Mixing Process Tanks

Mixing Process Tanks

Advanced engineering mixer systems with optimal viscosity control for liquid-liquid or liquid-solid mixtures, with inverter support and different blade types.

Homogeneous Mixing Technology

The success of a process is measured by how correctly the mixture is homogenized. We design turbine, propeller, anchor or scraper mixer blades based on the viscosity (fluid like water or viscous like honey) and density of your product. Our systems are equipped with geared motors and PLC-controlled speed inverters to provide maximum control in your process.

Mixer Blade Detail

Equipment & Automation

Variable-Speed Inverter System
Teflon (PTFE) Wall Scrapers
Mechanical Seal Sealing
Bottom, Top or Side Entry Design
CIP and SIP Spray Ball Integration
AISI 316L Complete Stainless Shaft
Automation and Inverter Panel
Mixing Process Tank Technical Drawing

Mixer Type Selection Table

* Calculated by our engineers based on the viscosity (cP) and particle structure of the mixture.

Blade TypeViscosityApplication ExampleSpeed
PropellerLow (like water)Liquid Chemicals, JuiceHigh (900-1400 rpm)
TurbineMedium (like oil)Syrup, Mineral Oil, PaintMedium (100-300 rpm)
Anchor with ScraperHigh (like honey)Cosmetic Cream, ChocolateLow (10-60 rpm)
Dispersion TypeSolid/Liquid SolutionsDissolving Powder Chemicals in LiquidVery High (1500+ rpm)

Example Applications

Custom Design Anchor Mixer
PROJECT 01
Inverter-Controlled Mixer
PROJECT 02
Paint Industry Disperser Tank
PROJECT 03
Food Industry Homogenizer Battery
PROJECT 04

Technical Specification

DOK-06 PDF Document

Engineering specification containing motor power calculations for different viscosities and mechanical seal sealing details.

Download Document (PDF)
Featured Reference
Chemical Process Project Reference

10,000 liter mixer tank with ex-proof motor, high torque capacity and Teflon scrapers for a polymer chemical production facility.

View All References

Viscosity Analysis

Share your product viscosity (cP) and operating conditions with us, and we will calculate the most suitable mixer design and gearbox power.

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