Uche Ajuonuma Senior Mechanical Engineer

Uche Ajuonuma

Senior Mechanical Engineer · Mission-critical thermal & mechanical systems
uchearistotle@gmail.com +1 587 438 0890 linkedin.com/in/uchearistotle uchearistotle.com

Sheet R-01 · Specification sheet

Uche Ajuonuma

Senior Mechanical Engineer · Mission-critical thermal & mechanical systems

Current SR. MECH. ENGINEER,
NANO NUCLEAR ENERGY
Experience 13+ YEARS
Sectors NUCLEAR · THERMAL PROCESSING · OIL & GAS · ROTATING MACHINERY · AUTOMOTIVE
Core codes ASME BPVC III & VIII · B31.1 · B31.3 · Y14.5 · CSA N285.0 · B51 · Z662
Primary CAD SIEMENS NX · SOLIDWORKS · INVENTOR · TEAMCENTER
Education B.ENG MECHANICAL · CSWP · PSM I
Right to work CANADIAN CITIZEN · AUTHORISED IN THE US
Based in CALGARY, ALBERTA
Availability OPEN TO CONVERSATIONS · 4 WEEKS NOTICE
Work mode REMOTE PREFERRED · HYBRID IF IN CANADA
01 · Profile

Senior mechanical engineer with 13+ years delivering high-consequence mechanical and thermal systems across nuclear power, oil and gas, thermal-processing equipment, rotating machinery and automotive production. I lead complex designs from requirements and first principles through thermal and structural evaluation, detailed engineering, drawings, specifications, fabrication, validation, commissioning and deployment.

That is the rigour resilient data-centre cooling infrastructure needs: heat transfer, fluid dynamics, CFD-informed design, pressure systems, constructability, vendor coordination, technical documentation, design standardisation, and disciplined resolution of safety- and reliability-critical issues.

60%Manufacturing time removed from a heat-exchanger line
95%On-time delivery, nuclear design packages
30%Development time cut by PLM configuration control
20+Prototypes evaluated in a 90-day window
02 · Fit

What the requirement usually says, and where I have done it.

Typical requirementDirect evidence
Mission-critical facilities & power generation Advanced Micro Modular Reactor pressure boundaries (Nano Nuclear); Cobalt-60 in-bay handling equipment in an operating nuclear facility (Westinghouse).
Mechanical cooling & thermal systems Moving-bed heat exchangers and bulk-material handling redesigned end-to-end (Solex); thermal-fluid design across every role since 2020.
Heat transfer & fluid dynamics Duty, LMTD and surface sizing on production thermal equipment; thermal evaluation of reactor components covering gradient, expansion and creep.
CFD analysis Flow simulation used to drive geometry on high-pressure wellhead and valve bodies, and CFD-informed decisions on thermal equipment.
Design basis & technical specifications Licensing-aligned design-basis content for PSAR inputs, system design descriptions, safety classification and design criteria (Nano Nuclear).
Engineering & construction drawings Controlled fabrication drawings, GD&T and BOMs to ASME Y14.5 across five employers and three regulatory regimes.
Equipment submittals & procurement support Led supplier drawing and equipment-submittal review; procurement support and supplier engagement for first-of-a-kind nuclear hardware.
Concept-to-deployment engineering Component ownership from functional requirement and first-principles loads through to fabrication readiness and commissioning closeout.
Design reviews & standardisation Led formal design reviews and technical issue closure (Westinghouse); established repeatable design rules across a reactor system (Nano Nuclear).
Fabrication, validation & commissioning Shop inspection, test readiness, installation planning, issue resolution and commissioning closeout on delivered thermal equipment (Solex).
Vendor & manufacturer coordination Fabricators and project teams coordinated through build; hands-on supplier and production support on an operating assembly line.
Root-cause analysis & risk mitigation Failure investigation and corrective design cutting production errors 20 % (SKF); field-issue investigation raising reliability 15 % (IWS).
Technical leadership & cross-functional work Drove decisions across thermal-hydraulics, structures, safety, materials, manufacturing and procurement; mentored designers in GD&T, PDM and nuclear-quality documentation.

Each row links to the work it came from on the selected work sheets.

03 · Experience

Senior Mechanical Engineer

Nano Nuclear Energy Inc. · United States
2026 – Present
  • Lead mechanical design of pressure-retaining and internal components for advanced Micro Modular Reactor systems at high temperature and multi-MPa pressure, integrating safety, reliability, thermal performance, manufacturability and ASME code requirements.
  • Own component definition from functional requirements and first-principles load development through detailed configuration, interface control, specifications, engineering drawings, technical reviews, procurement support and fabrication readiness; establish repeatable design rules that improve consistency across the reactor system.
  • Perform and coordinate thermal and structural evaluations addressing heat transfer, thermal expansion, creep, fatigue, interacting load cases, load paths and mechanical boundaries to protect long-term component and system reliability.
  • Drive multidisciplinary decisions across thermal-hydraulics, structural analysis, safety, materials, manufacturing, procurement and system integration; reduce complex issues to defensible, actionable engineering resolutions.
  • Resolve high-consequence manufacturability and supplier challenges involving material selection, fabrication sequencing, tolerance control, inspection access and nuclear-grade quality requirements before release to production.
  • Develop licensing-aligned design-basis content for PSAR inputs, system design descriptions, safety classification, design criteria and configuration-controlled records, maintaining traceability between requirements, analysis and physical design.

Mechanical Design Engineer

Nano Nuclear Energy Inc. · United States
2025 – 2026
  • Developed advanced-reactor mechanical components for demanding thermal and pressure conditions, advancing concepts through trade studies, detailed design, structural validation, multidisciplinary review and manufacturability refinement.
  • Defined component interfaces, mechanical boundaries, tolerances, load paths and drawing requirements to integrate reactor pressure-boundary and internal systems without compromising inspection, assembly or service performance.
  • Prepared controlled engineering deliverables and supported design reviews, procurement decisions and supplier engagement for first-of-a-kind nuclear hardware.

Mechanical Design Engineer

Solex Thermal Science · Calgary, Canada
2024 – 2025
  • Led redesign of moving-bed heat exchangers and bulk-material handling equipment, cutting manufacturing time by 60 % while maintaining structural integrity, thermal performance and continuous-duty reliability.
  • Engineered pressure equipment and thermal systems to ASME Section VIII and CSA B51 using stress calculations, FEA, material selection and design-for-fabrication reviews.
  • Produced fabrication-ready models, drawings, piping layouts, flow diagrams and BOMs that accelerated production and shortened time-to-market by 15 %.
  • Led supplier drawing and equipment-submittal reviews and coordinated with fabricators and project teams through shop inspection, test readiness, installation planning, technical issue resolution and commissioning closeout.

Senior Mechanical Designer

Westinghouse Electric Canada · Peterborough, Canada
2023 – 2024
  • Led mechanical design of in-bay equipment for handling and processing Cobalt-60 in a nuclear facility, delivering safe, maintainable systems compliant with CSA N285.0, ASME B31.3 and ASME Y14.5.
  • Defined equipment layouts, load paths, mechanical interfaces, GD&T, BOMs, validation plans and fabrication drawings while coordinating with engineering, operations, safety, quality and manufacturing stakeholders.
  • Led formal design reviews and technical issue closure, exposing interface, constructability, maintainability and operational conflicts before fabrication and preventing downstream errors, rework and safety risk.
  • Managed design schedules to achieve 95 % on-time delivery and mentored junior designers in SolidWorks modelling, GD&T, PDM revision control and nuclear-quality documentation.

R&D Engineer

Intelligent Wellhead Systems · Calgary, Canada
2022 – 2023
  • Designed smart lockout devices and high-pressure wellhead control equipment for oil-and-gas operations, applying ASME B31.1, CSA Z662, OH&S and field-service requirements.
  • Developed and evaluated more than 20 new-product prototypes in the first 90 days using CAD and additive manufacturing, accelerating design learning and technical decision-making.
  • Reduced product-development time by 20 % and increased reliability by 15 % through rapid prototyping, tolerance-stack analysis, field-issue investigation, iterative validation and corrective designs based on customer and operating data.
  • Released detailed fabrication drawings, BOMs and design documentation, and used Scrum-based execution to shorten development cycles and strengthen cross-functional delivery.

Mechanical Designer / Validation Engineer

SKF Group · Calgary, Canada
2020 – 2022
  • Designed and validated precision mechatronic systems, including rotary magnetic-levitation bearings and neutron-chopper assemblies for high-speed industrial, compression and wafer-manufacturing applications.
  • Performed FEA, tolerance analysis and rotational performance testing to verify dynamic behaviour, structural integrity, precision and durability under demanding operating conditions.
  • Reduced production errors by 20 % by leading failure investigation, test-data analysis, corrective design, drawing refinement and disciplined product-quality validation through release readiness.

Mechanical Design Engineer

Innoson Motors · Nnewi, Nigeria
2012 – 2019
  • Led mechanical design and development of truck bodies, vehicle components and fabricated structures using Siemens NX, translating operational requirements into cost-effective, production-ready hardware.
  • Reduced production time by 20 % through design optimisation, manufacturability improvements and close coordination with fabrication and assembly teams.
  • Implemented Teamcenter lifecycle control for components and BOMs, improving configuration discipline and reducing product-development time by 30 %.
  • Provided hands-on technical support to suppliers and production teams, applying lean-manufacturing principles and cross-functional schedule ownership to reduce waste, resolve build issues, strengthen reliability and achieve 98 % on-time design delivery.
04 · Technical expertise

Engineering

Thermal-fluid designHeat transfer Fluid dynamicsCFD analysis Pressure-retaining equipmentStructural integrity High-temperature designThermal expansion Creep & fatigueLoad-path definition System integrationGD&T Design for manufactureValidation & commissioning

Codes & documentation

ASME BPVC Section IIIASME BPVC Section VIII ASME B31.1ASME B31.3 ASME Y14.5CSA N285.0 CSA B51CSA Z662 Design basis & criteriaSystem design descriptions PSAR inputsConfiguration management Procurement & licensing support

Tools

Siemens NXSolidWorks Autodesk InventorAutoCAD TeamcenterPDM FEAAdditive manufacturing

Education & credentials

Bachelor of Engineering, Mechanical Engineering Certified SolidWorks Professional (CSWP) Professional Scrum Master I (PSM I)
05 · Going deeper

Every claim on this sheet has a longer sheet behind it — the constraint that made the job hard, the decision that resolved it and what it cost.

And ten free engineering calculators on uchearistotle.com/bench, built and published because the arithmetic should be available to everyone who needs it.

Uche Ajuonuma · Senior Mechanical Engineer · uchearistotle@gmail.com · +1 587 438 0890 · uchearistotle.com — this PDF is generated from uchearistotle.com/resume.html, so the two cannot disagree.

Sheet F-01

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Drawn by U. AJUONUMA
Sheet R-01
Title SPECIFICATION SHEET
Rev A
Issued 2026-08-25
Status OPEN FOR WORK