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Tungsten carbide stator for APS advanced MWD systems used in rotary pulser

Tungsten carbide stator for APS advanced MWD systems used in rotary pulsers is a specialized component that provides exceptional hardness, wear resistance, and high-temperature stability. Its use in drilling operations helps ensure accurate and reliable data transmission, improved performance, and increased productivity. Manufacturers can customize tungsten carbide stators to meet specific requirements, ensuring that they meet the rigorous demands of oil and gas drilling applications.
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Tungsten carbide stator for APS advanced MWD systems used in rotary pulser


Tungsten carbide (WC) stator for APS advanced Measurement While Drilling (MWD) systems used in rotary pulsers is a specialized component designed to meet the rigorous demands of oil and gas drilling operations. Tungsten carbide is chosen for its exceptional hardness, wear resistance, and ability to withstand high temperatures and pressures.


Properties of Tungsten Carbide Stator

Hardness and Wear Resistance:

Tungsten carbide stators exhibit high hardness, typically measured in the range of 86-94 on the Rockwell hardness scale (HRA).

This hardness makes them highly resistant to wear and tear, ensuring long-term durability in drilling applications.

High-Temperature Stability:

Tungsten carbide can withstand high temperatures, making it suitable for use in drilling environments where friction and heat generation are significant.

Corrosion Resistance:

Tungsten carbide is resistant to corrosion from chemicals and drilling fluids commonly used in oil and gas operations.

Density and Strength:

With a density of approximately 14.6-15.0 g/cm³, tungsten carbide stators provide a robust and reliable solution for MWD systems.


Rotary Pulser Component:

Tungsten carbide stators are integral components in rotary pulsers, which are used to transmit data from the drill bit to the surface during drilling operations.

They help ensure accurate and reliable data transmission by maintaining a consistent and stable interface with other components in the system.

Performance Enhancement:

The hardness and wear resistance of tungsten carbide stators contribute to improved performance and reliability of APS advanced MWD systems.

They reduce the risk of component failure and downtime, leading to increased drilling efficiency and productivity.

Customization and Manufacturing

Customization Options:

Tungsten carbide stators can be customized to meet specific requirements of APS advanced MWD systems.

Manufacturers can provide different sizes, shapes, and compositions to match the specific needs of drilling operations.

Manufacturing Process:

The manufacturing process of tungsten carbide stators involves powder metallurgy techniques, including sintering and pressing.

Precision machining and finishing processes are also used to ensure the required dimensions and surface finish of the stator.

Our advantages

1. Customized,We have over 15 years' experience in the shaped tungsten carbide products

2. Various kinds of material grades are available based on customer's application

3. we have professional advanced production line and inspection equipment to ensure high quality products.We can manufacture various tungsten carbide valve seat in high qulaity with competitive price.

4. Advanced technology with precision ground and high polishing process

5. High wear resistance, high hardness and impact toughness

6. Excellent after-sales service



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