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11.
基于ANSYS 7.0/LS-DYNA程序,对3 m×3 m四边简支、厚度为0.025 m、中心开有0.3 m×0.3 m方孔的弹性板,在下三角爆炸载荷作用下的应力响应进行了分析;利用能量密度时间分布函数(TDFED)确定了动应力集中因子,重点讨论了时间步长和采样时间间隔对计算结果的影响。  相似文献   
12.
An evolutionary method for optimization of plate buckling resistance   总被引:9,自引:0,他引:9  
Optimization of plate buckling resistance is very complicated, because the in-plane stress resultants in the prebuckled state of a plate are functions of thickness distribution. This paper discusses the problem of finding the optimum thickness distribution of isotropic plate structures, with a given volume and layout, that would maximise the buckling load. A simple numerical method using the finite-element analysis is presented to obtain the optimum thickness distribution. Optimum designs of compression-loaded rectangular plates with different boundary conditions and plate aspect ratios are obtained by using the proposed method. Optimum designs from earlier studies and the methods of buckling analysis used to attain these results are discussed and compared with the designs from the proposed method. This paper also examines the reliability of the optimality criterion generally used for plate buckling optimization, which is based on the uniform strain energy density.  相似文献   
13.
The present paper has made a dynamic and diagnostic study of the process of explosive deepening of an extratropical cyclone over North China on April 25-26, 1983, in order to gain an insight into the physical mechanism of explosive development of cyclone over land. It turns out that this cyclone occurred in the strong baroclinic zone, and the vorticity and thermal advection triggered the initial development of the cyclone. Subsequently, as the rainfall increased, the effect of condensational heating became more and more important. During the time period of rapid intensification (from 1200GMT 25 to 0000GMT 26 April, 1983, the central surface pressure fell down from 998. 2 to 988. 3 hPa), the peak of diabatic heating profile continuously descended, leading to a rapid increase in heating amount in the lower troposphere. This condition is favorable to the explosive development of rotational circulation or vortex. The numerical simulations have further demonstrated the importance of the lowering of heating p  相似文献   
14.
This paper describes some thermal analysis experiments conducted on high explosive samples. These employ differential scanning calorimetry to monitor thermal effects at elevated temperatures (around 200 °C) and heat conduction calorimetry to record thermal effects at much lower temperatures (below 100 °C).The work shows that, due to the generally high thermal stability of many high explosive compositions, heat generation rates are very low, if detectable at all, at normal storage temperatures, even when using a very sensitive instrument. The sensitivity and reproducibility of this technique has been investigated in detail by Wilker et al. [S. Wilker, U. Ticmanis, G. Pantel, Detailed investigation of sensitivity and reproducibility of heat flow calorimetry, in: Proceedings of the 11th Symposium on Chemical Problems Connected with the Stability of Explosives, Sweden, 1998] and shown to be capable of recording heat generation rates of less than a microwatt. This allows continuous measurement of decomposition processes in nitrate ester based propellants at temperatures as low as 40 °C. However, the measurement of very low levels of heat generation is difficult, time consuming and therefore expensive. If the assumption is made that the life limiting process is invariably the slow decomposition of the energetic component, this will frequently lead to very long service lifetime predictions.A number of possible complications are identified. Firstly, due to its low detection threshold, a heat conduction calorimeter may detect other reactions which will not lead to failure, but which may still dominate the heat flow signal. Secondly, the true failure process may generate little energy and be overlooked. In view of these considerations, at present it seems unwise to rely on heat conduction microcalorimetry as the only tool for the assessment of the life of high explosive energetic systems.Based on examples of life terminating processes in high explosives during storage and use, it is clear that decomposition of the energetic material is not invariably the cause of system failure. It is also by no means the only reaction that may take place in, and be observed by, a heat conduction calorimeter.  相似文献   
15.
Some explosives are stable molecules with large energy barriers to chemical reaction, and in shock or impact initiation, a sizable amount of phonon energy must be converted to the molecular internal higher vibrations by multiphonon up pumping. To investigate the relationship between impact sensitivities and energy transfer rates, the number of doorway modes of explosive molecules is estimated by a simple theory in which the rate is proportional to the number of normal mode vibrations. We evaluated frequencies of normal mode vibrations of 13 explosive molecules which are CHNO nitramine-contained and have not been analyzed previously. The number of doorway modes in the regions of 200–700 cm−1 was evaluated by the direct counting method. For more clear investigation of the relationship we have classified these 13 nitramine explosive molecules, by the number of nitramine group they contained, into two groups. There are eight molecules that contained one nitramine group and five molecules that contained poly-nitramine groups. It is found that the number of doorway modes shows a linearly correlation to the impact sensitivities derived from drop hammer tests. This result is in agreement with that of several previous works. Besides, it is also noted in our study that in those nitramine explosives molecules with similar molecular structure (similar number nitramine group they contained) and similar molecular weight, the correlation between the sensitivity and the number of doorway modes is higher. We found that the vibrational frequency of ω corresponds to nitro group motions of every molecule is contributed to the number of doorway modes in the regions of 200–700 cm−1.  相似文献   
16.
针对土中钢板-钢筋混凝土竖井结构在常规武器爆炸作用下塑性铰线形成前的动力响应问题,综合采用模型试验、有限元数值仿真方法,分析了竖井结构中远距离爆炸作用下的变形过程及特征,确定了以量纲一环向相对位移α1作为结构变形程度的判据。推导了土中竖井结构在常规武器爆炸作用下的动力响应理论解,分析了按照弹性理论计算的量纲一环向相对位移α1e和有限元计算得到的弹塑性量纲一环向相对位移α1p的关系及其比值α1p1e的影响因素,构建了基于弹性解的弹塑性量纲一环向相对位移α1p工程算法。提出了以量纲一环向相对位移α1作为结构变形程度的判据,并确定了结构闭环塑性铰线出现、破坏模式改变的阈值为α1=3%;对比了理论与数值模拟计算结果,验证了提出的理论计算方法可以较好地计算钢板-混凝土竖井组合结构在常规武器爆炸作用下弹性阶段的动力响应;结构长径比、结构缩尺比例、装药量大小对α1p1e随α<...  相似文献   
17.
针对黏土易与水结合,孔隙溶液环境变化对黏土动力特性有较大影响的问题,使用GDS真/动三轴仪对黏土试样进行模拟交通循环荷载下的分级加载试验,研究不同浓度NaCl孔隙溶液、振动频率对土体应力-应变关系和动弹性模量的影响,分析骨干曲线及弹性模量的发展规律,并结合电镜扫描,分析NaCl溶液浓度和振动频率改变前后试样的孔隙分布规律,得到微观孔径与动力特性的关系。结果表明,随着NaCl溶液浓度和振动频率的升高,应力-应变曲线和动弹性模量曲线呈上移趋势;阻尼比-动应变曲线随振动频率的增加而上升,随NaCl溶液浓度的增加而下降;NaCl溶液浓度升高,水化反应产生的胶体增多,微填充作用可有效减少小孔隙,振动频率增加则使得片状颗粒间距被压缩,层状结构减少,土体更加密实,有效减少大孔隙。研究得出的含NaCl溶液黏土受孔隙溶液浓度与振动频率变化的影响规律,可为研究其他环境下黏土的强度变化提供参考。  相似文献   
18.
突风一直以来都是危及飞行安全的重要气象要素之一,造成国民经济和人民生命财产的损失。利用常规观测资料、ADWR-X多普勒气象雷达资料和ERA5逐小时再分析资料,对四川盆地西部一次爆发性大风过程中风场的精细化特征、成因及对飞行的影响进行诊断和模拟研究,结果表明:此次大风过程风速增长快,爆发性强。地面风速自午后开始出现4次波动,且每一次波动期间风速峰值呈增加趋势,时间呈缩短趋势。由于第4次波动风速呈爆发性增加,最大瞬时风达到了16.1 m/s,地面风速脉动值超过5 m/s,致使跑道区域内流场的不稳定性增加,起降跑道侧风值超过了中小型飞行器的起降标准。高空动量下传对本次大风过程中风速的爆发性增加起主导作用。中层强偏南气流与低层偏北急流配和,中层辐合以及低层辐散下沉的垂直结构使得低层下沉气流异常强劲,将900~850 hPa的大风核快速向地面传导。通过天气研究与预报(weather research and forecasting, WRF)模式四重嵌套对本次过程进行模拟,表明WRF对盆地西部冷空气补充南下引起的在风速演变趋势、风速最大值和大风影响时段的风向有较好的模拟能力,对飞行起飞和着陆有一...  相似文献   
19.
炸药破碎岩石能量利用率的研究   总被引:1,自引:0,他引:1  
以爆炸动力学理论和岩石断裂理论为基础,分析了岩石破中的能量平衡问题,并给出了炸药破碎岩石能量利用率的计算方法。理论分析表明,平均爆破块度随岩石的单位表面能的增加而增加;计算结果表明,炸药破碎岩石能量利用率仅占炸药总能量的百分之十左右。  相似文献   
20.
采用两种颗粒尺寸相差悬珠的高速钢粉末进行爆炸烧结机制的研究,发现了明显的“颗粒效应”,烧结过程首先在小颗粒变形量最大的尖角处发生熔化,在冲击波作用下使液体流激烈运动,加速了颗粒的熔化,最后使颗粒相互粘结在一起,达到烧结的目的。  相似文献   
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