Industrial & Heavy Engineering
Engineering and technology partner for industrial machinery OEMs, rotating equipment manufacturers, material handling specialists, power generation companies, and construction equipment producers — across 20 countries.
The Defining Industrial Engineering Challenges — and How EMUG Tech Solves Them
Industrial and heavy engineering organisations face relentless pressure to deliver higher-performance equipment at lower weight, cost, and lead time — while satisfying CE marking, ASME, ISO, and ATEX regulatory requirements and integrating Industry 4.0 digital capabilities into established product lines. EMUG Tech delivers across the full industrial engineering value chain: from concept design and structural analysis through manufacturing engineering, quality systems, regulatory certification, and AI-powered predictive maintenance.
EMUG Tech's industrial engineering teams work inside programmes — NX, Creo, and Solid Edge designers. ANSYS and Abaqus FEA engineers. ASME and EN code specialists. CE marking compliance engineers. ISO 9001 quality auditors. AI and IoT predictive maintenance developers. PLM architects for Teamcenter and Windchill. All in one industrial practice, across all equipment types.
INDUSTRIAL ENGINEERING SOLUTIONS BY DOMAIN
Select a domain tab to explore EMUG Tech's engineering scope, simulation capability, standards coverage, and internal links to related services — machinery design, rotating equipment, material handling, power and energy, construction and mining, and quality and compliance.
Industrial Machinery Design
Rotating Equipment & Pressure Systems
Material Handling & Conveyors
Power Generation & Energy
Construction & Mining Equipment
AI and Industry 4.0
CE Marking & Quality Systems
GLOBAL INDUSTRIAL ENGINEERING REACH
The EMUG PRIME Industrial Engagement Model — How EMUG Tech Delivers Industrial Programmes
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INDUSTRIAL ENGINEERING DOMAIN CAPABILITIES
Industrial Engineering Challenges We Solve
Industrial and heavy engineering organisations face relentless pressure to deliver higher-performance equipment at lower weight, cost, and lead time — while satisfying CE marking, ASME, ISO, and ATEX regulatory requirements and integrating Industry 4.0 digital capabilities into established product lines. EMUG Tech delivers across the full industrial engineering value chain. Hover each challenge to see how.
Industrial Engineering Technology Ecosystem
- Siemens NX
- PTC Creo Parametric
- Solid Edge
- SolidWorks
- CATIA V5
- ANSYS Mechanical
- Abaqus / Standard
- MSC Nastran
- ANSYS Fluent / CFX
- nCode DesignLife
- Teamcenter
- Windchill PDMLink
- SAP S/4HANA
- SAP PM / EAM
- SAP PP / QM
- ISO 9001:2015
- ASME VIII Div 1 & 2
- CE Marking Directives
- ATEX / IECEx
- ISO 55001 Asset Mgmt
- PyTorch / TensorFlow
- OpenCV / YOLO
- Azure / AWS IoT
- Power BI / Grafana
- UiPath / Power Automate
INDUSTRIAL SECTOR COVERAGE
General industrial machinery design in NX, Creo, and Solid Edge. Configure-to-order product family automation. PLM implementation (Teamcenter, Windchill). SAP BOM integration for manufacturing. CE marking Machinery Directive compliance. ISO 9001 quality systems.
Centrifugal and reciprocating pump design and analysis. Industrial compressor structural engineering. Heat exchanger and pressure vessel design (ASME VIII, EN 13445). API 610, 617, 682 compliance. Rotordynamic analysis. NACE sour service materials.
Steam and gas turbine structural analysis. Wind turbine component design to IEC 61400. Boiler and HRSG pressure analysis (ASME Section I, B31.1). Nuclear plant mechanical components. Solar mounting structures. AI predictive maintenance for power plant assets.
Excavator, crane, and drilling rig structural design. Heavy FEA for booms, arms, and chassis. Weld fatigue for severe duty cycles. ROPS and FOPS certification. CE marking for construction plant. EU Stage V engine compliance support.
Process equipment design — reactors, columns, and vessels. Piping stress analysis (ASME B31.3, EN 13480). ATEX certification for explosive atmosphere plant equipment. IECEx for global ATEX-equivalent markets. PED conformity assessment for pressure-bearing process equipment.
Engineering Solutions by Sector — Select a Domain
- Industrial machinery concept and detailed design
- Configure-to-order product family parametric design
- Engineer-to-order custom machine design
- Design for manufacture and assembly (DFM/DFA)
- 3D CAD modelling — NX, Creo, Solid Edge, SolidWorks
- Mechanism design and kinematic analysis
- Sheet metal, casting, and forging design
- Static and dynamic structural FEA — ANSYS, Abaqus
- Modal and harmonic response analysis
- Thermal analysis — steady state and transient
- Fatigue life prediction — nCode DesignLife
- Tolerance stack-up and GD&T
- CFD for fluid equipment — ANSYS Fluent
- Teamcenter and Windchill PLM implementation
- Engineering BOM to SAP manufacturing BOM
- Engineering change management workflow
- Drawing and document management
- Digital thread — design to manufacturing
- Centrifugal and reciprocating pumps design and analysis
- Industrial compressors — radial and axial stage design
- Gearboxes, couplings, and drive train engineering
- Heat exchangers — shell & tube, plate, air-cooled
- Pressure vessels and reactors — ASME VIII, EN 13445
- Turbines — steam, gas, and hydro turbine analysis
- Fans, blowers, and centrifugal separators
- Rotordynamic analysis — critical speed, stability
- Vibration analysis — modal, harmonic, transient
- Fatigue and fracture mechanics for pressure equipment
- CFD for internal flow in pumps and compressors
- Thermal-structural analysis for high-temperature equipment
- Finite element analysis for ASME code compliance
- ASME VIII Div. 1 and Div. 2 pressure vessel code
- EN 13445 unfired pressure vessels
- API 610 centrifugal pumps for petroleum
- API 617 axial and centrifugal compressors
- ISO 10816 / ISO 20816 vibration evaluation
- NACE MR0175 sour service requirements
- Conveyor systems — belt, roller, chain, and screw
- Automated guided vehicles (AGV) and robotic systems
- Cranes, hoists, and overhead lifting equipment
- Warehouse racking, shelving, and storage systems
- Packaging and palletising machinery design
- Industrial sorting and distribution systems
- Pneumatic and hydraulic conveying system design
- PLC and SCADA integration for material handling control
- Robot offline programming (OLP) for pick-and-place
- AI-powered throughput and scheduling optimisation
- Conveyor system digital twin for performance monitoring
- Predictive maintenance for conveyor drives and rollers
- IoT sensor integration for real-time condition monitoring
- EN 620 continuous conveyors — safety
- EN 619 continuous handling equipment
- FEM rules for lifting equipment
- CE marking — Machinery Directive 2006/42/EC
- ISO 4301 cranes — classification
- OSHA 1910 material handling equipment
- Power generation turbines — steam, gas, hydro
- Wind turbine structural components and nacelle design
- Generator and motor structural design and analysis
- Boilers, heat recovery steam generators (HRSG)
- Nuclear plant mechanical component design
- Solar mounting structures and tracker design
- Transformer and electrical switchgear enclosures
- Turbine blade FEA — creep, thermal, and vibration
- Boiler pressure part analysis — ASME B31.1
- Wind turbine structural — IEC 61400 load cases
- Seismic analysis for power plant structures
- CFD for combustion, heat transfer, and flow systems
- Fatigue assessment for cyclic thermal loading
- ASME B31.1 power piping code
- ASME B31.3 process piping
- IEC 61400 wind turbines
- IEEE standards for generators
- PED 2014/68/EU for power plant pressure equipment
- ATEX for hazardous area electrical equipment
- Excavators, bulldozers, and earthmoving equipment
- Mobile cranes and all-terrain lifting equipment
- Drilling rigs and mining machinery design
- Concrete mixing and batching equipment
- Aggregate crushing and screening equipment
- Road making, paving, and compaction equipment
- Underground mining vehicles and support equipment
- Heavy structural FEA — booms, arms, chassis
- Weld fatigue and fracture for high-cycle applications
- Soil-structure interaction — bucket and blade forces
- Hydraulic cylinder and actuator analysis
- Dynamic load analysis for off-highway duty cycles
- ROPS/FOPS structural certification (ISO 3449, ISO 3471)
- CE marking — Machinery Directive for construction plant
- ISO 3449 FOPS falling object protection
- ISO 3471 ROPS rollover protection
- EN 13001 crane design requirements
- ISO 11684 safety signs and hazard pictorials
- EU Stage V engine emission compliance
- ISO 9001:2015 gap assessment and QMS implementation
- ISO 14001 environmental management system
- ISO 45001 occupational health and safety management
- ISO 55001 asset management system design
- Process audit for manufacturing operations
- Supplier quality audit and development programme
- First article inspection and quality control plans
- Machinery Directive 2006/42/EC — essential requirements
- Low Voltage Directive 2014/35/EU
- EMC Directive 2014/30/EU
- Pressure Equipment Directive 2014/68/EU
- ATEX Directive — explosive atmosphere equipment
- IECEx — global explosive atmosphere certification
- Technical file and declaration of conformity
- EN ISO 13849 — safety-related control systems PLr
- IEC 62061 — safety of machinery SIL assessment
- IEC 61508 — functional safety SIL 1-4
- HALT and HASS reliability testing
- PFMEA for manufacturing process control
- Environmental and vibration testing (IEC 60068)
Answers from EMUG Tech's Industrial & Heavy Engineering Practice.
30+ Industrial Clients. 100+ Equipment Programmes. 20 Countries.









Designed Right. Built Tough. Certified. Connected.
Partner with EMUG Tech to deliver your industrial and heavy engineering programme from machinery design and rotating equipment through material handling, power generation, construction plant, CE marking, and ISO 9001 quality systems, across 20 countries using the EMUG PRIME Industrial Engagement Model.