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A study on PDC drill bits quality

机译:PDC钻头质量研究

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摘要

The quality of innovating PDC (Polycrystalline Diamond Compact) bits materials needs to be determined with accuracy by measuring cutting efficiency and wear rate, both related to the overall mechanical properties. An original approach is developed to encompass cutting efficiency and wear contribution to the overall sample quality. Therefore, a lathe-type test device was used to abrade specific samples from various manufacturers. Post-experiment analyzes are based on models establishing coupled relationships between cutting and friction stresses related to the drag bits excavation mechanism. These models are implemented in order to evaluate cutting efficiency and to estimate wear of the diamond insert. Phase analysis by XRD and finite element simulations were performed to explain the role of physicochemical parameters on the calculated quality factor values. Four main properties of PDC material were studied to explain quality results obtained in this study: cobalt content in samples that characterizes hardness/fracture toughness compromise, undesired phase as tungsten carbide weakening diamond structure, diamond grains sizes and residual stresses distribution affecting abrasion resistance.
机译:需要通过测量切削效率和磨损率来精确确定创新的PDC(聚晶金刚石复合片)钻头材料的质量,这两个因素均与整体机械性能有关。开发了一种原始方法来涵盖切割效率和磨损对整体样品质量的影响。因此,使用车床式测试设备对来自不同制造商的特定样品进行研磨。实验后的分析是基于模型的,该模型建立了与钻头开挖机制相关的切削应力和摩擦应力之间的耦合关系。实施这些模型是为了评估切削效率并估计金刚石镶片的磨损。通过XRD进行相分析和有限元模拟,以解释理化参数在计算出的品质因子值上的作用。研究了PDC材料的四个主要特性,以解释该研究中获得的质量结果:表征硬度/断裂韧性折衷的样品中钴含量,碳化钨削弱金刚石结构的不希望有的相,影响耐磨性的金刚石晶粒尺寸和残余应力分布。

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