Custom ASME Stainless Steel Pressure Vessel
A project-specific stainless steel pressure vessel developed from the process duty, mechanical loads and agreed ASME code scope.
View productEngineered for the duty
Custom-engineered vessels for pressurised storage, reaction, separation and process-buffer duties.
Product overview
Pressure equipment must be defined by a clear design basis. Vessentra coordinates operating conditions, design conditions, medium, materials, nozzle loads, supports, inspection access and the applicable project requirements before fabrication.
Final construction, operating limits, materials and documentation are confirmed against the agreed project design basis.
Custom Pressure Vessels range
Each product page explains where the design fits, what should be specified and which related configurations to compare.
A project-specific stainless steel pressure vessel developed from the process duty, mechanical loads and agreed ASME code scope.
View productA hygienic pressure vessel combining defined pressure containment with cleanable product-contact surfaces and drainable process connections.
View productA pressure vessel with an engineered jacket for controlled heating, cooling or temperature holding throughout the process cycle.
View productA custom vessel mechanically designed for the defined combination of internal pressure, external pressure and vacuum operating cases.
View productA compact pressurised buffer vessel used to decouple equipment, stabilise flow and provide controlled process hold-up.
View productA vacuum-rated receiver that collects liquid, manages carryover and provides stable separation between process equipment and the vacuum source.
View productAn engineered pressure vessel that separates entrained liquid from gas or vapor using controlled velocity, residence time and selected internals.
View productA pressure-rated stainless steel housing configured around the filter element, flow, solids loading, cleanliness and change-out method.
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.
Operating and design pressure, temperature, medium and load cases are established as part of the project basis.
Orientation, heads, supports, nozzles, access and lifting features are developed for the installation.
Connections, instruments and safety accessories are coordinated with the surrounding process system.
The applicable design and documentation requirements are confirmed for each destination and 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
Provide the medium, working volume, operating and design conditions, material preference, orientation, connection schedule, installation location and applicable project requirements.
Yes. Their type, size, rating and position can be coordinated with process, access and maintenance requirements.
The applicable standard must be confirmed for the installation location, design basis and agreed project scope before engineering begins.
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.