The production method is simple and flexible, with short processing cycles, enabling rapid response to real-world on-site applications.
It is suitable for soft to medium-hard formations, allowing deeper penetration, faster drilling speeds, and enhanced ability to break through challenging geological layers.
This drill boasts exceptional rock-breaking performance: the cutting teeth alternate contact with the well bottom, resulting in low breaking torque, minimal contact area, and high specific pressure—making it easier to engage the formation while reducing lateral vibrations of the bit.
Additionally, the design incorporates a new high-temperature-resistant lubricant, combined with wear-resistant alloy overlays welded onto the bearing surfaces, significantly boosting the bearings' load-bearing capacity and abrasion resistance.
The production method is simple and flexible, with short processing cycles, enabling rapid response to real-world on-site applications.
Adapts to soft to medium-hard formations, penetrates deeper with greater speed, and exhibits superior ability to break through the formation.
It exhibits excellent rock-breaking performance, with cutting teeth alternating contact against the well bottom. This results in low rock-breaking torque, minimal contact area, and high specific pressure—making it easy to engage the formation while minimizing lateral drill bit vibrations.
By using a new high-temperature-resistant grease and simultaneously applying a wear-resistant alloy layer via surfacing welding on the bearing surfaces, the load-bearing capacity and wear resistance of the bearings are significantly enhanced.
The matrix body PDC bit not only applies the lDS system to optimize the cutter arrangement, hydraulic, and mechanical models but also uses advanced matrix body formulations to ensure the strength of the bit body. The high-precision and high. performance rubber mold guarantees the accuracy of the cutter holes and crown shape of the matrix body PDC bit, meeting the high-quality customization needs of domestic and international customers.
The internal cone features a concave design, reducing the center height of the blade wings and distributing the drilling load more evenly, thereby enhancing stability.
The symmetrical blade wing arrangement widens the blade channel, improving chip-removal efficiency and preventing buildup at the bottom of the wellbore—thus avoiding repeated cutting.
Additionally, the large-angle nozzle bore angle facilitates effective flushing of the well bottom, helping to prevent bit sticking.
The pilot shoe center works in coordination with the reaming body center, while the arc length around the reaming body is precisely controlled by the wing angles, ensuring stable wellbore enlargement.
An IDS intelligent tooth-placement design is employed to meet the principle of minimum bottomhole force balance, enabling the drill bit to achieve smooth cutting at the bottom of the well.
Equally spaced and narrowly designed cutting wings maximize the flushing area of the flow channels, significantly enhancing overall rock-breaking efficiency.
The gauge protection layer is made from TSP polycrystalline material and features an anti-rotation design, which reduces vibration-induced wear and extends the drill bit's service life.
Size Range:3 1/4”~26”.