
This course teaches you how to model a building In Revit Software and export to Robot and Etabs for structural analysis and design of elements.
we will compare the results between Robot and Etabs,Analyse the forces,moments..
you will learn how to design a column in ROBOT and ETABS,and define the seismic forces in the two softwares.
Start a new Revit project with a structural template, set up templates, manage views and schedules for architecture, systems, and MEP, and import CAD drawings.
Create and manage levels in Revit by defining elevations with points or lines, copying levels vertically, and adjusting units from millimeters to meters with offsets.
Create and manage grids in Revit by adjusting levels, applying temporary and permanent dimensions, and using bubble left and right controls for precise alignment.
Model walls in Revit from level 1 to level 2 using centerline and core face, set offsets and radii, assign wall types, and view analytical model in Robot and ETABS.
Model columns in Revit by choosing category and family, duplicating types, and assigning dimensions like 50x60 or 60x30; set base and top levels, offsets, and rotate to align with grids.
Learn how to model beams in Revit by placing beams on level 2 using the beam tool, adjusting cross sections, offsets, and elevations, and applying visual styles and analytical settings.
Learn to model a slab in revit by creating floors on levels, sketching rectangles to form steps, inserting columns, and setting elevations, including perimeter area and span direction.
Learn to create, modify, and delete openings in walls using methods like rectangular wall openings and symbolic line openings across multiple levels.
Learn to create models and transfer workflows for Revit, ETABS, and Robot, including exporting models to Robot structural analysis, using the toolkit, and installing tools from the Autodesk App Store.
Export the model to robot structural analysis, choose direct integration with robot software, and save the file, then open the file as you like for reports.
Define materials and reinforcing bars in the software, set metric units and design codes, configure bars, stirrups, and concrete properties, and save your parameter defaults for future projects.
Edit and assign loads, defining self weight and live load, and apply them to all panels using load definitions with values minus 4.5 and minus 2.
Assign material C25 to all elements by selecting bar sections from the active list, applying via modify and sequence steps, then verify every element uses material C25.
Master view and selection in Revit, Etabs and Robot by hiding elements, selecting beams, columns, walls, and sections, switching between plan, XY views and elevations, and applying display options.
Export the model to ETABS, save the export file, and complete the export for a smooth workflow.
Define and modify material properties, input weight per unit volume and modulus of elasticity for concrete, view design data, and copy material definitions for reuse and saving.
Learn how to assign materials to elements in etabs and robot, define frame and slab section properties, and modify key section dimensions for columns, beams, and slabs.
Explore view and selection in Revit, Etabs, and Robot, mastering how to pick elements, set story levels and city elevations, and adjust plan, elevations, and display options.
Perform analysis to determine base reactions, view tables for reactions, compute self weight and live load on beams, and adjust the model with weight based on full lengths.
Explore frame and shell results by displaying forces, stresses, and diagrams for beams and columns, including self-weight loads, moments, and torsion; view plan maps and results across Etabs and Robot.
Generate and manage load combinations in ETABS and Robot by defining, modifying, adding, and deleting combinations, using automatic and manual modes, and applying self-weight and live-load factors.
Explore concrete frame design in Etabs and Robot, selecting column reinforcement, applying design codes, seismic considerations, and evaluating interaction diagrams and reinforcement outcomes.
Define model cases and seismic forces using UBC 97 dynamic analysis in ETABS and Robot. Set soil type C, self weight, seismic weight, and response spectral parameters for seismic analysis.
Analyze seismic results from ETABS and Robot, including periods, mass participation, and the second mode in the x and y directions, and visualize the deformed shape, reactions, and self weight.
In this course,You will learn how to model a building in Revit software,and export the model T o Autodesk robot structural analysis and Etabs.
You will learn how define materials,loads and others...
You will learn how analyse the model and design the columns
And finally How to define seismic forces in the 2 softwares,and compare the results.