IMPROVING THE EFFICIENCY OF THE PROCESS OF DRILLING WELLS IN COMPLEX CONDITIONS AT GEOLOGICAL PROSPECTING SITES

Q3 Earth and Planetary Sciences
J. Toshov, S. Malikov, O.S. Ergashev, A. Sherov, A. Esirkepov
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Abstract

. The state considered the issues of increasing the durability of cutting material of drilling equipment with the help of chemical-physical treatment of the cutting part of the drill bit. A mathematical model is presented for the impregnation of metals by applied accumulations and precipitates, as well as changes in the strength characteristics of the material during the exclusion of materials, due to the formation of defects of various breeds. An experimental study of samples of a rock cutting tool in a pool-type "gamma-installation" with sources of Co 60 γ-quanta is presented. The effect of radiation irradiation with small doses of gamma rays in the imperfect region of the phases of hard alloy components, which leads to a change in the level of point defects of the Schottky-Frenkel type, is studied. As a result of this process, the density of defects decreases, the perfect area of microcrystals increases, which leads to the
提高地质勘探点复杂条件下钻井作业的效率
。国家考虑了通过对钻头切削部分进行化学物理处理,提高钻井设备切削材料耐久性的问题。本文提出了一种数学模型,用于计算金属在外加堆积和沉淀作用下的浸渍过程,以及在排除材料过程中由于各种缺陷的形成而引起的材料强度特性的变化。本文介绍了用Co - 60 γ-量子源在池型“伽马装置”中对岩石切削刀具样品进行的实验研究。研究了用小剂量伽玛射线辐照硬质合金部件相缺陷区,引起肖特基-弗兰克尔型点缺陷水平变化的影响。由于该工艺,缺陷的密度减小,微晶的完美面积增大,从而导致缺陷的存在
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来源期刊
CiteScore
1.80
自引率
0.00%
发文量
83
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