Robot Structural Analysis Professional course
Robot Structural Analysis Professional course, available at $59.99, has an average rating of 3.6, with 228 lectures, based on 309 reviews, and has 1763 subscribers.
You will learn about Conceptual problem solved in Robot Structural Analysis Design of Column Design of Beam Design of Shear Wall Design of Footing Pre Engineered Building (Steel structure ) Steel Bridge Moving Load Time History Analysis Residential Building Design ( As an Assignment ) How to solve warning related with Residential Building Set Tolerance in Robot Structural Analysis Design of Slab of Residential Building by Required Reinforcement Design of Slab of Residential Building by Provided Reinforcement Design of Beam of Residential Building by Required Reinforcement Design of Beam of Residential Building by Provided Reinforcement Design of Column of Residential Building by Required Reinforcement Design of Column of Residential Building by Provided Reinforcement Steel Portal Frame Buckling Analysis Optimization of Steel structure Solve Errors in Steel Member Wind Load Simulation Solve Warnings in Steel Member Map of Members Passed the Failed section This course is ideal for individuals who are Civil engineers or Structural Engineers It is particularly useful for Civil engineers or Structural Engineers.
Enroll now: Robot Structural Analysis Professional course
Summary
Title: Robot Structural Analysis Professional course
Price: $59.99
Average Rating: 3.6
Number of Lectures: 228
Number of Published Lectures: 228
Number of Curriculum Items: 228
Number of Published Curriculum Objects: 228
Original Price: ₹7,900
Quality Status: approved
Status: Live
What You Will Learn
- Conceptual problem solved in Robot Structural Analysis
- Design of Column
- Design of Beam
- Design of Shear Wall
- Design of Footing
- Pre Engineered Building (Steel structure )
- Steel Bridge
- Moving Load
- Time History Analysis
- Residential Building Design ( As an Assignment )
- How to solve warning related with Residential Building
- Set Tolerance in Robot Structural Analysis
- Design of Slab of Residential Building by Required Reinforcement
- Design of Slab of Residential Building by Provided Reinforcement
- Design of Beam of Residential Building by Required Reinforcement
- Design of Beam of Residential Building by Provided Reinforcement
- Design of Column of Residential Building by Required Reinforcement
- Design of Column of Residential Building by Provided Reinforcement
- Steel Portal Frame
- Buckling Analysis
- Optimization of Steel structure
- Solve Errors in Steel Member
- Wind Load Simulation
- Solve Warnings in Steel Member
- Map of Members
- Passed the Failed section
Who Should Attend
- Civil engineers
- Structural Engineers
Target Audiences
- Civil engineers
- Structural Engineers
Why to enroll in this ‘Robot Structural Analysis Professional course’?
This course is created by a highly experienced Structural Engineer using Robot Structural Analysis Professional, and the content is arranged in such a way that it will clear your basic concept and give you a base for the Professional Content that I have provided in this course.
In this course, you will learn everything from the Basic to the Advance level using Robot Structural Analysis Professional.
First, we will start with some Basic examples, which are very important. Then we will move to the Modelling, Analyzing, and Design of Reinforced Concrete Structures like Beams, Columns, Shear Walls, and Footings in Robot Structural Analysis.
I am using Robot Structural Analysis Professional, but you can use any version of Autodesk Robot Structural Analysis Professional.
Advance Steel structures modelling, analyze and design in Autodesk Robot Structural Analysis Professional. Basic to advance steel efficiently with crystal-clear concepts.
Autodesk Robot is very powerful software that can make the life of structure engineers very easy.
Then, we will do Bridge Modelling, Analysis, and design with moving loads in Robot Structural Analysis.
Residential Building as an assignment.
All important Tools are properly explained, as they are essential for Advance Modelling, Analyzing, and Designing.
If you don’t like the course, you have 30 days to ask Udemy for a refund.
Course Curriculum
Chapter 1: Basic Examples solved in Robot Structural Analysis
Lecture 1: Changing units in robot structural analysis
Lecture 2: Example no 1
Lecture 3: Example no 2
Lecture 4: Example no 2 support problem
Lecture 5: Example no 2 ( Adding the load )
Lecture 6: Doubt solved
Lecture 7: Example no 3
Lecture 8: Example no 4
Lecture 9: Example no 4 part 2
Lecture 10: Example no 5
Lecture 11: Example no 5 part 2
Lecture 12: Example no 6
Lecture 13: Example no 6 part 2
Chapter 2: Design of Reinforced Concrete Beam
Lecture 1: Basic setting
Lecture 2: Beam geometry and general parameters
Lecture 3: Apply load on Rc Beam
Lecture 4: How to verify load added or not ?
Lecture 5: Calculation setting
Lecture 6: Final step before running the analysis
Lecture 7: Shear force and Bending Moment diagram
Lecture 8: Area of reinforcement
Lecture 9: Checking the deflection
Lecture 10: Reinforcement plotting
Lecture 11: Beam Notes
Chapter 3: Design of Reinforced Concrete Column
Lecture 1: Initial setting
Lecture 2: Calculation setting
Lecture 3: Reinforcement setup
Lecture 4: Adding the loads
Lecture 5: Column result
Lecture 6: Column Reinforcement
Lecture 7: Create note and save it
Lecture 8: Detailing of the column
Chapter 4: Design of Shear Wall
Lecture 1: Shear wall option not available solved
Lecture 2: Create wall geometry and Wall opening
Lecture 3: Shear Wall calculation settings
Lecture 4: Applying the load
Lecture 5: Design of the shear wall
Lecture 6: Reinforcement modifications
Chapter 5: Foundation Design
Lecture 1: Modelling the Foundation
Lecture 2: Calculation setting
Lecture 3: Foundation reinforcement
Lecture 4: Assign the various loads to the foundation
Lecture 5: Soil profile setting
Lecture 6: Foundation design complete
Chapter 6: Buckling Analysis
Lecture 1: Define the grids
Lecture 2: Column Selection and drawing
Lecture 3: Drawing the Beam
Lecture 4: Changing the Display
Lecture 5: Claddiing
Lecture 6: Adding the support
Lecture 7: Buckling case load added
Lecture 8: Load applied
Lecture 9: Set parameter for buckling analysis
Lecture 10: Result Modes
Lecture 11: Critical Load
Chapter 7: Residential Building Design Real World Project
Lecture 1: Important message
Lecture 2: Initial setting of Building
Lecture 3: Defining the Grid in X direction
Lecture 4: Defining the grid in Y direction
Lecture 5: Define the Grids and Story
Lecture 6: Modify the story data
Lecture 7: Define the material
Lecture 8: Defining the Column and beam
Lecture 9: Modelling the Column
Lecture 10: Drawing the Beam and extrusion
Lecture 11: Modelling of the slabs section
Lecture 12: Modelling of the one way slab
Lecture 13: Modelling of two way slab
Lecture 14: Move and edit
Lecture 15: Modelling the Mild Landing Beam
Lecture 16: Copy and replication of beam
Lecture 17: Staircase modelling complete
Lecture 18: Lowering the staircase beam
Lecture 19: Defining the load type
Lecture 20: Apply the external Brickwork load
Lecture 21: Applying load internal beam
Lecture 22: Applying load on the floor
Lecture 23: Applying loads on the stairs
Lecture 24: Replication of floors
Lecture 25: Replication of floors special view
Lecture 26: working in the selected floor
Lecture 27: internal beam load modification
Lecture 28: interior beam load modification
Lecture 29: Modification of exterior beam
Lecture 30: How to only see the slab loading
Lecture 31: Modifications of load on slab
Lecture 32: Selecting the design code
Lecture 33: Define the load combination
Lecture 34: Primary setting of meshing
Lecture 35: Meshing of floors
Lecture 36: Analysis
Lecture 37: Forces in X direction
Lecture 38: Forces in y direction
Instructors
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Civil Engineer's Destination
Architect by Heart, Civil Engineer by Profession.
Rating Distribution
- 1 stars: 7 votes
- 2 stars: 13 votes
- 3 stars: 49 votes
- 4 stars: 111 votes
- 5 stars: 129 votes
Frequently Asked Questions
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Can I take my courses with me wherever I go?
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