首页> 外文会议>New development on engineering blasting >Explosive Energy Distribution in Explosive Column Case Study of Some Indian Mines
【24h】

Explosive Energy Distribution in Explosive Column Case Study of Some Indian Mines

机译:印度一些矿井爆炸柱中的爆炸能量分布

获取原文
获取原文并翻译 | 示例

摘要

Air-deck techniques had revolutionized blasting techniques in last few decades globally.This technique made its application in smooth wall blasting technique,and over the years had been adopted for main production blasting also.Additionally this has been an effective method for stabilizing pit walls,explosives charge distribution as a measure to ensure better fragmentation etc.Chemically activated gas bags,used in conventional air-deck had limited application and restricted usage in highly sensitive areas due to high cost component as well as limited flexibility.While researchers continued with its large number of applications in surface mine blasting,its use was site specific only.Authors in this paper have studied in depth the mechanism of air-gap technique vis-a-vis explosive energy distribution in an explosive column of surface mine blasting.With "energy factor" as a scientific tool to ensure proper level of explosive energy required for fragmentation,displacement etc,was adopted for placement of air-gap in the explosive column.To make the concept user friendly and cost-effective empty plastic bottles were selected for placing air-gap.A number of field trials were undertaken before switching over to its application in production blasting.It is currently in use at some limestone,and one uranium mines in India.At the Tata Steel Iron Ore Mine in Joda,Odisha,India,since last April,this is being in use on regular basis in dry holes.The Joda East Iron Ore,is having very hard to soft strata in its mining excavation plan,and accordingly the use of plastic bottles have been made site specific.After detailed techno-economic evaluation,blast monitoring,the authors could implement this system on regular basis since June 2012.Till date over 35000 used plastic bottles of 70 mm dia.and 280 mm length have been used in most production blasts.An attempt has been made in this paper to present the findings of the Joda East Iron Ore Mines (India) aided by photographs and blast details,in addition to the savings obtained vis-a-vis improvement in productivity,powder factor,reduction in generation of over size boulders,control of vibration level etc.explosive column and also in the sub-grade region of any blast hole.
机译:空气甲板技术在过去的几十年中在全球范围内掀起了爆破技术的革命。这项技术在光滑壁爆破技术中得到了应用,并且多年来也被用于主要生产爆破。此外,这是稳定坑壁的有效方法,炸药的装药分布是确保更好地破碎的一种措施。由于成本高且灵活性有限,在传统机舱中使用的化学活化气袋的应用受到限制,并且在高敏感区域的使用受到限制。在地表爆破中有许多应用,其用途仅针对特定地点。本文作者深入研究了气隙技术相对于地表爆破爆炸柱中爆炸能量分布的机理。为确保破碎,移位等所需的爆炸能量处于适当水平,科学因素为了使这一概念易于使用且具有成本效益,我们选择了空塑料瓶来放置气隙,在将其应用于生产爆破之前进行了许多现场试验。目前在印度的一些石灰岩和一个铀矿中使用。自去年四月以来,在印度奥里萨邦乔达的塔塔钢铁矿中,该矿定期在干燥孔中使用。乔达东铁矿由于其采矿开挖计划中的地层很难软化,因此已针对具体地点使用了塑料瓶。经过详细的技术经济评估,爆炸监测,作者可以自2012年6月起定期实施该系统。迄今为止,在大多数生产爆炸中使用了35000个直径70毫米,长度280毫米的废塑料瓶。本文尝试通过照片和照片来介绍印度乔达东铁矿的发现。高炉德泰此外,除了在生产率,粉末系数,减少大块巨石的产生,控制振动水平等爆炸柱等方面以及在任何爆破孔的地基区域中获得的节省之外,还可以节省成本。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号