Sanitary Stainless Steel Formulation Tank
A hygienic formulation vessel configured around recipe order, ingredient behaviour, batch conditions, cleaning and finished-product transfer.
View productRepeatable batch preparation
Controlled formulation vessels designed for repeatable ingredient addition, dissolution, temperature management and batch preparation.
Product overview
Formulation equipment must bring recipe control, mixing, temperature and cleaning into one workable system. Vessentra develops compounding vessels around the order of addition, ingredient behaviour, target batch conditions and the operator actions required to reproduce the process.
Final construction, operating limits, materials and documentation are confirmed against the agreed project design basis.
Formulation & Compounding Tanks range
Each product page explains where the design fits, what should be specified and which related configurations to compare.
A hygienic formulation vessel configured around recipe order, ingredient behaviour, batch conditions, cleaning and finished-product transfer.
View productA project-specific 316L preparation vessel for controlled compounding, hygienic transfer and integration with pharmaceutical cleaning strategies.
View productAn integrated batch vessel for coordinating multiple liquid ingredients, controlled addition, mixing, measurement and finished-batch transfer.
View productA temperature-managed formulation vessel that coordinates ingredient addition, agitation and jacket duty through the complete batch profile.
View productA sealed compounding vessel that uses project-defined vacuum to support air removal, foam management and controlled batch preparation.
View productA compounding vessel mounted on load cells to support weight-based ingredient addition, batch confirmation and recipe repeatability.
View productA robust compounding vessel for viscous formulations requiring controlled bulk movement, wall sweeping, heat transfer and dependable discharge.
View productA flexible formulation vessel for shampoos, lotions, gels and personal care liquids, configured around ingredient sequence, viscosity and air management.
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.
Connections, addition points and instrumentation are organised around the intended recipe and operating sequence.
Agitation is selected to support dissolution, uniformity and product handling across the defined batch range.
Temperature, level, weight and other project-specific measurements can be incorporated into the control strategy.
Product-contact details and cleaning provisions are developed together to support efficient changeovers.
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
Key inputs include batch volume, ingredients, order of addition, product properties, mixing time, temperature profile and cleaning requirements.
Yes. Weighing can be evaluated together with the support arrangement, pipe connections and required dosing accuracy.
Automation can range from local control to a coordinated recipe sequence, depending on the process definition and project scope.
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.