REXSON SH0715
Shovel Pump
This Hybrid Shovel Pump with upper ball check and lower conical check, is used in high flow rate and high viscosity applications. Used with multi dispensing applications. Has a large size footprint and longer Stroke.
Description
Technical Data
Equipment
Documents & Media
Technologies
Markets
Performance
M1 Dual Power distributors: Large passageway for maximum airflow.
L1 Upper Body: The upper part of the pump is of robust construction and must be able to withstand the maximum pressures.
L2 Upper Valve: This valve material to pass from the lower chamber allows to the upper chamber of the pump. A quick responding ball check is used.
L3 Lower Valve: A conical valve is used to reduce pressure loss. It is designed to be as large as possible for easy filling.
Productivity
M2 The Cover: Very easy to remove and to access the repair parts
M3 The P ulse Output: The motor can be easily monitored thanks to an air pulse occurring at each reversal.
L4 Shovel: Feeds the product to the pump inlet and allows the pump to dispense high visocity materials.
L5 Longer Stroke: The longer stroke reduces wear on valves, seals and increases the life of the pump.
L6 Lower Body: The pump lower is adapted as needed to be fixed on a follower plate or connected to a manifold.
Sustainability
M4 Brass guiding ring: Enduring and accurate guidance system
M5 Camshaft inversion system: Very reliable reversal system
L7 Upper seals packing: Our pump range has a wide range of seal materials to suit all your needs.
L8 Rod and Cylinder: The piston shaft and the cylinder are made of triple chrome steel to ensure excellent abrasion resistance.
| Designation | Value |
|---|---|
| Maximum Air Pressure (bar) | 6 |
| Maximum Air Pressure (psi) | 87 |
| Fluid Output at 15 cycles / mn (gal/min) | 2.82 |
| Fluid Output at 15 cycles / mn (l/min) | 10.7 |
| Fluid Output at 20 cycles / mn (gal/min) | 3.78 |
| Fluid Output at 20 cycles / mn (l/min) | 14.3 |
| Fluid Output at 60 cycles / mn (gal/min) | 11.3 |
| Fluid Output at 60 cycles / mn (l/min) | 42.9 |
| Pump displacement (cc/cycle) | 715 |
| Pump displacement (in^3/cycle) | 43.6 |
| Maximum Material Pressure (bar) | 240 |
| Maximum Material Pressure (psi) | 3480 |
| Maximum Temperature (°C) | 80 |
| Maximum Temperature (°F) | 176 |
| Air Inlet Fitting | 3/4"BSP(F) |
| Material Inlet Port | 105mm |
| Material Outlet Port | 1"BSP(F) |
| Designation | Part number |
|---|---|
| - Plain Cylinder | FO=PC |
| - Motor 7200 (18:1) | MO=72 |
| - Mixed Materials | MA=CS |
| - PU (Polyurethane) | SE=06 |
| - Follower plate (Ø=105mm) | FO=FP |
| - Motor 9200 (30:1) | MO=92 |
-
Rexson-Dispense-air-motor-7200-instructions-manual-sames-kremlin-582144110-EN.pdf
-
Rexson-Dispense-air-motor-9200-instructions-manual-sames-kremlin-582145110_DE.pdf
-
Rexson-Dispense-air-motor-9200-instructions-manual-sames-kremlin-582145110-EN.pdf
-
Rexson-Dispense-moteur-pneumatique-7200-manuel-instructions-sames-kremlin-582144110-FR.pdf
-
Rexson-Dispense-moteur-pneumatique-9200-manuel-instructions-sames-kremlin-582145110-FR.pdf
-
Rexson-high-viscosity-pump-REXSH0715-manuel-instructions-sames-kremlin-582170110-FR.pdf
-
Rexson-Dispense-general-SAFETY-instructions-HV-RANGE-sames-kremlin-582184110-EN.pdf
-
Rexson-high-viscosity-pump-REXSH0715-instructions-manual-sames-kremlin-582170110-EN.pdf
High viscosity
Let's get in touch-
What is high viscosity product application?
Discover our solutions for this type of application!High viscosity product application can be done either by spraying, when viscosity allows, or by depositing a bead in various shapes, a process known as extrusion.
-
What are the challenges of spraying high viscosity products?
Contact us to learn more about the solutions best suited for your needs.High viscosity materials require specialized equipment to ensure a steady flow and uniform finish.
-
What equipment do you recommend for high viscosity applications?
Talk to our experts to find the optimal equipment for your high viscosity application needs.Our Rexson range of vane pumps and our extrusion guns are designed to handle even the densest materials with precision and efficiency.