Cameron AAP3798102-00031: Advanced Pressure Relief Valve, Industrial Control
The Cameron AAP3798102-00031 high-pressure gate valve is engineered for extreme conditions, providing superior sealing performance and durability in harsh environments.
The Cameron AAP3798102-00031 high-pressure gate valve is engineered for extreme conditions, providing superior sealing performance and durability in harsh environments.
Material Type:Stainless Steel
Operating Pressure Range:2000 psi
Temperature Range:-40°F to 500°F
Flow Capacity:Up to 1000 gpm
Valve Size:2 inches
Seal Material:Buna-N
Actuation Type:Electro-pneumatic
Rating:API 6D, ASME B16.34
The Cameron AAP3798102-00031 is a prime example of engineering excellence, offering unparalleled performance in demanding industrial environments. Its robust construction ensures longevity and high reliability, making it a preferred choice among professionals in various industries.
With a maximum operating pressure of 3000 psi and a temperature range spanning from -40°F to 400°F, this valve is versatile enough to adapt to a wide array of operational conditions, ensuring optimal performance under diverse environmental factors.
Featuring a 2-inch stainless steel body, the valve is designed for durability and resistance against corrosion, guaranteeing maintenance-free operation over extended periods. Its direct acting mechanism ensures swift response times, enhancing operational efficiency.
The inclusion of a manual override option provides added safety and control, allowing operators to take immediate action in case of power disruptions or system failures. This feature is particularly valuable in scenarios where uninterrupted operation is critical.
Equipped with pneumatic actuation, the valve offers a smooth and consistent operation, minimizing wear and tear on mechanical components. This results in reduced maintenance requirements and lower overall lifecycle costs.
The Cameron AAP3798102-00031 high-pressure gate valve is engineered for extreme conditions, providing superior sealing performance and durability in harsh environments.