disruption. We find that a pure demand disruption is easy to handle; and for a pure cost disruption, we propose a greedy method which is provably efficient. Our computational studies also reveal insights that will be helpful to managing disruptions in production planning. © 2005 Wiley Periodicals, Inc. Naval Research Logistics, 2005. 相似文献
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针对火炮性能测试时难于实时、准确测量炮口扰动的问题,提出了一种基于光电位置传感器(Position Sen-sitive Detector,PSD)的炮口扰动测试方法。采用光学杠杆、激光脉冲调制、高精度光电位置传感器、高速数据采集技术,以及所建立的PSD测量炮口角数学模型构建炮口角测量系统,可有效消除炮口闪光、外界自然光及蚊虫干扰,具有较高的灵敏度、精度和可靠性。 相似文献
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针对大气气溶胶辐射传输衰减效应是影响1.06μm激光武器系统性能的重要因素,探讨了大气气溶胶对1.06μm激光探测作用距离的影响,构建了激光制导波段探测作用距离模型,并在此基础上进行激光探测作用距离的大气气溶胶影响数值仿真。试验表明,基于该模型计算的大气透过特性准确度基本符合国际公认理论分析值,对作用距离的评估结果与客观实际基本相符,对最大限度分析利用战场气象环境以确保武器作战性能的充分发挥具有重要价值,可为激光探测作用距离的气象环境影响后续发展奠定一定基础。 相似文献
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方位向电扫描SAR(Terrain Observation by Progressive Scans,TOPSAR)是星载SAR的一种全新工作模式,这种工作模式通过天线波束在方位向扫描,在保持ScanSAR宽测绘带优点的同时,解决了扇贝效应(scalloping)问题。针对这种工作模式要求天线在方位向和距离向都进行扫描的特点,推导了方位分辨率与扫描周期的具体关系,进而分析了系统参数的约束关系,提出了适于工程设计的系统参数设计方法。最后,用TerraSAR-X的参数进行了一组设计,以该设计结果为输入参数,运用SBRAS(SpaceBorne Radar Advance Simulator)进行了信号仿真,仿真结果验证了方法的有效性。 相似文献
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在我军武器装备建设逐渐"以计划为主要管理方式和手段"向"以合同为主要管理方式和手段"转变的背景下,装备采购合同管理的研究日趋深入。而装备采购合同"行政合同"的性质及合同标的物复杂性的特点,进一步凸显了标准化在保证装备采购合同规范性、降低不确定性、减少交易成本和提高工作效率中的重要作用。文章在对美军装备采办合同管理标准化特点与经验详细分析和提炼的基础上,对比我军装备采购合同管理体制及标准化现状,有针对性的提出了装备采购合同管理标准化建议,梳理了标准化重点,并为日后时机成熟时制定适用于装备采购合同管理的相关标准或指南,奠定了一定的研究基础。 相似文献