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1.
凝聚炸药的短脉冲冲击起爆   总被引:1,自引:1,他引:1  
本文介绍了利用电炮研究两种凝聚炸药(TNT/RDX=35/65和PBH-9)的短脉冲冲击起爆的实验结果。炸药样品为直径20mm,长度分别为3.0、5.0、10.0mm的圆柱及楔形药块。在所研究的实验条件下,当药柱长度大于5.0mm时,两种炸药的起爆判据可用p?=常数描述。当药柱长度小于3.0mm时,撞击飞片的阈值速度明显增加。我们还观测了飞片直径对起爆阈值速度的影响,用楔形药块观测了不同加载条件下的到爆轰时间和距离。  相似文献   

2.
受热炸药的冲击起爆特征   总被引:2,自引:0,他引:2  
设计了炸药驱动飞片起爆受热炸药的实验装置,该装置既能够对实验炸药进行均匀地加热,又能够避免高温对加载炸药的影响。利用设计的实验装置对PBXC10炸药(HMX/TATB复合炸药)进行了14、100、140、160和180 ℃等5种不同加热温度下的冲击起爆实验,测量了该炸药内部压力的成长历程。采用点火增长反应速率方程对PBXC10炸药冲击起爆进行了数值模拟。根据实验结果,标定了不同温度下PBXC10炸药的点火增长模型参数,并给出了模型参数随温度变化的关系式,获得了不同温度下炸药的Pop关系。研究结果表明:PBXC10炸药的冲击波感度随温度的升高而升高,但与HMX炸药相比,其冲击波感度对温度的敏感性明显降低,这是因为PBXC10炸药中的TATB具有较好的降感作用。  相似文献   

3.
This article describes experimental investigations of the heat transfer coefficient and pressure drop of R-134a flowing inside internally grooved tubes. The test tubes are one smooth tube and four grooved tubes. All test tubes are made from type 304 stainless steel, have an inner diameter of 7.1 mm, are 2,000 mm long and are installed horizontally. The test section is uniformly heated by a DC power supply to create evaporation conditions. The groove depth of all grooved tubes is fixed at 0.2 mm. The experimental conditions are conducted at saturation temperatures of 20, 25 and 30°C, heat fluxes of 5, 10 and 15 kW/m2, and mass fluxes of 300, 500 and 700 kg/m2 s. The effects of groove pitch, mass flux, heat flux, and saturation temperature on heat transfer coefficient and frictional pressure drop are discussed. The results illustrate that the grooved tubes have a significant effect on the heat transfer coefficient and frictional pressure drop augmentations.  相似文献   

4.
The structure of detonation waves in air suspensions of unitary fuels (fuels containing an oxidant such as gunpowder and high explosives) is investigated. In such systems, complete combustion of the particles is possible at a high mass concentration of the fuel. As a result, the structure of detonation differs from that in gas-drop [1–3] and gas [4, 5] mixtures. The shock adiabats characteristic for air suspensions [6, 7] are used to investigate the field of integral curves which describe the structure of detonation waves in disperse media. Calculated distributions of the parameters which characterize the gas and particles in the detonation front are given. The influence of the rate of combustion of the particles and the intensity of interphase friction on the structure of the detonation is investigated. Results of the calculation of the structure of relaxation shock waves in gas suspensions of the solid fuel of rockets are given in [8]. Unsteady problems of convective combustion and the transition of combustion of air suspensions into detonation are analyzed in [9, 10].Translated from Izvestiya Akademii Nauk SSSR, Mekhanika Zhidkosti i Gaza, No. 5, pp. 47–53, September–October, 1981.  相似文献   

5.
Attenuation of shock waves in granular filters has been studied. Both pressurized air and solid explosives have been used for generating shock waves in a shock tube. The shock tube had a total length of m, and an internal diameter of 355 mm. Two large scale experiments have also been carried out in a tunnel with a cross-sectional area of 6.5 m2. The results are compared with results found in the literature (Zloch, 1976; Medvedev et al., 1990; Britan et al., 2001) and previous experiments in a smaller scale by Slungaard (2002). A simple correlation based on the work of Zloch (1976) for shock wave attenuation in tube bundles and an extensive amount of experiments, is proposed. The correlation can be used to estimate the attenuation of the shock wave through a granular filter with filter characteristic . Setting B=6 will give a conservative estimate of the attenuation, while setting B=3 will give the best fit to all the results from this study and the results found in the literature. The correlation is independent of the type of driver (pressurised air or solid explosives) and upstream shock strength.Received: 30 September 2002, Accepted: 19 December 2002, Published online: 6 March 2003  相似文献   

6.
以熔铸型含铝混合炸药熔奥梯铝为对象,研究铸装含铝混合炸药快速热点火后的燃烧转爆轰特性。建立了快速热点火燃烧转爆轰实验平台,由实验装置(加热装置、约束钢管、炸药)、压力测试系统、光纤测速系统组成;加热装置加热15 mm厚45钢钢板,峰值温度大于1 100℃,温升速率为85~95℃/s。开展了快速热点火带壳熔奥梯铝炸药燃烧转爆轰实验,由加热装置加热约束钢管内熔奥梯铝炸药,炸药化学反应阵面压力和传播速度分别由压电性高压压力传感器和光纤探针测定;实测阵面压力约1 GPa,传播速度最大约2 600 m/s。由光纤数据获得炸药化学反应阵面传播轨迹,通过特征线方法获得冲击形成点,半定量给出冲击形成距离大于850 mm;并比较了管体破片质量实测值与炸药完全爆轰时破片平均质量计算值,实测值远小于计算值。综合实测化学反应阵面传播速度和压力、冲击形成距离分析、破片质量比较,可确定熔奥梯铝炸药没有发生完全爆轰,其化学反应状态为爆燃。另外,采用Adams和Pack模型、CJ燃烧模型,都能够半定量的预估冲击形成距离和燃烧波后压力,为实验设计提供依据,但CJ燃烧模型的计算结果更接近于实测值。  相似文献   

7.
This paper considers the problem of counter collision of rarefaction waves of solid deuterium produced by the simultaneous incidence of two identical shock waves on free surfaces located at a certain distance from each other. The motion of deuterium is described by the equations of one-velocity two-temperature hydrodynamics. The model of electron and ion heat transfer takes into account heat-flux relaxation. The parametric properties of the problem are investigated. It is shown that with decreasing distance between the free surfaces, the maximum temperature of the plasma ceases to depend on this parameter. At moderate distances between the free surfaces, the maximum plasma temperature becomes much lower than the temperature obtained earlier in the problem for the equations of nondissipative hydrodynamics. With increasing pressures in the incident shock wave, the maximum ion temperature increases linearly, reaching a value approximately equal to 160 · 10 6 K at 500 Mbar. In the case of a shock wave with a pressure of 50 Mbar at a gap of 2 mm between the free surfaces of deuterium, the yield of fusion neutrons increases roughly by a factor of 10 compared to the yield of neutrons in the case of no gap.  相似文献   

8.
蒋国平  浣石 《爆炸与冲击》2005,25(5):472-476
根据小隔板试验的拉氏传感器测试结果,用拉氏分析方法求得了粗颗粒包复TNT炸药中的冲击波成长过程和熄灭过程的流场分布,用实验结果确定了点火增长模型中的待定参数。利用拉氏分析方法时,对未反应炸药和已反应产物的状态方程都采用JWL状态方程,使确定的参数可以直接用于有限元程序LSDYAN计算。通过拉氏分析得到了各迹线上的反应度,结果表明,冲击波在熄灭过程中仍能引起炸药的局部化学反应。  相似文献   

9.
段继 《爆炸与冲击》2021,41(9):13-23
针对含铝炸药爆轰的非理想特性,提出了含铝炸药爆轰产物膨胀的局部等熵假设,建立含铝炸药爆轰驱动的非线性特征线模型,为研究含铝炸药爆轰产物的非等熵流动和膨胀做功提供了一种新的理论分析方法。设计了5、50 μm含铝炸药和含LiF炸药驱动0.5、1 mm厚金属板实验,通过激光位移干涉仪测试金属板运动的速度历程,再通过实验结果计算得到铝粉在爆轰产物中的反应度变化规律,结合含铝炸药爆轰产物的非线性特征线模型,理论计算了含铝炸药驱动金属板的速度历程。对比理论与实验结果,理论方法能够很好地描述铝粉二次反应对炸药做功能力的贡献,同时验证了含铝炸药爆轰驱动的非线性特征线模型的正确性。  相似文献   

10.
CL-20基混合炸药的冲击起爆特征   总被引:1,自引:0,他引:1  
为了研究CL-20基混合炸药的冲击起爆特征,深入分析冲击波作用下CL-20基混合炸药的爆轰成长规律,采用炸药驱动飞片冲击起爆实验方法,对CL-20、CL-20/NTO和CL-20/FOX-7三种压装混合炸药进行了冲击起爆实验,通过嵌入在炸药内部不同位置处的锰铜压力传感器,获得了炸药内部压力的变化历程。依据实验结果标定了混合炸药的点火增长模型参数,其中,利用反应速率方程中的两个增长项,分别模拟CL-20/NTO和CL-20/FOX-7混合炸药中两种组分的反应增长过程,得到这两种混合炸药的反应速率方程参数。并通过数值模拟的方法得到了三种炸药的临界起爆阈值和POP关系。研究结果表明:三种CL-20基混合炸药中,CL-20/NTO混合炸药具有更高的临界起爆阈值,而CL-20/FOX-7混合炸药具有更长的爆轰成长距离;此外,利用此套拟合双组分混合炸药反应速率方程的方法,可以对新型配方炸药的冲击起爆过程进行预测性计算  相似文献   

11.
为了探讨非均质炸药在冲击作用下的细观响应特性,分别对以HMX为基的PBX塑料粘接炸药和含孔洞的HMX炸药在活塞推动下热点的形成过程进行了3维离散元模拟(未考虑化学反应)。结果表明,塑料粘接炸药中的热点集中在炸药晶体与粘结剂的结合部,晶体温升低于粘结剂,且晶体边界温升高于内部。对于含孔洞炸药,热点温度与孔洞的尺寸和形状有关,大孔洞塌缩形成的热点温度高于小孔洞塌缩形成的热点温度,球形孔洞塌缩形成的热点温度高于立方体孔洞塌缩得到的热点温度。  相似文献   

12.
为了对一种TATB基非均质炸药的预冲击起爆现象展开数值模拟研究,将基于冲击温度及压力的AWSD反应率模型耦合进二维结构网格拉氏弹塑性流体力学程序。利用炸药及其产物的冲击雨贡纽实验数据校验了未反应炸药及产物的状态方程参数,通过一维冲击起爆的模拟,标定了反应速率模型参数。模拟了炸药在弱冲击0.45 μs后跟随的强冲击波的二次冲击实验,结果表明,受预压缩区域的炸药反应变慢,到爆轰距离增长了约1 mm,与该炸药二次冲击实验减敏现象相符。模拟拐角效应时,爆轰波经过拐角后,在拐角附近形成稳定的不起爆区域,与主要成分相同的LX-17炸药的拐角效应实验的死区特征相符。数值模拟结果表明,基于冲击温度及压力的AWSD反应率模型可以较好地模拟非均质炸药预冲击减敏问题。  相似文献   

13.
细观尺度下塑料粘结炸药热点生成的初步模拟   总被引:1,自引:0,他引:1  
采用有限元与离散元相结合的方法模拟了塑料粘结炸药在冲击载荷下热点生成的细观过程,计算中炸药晶体采用有限元法,粘结剂采用离散元法。结果表明热点多集中在晶体间变形较大的粘结剂部分,粘结剂与晶体间冲击波的相互作用是热点生成的重要原因;HMX晶体温度明显低于粘结剂,且晶体边界温度高于内部温度。  相似文献   

14.
针对水中爆炸冲击因子在近场范围内的一些不足,利用水中爆炸冲击波的最大峰值压力与正相冲量的乘积推导了冲击因子的表达式。通过水中爆炸实验,得到了几种典型炸药的冲击波参数及其相似方程。利用该公式计算了水中爆炸冲击因子及其装药指数,并与基于平面波的水下爆炸冲击因子进行了对比。结果表明:冲击因子中的装药指数n=0.5不仅适合所有以TNT为基本组分的炸药,也适合于RDX、HMX基的炸药。在修正冲击波形状的基础上,由峰值压力与冲量的乘积推导的冲击因子计算公式,从冲击波的毁伤作用的角度表述了水中爆炸冲击因子的物理意义,在计算近场冲击因子时具有更高的准确性。  相似文献   

15.
为实现兼具高能量输出与低易损性两方面的要求,研发了一种以2,4-二硝基苯甲醚(DNAN)为载体的复合炸药DN-1.用爆炸压力测试系统研究了DN-1炸药的能量输出特性,并用隔板实验测试了DN-1的冲击波感度.结果表明,DN-1炸药的冲击波超压峰值是TNT的1.6倍,冲击波比能是TNT的1.67倍,冲击波感度L50=7.64mm.其综合性能优于TNT等传统炸药.  相似文献   

16.
Abstract. This paper reports on the characteristics of a compact vertical diaphragmless shock tube, which was constructed and tested in the Shock Wave Research Center to study experimentally the behavior of toroidal shock waves. It is 1.15 m in height and has a self-sustained co-axial vertical structure consisting of a 100 mm i.d. outer tube and an 80 mm o.d. inner tube. To create a ring shaped shock wave between the inner and outer tubes, a rubber sheet is inserted to separate a high pressure driver gas from a test gas, which is bulged with auxiliary high pressure helium from the behind. When the rubber membrane is contracted by the sudden release of the auxiliary gas so as to break the seal, shock waves are formed. Special design features of the shock tube are described and their role in producing repeatable shock waves is discussed. Its special opening characteristics make possible the production of annular shaped shock waves that are unlikely met with a conventional tube that uses rupturing diaphragms. Performance of the shock tube is evaluated in terms of the shock wave Mach numbers and the measured flow properties. It eventually showed a higher degree of repeatability and the scatter in the shock wave Mach numbers Ms was found to be 0.2% for Ms ranging from 1.1 to 1.8. The shock wave Mach number so far measured agreed very well with the simple shock tube theory. Received 3 February 1999 / Accepted 6 April 2000  相似文献   

17.
余弦分布载荷的化爆加载技术是高空核爆软X射线辐照下空间结构动态响应考核的主要手段。为适应新型空间飞行器结构考核的复杂构型、高同步性和低比冲量载荷设计要求,提出了一种用十字形超细药条离散群同步起爆实现超低比冲量加载的方法。实验结果验证表明:(1)所制作的十字形超细药条,最小截面尺寸为0.33 mm×0.5 mm,传爆性能稳定,并可通过直径0.5 mm的柔爆索直接起爆;(2)与相同布药密度的条状布药方式相比,布药空间均匀度提高了76.7%;(3)所采用的21点柔爆索同步起爆网络,起爆率达100%,起爆不同步性小于1μs。进一步建立了离散片炸药加载数值计算模型,分析了离散片炸药群同步起爆加载的比冲量空间分布和匀化规律,将匀化过程分为扩散段、叠加段和均匀段3个阶段;对比了方形、十字形、短条形3种形状药片阵列的比冲量演化过程,发现十字形药片所需匀化距离最短、均匀度最高,仅需约0.8倍布药间距即可使比冲量均匀度偏差降至10%以下。  相似文献   

18.
Interaction of a shock wave with a system of motionless or relaxing particles is numerically simulated. Regimes of the gas flow around these particles are described, and the influence of the initial parameters of the examined phenomenon on the flow pattern is analyzed. The drag coefficient of particles is calculated as a function of the Mach number behind the shock wave at a fixed Reynolds number. The dynamics of heat exchange for particles of different sizes (10 μm–1 mm) is determined, and the laws of thermal relaxation after passing of a shock wave over the system of particles are found. The times of thermal and velocity relaxation of particles are estimated as functions of the Reynolds number, and the predicted relaxation time is compared with the corresponding empirical dependences.  相似文献   

19.
Non-equilibrium radiation measurements behind strong shock wave for simulated Martian atmosphere are presented in this paper. The shock wave is established in a hydrogen oxygen combustion driven shock tube. Timeresolved spectra of the Δv = 0 sequence of the B 2Σ+X 2Σ+ electronic transition of CN have been observed through optical emission spectroscopy (OES). A new method, which is based on fitting high resolution spectrum for rotational and vibrational temperatures measurement, is proposed to diagnose temperature distribution behind the shock wave. It is estimated that the current scheme has the maximum deviation less than 8% (1σ) for vibrational temperature measurement through detailed analysis of the influence of the uncertainties of spectroscopic constants and spectral resolution. Radiation structure of the shock layer, including induction, relaxation and equilibrium process, and corresponding rotational and vibrational temperatures are obtained through time gating OES diagnostics with sub-microsecond temporal resolution. The present extensive results will strongly benefit the reaction rate estimation and computational fluid dynamics (CFD) code validation in high enthalpy Mars reentry chemistry.  相似文献   

20.
An experimental study of evaporation heat transfer coefficients for single circular small tubes was conducted for the flow of C3H8, NH3, and CO2 under various flow conditions. The test matrix encompasses the entire quality range from 0.0 to 1.0, mass fluxes from 50 to 600 kg m−2 s−1, heat fluxes from 5 to 70 kW m−2, and saturation temperatures from 0 to 10 °C. The test section was made of circular stainless steel tubes with inner diameters of 1.5 mm and 3.0 mm, and a length of 2000 mm in a horizontal orientation. The test section was uniformly heated by applying electric power directly to the tubes. The effects of mass flux, heat flux, saturation temperature, and inner tube diameter on the heat transfer coefficient are reported. Among the working refrigerants considered in this study, CO2 has the highest heat transfer coefficient. Laminar flow was observed in the evaporative small tubes, and was considered in the modification of boiling heat transfer coefficients and pressure drop correlations.  相似文献   

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