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Solutions Engineered End to End

From training and design to advanced simulation and research support — delivered with technical rigour.

EdTech Training Courses
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EdTech Training Courses

  • ANSYS Training
  • COMSOL Multiphysics Training
  • CFD Training
  • CAE/FEA Training
  • CAD & Mechanical Design Training
  • Simulation-based hands-on projects
  • Detailed course modules
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Mechanical Product Design & Development
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Mechanical Product Design & Development

  • Concept Development
  • CAD Modelling
  • Mechanical System Design
  • Design Analysis & Verification
  • Design Optimization
  • Prototype-oriented Design
  • Design for Manufacturability (DFM)
  • Feasibility & Technical Assessment
CFD / CAE / FSI Simulations
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CFD / CAE / FSI Simulations

  • Computational Fluid Dynamics (CFD)
  • Finite Element Analysis (FEA)
  • Fluid–Structure Interaction (FSI)
  • Thermal & Heat Transfer Analysis
  • Structural & Stress Analysis
  • Multiphase Flow & Fluid–Thermal Analysis
  • Transient & Steady-State Simulations
  • Parametric Studies & Design Optimization
  • Mesh Independence & Model Validation
  • Simulation-based Performance Evaluation
Research Consultancy
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Research Consultancy

  • Design Optimization
  • Parametric Studies
  • Research Problem Formulation
  • Simulation Validation
  • Data Analysis & Scientific Visualization
  • Technical Reports & Research Documentation
PhD Research Support
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PhD Research Support

  • Topic & Synopsis Development
  • Literature Review Support
  • Research Methodology
  • Numerical/Experimental Analysis
  • Research & Review Paper Writing Guidance
  • Journal Publication Support
  • Thesis Writing Support
  • Editing, Proofreading & Formatting
  • Similarity Analysis & Originality Enhancement
  • Thesis Presentation & Viva Preparation

EdTech Training

Detailed Course Modules

Every course is structured module by module, blending theory with hands-on software sessions and a final capstone project.

ANSYS Training

6–8 weeks · 40+ hrsBeginner to Advanced
  1. Module 1 — ANSYS Workbench interface, project schematic & workflow
  2. Module 2 — Geometry creation & cleanup in SpaceClaim / DesignModeler
  3. Module 3 — Meshing fundamentals: element types, sizing, quality metrics
  4. Module 4 — Static structural analysis: loads, supports, contacts
  5. Module 5 — Modal, harmonic & transient structural analysis
  6. Module 6 — Steady-state & transient thermal analysis
  7. Module 7 — ANSYS Fluent basics: solver setup, turbulence models
  8. Module 8 — Post-processing, result validation & report generation
  9. Capstone — Industry-style component analysis project

COMSOL Multiphysics Training

5–6 weeks · 32+ hrsIntermediate
  1. Module 1 — COMSOL desktop, model builder & physics interfaces
  2. Module 2 — Parameters, variables, functions & parametric sweeps
  3. Module 3 — Solid mechanics & structural physics modules
  4. Module 4 — Heat transfer in solids and fluids
  5. Module 5 — Laminar & turbulent CFD modelling
  6. Module 6 — Multiphysics coupling: thermal–structural, FSI, electro-thermal
  7. Module 7 — Meshing strategies, study types & solver configuration
  8. Module 8 — Result evaluation, derived values & animations
  9. Capstone — Coupled multiphysics simulation case study

CFD Training

6 weeks · 36+ hrsBeginner to Advanced
  1. Module 1 — Fluid mechanics refresher & governing equations
  2. Module 2 — Discretization schemes and the finite volume method
  3. Module 3 — Mesh generation, boundary layers & y+ estimation
  4. Module 4 — Turbulence modelling: k-ε, k-ω SST, LES overview
  5. Module 5 — Boundary conditions, solver settings & convergence control
  6. Module 6 — Multiphase, heat transfer & transient flow simulations
  7. Module 7 — Mesh independence study and experimental validation
  8. Module 8 — Scientific post-processing & visualization
  9. Capstone — Complete CFD study with technical report

CAE / FEA Training

5 weeks · 30+ hrsBeginner to Intermediate
  1. Module 1 — Fundamentals of FEA: stiffness, shape functions, DOF
  2. Module 2 — Element selection: 1D, 2D, 3D & element quality
  3. Module 3 — Material models: linear, nonlinear, plasticity, hyperelastic
  4. Module 4 — Linear static analysis & stress interpretation
  5. Module 5 — Contact, bolted joints & assembly analysis
  6. Module 6 — Vibration, buckling & fatigue life basics
  7. Module 7 — Thermal–structural coupled analysis
  8. Module 8 — Result interpretation, factor of safety & design checks
  9. Capstone — Structural validation of a real component

CAD & Mechanical Design Training

4–6 weeks · 30+ hrsBeginner Friendly
  1. Module 1 — Engineering drawing, projections & GD&T essentials
  2. Module 2 — Sketching and parametric part modelling
  3. Module 3 — Advanced features: sweeps, lofts, patterns, surfacing intro
  4. Module 4 — Assembly modelling, mates & motion study
  5. Module 5 — Sheet metal and weldment design
  6. Module 6 — Production drawings, BOM & tolerance stack-up
  7. Module 7 — Design for Manufacturability (DFM) & material selection
  8. Module 8 — Prototype-oriented design & documentation
  9. Capstone — End-to-end product design portfolio project

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