Services
Mechanical strength calculations, pressure equipment design, technical consulting, and 7-step delivery workflow.
Explore AllMechanical, strength, and FEA simulations
ASME VIII Div.1, EN 13445, and TEMA compliance
Standards evaluation and technical reporting
End-to-end flow from inquiry to technical support
Pressure vessels, reactors, tanks, piping, and columns
ASME & EN compliant vessel and nozzle calculations
Thermal and mechanical optimized exchanger designs
Advanced structural, stress, and thermal simulations
Pressure, temperature, and corrosion allowance
Industries
Cross-disciplinary engineering solutions tailored to the dynamics and process conditions of diverse sectors.
Explore AllCustom machine design and structural stress verification
Process tanks, dye kettles, and heat recovery exchangers
Thermal, biomass, geothermal, and cogeneration plants
API 650 / API 620 storage tanks and refinery systems
Heavy industrial furnaces, cooling towers, and steel structures
Waste heat recovery and green energy integration
3D CAD modeling and innovative prototype development
End-to-end plant layout, piping flexibility, and layout design
Standards
Engineering standards guide fully compliant with ASME, EN, API, and TEMA international codes.
Explore AllPressure vessel mechanical sizing and FEA criteria
CE & PED 2014/68/EU compliant calculations
Welded storage tanks for petroleum and chemicals
Shell & tube heat exchanger thermal & mechanical sizing
About Us
10+ years of engineering experience, 3P philosophy, vision, mission, corporate values, and commitments.
Explore AllExpert engineering team founded on shared excellence
Precision, Performance, Professionalism + EN
Engineering beyond standards mindset
Reliability, technical excellence, and continuous growth
Our differentiators and engineering commitments
Finite Element Analysis (FEA)
Advanced Structural Stress, Stress Concentration & Thermal Simulations
ASME Section VIII Div. 2 (Part 5) Design-by-Analysis simulations for complex geometries beyond empirical formula limitations.

Verified Numerical Simulation
Finite Element Analysis (FEA) allows engineers to evaluate local stress peaks, plastic collapse risks, and fatigue limits prior to fabrication.
POLIEN models critical nozzle junctions, non-standard supports, and transient thermal gradients using high-density mesh structures.
FEA Analysis Disciplines
Linear & Non-Linear Static Analysis
Capturing material yield and strain hardening under high operating stresses.
Stress Linearization
Decomposing stresses into primary membrane, bending, and secondary peak categories.
Coupled Thermal-Structural Simulations
Evaluating structural integrity under non-uniform thermal gradient fields.
Buckling Stability (Eigenvalue & Non-Linear)
Assessing critical buckling factors for thin-walled vacuum vessels.
Industrial Applications
Applied Standards
Request Technical Proposal
Submit your equipment operational parameters for a tailored engineering sizing proposal.
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