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首页> 外文期刊>Journal of the Institution of Engineers (India), Series D. Metallurgical & Materials Engineering.Mining Engineering >Investigation of Noise Level and Penetration Rate of Pneumatic Drill vis-a-vis Rock Compressive Strength and Abrasivity
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Investigation of Noise Level and Penetration Rate of Pneumatic Drill vis-a-vis Rock Compressive Strength and Abrasivity

机译:相对于岩石抗压强度和磨蚀性的气动钻噪声水平和穿透率的研究

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In this paper, detailed studies were carried out to determine the influence of rock properties on the sound level produced during pneumatic drilling. Further, investigation was also carried out on the effect of thrust, air pressure and compressive strength on penetration rate and the sound level produced. For this purpose, a fabricated pneumatic drill set up available in the institute was used. Rock properties, like compressive strength and abrasivity, of various samples collected from the field were determined in the laboratory. Drilling experiments were carried out on ten different rock samples for varying thrust and air pressure values and the corresponding A-weighted equivalent continuous sound levels were measured. It was observed that, very low thrust results in low penetration rate. Even very high thrust does not produce high penetration rate at higher operating air pressures. With increase in thrust beyond the optimum level, the penetration rate starts decreasing and causes the drill bit to 'stall'. Results of the study show that penetration rate and sound level increases with increase in the thrust level. After reaching the maximum, they start decreasing despite the increase of thrust. The main purpose of the study is to develop a general prediction model and to investigate the relationships between sound level produced during drilling andphysical properties such as uniaxial compressive strength and abrasivity of sedimentary rocks. The results were evaluated using the multiple regression analysis taking into account the interaction effects of predictor variables.
机译:在本文中,进行了详细的研究以确定岩石属性对气动钻孔过程中产生的声级的影响。此外,还研究了推力,气压和抗压强度对穿透率和产生的声级的影响。为此,使用了研究所中可用的预制气动钻。在实验室中确定了从野外收集的各种样品的岩石特性,如抗压强度和耐磨性。在十个不同的岩石样品上进行了钻探实验,以改变推力和气压值,并测量了相应的A加权等效连续声级。观察到,非常低的推力导致低的穿透率。在较高的工作气压下,即使很高的推力也不会产生很高的穿透率。随着推力的增加超过最佳水平,穿透率开始降低并导致钻头“失速”。研究结果表明,穿透率和声级随推力级的增加而增加。达到最大值后,尽管推力增加,它们仍开始减小。该研究的主要目的是建立一个通用的预测模型,并研究钻探过程中产生的声级与物理性质(如单轴抗压强度和沉积岩的磨蚀性)之间的关系。考虑到预测变量的相互作用,使用多元回归分析对结果进行了评估。

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