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Pump Parts That Keep You Operational

Ready to Ship Slurry Pump Parts

A high‑performing slurry pump depends on durable, precisely engineered spare parts that can withstand the extreme abrasion, impact, and corrosion found in mining, aggregates, dredging, and industrial processing. Slurry pump spare parts are designed to restore hydraulic efficiency, reduce unplanned downtime, and extend the overall service life of the pump. Because every operation faces unique slurry conditions—ranging from fine tailings to coarse, high‑density solids—quality replacement parts play a central role in maintaining consistent, reliable performance.

Because slurry applications vary widely, spare parts are available in multiple material options. High‑chrome white iron offers exceptional abrasion resistance for coarse, aggressive slurries. Natural rubber and elastomer liners provide superior resilience for fine or corrosive slurries. Polyurethane and specialty alloys offer additional performance benefits where impact, chemical exposure, or temperature extremes are present. Selecting the right material helps maximize wear life and reduce maintenance costs.

Our inventory supports both planned maintenance and urgent repairs, ensuring critical equipment stays online and productive. By choosing premium slurry pump spare parts, operations gain longer wear life, reduced operating costs, and greater confidence in their pumping systems.

Shaft Sleeves

ICS Mill Master sleeves are designed with the ideal combination of properties for exceptional performance. With high hardness, high density, strong bonding, non-galling, low friction, and superior corrosion resistance, ICS wear sleeves (replacement for Warman® 075+076) outperform many exotic ‘high-performance’ coatings in the most demanding abrasive pumping applications.

Packing applications place specific demands on equipment, particularly in terms of friction and abrasion. While tungsten carbide and other exotic overlays create an exceptionally hard wear surface, they rely on relatively soft binding alloys. As these binders erode, exposed carbides can worsen wear, especially when running at high surface speeds against soft packing polymers. This is a perfect example where increased hardness is not directly related to increased wear life.

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