Evaluations of bit sleeve and twisted-body bit designs for controlling roof bolter dust.

Mining engineering Pub Date : 2015-02-01
T W Beck
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Abstract

Drilling into coal mine roof strata to install roof bolts has the potential to release substantial quantities of respirable dust. Due to the proximity of drill holes to the breathing zone of roof bolting personnel, dust escaping the holes and avoiding capture by the dust collection system pose a potential respiratory health risk. Controls are available to complement the typical dry vacuum collection system and minimize harmful exposures during the initial phase of drilling. This paper examines the use of a bit sleeve in combination with a dust-hog-type bit to improve dust extraction during the critical initial phase of drilling. A twisted-body drill bit is also evaluated to determine the quantity of dust liberated in comparison with the dust-hog-type bit. Based on the results of our laboratory tests, the bit sleeve may reduce dust emissions by one-half during the initial phase of drilling before the drill bit is fully enclosed by the drill hole. Because collaring is responsible for the largest dust liberations, overall dust emission can also be substantially reduced. The use of a twisted-body bit has minimal improvement on dust capture compared with the commonly used dust-hog-type bit.

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控制锚杆粉尘的钻头套筒和绞体钻头设计评价。
钻入煤矿顶板岩层安装顶板螺栓有可能释放大量可呼吸性粉尘。由于钻孔靠近锚固人员的呼吸区,粉尘从钻孔中逸出,避免被集尘系统捕获,造成潜在的呼吸健康风险。控制装置可用于补充典型的干式真空收集系统,并在钻井初始阶段最大限度地减少有害暴露。本文探讨了在钻井的关键初始阶段,将钻头套筒与除尘型钻头结合使用,以改善除尘效果。还对一种扭曲体钻头进行了评估,以确定与除尘猪型钻头相比释放的粉尘量。根据我们的实验室测试结果,在钻头完全被钻孔封闭之前,在钻井的初始阶段,钻头套筒可以减少一半的粉尘排放。因为领子是负责最大的粉尘释放,整体粉尘排放也可以大大减少。与常用的吸尘器式钻头相比,使用绞体钻头对粉尘捕获的改善很小。
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