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1.
根据弹道修正弹阻力板的展开控制对于射程偏差预测要求的实时性,提出基于摄动原理的射程偏差预测算法.为解决阻力板修正能力在线计算数据量大的问题,提出在弹载计算机上装定阻力板修正能力表格的方法,给出发射前计算修正能力表格的过程和飞行中使用修正能力表格的步骤,提出阻力板展开时机的优化判断条件,并采用该方法对某型弹道修正火箭弹射程修正控制进行仿真试验和飞行试验.仿真试验结果表明,当目标射程为33 565.4m时,经修正后火箭弹的射程偏差能控制在20m以内;飞行试验结果表明,弹道修正火箭弹的射程偏差实测为24m,射程精度得到明显提高.  相似文献   

2.
通过对18块刚特550压型钢板-砼组合单向板加螺栓后性能的破坏性试验研究,分析了组合板破坏特征,从理论分析和数学拟合两方面对组合板进行了正截面承载力计算公式的推导,为工程实践提供了依据。  相似文献   

3.
为进一步研究粘钢加固砼梁的斜截面承载力,进行两组梁的粘钢加固试验。通过对第一组钢筋砼梁粘钢试验的阶段性成果分析,阐述了钢筋砼梁斜截面粘钢加固对斜截面承载力的作用。试验得到了被加固砼梁的应变、挠度和破坏形态等重要资料。试验结果表明:梁侧粘贴箍板可有效地控制斜裂缝的开展,有效地提高梁的斜截面承载能力。  相似文献   

4.
高速方尾水面舰船兴波问题计算方法研究   总被引:7,自引:4,他引:3  
将Dawson型兴波阻力计算方法推广用于高速方尾水面舰船兴波问题计算,在计算中同时计入了尾封板0静压力、尾倾与下沉等因素的影响.以两高速方尾水面舰船为例计算了兴波问题,将兴波阻力计算值与剩余阻力模型试验值进行了比较,求出了相应的相关系数.结果表明,本方法可较好地求解高速方尾水面舰船的兴波问题,兴波阻力相关系数可用于修正理论计算结果,以提高计算精度.  相似文献   

5.
一维弹道修正弹气动力计算方法和射程修正量分析   总被引:1,自引:0,他引:1  
为提高弹箭密集度,采用阻力修正原理进行纵向距离修正是一种低成本的一维弹道修正技术.基于牛顿流理论和风洞实验数据提出了一维弹道修正弹阻力环机构的扩增阻力系数计算方法,通过对不同阻力环结构的气动力数值计算分析,得到阻力环外露高度对扩增阻力系数的影响远大于安装位置等结论.建立了一维弹道修正弹的数学模型,对阻力环机构在飞行弹道上不同位置处作用对应的射程修正量进行了数值计算和炮射试验对比,计算弹道结果和实测弹道结果基本一致.表明提出的一维弹道修正弹阻力环机构的扩增阻力系数计算方法和射程修正量计算数学模型有较高的计算精度,可作为该类弹箭的弹道设计工具.  相似文献   

6.
模型误差和噪声是导致SINS/GPS组合导航计算发散的主要原因.提出了一种适用SINS/GPS组合导航计算的残差监控加权修正自适应卡尔曼滤波方法,利用滤波残差的均值和方差不断对卡尔曼滤波的状态噪声方差阵和测量噪声方差阵进行实时修正,提高了滤波器对模型不确定性和噪声变化的适应能力和鲁棒性,显著改善了组合导航系统的定位精度.通过SINS/GPS组合导航系统仿真,验证了方法的可行性.  相似文献   

7.
应用Matlab对柴油机示功图修正方法的研究   总被引:4,自引:0,他引:4  
在Matlab环境下对试验测取的示功图进行了修正处理,包括消除通道效应、上止点修正及压力的标定,并根据修正前后的示功图计算了放热率,计算结果表明所用修正方法是合理的.  相似文献   

8.
针对惯性导航系统(INS)存在积累误差的缺陷,运用GPS姿态测量辅助修正方法对INS误差进行补偿来进一步提高INS的定位精度.通过对INS系统可观测性进行分析,得出增加不同种类的外部导航信息观测量将有效提高INS误差修正能力的结论.研究了船用INS与GPS姿态测量系统组合的组合导航系统,并对GPS姿态测量系统信息对惯性导航系统的误差修正能力进行了仿真.仿真结果证实上述方法可有效提高INS的定位精度.  相似文献   

9.
本文对现行钢结构教材中未焊透对接焊缝在弯矩作用下的应力计算所采用的焊缝截面抵抗矩的计算公式进行了修正.并提出了一个未焊透对接焊缝在弯矩作用下应力计算的简便方法.  相似文献   

10.
本文以试验现象和结果为依据,对钢板夹心混凝土组合构件,剪切破坏机理进行研究,提出了一整套组合构件斜截面抗剪强度分析方法,并从Breesler强度准则出发,导出了厚板斜截面简化的强度破坏准则,与试验结果对比,表明本文的方法是可靠的。  相似文献   

11.
《防务技术》2022,18(9):1715-1726
High efficiency, environmental protection and sustainability have become the main theme of the development of the protection engineering, requiring that the components not only meet the basic functions, but also have chemical properties such as acid and alkali corrosion resistance and aging resistance. Polyisocyanate-oxazodone (POZD) polymer has the above characteristics, it also has the advantages of strong toughness, high strength and high elongation. The concrete slab sprayed with POZD material has excellent anti-blast performance. In order to explore the damage characteristics of POZD sprayed concrete slabs under the action of contact explosion thoroughly, the contact explosion test of POZD concrete slabs with different charges were carried out. On the basis of experimental verification, numerical simulation were used to study the influence of the thickness of the POZD on the blast resistance of the concrete slab. According to the test and numerical simulation results that as the thickness of the coating increases, the anti-blast performance of the concrete slab gradually increases, and the TNT equivalent required for critical failure is larger. Based on the above analysis, empirical expressions on normalized crater diameter, the normalized spall diameter and normalized spall diameter are obtained.  相似文献   

12.
根据气囊充压压力与复合材料承力筒内径之间的变化关系,给出了成型复合材料承力筒内表面的气囊尺寸计算方程。分析了气囊充压压力增大对承力筒的壁厚、纤维含量和弯曲性能的影响。采用气囊辅助RTM工艺整体制备出复合材料承力筒。试验结果表明,气囊充压压力使复合材料承力筒的壁厚减薄,纤维体积含量增加,弯曲性能提高;选择适当的气囊充压压力可以制备出满足设计要求的复合材料承力筒。  相似文献   

13.
The present study deals with development of conceptual proof for jute rubber basedflexible composite block to completely arrest the projectile impacting the target at high velocity impact of 400 m/s through numerical simulation approach using finite element (FE) method. The proposed flexible composite blocks of repeating jute/rubber/jute (JRJ) units are modelled with varying thickness from 30 mm to 120 mm in increments of 30 mm and impacted by flat (F), ogival (O) and hemispherical (HS) shaped projectiles. All the considered projectiles are impacted with proposed flexible composite blocks of different thicknesses and the penetration behaviour of the projectile in each case is studied. The penetration depth of the projectile in case of partially penetrated cases are considered and the effect of thickness and projectile shape on percentage of penetration depth is statistically analyzed using Tagu-chi's design of experiments (DOE). Results reveal that the though proposedflexible composite block with thickness of 90 mm is just sufficient to arrest the complete penetration of the projectile, considering the safety issues, it is recommended to use theflexible composite with thickness of 120 mm. The nature of damage caused by the projectile in the flexible composite is also studied. Statistical studies show that thickness of the block plays a prominent role in determining the damage resistance of the flexible composite.  相似文献   

14.
To improve corrosion-resistance of shallow-buried concrete urban utility tunnels(UUTs),basalt fiber reinforced polymer(BFRP)bars are applied to reinforce UUTs.As the UUT must have excellent survival capability under accidental explosions,a shallow-buried BFRP bars reinforced UUT(BBRU)was designed and constructed.Repetitive blast experiments were carried out on this BBRU.Dynamic responses,damage evolutions and failure styles of the BBRU under repetitive explosions were revealed.The tunnel roof is the most vulnerable component and longitudinal cracks develop along the tunnel.When the scaled distance is larger than 1.10 m/kg1/3,no cracks are observed in the experiments.When the BBRU is severely damaged,there are five cracks forming and developing along the roof.The roof is simplified as a clamped-supported one-way slab,proved by the observation that the maximum strain of the transverse bar is much larger than that of the longitudinal bar.Dynamic responses of the roof slab are predicted by dynamic Euler beam theory,which can consistently predict the roof displacement under large-scaled-distance explosion.Compared with the UUT reinforced with steel bars,the BBRU has advantages in blast resistance with smaller deflections and more evenly-distributed cracks when the scaled distance is smaller than 1.260 m/kg1/3 and the steel bars enter plastic state.Longer elastic defamation of the BFRP bars endows the UUT more excellent blast resistance under small-scaled-distance explosions.  相似文献   

15.
建立了碳纤维复合材料补片胶接修补双向受载裂纹板的3D有限元模型,分析了补片的单面胶接修补效果,探讨了补片材料、铺层顺序、补片长度及载荷比等对裂纹应力强度因子的影响规律。结果表明:复合材料补片的存在使裂纹板垂直裂纹方向载荷和平行裂纹板方向载荷发生耦合作用,从而影响补片修补效果。平行裂纹方向的压应力可降低裂纹尖端的应力集中因子,而拉应力可提高裂纹尖端的应力集中因子。  相似文献   

16.
《防务技术》2020,16(2):425-431
This work describes the preparation and study of the properties of composite nanoparticles prepared by the sol-gel method which consists of two materials (Al2O3-CaO), and study the effect of these nanoparticles on the mechanical behavior of a polymer blend (EP 4% + 96% UPE). The powder was evaluated by X-ray diffraction analysis, scanning electron microscopy analysis (SEM), particle size analysis, and energy dispersive X-ray analysis (EDX). The mechanical behavior of the composite material was assessed by tensile test, bending test and hardness test. The evaluation results of the composite nanoparticles showed good distribution of the chemical composition between aluminum oxide and calcium oxide, smoothness in particles' size at calcination in high and low temperatures, formation of different shapes of nanoparticles and different (kappa and gamma) phases of the Al2O3 particles. The results of mechanical behavior tests showed marked improvement in the mechanical properties of the resulted composite material, especially at 1.5%, compared with polymer blend material without nano powder addition. The tensile properties improved about (24 and 14.9) % and bending resistance about (23.5 and 16.8) % and hardness by (25 and 22) % when adding particles of size (63.8 and 68.6) respectively. Therefore, this reflects the efficiency of the proposed method to manufacture the nanocomposite powder and the possibility of using this powder as a strengthening material for the composite materials and using these composite materials in bio applications, especially in the fabrication of artificial limbs.  相似文献   

17.
采用球磨法与热压烧结工艺制备了添加w(n-SiO2)=1.0%的铜基纳米复合材料。通过球盘式摩擦磨损试验机测试了复合材料的摩擦磨损性能,采用排水法和场发射扫描电镜(FSEM)研究了复合材料的致密度、显微组织和磨损形貌。结果表明:球磨可提高复合材料的致密度,改善n-SiO2在铜基体中的分散均匀性;随球磨时间的增加,复合材料的动摩擦因数和磨损量先减小后增加,球磨10 h复合材料具有较低的摩擦因数和磨损量,磨损机理主要为磨料磨损。  相似文献   

18.
T300和JC2#纤维增强C/SiC复合材料力学性能对比   总被引:1,自引:0,他引:1       下载免费PDF全文
以聚碳硅烷(PCS)为先驱体,采用聚合物浸渍裂解法(PIP)分别制备得到T300碳纤维和JC2#碳纤维增强C/SiC复合材料。JC2#C/SiC复合材料具有优异的力学性能,抗弯强度和断裂韧性分别达到662MPa和19.5MPa.m1/2;T300 C/SiC复合材料表现出低强度、高脆性,其抗弯强度和断裂韧性不足前者的四分之一。T300 C/SiC复合材料低性能的根本原因在于T300纤维在PCS裂解过程中性能严重下降,复合材料中纤维与基体间存在强界面结合是另一个影响因素。  相似文献   

19.
《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   

20.
The core-shell 2,4,6,8,10,12-Hexanitro-2,4,6,8,10,12-hexaazaisowurtzitane/2,4,6-Trinitrotoluene (CL-20/TNT) composite was prepared by spray-drying method in which sensitive high energy explosive (CL-20) was coated with insensitive explosive (TNT). The structure and properties of different formulations of CL-20/TNT composite and CL-20/TNT mixture were characterized by scanning electron microscopy (SEM), Transmission electron microscopy (TEM), Laser particle size analyzer, X-ray photoelectron spectroscopy (XPS), X-ray diffraction (XRD), differential scanning calorimetry (DSC), impact sensitivity test and detonation performance. The results of SEM, TEM, XPS and XRD show that ϵ-CL-20 particles are coated by TNT. When the ratio of CL-20/TNT is 75/25, core-shell structure is well formed, and thickness of the shell is about 20–30 nm. And the analysis of heat and impact show that with the increase of TNT content, the TNT coating on the core-shell composite material can not only catalyze the thermal decomposition of core material (CL-20), but also greatly reduce the impact sensitivity. Compared with the CL-20/TNT mixture (75/25) at the same ratio, the characteristic drop height of core-shell CL-20/TNT composite (75/25) increased by 47.6% and the TNT coating can accelerate the nuclear decomposition in the CL-20/TNT composites. Therefore, the preparation of the core-shell composites can be regarded as a unique means, by which the composites are characterized by controllable decomposition rate, high energy and excellent mechanical sensitivity and could be applied to propellants and other fields.  相似文献   

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