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MIDAS is a family of structural and geotechnical analysis and design software used by civil and structural engineers worldwide. It offers powerful finite element modeling, fast linear and nonlinear analytical solvers, and comprehensive design capabilities for buildings, bridges, and civil infrastructure, along with clear graphic displays, reports and drawings that help engineers understand and communicate their analysis and design results.
SSA MIDAS Training covers the tools engineers actually use on the job:
Overview of MIDAS Civil and MIDAS Gen
Applications in structural engineering
Interface and workspace navigation
Project creation and file management
Units, coordinate systems, and modelling concepts
Structural analysis and design workflow
Overview of finite element analysis (FEA)
1D, 2D, and 3D structural modelling
Global and local coordinate systems
Nodes and element creation
Beam, column, truss, and plate elements
Element connectivity and numbering
Structural grids and reference lines
Model checking and error identification
Concrete material properties
Structural steel properties
Reinforcement steel properties
Material grades and standards
Elastic modulus and Poisson’s ratio
Density and unit weight
Defining and assigning materials
User-defined material properties
Rectangular and circular sections
T-sections and L-sections
I-sections and built-up sections
Steel section databases
Reinforced concrete section properties
Section dimensions and parameters
Defining custom sections
Assigning section properties to elements
Fixed and pinned supports
Roller and partial restraints
Spring supports
Elastic supports
Foundation and soil support concepts
Master-slave constraints
Rigid links and connection constraints
Support modelling verification
Dead loads and self-weight
Live loads
Equipment and imposed loads
Wind loads
Seismic loads
Temperature and shrinkage loads
Moving loads
Load case classification
Load application on nodes and elements
Serviceability load combinations
Ultimate limit state combinations
Automatic load combinations
Manual load combinations
Code-based load combinations
Strength and serviceability checks
Load combination review and validation
Linear static analysis
Nonlinear analysis concepts
Eigenvalue analysis
Modal analysis
Response spectrum analysis
P-Delta analysis
Buckling analysis fundamentals
Analysis settings and solver options
Reviewing analysis warnings and errors
Concrete design standards and codes
Beam design
Column design
Slab modelling and design concepts
Shear and flexural design
Axial load and moment interaction
Reinforcement calculation
Reinforcement detailing requirements
Design checks and result interpretation
Steel design standards and codes
Steel beam design
Steel column design
Tension and compression members
Bending and shear checks
Buckling and slenderness checks
Steel connection design concepts
Member optimization
Design result interpretation
Plate and shell elements
Slab modelling techniques
Meshing and element connectivity
Load distribution on slabs
Floor diaphragm concepts
Slab stress and displacement results
Local and global axis interpretation
Mesh refinement and model accuracy
Fundamentals of seismic analysis
Seismic parameters and design inputs
Response spectrum definition
Modal participation factors
Mass source definition
Seismic load application
Storey displacement and drift
Base shear and modal results
Seismic design review
Support conditions for foundations
Soil spring modelling
Footing and raft modelling concepts
Pile and pile-cap modelling fundamentals
Soil-structure interaction overview
Foundation load extraction
Reaction and settlement interpretation
Design considerations for foundation modelling
Deformed shape review
Node displacement results
Beam forces and moments
Shear force and bending moment diagrams
Axial force and torsional results
Stress and strain evaluation
Support reactions
Design ratios and failure checks
Result tables and graphical interpretation
Structural model documentation
Analysis result reports
Design calculation reports
Member schedules
Load and combination reports
Model screenshots and presentation
Exporting results
Preparation of engineering documentation
Quality checks before final submission
Architectural drawing interpretation
Structural grid preparation
Column, beam, and slab modelling
Load definition and combinations
Static and seismic analysis
Structural design checks
Results and report preparation
Structural layout and member selection
Steel section modelling
Load application
Load combinations
Structural analysis
Member design verification
Engineering documentation
Have Queries? Talk to our Career Counselor
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Learning a technology with a professional who is well expertise in that solve 60% of your needs.
We support any training with more practical classes. So, we always prefers to give hands-on training.
We started with 2 trainers, now we are 100+ and it’s still increasing. So we can give the students flexibility timings.
If you need software assistance we are here to back you up. Bring your laptop and load the required software and learn.
If you need software assistance we are here to back you up. Bring your laptop and load the required software and learn.
Every course in covered with interview point questions and real-time scenarios of what the company may look after from you.
A MIDAS certificate shows employers that you have practical knowledge of structural analysis and design and have applied it to real project work. With a live project completed at the end of the course, your certificate is backed by demonstrable skills, which helps your profile stand out during shortlisting and interviews.
Our certification is awarded after successful completion of the course modules and the capstone project, under the guidance of trainers who have experience in structural design and corporate training.
Structural analysis and design skills are needed across building, bridge and infrastructure projects. After completing the course you can apply for roles such as:
MIDAS Gen is used for general building structures. MIDAS Civil is focused on bridges and civil infrastructure, with moving load and construction-stage analysis built in.
Trainers are Industry Experts who have a decade of experience as corporate trainers/Real time designers and practitioners in mechanical, Electrical and civil industries. Also, the Training faculty of SSA are domain oriented graduates with vast academic knowledge, working professionals from the mechanical, Electrical and civil field who provide hands-on training to the students.
SSA provides trainings both offline and online.
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