Sanitary Stainless Steel Mixing Tank
A versatile hygienic mixing vessel configured around product behaviour, batch sequence, cleaning strategy and downstream transfer.
View productControlled blending
Configurable mixing tanks for blending, dissolving, dispersing and maintaining product uniformity across hygienic process applications.
Product overview
Reliable mixing starts with the duty, not the agitator catalogue. Vessentra evaluates viscosity, density, batch size, shear sensitivity, solids addition, mixing time and heat transfer before defining the vessel geometry and agitation system.
Final construction, operating limits, materials and documentation are confirmed against the agreed project design basis.
Stainless Steel Mixing Tanks range
Each product page explains where the design fits, what should be specified and which related configurations to compare.
A versatile hygienic mixing vessel configured around product behaviour, batch sequence, cleaning strategy and downstream transfer.
View productA mixing vessel that combines product movement with a project-specific jacket for controlled heating, cooling or temperature maintenance.
View productA widely adaptable top-mounted agitator arrangement for liquid blending, solids suspension and batch uniformity across a broad operating range.
View productA compact bottom-mounted magnetic drive arrangement for high-hygiene processes, cleanable product contact and effective mixing at reduced liquid levels.
View productA side-mounted agitation system for circulation and homogenisation in larger tanks handling low- to medium-viscosity liquids.
View productA compact wheeled mixing vessel for small batches, pilot work and flexible movement between compatible production stations.
View productA mixing system configured to wet, disperse or dissolve soluble powders into liquid while managing addition sequence, dust and recirculation.
View productTypical applications
Application details are reviewed before equipment configuration is finalised.
Engineering configuration
The equipment is developed from process inputs, operating conditions, cleaning requirements and site interfaces.
Impeller type, speed range, drive arrangement and shaft geometry are selected for the actual mixing objective.
Charging points and addition sequence can be arranged to support safe, repeatable batch preparation.
Jacketed configurations can support dissolution, temperature maintenance and controlled cool-down duties.
Local controls or integration with a wider automation platform can be provided according to project scope.
Specification framework
Project limits are confirmed through engineering review. These fields describe the decisions needed for an accurate, application-specific configuration.
| Working volume | Defined according to project requirements |
|---|---|
| Product-contact material | Selected for process and cleaning compatibility |
| Vessel geometry | Configured around process duty and installation |
| Agitation | Application-specific options where required |
| Heating and cooling | Jacketed and insulated configurations available |
| Cleaning | Manual, CIP or SIP-ready configuration |
| Instrumentation | Selected for the operating and control strategy |
| Documentation | Project-specific documentation package |
Common questions
Selection is based on the product properties and the required process result, including blending, dissolution, suspension, dispersion or heat transfer.
It may be possible, but the operating range, impeller design and speed control should be reviewed against every intended recipe.
Yes. The vessel, pumps, valves, instruments, controls and interconnecting pipework can be engineered as an integrated process module.
Talk to engineering
Share the product, working volume, operating conditions, cleaning method and project location. We will use them to structure the next engineering conversation.