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    Studies on New Explosives Insensitive to Impact
    一类对撞击不敏感的新型炸药
    The synthesis of a novel explosive-N,N′-bis(3,5-dichloro-2,4,6-trinitrophenyl)-3,4-diaminofurazan(BCNDAF) is described in detail.
    介绍了新型炸药N,N′-双(3,5-二氯-2,4,6-三硝基苯基)-3,4-二氨基呋咱的合成.
    Analysis on Experimental Result of New Typical Dynamite for Control Icicle to Explode Ice
    新型炸药防凌爆冰试验效果分析
    The work of this paper provide a sound basis for design and synthesize new high energetic materials that correspond to practice purposes through controlling the factor that affect impact sensitivity at the molecular level.
    在同分异构体中,由于硝基与非硝基取代基的相对位置不同,使得两类取代基之间的相互作用强弱不同,从而使同分异构体的撞击感度产生差异。 以上研究对于在分子水平上,通过控制影响炸药感度的因素,设计并合成符合实际需要的新型炸药分子具有一定的借鉴意义。
    It's manifested to be an effective method to search new high energetic material through the design of analogues of LLM-105. Currently, the quantum chemistry ab initio method being chosen to design new explosives isreferred gradually by more and more researchers.
    由此表明通过设计LLM-105的类似物,对于找寻新的高能化合物是有效的途径。 选用量子化学从头计算的方法来进行新型炸药物质的设计,结果已越来越受到人们的青睐。
    Conventional dynamite source is not suitable to use in paralic zone, so we developed new dynamite sources, such as lag-stacking vertical source, common-center focusing source, ground rolls source, shear wave source, and so on.
    针对滩浅海地震勘探工作中,常规炸药震源激发存在的问题,开展新型炸药震源技术的研究,形成了以垂直延迟叠加震源、共心聚能震源、平面波震源和横波震源为代表的新型炸药震源。
    Blasting technology has made rapid progress since 1956.In recent year it has be- en approaching world advanced levels in several fields:multiple-short-delay blasting, new explosives and large scale chamber blast etc.
    1956年以后,露天矿爆破技术得到迅速改进。 最近几年来,在微差爆破、新型炸药和硐室大爆破技术等方面,已经接近了国外先进水平。
    In order to prevent the autoignition and autoexplosion of explosive when being used in mining of high-sulfur and high-temperature ore, the inhibitor is ordinary to the ordinary explosive to form explosive of anti-igniton property and the new explosive thus obtained is suitable for blasting operation in the ore mining.
    根据高硫矿床开采中炸药自燃自爆机理,采用在普通炸药中加抑制剂的方法,研制成防自爆炸药,为高硫矿床开采爆破工程提供了一种新型炸药
    Field application in the underground mine also shows that the pneumatic hole-charging of the new explosive is convenient,reliable and effective compared to early handhole-charging method,while charging quality is improved and blasting efficiency is increased from 60%-70% to 90%above.
    与手工装填方式相比,压气装填新型炸药质量明显改善,爆破效率由原来的60%~70%提高到90%以上。
    This bring forward a novel method for estimating the detonation velocity when designing new explosives.
    该方法为新型炸药分子设计时正确估算其爆速提供了一条新的途径。
    In the light of the change of the rock mass structure and blasting conditions and the application of new explosives in Lanjian Iron Mine's pit,tests were carried out on charges loading structure,blasting hole spacing pattern parameters and blasting methods. The optimized rational blasting parameters greatly improved the blasting efficiency,which led to good economical benefits.
    针对兰尖铁矿采场岩体结构、爆破条件等的变化及新型炸药的使用 ,开展了装药结构、爆破孔网参数及爆破方法试验 ,优化确定了合理的爆破参数 ,使爆破效率大幅提高 ,取得了良好的经济效益
    The thermochemical chemistry properties of a new type of industrial explosive were calcu-lated theoretically and compared with NO. 2 rock AN-TNT expeosive and the function of TNT in it was discussed.
    为了评定对某生产厂家生产的一种新型炸药的爆炸性质 ,对其热化学性能进行了理论计算 ,并与 2号岩石铵梯炸药的热化学性能进行对比 ,对TNT在其中的作用进行了讨论 .
    A kind of new explosives, insensitive to impact and fire, is introduced.
    介绍一类对撞击、火烧等不敏感的新型炸药
    The combustion temperature is one of the important parameters to express flame combustion and explosion characteristics. It will effectively guide the design and manufacture of new model explosives, industrial explosive materials, and weapons.
    燃烧温度是表征燃烧和爆炸行为和特征的重要参数之一,它将有效地指导新型炸药,火工品,爆破器材和新型武器的设计与制造。
 

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