ASME U-Stamp Certified Reactors
Engineered ASME U Stamp industrial reactors for safe, efficient, and controlled chemical processing applications.
Industrial reactors facilitate chemical reactions under controlled pressure, temperature, and mixing conditions. We engineer every reactor to deliver consistent process performance and product quality across demanding industrial environments.
You get a reactor rated for your reaction chemistry, backed by documentation you can hand straight to your inspector.
U
ASME U Stamp
100%
Weld Inspection
8
Material Grades
Reactor product range
We manufacture ASME U Stamp reactors tailored to diverse industrial processing requirements.
RX-01
Chemical Reactors
Built for batch and continuous chemical reaction processes.
Industries
- Chemical
- Pharma
- Petrochemical
- Specialty Chemicals
RX-02
Agitated Reactors
Provides controlled mixing for improved reaction efficiency and product consistency.
Industries
- Pharma
- Chemical
- Food Processing
- Biotechnology
RX-03
Jacketed Reactors
Enables precise heating and cooling during temperature sensitive processes.
Industries
- Chemical
- Pharma
- Food
- Cosmetics
RX-04
Autoclaves
High pressure reactors built for sterilization, synthesis, curing, and specialized applications.
Industries
- Medical
- Pharma
- Food Processing
- Aerospace
Engineered for process efficiency and safety
Every reactor is designed around reaction chemistry, operating conditions, pressure ratings, thermal requirements, and international engineering standards.
Custom Reactor Design
ASME Code Design
High Pressure Applications
Vacuum Service
Jacketed Heating and Cooling Systems
Internal Agitator Integration
High Temperature Design
Corrosion Resistant Construction
Heavy Wall Fabrication
Custom Nozzle Configuration
Modular Fabrication
Complete Engineering Documentation
Available material grades
We select materials based on reaction chemistry, operating conditions, corrosion resistance, and product compatibility.
ASTM A240
Carbon Steel
ASTM A516
Stainless Steel
UNS S32205
Duplex Stainless Steel
UNS S32750
Super Duplex Stainless Steel
UNS N06625
Nickel Alloys
ASTM B265
Titanium
DIN 1.3981
Glass Lined Steel
ASTM A263/265
Clad Materials
Designed to International Standards
Every reactor is manufactured to globally recognized engineering codes and project specifications.
ASME VIII-1
Division 1
ASME VIII-2
Division 2
U STAMP
ASME U Stamp
PED
2014/68/EU
EN 13445
Unfired Vessels
API
API Requirements
AD 2000
German Code
CUST
Customer Spec
Precision manufacturing from design to delivery
Every reactor moves through the same twelve stage build sequence, tracked from first drawing to dispatch.
01
Process Engineering
02
Mechanical Design
03
Material Procurement
04
Plate Rolling
05
Shell Fabrication
06
Jacket Fabrication
07
Nozzle Installation
08
Agitator Integration
09
Non Destructive Testing
10
Hydrostatic Testing
11
Surface Preparation
12
Final Documentation
Inspection and quality assurance
Every reactor passes comprehensive inspection to verify safety, performance, and code compliance.
Hydrostatic Testing
Pneumatic Testing
Radiographic Testing
Ultrasonic Testing
Liquid Penetrant Testing
Magnetic Particle Testing
Positive Material Identification
Dimensional Inspection
Visual Inspection
Agitator Alignment Inspection
Third Party Inspection
Factory Acceptance Testing
Need Assistance In Choosing Right Equpiment for Your Plant?
Consult with our application engineers to determine the exact specification for your project.
