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首页> 外文期刊>Advances in Mechanical Engineering >Geometry and force modeling, and mechanical properties study of polycrystalline diamond compact bit under wearing condition based on numerical analysis:
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Geometry and force modeling, and mechanical properties study of polycrystalline diamond compact bit under wearing condition based on numerical analysis:

机译:基于数值分析的磨损条件下多晶金刚石小位的几何和力建模和力学性能研究:

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Polycrystalline diamond compact bit has been used in more than 90% drilling length all over the world. Tooth wear is the main factor reducing the service life and performance of the polycrystalline diamond compact bit. In this article, the mechanical properties of polycrystalline diamond compact bit under wearing conditions are studied. The geometric model of the worn and unworn cutters is built. A numerical method to address the cutting parameters of cutters is first proposed. Then the effects of wearing degrees and the penetration per revolution of polycrystalline diamond compact bit on cutting parameters, forces, and wear conditions are discussed. The result shows that the numerical method can be utilized to obtain the force conditions of cutters, predict the wear trends of polycrystalline diamond compact bit, and optimize the cutter layout design. The effect of penetration per revolution on the mechanical properties of polycrystalline diamond compact bit and cutters is very limited. Under a constant p...
机译:多晶钻石致密钻头已被用于全世界90%以上的钻孔长度。牙齿磨损是降低多晶金刚石坯件的使用寿命和性能的主要因素。在本文中,研究了磨损条件下的多晶金刚石致密位的机械性能。建造了磨损和未磨损切割器的几何模型。首先提出解决切割器切割参数的数值方法。然后,讨论了磨损程度和每次旋转的渗透在切割参数,力和磨损条件下的多晶金刚石紧凑型钻头的效果。结果表明,可以利用数值方法来获得切割器的力条件,预测多晶钻石坯钻头的磨损趋势,并优化刀具布局设计。每次旋转对多晶金刚石致密钻头和切割器的机械性能的影响非常有限。在一个常数p ...

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