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explosive相关的网络例句

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Using Field single ignition experiments of the four unconfined volume dispersion and small dosage solid FAE and TNT bombs experiments, we got the peak overpressures of solid FAE at different distances. Compared with TNT, The overpressure of FAE is 1.14~1.6 times higher than that of the TNT. Based on the theory of the air shock wave overpressure, the FAE relativity TNT mass is evaluated. At the edge of the explosive field, the number is 3.88. Pictures of high speed photography indicate that the duration and the most effect area of the FAE and TNT. Compared with TNT, obviously the FAE has more advantages. And, based on the theory of the critical concentration of dust explosion, the radius of dust explosive zone is evaluated. The phenomenon that the overpressure decays rapidly with distance is analyzed. It is suggested that the explosive temperature should be increased as the main approach to improve the FAE explosive capability in the condition when the over pressure is invariable.

通过四组无约束固态燃料空气炸药装置与等质量的TNT在野外开放空间的一次起爆对比实验,测得了不同配方组份FAE装置在不同距离的爆炸超压分布,FAE装置峰值超压比相同距离的TNT高1.14-1.6倍;并运用空气冲击波峰值超压公式计算出了FAE的等效爆炸TNT当量随距离的变化关系,在爆炸场边缘区,FAE装置爆炸当量达到了3.88倍TNT当量;通过高速摄影的图片得到了爆炸产生火球的持续时间和最大作用范围,与等质量TNT爆炸火球相比,FAE的优势明显;运用粉尘爆炸下极限浓度估算了云雾爆轰区半径,并分析了测量到的固态FAE爆炸场的压力分布单调衰减的原因;建议在保持超压不变的情况下,把提高爆温作为提高FAE爆炸性能的主要途径。

Survival: Your Immolation Trap, Explosive Trap and Explosive Shot have a 5/10/15% to stun targets for 2 sec when they deal damage, and increases the critical strike chance of your Explosive Shot and Explosive Trap by 5/10/15%.

新天赋T.N.T。你的爆炸陷阱,爆炸射击和献祭陷阱造成伤害时有5/10/15的几率使目标晕迷2秒,同时增加你爆炸射击和爆炸陷阱的爆率5/10/15%(貌似没有献祭陷阱出爆的消息了

Its total underwater explosive energy is 184% TNT equivalent, explosion heat is 7473J/g, it takes the lead of domestic TNT base underwater explosive, its safety conrrespond to RS211 explosive, its overall performance is good, it suits to filling explosive of underwater ordance warhead.

该炸药水下爆炸总能量为184%TNT当量,爆热为7437J/g,达到了当前国内梯恩梯基水下炸药的领先水平,其安全性与RS211炸药相当,综合性能优良,适用于水中兵器战斗部的主装药。

Results show that detonation velocity of compound explosive declines from 3100 m·s-1 to 2100 m·s-1 when mass ratio of attenuant rises from 20% to 60%(explosive loading thickness is 30 mm ),and the density of compound explosive rises from 0.615 g·cm-3 to 0.76 g·cm-3 when mass ratio of attenuant rises from 20% to 50%.

结果显示,当稀释剂含量从20%增加到60%时,混合炸药的爆速(药厚:30 mm)由3100 m·s-1降到2100 m·s-1,炸药的密度也由0.615 g·cm-3增加到0.76 g·cm-3(稀释剂含量: 20%~50%);稀释剂含量为50%的混合炸药,当药厚在25~50 mm范围内时,爆速保持在2300~2360 m·s-1之间。

Analyzed the condition of coal-mine explosive malfunction in China, and researched the passivation mechanism of coal-mining emulsion explosive and delay electric blasting cap, and discussed the avenue of researching the permitted emulsion explosive with the function of shock resistance.

分析了我国煤矿的爆破异常情况,研究了煤矿许用乳化炸药和毫秒延期电雷管的动压特性,对爆破异常机理进行了较全面的阐述,并通过耐压型乳化炸药的研制探讨了预防和减少爆破异常现象的技术途径。

On the basis of the introduction and analysis of the history, current situation and development of explosive synthesis of superhard materials, the mechanism and technology of diamond and dense boron nitride synthesis by shock compression and some explosive mechanics problem in explosive synthesis have been studied systematically in this research.

本文在对超硬材料爆炸合成研究的历史、现状及发展趋势进行评介、总结与分析的基础上,以金刚石、高密相氮化硼为研究对象,对爆炸合成理论与技术,以及爆炸合成中所涉及的一些爆炸力学理论问题进行了较为系统的研究。其主要研究成果如下

Some Thinking of Quantitative Study on Interaction between Explosive Charge and Rock: Because of the non-linear property and the variety of rock, the instantaneity of chemical action of explosive, the complexity of the dynamic process of the interaction between explosive and rock and the limitations of the observation measurements, the former research results mainly focused on the explanation and description to the apparent phenomena, and difficult to obtain the accurate and quantitative answers.

爆炸荷载与岩体相互作用定量化研究的几点思考:由于岩体自身的非均质性及各向异性和地质构造的多样性、炸药爆炸本身的化学反应的多变性和瞬时性、炸药与岩体相互作用的复杂性,加之爆破测试方法和仪器的局限性,使得以往的研究多沿用经典理论集中于表面现象的描述与解释,难以获得完整的、准确的和定量的解答,必须从一个全新的角度研究探索爆炸荷载与岩体相互作用的本质。

It can be applied to the recycles of AT explosive,emulsion explosive and powdery emulsion explosive.

在企业生产和社会治安管理中,经常会产生和回收到一些不合格的废旧品。

In order to investigate the hot destruction of explosive products,the temperature response test of TNT explosive products,including explosive experiments in free field response and the half-airtight space,is carried out by WRe5/26 thermocouple according to Seebeck effect and heat transfer theory principle.

为研究炸药爆炸产物的热毁伤作用,根据塞贝克效应和传热学原理,利用WRe5/26热电偶对TNT爆炸产物进行了温度响应测试,包括自由场实验和半密闭空间实验,获得了相应的温度曲线,分析了影响热电偶响应的因素。

With the theoretical model of spherical grain dynamics of sparse two-phase flow in single dimension, computing formulas of velocity′s attenuation and scattering distance were built for explosive residue grains in horizontal. Then, a simplified theoretical model on distribution of explosive residue was put forward on the basis of a spherical space with radius equalling to maximum horizontal scattering distance of explosive residue grains with certain diameter.

为了对残留物颗粒的飞散运动及分布规律进行理论分析,利用球形颗粒一维稀疏二相流动力学模型,研究得到炸药残留物颗粒的速度衰减及水平飞散距离计算公式;在此基础上,建立了以某粒径残留物颗粒水平运动极限距离为半径的炸药残留物颗粒球面空间分布简化理论模型。

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Some of them were ligated to the plasmid vector pCR 2.1 andsequenced,respectively.

将所获DNA片段克隆到pCR2.1载体进行测序,并与基因组数据库进行同源性比较。

Thinking since Google owns Blogger, I would be able to escalate this issue to the support team.

自谷歌的思考拥有Blogger的,我将能够缓解这一问题的支持团队。

Besides, I also surely know that just professional skills are not enough for being a good doctor. Hence, I attend the basic scientific research of preclinical medical college, the epidemiological investigation of public health college and the clinical scientific research of clinic college,from which I possess of some experimental skill such as CELL CULTER , PCR , Western blotting and so on.Above all,these experience cultivate my ability of designing the experiment and enforcing the experiment,which help me complete my research.

做为一名七年制的学生,学校对我们的要求是&临床技能和科研能力同等重要&因此在进行临床技能培养的同时,我先后参加过我校基础医学院的基础科研实践、公共卫生学院的流行病学调查实习,及临床学院的临床科研实践,让我熟练掌握了细胞培养、 PCR 、 Western blotting 等分子生物学技术;最重要的是,这些实践经验培养了我独立完成从研究课题的设计到实验方案的实施能力,帮助我顺利的完成了我在硕士期间的科研项目。