首页> 外文会议>1st World Conference on Explosives amp; Blasting Technique, 1st, Sep 6-8, 2000, Munich/Germany >The influence of cartridge length and tamping practices on the efficiency of packaged emulsion explosives in development blasting
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The influence of cartridge length and tamping practices on the efficiency of packaged emulsion explosives in development blasting

机译:弹药筒长度和捣固方式对乳化炸药包装炸药爆破效率的影响

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The underground mining and civil construction industry requires the design, drilling, blasting, and excavation of many tens of thousands of metres of tunnel development per year. The majority of this tunnel driving is still carried out using pneumatically loaded bulk ANFO, with the use of cartridge emulsion explosives in the bottom row of 'lifter' holes being widespread. Occasionally however, the presence of running water or excessive quantities of mine water and humidity render the use of prilled AN based explosives impractical due to product loss through dissolution in water. Under these circumstances, the operator must use water-resistant products such as bulk or cartridge emulsions. The latter choice is to date more common due to ease of supply and the low tech nature of the required handling. Many operators report, however, that when cartridge emulsion products are used exclusively in wet faces, the incidence of unbroken hole length (butts) increases. This tendency has been observed independently of explosive manufacturer and product. Initially it was postulated that such a reduction in blast/explosive performance was due to dynamic desensitisation (dead pressing) of the solid sensitised emulsion explosive, particularly in the burn cut region of the round where inter-hole distances may fall below 25 centimetres. However vibration monitoring studies and direct observation of blast results calls into question this hypothesis. In its place, it has been suggested that inadequate coupling of the explosive cartridge with the borehole wall may reduce the explosive energy/rock transfer to such a degree that rock fragmentation is inhibited and inadequate round performance results. In the case that this were so, it was further postulated that any change in explosive characteristics/charging techniques which were to bring about an improvement in this coupling, should consequently cause an improvement in tunnel blast performance as measured by linear advance per drilled and charged metre. The following paper describes a series of experimental measurements designed to quantify the impact of cartridge length and tamping practices on the degree of explosive/rock coupling. The resultant coupling factors are shown to have a marked effect on anticipated explosive performance in the development blasting application.
机译:地下采矿和民用建筑行业每年需要设计,钻孔,爆破和开挖数万米长的隧道。大部分的隧道掘进仍然使用气动装载的散装ANFO进行,在“起重”孔底行普遍使用弹药乳剂​​炸药。然而,由于溶解在水中的产品损失,偶尔会出现自来水或过量的矿井水和潮湿的环境,因此无法使用人造AN炸药。在这种情况下,操作员必须使用防水产品,例如散装或盒装乳液。迄今为止,由于供应容易和所需处理的技术含量低,后一种选择更为普遍。但是,许多操作员报告说,当弹药筒乳液产品仅用于潮湿面时,不间断孔长(对接)的发生率会增加。观察到这种趋势与炸药制造商和产品无关。最初假定爆炸/爆炸性能的降低是由于固体敏化的乳剂炸药的动态脱敏(死压)所致,特别是在圆孔的燃烧切割区域中,其中孔间距离可能低于25厘米。但是,振动监测研究和爆炸结果的直接观察使这一假设受到质疑。取而代之的是,炸药筒与井眼壁的不充分耦合可能将炸药能量/岩石传输降低到一定程度,从而抑制了岩石碎裂并导致了不充分的弹药性能。在这种情况下,进一步假设,炸药特性/装药技术的任何变化若要改善这种耦合,应导致隧道爆破性能的改善,如通过每钻和装料的线性提前量来衡量仪表。以下论文描述了一系列实验测量,旨在量化弹头长度和夯实实践对炸药/岩石耦合程度的影响。结果表明,耦合因素对开发爆破应用中的预期炸药性能具有显着影响。

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