排序方式: 共有22条查询结果,搜索用时 46 毫秒
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试验研究了穿甲子弹垂直侵彻高强防弹钢的机理,提出了一个分析靶板极限速度和弹体剩余速度的理论模型,该模型综合考虑了材料的应变率与热软化效应,结果表明,理论值与试验值吻合很好.分析了失效准则的影响,研究了剪切带温度和靶板耗能随入射速度的变化规律. 相似文献
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基于神经网络的库存枪弹储存寿命预测研究 总被引:4,自引:0,他引:4
对某型单基发射药库存枪弹的理化性能、内弹道性能变化规律和储存寿命进行了初步研究。分析了库存枪弹储存寿命的影响因素 ,建立了库存枪弹储存寿命和影响因素变化规律的神经网络模型 ,并用此模型预测了库存枪弹的储存寿命。 相似文献
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基于线阵CCD的弹丸图像处理 总被引:5,自引:0,他引:5
分析了线阵CCD测弹丸攻角的原理,研究了线阵CCD在弹丸动态测试中的整体图像处理方法,提出一种新的方法:帧相减、局部归一化、二维自适应除噪滤波器和两重阈值复合算法的综合。该方法对复杂环境下的动态CCD图像处理特别有效。 相似文献
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《Arms and Armour》2013,10(2):164-186
AbstractThe invention of silk bullet-proof fabric, a response to growing violence and anarchy, and intended to protect politicians and public figures, as well as police officers and soldiers, is discussed in the wider context of the world’s political situation at the turn of the 19th century. The complex question of the ownership of this innovation is addressed and the reasons for its commercial failure are discussed. The ballistic properties of silk bullet-proof fabric are evaluated and the impact of this invention on the future development of soft armours is considered. 相似文献
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D-S证据理论是一种比概率论确定性弱的不确定性理论,它能将"不知道"和"不确定"两个认知学上的主要概念区别开来,在多传感器数据融合中具有广泛的应用前景.D-S证据理论在实际应用中却存在一个困难,当目标的个数较多时,需要计算的项数太多,容易造成漏项,引起计算错误.提出了一种确定计算项数的算法,作为验证计算结果的必要条件,并通过图解的方法找出需要计算的项. 相似文献
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《Arms and Armour》2013,10(2):142-153
AbstractAfter an introduction to pre-Han and Han bronze crossbow triggers and bronze casting in China, these ancient mechanisms are examined from an engineering and manufacturing perspective. These triggers have been identified (Yates 2007) as the first mass-produced interchangeable military artefact. This examination shows that the sophisticated design of the mechanism clearly took manufacture into account and leads to the hypothesis that the key component of the mechanism, the nut, was specifically designed to be made by the stack moulding process identified by Barnard and Tamotsu 1975 as a technique ‘unparalleled in the ancient world’. 相似文献
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榴弹隐身涂层粘合强度分析 总被引:3,自引:0,他引:3
隐身榴弹在发射过程中,表面涂敷的RAM将承受较大的加速度过载,为了保证发射过程中RAM不脱落,要求RAM具有克服过载的粘着强度。分析了榴弹涂敷隐身材料的强度要求,根据要求设计粘合胶强度、RAM的厚度和密度等参数,并进行实验验证。 相似文献