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排序方式: 共有177条查询结果,搜索用时 15 毫秒
171.
固体灭火剂爆炸抛撒半径分析 总被引:3,自引:0,他引:3
根据爆轰产物等熵膨胀原理和流体动力学理论,通过对灭火剂抛撒3个阶段的理论分析,推导出灭火剂抛撒的理论半径,估算灭火弹的灭火威力。在此基础上进行实爆试验,对两者的值进行比较分析,取得了良好的一致性,为优化灭火弹设计,提高灭火弹威力起着积极的指导作用。 相似文献
172.
173.
离子束加工误差对散射损失的影响研究 总被引:1,自引:0,他引:1
离子束加工(Ion Beam Figuring,IBF)去除函数对加工残差具有重要的影响,而加工残差引起的表面散射则导致光学性能发生变化.为了减小加工残差对光学性能的影响,利用基于CCOS成形原理的离子束加工仿真程序对光学镜面进行修形,分析不同去除函数宽度对散射损失(Ratio of Scattering Loss,RSL)指标的影响.通过研究可知,随着去除函数宽度的减小,加工残差对散射损失的影响越来越小.因此,根据加工残差对RSL指标的影响程度以及RSL指标要求,可以合理选择去除函数宽度,从而在满足面形精度的同时,优化加工工艺. 相似文献
174.
激光驾束制导信息场检测系统设计 总被引:2,自引:0,他引:2
为了完成激光驾束制导信息场检测,根据信息场的参数,介绍了检测系统的设计方案和工作原理;基于误差设计理论,根据激光束传输特性,利用光学软件ZEMAX设计了激光信息场检测光学系统;通过信息场指令值和辐照度检测,实现信息场参数测试。该系统能在各种复杂条件下对多种型号炮射导弹的驾束信息场进行参数测试。 相似文献
175.
《防务技术》2020,16(4):883-892
The influence of initiation modes on the explosive dispersion process of the multi-layer composite charge (MCC) was studied. Overpressure sensors and high-speed photography system were used to investigate the energy release process of an MCC with a specific structure. The shock wave pressure and explosive dispersion characteristics of the MCC under different initiation modes were compared. The forming and expanding process of the shock wave of the composite charge under different initiation modes was determined. The separation position of the shock wave and fireball interface was determined. The calculation formulas of the shock radius and overpressure of the composite charge are presented. The radius of the shock wave of the composite charge was significantly affected by the initiation mode. Moreover, the development process of the composite explosive fireball under different initiation modes was analyzed, the variation rules of the composite charge dispersion radius and fireball dispersion velocity with time were obtained under the different initiation modes, the explosion energy release rate of composite charge under simultaneous initiation modes was the highest, and the peak overpressure under the simultaneous initiation mode was 1.61 times that of central single-point initiation. 相似文献
176.
《防务技术》2020,16(6):1167-1187
The load-carrying capacities and failure patterns of reinforced concrete components can be significantly changed by membrane effects. However, limited work has been carried out to investigate the blast resistance of Hybrid Fiber Reinforced Lightweight Aggregate Concrete (HFR-LWC) members accompanying membrane action. This paper presents a theoretical approach to quantitatively depicting the membrane behavior and its contribution on the behavior of HFR-LWC beams under close-range blast loadings, and the suitability of the proposed model is validated by a series of field tests. An improved Single-Degree-of-Freedom (SDOF) model was employed to describe the dynamic responses of beam-like members under blast loadings accompanying membrane action, where the mass-load coefficient is determined according to the nonuniformly distributed load induced by close-range explosion, and the membrane action is characterized by an in-plane (longitudinal) force and a resisting moment. The elasto-plastic and recovery responses of HFR-LWC beams under the combined action of blast load and membrane force were analyzed by the promoted model. A specially built end-constrain clamp was developed to provide membrane action for the beam member when they are subjected to blast load simultaneously. It is demonstrated that the analytical displacement-time histories are in good agreement with experimental results before peak deflections and that the improved SDOF model is an acceptable tool for predicting the behavior of HFR-LWC beams under blast loadings accompanying membrane action. 相似文献
177.