Summarize:
The SHHLB gear pump is designed for delivering low-flowability liquid media that are susceptible to pressure fluctuations during transfer, making it ideal for production systems requiring stable feed rates, continuous transfer, and strong adaptability to various media. The pump achieves continuous suction, filling, and discharge through the rotation of gears, allowing the medium to enter the pump chamber along a stable flow path and be delivered to the outlet. Therefore, when handling low-flowability oils and industrial media, it satisfies the requirements for continuous transfer between storage and production equipment.
Product Details:
SHHLB gear pump operates by utilizing the principle of internal gear meshing to deliver fluid. When the drive gear rotates the internal gear, a constantly changing volumetric space is formed between the gears, allowing the fluid to enter the pump housing under the influence of a pressure differential and be carried to the discharge area as the gears rotate. The working volume within the pump chamber gradually decreases as the gears continue to mesh, exerting pressure on the fluid and causing it to be continuously discharged through the outlet.
Application:
SHHLB series serves as the optimal equipment for high-viscosity liquid transfer systems, processing viscous media such as fuel oil, asphalt, heavy oil, resin, and lubricating oil. It is employed in applications including asphalt supply, heavy oil transfer, resin production lines, paint transfer, and fuel supply, providing efficient and stable transfer solutions for these sectors.
Feature:
1. This equipment creates a continuous delivery chamber inside the pump housing through an intermeshing gear mechanism, enabling efficient handling of viscous liquids that are difficult for conventional centrifugal pumps to deliver consistently.
2. It offers strong adaptability to various operating conditions and can be configured with appropriate flow rates, pressures, and drive methods to meet different delivery requirements based on the specific conveying system.
3. The pump combines optimized design and durable components to create a relatively stable working chamber, helping maintain consistent volumetric efficiency.