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Experimental studies on controlling drilling parameters to reduce roof bolt-hole drilling noise

机译:控制钻井参数以降低屋面螺栓孔钻井噪声的实验研究

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摘要

Bolting the mine roof is one of the noisiest underground mining operations. The main contribution to the noise is the drilling of the roof bolt holes, especially drilling in hard rock. Previous research shows that the specific energy consumed in drilling bolt holes is inversely proportional to the bite depth (i.e., penetration per drill revolution). Less specific energy at a reasonably high bite depth means less energy is wasted in the drilling process for producing heat, bit wear and noise. Therefore, proper control of the drilling operation to achieve a reasonably higher bite depth can reduce drilling noise from its sources as a proactive noise control approach. In order to explore the feasibility and develop the proactive technology for reducing drilling noise, drilling tests have been conducted in laboratory settings. The preliminary results show that significant reduction in noise dose can be achieved by drilling in medium hard rock with uniaxial compressive strength of about 276 bars (4,000 psi) and at a reasonably high bite depth of about 4.6 mm/rev (0.18 in./rev). This paper presents the findings from laboratory experimental studies.
机译:用螺栓固定矿井顶是最嘈杂的地下采矿作业之一。产生噪音的主要因素是在屋顶螺栓孔上钻孔,特别是在硬岩石上钻孔。先前的研究表明,钻入螺栓孔所消耗的比能量与咬合深度(即每转钻头的穿透力)成反比。在相当高的咬合深度下比能量降低,意味着在钻孔过程中浪费了更少的能量来产生热量,钻头磨损和噪音。因此,作为一种主动的噪声控制方法,对钻探操作进行适当的控制以实现合理的更高的咬合深度可以减少其来源的钻探噪声。为了探索可行性并开发降低钻井噪声的主动技术,已经在实验室环境中进行了钻井测试。初步结果表明,可以通过在中等硬岩中钻进单轴抗压强度约为276巴(4,000磅/平方英寸),并且在大约4.6毫米/转(0.18英寸/转)的较高咬合深度下,实现噪声剂量的显着降低。 )。本文介绍了实验室实验研究的结果。

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