Study on Composite Design Suitable for High Hardness and Strong Abrasive Formation

Dongdong Song, Yingxin Yang, H. Ren
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Abstract

PDC (Polycrystalline Diamond Compact bit) composite is the most important cutting element of petroleum bit, which performance directly affects the service effect and service life of the bit. During the drilling process, the cutter will produce a large amount of friction heat when cutting the rock, resulting in a sharp increase in the internal temperature of the cutter. When the temperature reaches a certain value, thermal wear and tear are very easy to occur, which will not only cause diamond delamination but also reduce the wear resistance of the cutter. Under the action of impact load, impact failure is more likely to occur, which greatly reduces the service life of the cutter and the rock-breaking efficiency of the drill bit. Therefore, this paper studies the composite interface suitable for high-temperature drilling through the changes of cutting tooth temperature field and stress field with different interface shapes, which shows that the non-planar interface is more suitable for improving the cutting tooth life of composite under the action of comprehensive stress field.
适用于高硬度强磨料地层的复合材料设计研究
PDC (Polycrystalline Diamond Compact bit)复合材料是石油钻头最重要的切削元件,其性能直接影响到钻头的使用效果和使用寿命。在钻井过程中,刀具在切割岩石时会产生大量的摩擦热,导致刀具内部温度急剧升高。当温度达到一定值时,很容易发生热磨损,不仅会造成金刚石分层,还会降低刀具的耐磨性。在冲击载荷的作用下,更容易发生冲击破坏,大大降低了刀具的使用寿命和钻头的破岩效率。因此,本文通过不同界面形状下切削齿温度场和应力场的变化,研究了适合高温钻孔的复合材料界面,结果表明,在综合应力场作用下,非平面界面更适合提高复合材料切削齿寿命。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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