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Measurement of bit-rock interface temperature and wear rate of the tungsten carbide drill bit during rotary drilling

机译:旋转钻孔过程中碳化钨钻头的钻头界面温度和磨损率的测量

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Rock drilling is an essential operation in mining industries.Temperature at the bit-rock interface plays a major role in the wear rate of the drill bit.This paper primarily focuses on the wear rate of tungsten carbide(WC)drill bit and the interrelationship between temperature and wear rate during rotary drilling operations conducted using a computer numerical control(CNC)machine.The interrelationship between the temperature and wear rate was studied with regard to three types of rock samples,i.e.,fine-grained sandstone(FG)of uniaxial compressive strength(UCS)that is 17.83 MPa,medium-grained sandstone(MG)of UCS that is 13.70 MPa,and fine-grained sandstone pink(FGP)of UCS that is 51.67 MPa.Wear rate of the drill bit has been measured using controlled parameters,i.e.,drill bit diameter(6,8,10,12,and 16 mm),spindle speed(250,300,350,400,and 450 rpm),and penetration rate(2,4,6,8,and 10 mm/min),respectively.Further,a fully instrumented laboratory drilling set-up was utilized.The weight of each bit was measured after the bit reached 30 mm depth in each type of the rock sample.Furthermore,effects of the bit-rock interface temperature and operational parameters on wear rate of the drill bits were examined.The results show that the wear rate of drill bits increased with an increase in temperature for all the bit-rock combinations considered.This is due to the silica content of the rock sample,which leads to an increase in the frictional heat between the bit-rock interfaces.However,in case of medium-grained sandstone,the weight percentage(wt%)of SiO2 is around 7.23 wt%,which presents a very low wear rate coefficient of 6.33×10^–2 mg/(N?m).Moreover,the temperature rise during drilling is also minimum,i.e.,around 74℃,in comparison to that of fine-grained sandstone and fine-grained sandstone pink.In addition,this paper develops the relationship between temperature and wear rate characteristics by employing simple linear regression analysis.
机译:岩石钻井是采矿业的必要行动。位岩界面的温度在钻头的磨损率上发挥着重要作用。本文主要关注碳化钨(WC)钻头钻头和相互关系的磨损率和之间的相互关系使用计算机数控(CNC)机器进行的旋转钻孔操作期间的温度和磨损率。在三种类型的岩石样品中研究了温度和磨损率之间的相互关系,即单轴压缩的细粒砂岩(FG)是17.83MPa,中粒砂岩(Mg)的强度(UCS),UCS的UCS为13.70MPa和UCS的细粒粉红色(FGP),其是使用受控测量钻头的51.67mPa .Wear率。参数,即钻头直径(6,8,10,12和16mm),主轴速度(250,300,350,400和450rpm),以及渗透率(2,4,6,8和10 mm / min),分别,利用完全仪表的实验室钻井设置。ea的重量在每种类型的岩石样本中达到30mm深度后测量CH位。检查钻头界面温度和操作参数对钻头的磨损率的影响。结果表明磨损率钻头随着所考虑的所有比特岩组合的温度而增加。这是由于岩石样品的二氧化硅含量,这导致钻头界面之间的摩擦热量增加。但是中粒砂岩,SiO 2的重量百分比(wt%)约为7.23wt%,其呈现非常低的磨损率系数为6.33×10 ^ -2mg /(n≤m).Moreover,钻井期间的温度升高也是最小的,即大约74℃,与细粒砂岩和细粒砂岩粉红相比。此前,通过采用简单的线性回归分析,在温度和磨损率特性之间发展的关系。

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