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An investigation on the influence of microwave energy on basic mechanical properties of hard rocks

机译:微波能量对硬岩基本力学性能的影响研究

摘要

Drilling and blasting is one of the most commonly used and convenient method for many mining and civil applications to break rocks, especially hard rocks. Because of many environmental, safety and productivity issues (i.e. Cycle time), the industry and contractors are looking for an alternative system of breaking of rocks. In underground rock breakage applications such as tunneling, continuous mechanical excavation method, normally with tunnel boring machines (TBMs) or road headers is becoming more popular and commonly used by contractors. One of the main disadvantages of such system is that, it cannot handle very hard rocks and uneconomical major disc or bit wear takes place. Today, novel explosive free rock breaking technologies (thermal, electrical, nuclear energy and microwave) are available and could be used on their own or assist mechanical conventional machines to be able to break harder rock material. This is possible because it is hoped that the microwave will reduce the strength of the rock prior to the impact of mechanical device. Three main mechanical parameters of rocks such as compressive strength, tensile strength and abrasivity index value were used to highlight the influence of microwave on to the mechanical properties of rocks. Seven different rock types were prepared and tested. Each individual specimen was exposed to the microwave energy in three power levels 800, 1250 and 3000 watts, within 0, 15, 30, 60, 120 and 240 seconds time of exposure. Different rocks due to their mineralogy behave differently when exposed to microwave energy. CERCHAR abrasivity index value of almost all samples shows reduction of about 30% as the power level of exposure increases. The tensile strength of certain samples reduces significantly as in basalt reduces of up to 80%. The unconfined compressive strength value of almost all samples reduces about 30% as well. The reduction of the strength and abrasivity of hard rock cause the penetration rate and the life time of cutter tools of a TBM to be increased by combining the microwave energy to the cutter head of the mechanical excavator.
机译:钻探和爆破是许多采矿和民用应用中破碎岩石,尤其是坚硬岩石的最常用和便捷的方法之一。由于许多环境,安全和生产率问题(即周期时间),行业和承包商正在寻找一种替代的碎石系统。在诸如隧道的地下岩石破碎应用中,通常采用隧道掘进机(TBM)或掘进机的连续机械开挖方法变得越来越普遍,并被承包商普遍使用。这种系统的主要缺点之一是,它不能处理非常坚硬的岩石,并且会造成不经济的主盘或钻头磨损。如今,可以使用新颖的无爆炸岩石破碎技术(热,电,核能和微波),这些技术可以单独使用或辅助常规的机械设备来破碎坚硬的岩石材料。这是可能的,因为希望微波在机械设备撞击之前会降低岩石的强度。利用岩石的三个主要力学参数,如抗压强度,抗拉强度和耐磨性指数值,突出了微波对岩石力学性能的影响。准备并测试了七种不同的岩石类型。在暴露的0、15、30、60、120和240秒的时间内,每个单独的样本都暴露于800、1250和3000瓦三种功率水平的微波能量下。不同的岩石由于其矿物学特性,在暴露于微波能量时会表现出不同的行为。随着曝光功率水平的提高,几乎所有样品的CERCHAR磨耗指数值都降低了约30%。某些样品的抗拉强度显着降低,因为玄武岩的抗拉强度降低了80%。几乎所有样品的无侧限抗压强度值也降低了约30%。硬岩强度和耐磨性的降低导致通过将微波能量结合到机械挖掘机的刀头上而增加了TBM刀具的穿透率和使用寿命。

著录项

  • 作者

    Nekoovaght Motlagh Pejman;

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  • 年度 2009
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  • 原文格式 PDF
  • 正文语种 en
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