Enrolment options
Primer – Accenture Interns Program
Aerospace Engineering
Course Name : Aerospace Structural Analysis Engineer Batch - 3
Course Code : B305ASA Analyst
Course Duration : 270 Hrs
Course Start Date : 14th Dec 2023
Course Description :
In this course the learners will get insight about the below topics.
- Aircraft basics and systems
- Aircraft Structure
- Metallic and Non-Metallic Materials
- GFEM and DFEM / Selection of elements (FEM/FEA)
- Fatigue and Damage Tolerance of metallic Materials
- Hand Calculation and Allied Topics (SRM/Repair/Concession)
- Hypermesh -FEM
- Analysis -FEA
Course Outcome :
By end of this course learners will be able
- To perform airframe structural design validation through hand calculations and finite element analysis for every primary and secondary structures like wings skin and attachment joints and brackets.
- To understand loads and load path in structures, thus, can create very good quality finite element model with appropriate loading and boundary conditions
- To perform stress analysis activities related to aircraft structural modifications, role change, upgradation, certification, and customization.
- To perform concessions, repair and SRM justification activities.
- To perform the design validation of aircraft interiors, brackets, and other secondary structural members
- To perform structural analysis activities related to design optimization, design modification, weight reduction, reverse engineering tasks.
- Can interpret and comment logically on the sufficiency, validity, and correctness of the finite element analysis results
- Aircraft Basics
- Aircraft Mechanical Systems
- Aircraft Electrical Systems
- Aircraft Avionics System
- Aircraft Propulsion Systems
- Environmental Control Systems
- Aircraft Interior
- Human Factor
- Fundamental of Design
- Loads, stress strain, Stress Strain Curves
- Determinate and indeterminate structures
- Principal stress and strain
- Failure theories
- Bending and deflection of beams
- SFD and BMD diagrams
- Aerospace metallic materials
- Aerospace Composite materials
- Composite Manufacturing
- Composite Machining Inspection and QC
- Basics of Finite Element Analysis
- Engineering Problem Solving techniques
- Selection of elements, Element order and accuracy control
- Meshing Guidelines, validation techniques
- GFEM and DFEM Requirements and Handling
- MSC-Nastran Overview
- Basics of Fatigue
- Basics of Fracture Mechanics
- Basics of Crack Propagation
- Design Philosophies
- F&DT evaluation
- Service Repair Manuals- Overview
- Concession – Overview
- Aircraft Repair Justifications – Overview
- Hand Calculation and application
- Fastener stiffness calculations
- Introduction to Hypermesh GUI
- Understand the Hypermesh options and capabilities
- Getting started with Hypermesh geometry, software compatibility
- Geometry creation / handling / editing
- Hypermesh Geometry Import Export and geometry cleanup
- Geometry preparation for FE Mesh / defeaturing and editing
- Getting ready geometry for FE Mesh, options, and parameters settings
- HM Meshing parameters control and settings
- Auto meshing, mesh modification & HM short cut keys
- 1D and 2D Meshing
- 2D Meshing medium components
- 2D Meshing complex components
- 2D Meshing assemble components, fasteners, and attachment
- 3D Meshing simple components
- 3D Meshing medium and complex components, use of higher order elements
- PATRAN GUI, Model creation and import to solution deck
- Free-free / Normal mode and Linear static analysis Post Processing and result interpretations
- Types of non-linearity and preparing for non-Linear analysis, Buckling / dynamic / frequency response analysis
Pre-requisite: Mechanical/Aeronautical/Automobile Engineer or Engineering Students
Training Method: Instruction Based Online Training & Virtual Classroom
Guests cannot access this course. Please log in.