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Viking 34

Description

The 34 internal gear pump is used for handling asphalt, bitumen, tar, and similar viscous materials. It is suited for applications requiring continuous heating to maintain fluid flow and prevent solidification. It delivers flows up to 450 GPM (102 m³/h) with pressures up to 100 PSI (7 bar). The pump operates across viscosities from 31 to 250,000 SSU, supporting stable transfer in low to moderate pressure systems. Constructed in cast iron, the pump features full jacketing across the casing, head, and stuffing box. This allows efficient heat transfer using steam or hot oil, maintaining fluid temperature during operation. The simple construction supports reliable and economical operation. Multiple drive and mounting configurations allow integration into asphalt and bitumen handling systems.

Price offered

Amount
Estimated delivery time

Construction

Categories
Pumps
Product groups
Internal Gear Pumps

Performance

Min Temperature
-50 °C
Max Temperature
230 °C
Max differential pressure
7 bar
Min viscosity
1 cSt
Max viscosity
55000 cSt
Max capacity
102 m³/h
420 rpm

Downloads

It is used for asphalt, bitumen, tar, and similar viscous materials. The pump is suitable for applications requiring heating during transfer. It performs well in road construction and industrial processes.
The pump handles flows up to 450 GPM, or 102 m³/h. Multiple sizes allow accurate capacity selection. Maximum pressure is 100 PSI, or 7 bar.
The fully jacketed design allows heat to be applied directly to the pump casing, head, and stuffing box. This ensures efficient and uniform heating. It helps maintain fluid viscosity and prevents solidification.
It handles viscosities from 31 to 250,000 SSU and temperatures from -60 to +450 °F, or -50 to +230 °C. Maximum speeds range from 280 to 420 RPM depending on model. These limits must match the application.
The pump supports flanged and right-angle porting configurations. Drive options include gear reducer and V-belt drives. Foot-mounted construction supports stable installation.
UAB AxFlow