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The relations between energy input and block and particle size during rock fragmentation.

机译:碎石过程中能量输入与块体之间的关系以及颗粒大小。

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摘要

Rock fragmentation can occur by crushing, relative radial motion, release of load, spalling, gas extension of strain wave-induced and pre-existing fractures, shear and in-flight collisions. The relative importance of each mechanism, as yet undefined, depends upon explosive properties, rock properties, blast geometry and initiation sequence. The effect of explosive energy and presence of natural fractures on fragmentation are studied.;Design of blasts in a copper porphyry ore body were altered to give powder factors between 0.26 and 0.71 kg/m;The specific surface area of blasted rock was measured by photo-analysis and correlated closely with the explosive energy and rock type. The explosive energy is calculated in terms of total energy per unit volume of blasted rock, from the powder factor.;The results clearly show the effect of natural block sizes on fragmentation. It is shown that most of useful explosive energy goes into opening the pre-existing fractures. Almost the entire product size is controlled by the natural fractures at energy levels below 2 MJ/m;The blasted rock is also analyzed using the scale invariant methods as an alternative to the conventional size distribution analysis. The fractal dimension of each blast at different energy level and rock class is determined. The variations of fractal dimensions depends on the energy levels and the rock conditions. At higher energy levels higher fractal dimensions are obtained and more fractured rock showed higher fractal dimension at the same energy level. The fractal concept can be a useful tool to describe rock masses and fragmenting behavior of different rocks.
机译:岩石碎裂可能是由于压碎,相对径向运动,载荷释放,剥落,应变波引起的和先前存在的裂缝的气体扩展,剪切和飞行中的碰撞而发生的。每种机制的相对重要性(尚未定义)取决于炸药性质,岩石性质,爆炸形状和起爆顺序。研究了爆炸能量和天然裂缝的存在对碎裂的影响。;改变了铜斑岩矿体中的爆炸设计,使粉末系数在0.26至0.71 kg / m之间;通过照片测量了爆破岩石的比表面积分析并与爆炸能和岩石类型密切相关。炸药的能量是根据粉末系数从爆破岩石的每单位体积的总能量计算得出的;结果清楚地表明了自然块大小对破碎的影响。结果表明,大多数有用的爆炸能量进入了先前存在的裂缝中。在能量水平低于2 MJ / m的情况下,几乎所有产品的尺寸都由自然裂缝控制;爆破岩石也使用比例尺不变方法进行了分析,以替代常规尺寸分布分析。确定了不同能级和岩石等级下每个爆炸的分形维数。分形维数的变化取决于能级和岩石条件。在较高的能级下,可获得较高的分形维数,而在相同的能级下,更多的裂隙岩具有较高的分形维数。分形概念可能是描述岩石质量和不同岩石破碎行为的有用工具。

著录项

  • 作者

    Mojtabai, Navid.;

  • 作者单位

    The University of Arizona.;

  • 授予单位 The University of Arizona.;
  • 学科 Mining engineering.
  • 学位 Ph.D.
  • 年度 1990
  • 页码 167 p.
  • 总页数 167
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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