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Revit Structure, Robot, Concrete, Advance Steel AulaGEO

  • DESIGN
  • Apr 03, 2025
SynopsisRevit Structure, Robot, Concrete, Advance Steel – AulaG...
Revit Structure, Robot, Concrete, Advance Steel AulaGEO  No.1

Revit Structure, Robot, Concrete, Advance Steel – AulaGEO, available at $54.99, has an average rating of 4.15, with 76 lectures, based on 83 reviews, and has 569 subscribers.

You will learn about Make structural designs more effectively using Autodesk tools Create structure models in Revit Run analysis and normative designs in Robot Create plans of the structure in general quickly and efficiently Make plans for structural detailing in Structural Detailing This course is ideal for individuals who are This course is aimed at those professionals related to structural design who wish to improve their efficiency or Engineers who participate in the final structural project documentation process can also benefit from this course. or It is not a theoretical content course, rather it is a practical course on how to apply the knowledge previously acquired in structural design along with tools that facilitate the work of engineers and others involved in the project. It is particularly useful for This course is aimed at those professionals related to structural design who wish to improve their efficiency or Engineers who participate in the final structural project documentation process can also benefit from this course. or It is not a theoretical content course, rather it is a practical course on how to apply the knowledge previously acquired in structural design along with tools that facilitate the work of engineers and others involved in the project.

Enroll now: Revit Structure, Robot, Concrete, Advance Steel – AulaGEO

Summary

Title: Revit Structure, Robot, Concrete, Advance Steel – AulaGEO

Price: $54.99

Average Rating: 4.15

Number of Lectures: 76

Number of Published Lectures: 76

Number of Curriculum Items: 76

Number of Published Curriculum Objects: 76

Original Price: $94.99

Quality Status: approved

Status: Live

What You Will Learn

  • Make structural designs more effectively using Autodesk tools
  • Create structure models in Revit
  • Run analysis and normative designs in Robot
  • Create plans of the structure in general quickly and efficiently
  • Make plans for structural detailing in Structural Detailing
  • Who Should Attend

  • This course is aimed at those professionals related to structural design who wish to improve their efficiency
  • Engineers who participate in the final structural project documentation process can also benefit from this course.
  • It is not a theoretical content course, rather it is a practical course on how to apply the knowledge previously acquired in structural design along with tools that facilitate the work of engineers and others involved in the project.
  • Target Audiences

  • This course is aimed at those professionals related to structural design who wish to improve their efficiency
  • Engineers who participate in the final structural project documentation process can also benefit from this course.
  • It is not a theoretical content course, rather it is a practical course on how to apply the knowledge previously acquired in structural design along with tools that facilitate the work of engineers and others involved in the project.
  • Draw, design and document your structure projects with REVIT

  • Enter the design field with BIM (Building Information Modeling)

  • Master the powerful drawing tools

  • Create your own templates

  • Export to calculation programs

  • Create and document plans

  • Create and analyze loads and reactions in structures

  • Present your results with quality plans in half the time.

  • #AulaGEO With this course you will learn how to take advantage of these tools so that the process of designing structures for buildings is faster, more efficient and of higher quality.

    A new way to manage your projects

    Revit software is the world leader in building design using BIM (Building Information Modeling), allowing professionals not only to generate plans but to coordinate the entire building model including design features. Revit is designed to include design tools for building structures.

    1. When you assign elements to a project, you can:

    2. Automatically generate floor plans, elevations, sections and final impressions

    3. Perform static calculations in the cloud

    4. Perform advanced calculations in specialized programs such as Robot Structural Analysis

    5. Create structural and analytical models

    6. Quickly create and document detail plans

    7. Improve your performance when working on a BIM model

    Course Orientation

    We will follow the logical order in which you would develop a personal project. Instead of considering each theoretical aspect of the program, we will focus on following the workflow that best suits a real case and give you some tips to achieve the best results.

    You will get prepared files that will allow you to follow the progress of the course from where you consider it most necessary by guiding you to use the tools yourself while watching the classes.

    The course content is updated regularly to include important updates or points that can help you improve your learning and you will have access to them in real time so you can improve your continuous skills.

    Disclaimer:

    From the 4 courses, the Robot section, the software interface used is in spanish; but the whole explanation of the instructdor is narrated in english.  We selected this from a spanish for the high teaching quality.

    The Revit Structure and Steel Design courses are english both, the software interface and audio.

    Course Curriculum

    Chapter 1: SECTION 01 – REVIT STRUCTURE

    Lecture 1: Introduction

    Lecture 2: Install Content Libraries

    Chapter 2: User interface

    Lecture 1: The Ribbon

    Lecture 2: User Interface Features

    Chapter 3: Drawing tools

    Lecture 1: Workflow in Revit Structure

    Lecture 2: Work template

    Lecture 3: Load families

    Lecture 4: Grids and levels

    Lecture 5: Column Placement

    Lecture 6: Beam Placement

    Lecture 7: Beam or Belt Systems

    Lecture 8: Flooring

    Lecture 9: Placement of cross stiffeners

    Lecture 10: Creation of lattices or trusses

    Lecture 11: Structural walls

    Lecture 12: Foundations

    Lecture 13: Metallic reinforcement

    Chapter 4: Analytical model

    Lecture 1: Creation of load cases

    Lecture 2: Load combinations

    Lecture 3: Load application

    Lecture 4: Apply border conditions

    Lecture 5: Link to Robot Structural Analysis

    Chapter 5: Practices

    Lecture 1: Concrete Practical Example – Part 1

    Lecture 2: Concrete Practical Example – Part 2

    Lecture 3: Concrete Practical Example – Part 3

    Lecture 4: Practical Example Steel Structure – Part 1

    Lecture 5: Practical Example Steel Structure – Part 2

    Chapter 6: conclusion

    Lecture 1: conclusion

    Chapter 7: SECTION 02 – ROBOT STRUCTURAL ANALYSIS

    Lecture 1: Program overview

    Chapter 8: Creation of the geometric model

    Lecture 1: User interface

    Lecture 2: Units and formats

    Lecture 3: Construction lines

    Lecture 4: Building plants

    Lecture 5: Materials definition

    Lecture 6: Section definition

    Lecture 7: Column placement

    Lecture 8: Placement of beams

    Lecture 9: Thickness creation

    Lecture 10: Ribbed thicknesses

    Lecture 11: Plant slab placement

    Lecture 12: Gaps in slabs

    Lecture 13: Wall placement

    Chapter 9: Creation of the analytical model

    Lecture 1: Creation of groups

    Lecture 2: Support application

    Lecture 3: Load cases

    Lecture 4: Wind loads

    Lecture 5: Seismic spectra

    Lecture 6: Aplicación de cargas

    Lecture 7: Load combinations

    Lecture 8: Mesh Creation

    Lecture 9: Analysis run

    Chapter 10: Results

    Lecture 1: Results by diagrams

    Lecture 2: Results by maps

    Chapter 11: Reinforced concrete design

    Lecture 1: Design of reinforced concrete bars

    Lecture 2: Real bar armor

    Lecture 3: Panel armor

    Lecture 4: Foundation Design

    Chapter 12: Design of steel structures

    Lecture 1: Assistant for the creation of industrial buildings

    Lecture 2: Types of steel bars

    Lecture 3: Design groups

    Lecture 4: Sizing groups

    Lecture 5: Final verification of steel bars

    Lecture 6: Steel connections

    Lecture 7: Personalized design

    Chapter 13: Brief introduction to detailed programs

    Lecture 1: Export from Revit to Advance Steel

    Lecture 2: Connections according to AISC

    Lecture 3: Creation of final plans

    Chapter 14: Advance Steel in detail

    Lecture 1: Grid Creation

    Lecture 2: Column creation

    Lecture 3: Beam Creation

    Lecture 4: Beam Systems

    Lecture 5: Transverse Reinforcements

    Lecture 6: Joists

    Lecture 7: Model views

    Lecture 8: Connections (Base Plate)

    Lecture 9: Connection Group

    Instructors

  • Revit Structure, Robot, Concrete, Advance Steel AulaGEO  No.2
    AulaGEO Academy
    Specialists in GIS – BIM – LAND and Smart process training
  • Revit Structure, Robot, Concrete, Advance Steel AulaGEO  No.3
    Felix Enzo Garofalo Lanzuisi
    Instructor y Consultor BIM, CAE y AI
  • Revit Structure, Robot, Concrete, Advance Steel AulaGEO  No.4
    Golgi Alvarez
    Land Administration and AEC Specialist
  • Rating Distribution

  • 1 stars: 10 votes
  • 2 stars: 6 votes
  • 3 stars: 16 votes
  • 4 stars: 27 votes
  • 5 stars: 24 votes
  • Frequently Asked Questions

    How long do I have access to the course materials?

    You can view and review the lecture materials indefinitely, like an on-demand channel.

    Can I take my courses with me wherever I go?

    Definitely! If you have an internet connection, courses on Udemy are available on any device at any time. If you don’t have an internet connection, some instructors also let their students download course lectures. That’s up to the instructor though, so make sure you get on their good side!