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Experimental investigation of cutting temperature in ice drilling

机译:冰钻切割温度的实验研究

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Cutting heat generated during rotary drilling easily melts warm ice, which has a temperature that is nearly close to or even reaches its pressure melting point. This phenomenon results in low penetration rate, poor core recovery and frequent sticking accidents. In order to measure the cutting temperature in ice drilling, a special testing stand was designed based on the principle of a wireless signal communication system as described in this paper. Factors affecting-cutting temperature were discussed and studied, including bit load, rotation speed of the drill head, and rake angle of the cutter. Experimental results show that the temperature of the cutter can rise by 5.49 degrees C when drilling in ice sample A (frozen in outdoor natural environment), and to approximately 438 degrees C when drilling in ice sample B (frozen in a special device) with a bit load of 560 N. The rotation speed of the drill head also has a major effect on cutter temperature. The temperature rise of the cutter can increase from 2.57 degrees C to 427 degrees C for ice sample A, and from 3.51 degrees C to 4.56 degrees C for ice sample B when rotation speed increases from 80 rpm to 140 rpm. In addition, the rake angle of the cutter affects cutting temperature to a certain degree. The temperature rise is about 439 degrees C with a rake angle of 15, while it is about 336 degrees C with a rake angle of 30 for ice sample A. Moreover, compared with dry drilling, the temperature rise can be greatly reduced with drilling fluid circulation. The temperature rise is only about 0.72 degrees C and 0.66 degrees C for ice samples A and B, respectively, with a bit load of 700 N. (C) 2015 Elsevier B.V. All rights reserved.
机译:旋转钻孔过程中产生的切削热容易融化温暖的冰,其温度几乎接近甚至达到其压力熔点。这种现象导致渗透率低,岩心回收率差和频繁发生粘结事故。为了测量冰钻中的切割温度,本文基于无线信号通信系统的原理设计了一个专用的测试台。讨论并研究了影响切削温度的因素,包括钻头负荷,钻头转速和刀具前角。实验结果表明,在冰样A中钻孔(在室外自然环境中冻结)时,刀具的温度可以升高5.49摄氏度,而在冰样B中(在特殊设备中冷冻)时,刀具的温度可以升高到大约438摄氏度。钻头的最大负载为560N。钻头的旋转速度也对刀具温度产生重大影响。当转速从80 rpm增加到140 rpm时,冰样品A的切割机温升可以从2.57摄氏度增加到427摄氏度,冰样品B的温度升高可以从3.51摄氏度增加到4.56摄氏度。另外,刀具的前角在一定程度上影响切削温度。对于冰样品A,前角为15时,温度升高约439摄氏度,前角为30时,温度升高约为336摄氏度。此外,与干钻相比,钻井液可大大降低温度升高循环。冰样品A和B的温度上升分别仅为约0.72摄氏度和0.66摄氏度,比特负载为700N。(C)2015 Elsevier B.V.保留所有权利。

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