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Graitec Advance Design Tutorial -

Add a family. Select the planar elements representing your slabs, locate the properties panel, and input a uniform load (e.g., -3.0 kN/m² in the global Z direction). Generate Climatic and Seismic Loads

With the model and loads defined, you can now proceed to the analysis. Before running the calculation, the software must mesh your model (divide it into finite elements).

The modeling phase is where you bring your structure to life. Advance Design provides advanced CAD tools that allow for the precise placement and orientation of structural elements.

Repeat the process to add a family and environmental families like Wind (W) or Snow (S) if applicable. Applying Loads

: Define heights in the "Project Browser" to organize the model by floor. Creating Members : graitec advance design tutorial

: View the displaced shape under SLS (Serviceability Limit State) combinations to verify that floor deflections do not breach code limits.

I can provide targeted modeling steps and design parameter checklists tailored to your requirements. Share public link

For complex slab shapes or point load conditions, run a pilot analysis with a standard mesh, then refine the mesh around critical zones to ensure your stress peaks are accurate and converging toward real values. To help tailor future tutorials or deep dives, tell me:

The final step is interpreting results and creating documentation. Visualizing Results Check maximum deflections (SLS). Internal Forces: View bending moments ( Mycap M sub y Mzcap M sub z ), shear forces ( Fxcap F sub x Fycap F sub y ), and axial forces (N). Stresses: View stress diagrams on finite elements. Generating Reports Use the Report Generator to create customizable reports. Include screenshots, numerical data, and structural checks. Add a family

This comprehensive tutorial guides you through the fundamental workflows of Graitec Advance Design, from initial project setup to automated documentation generation. 1. Introduction to the Advance Design Interface

: Perform code-based design for reinforced concrete (longitudinal/transverse bars) or steel (buckling and connection checks) according to standards like Eurocodes or North American codes.

I have designed this feature to bridge the gap between theoretical modeling and practical code compliance, which is the software's strongest selling point.

Go to the Documents Ribbon > Generate Report . Use pre-defined templates or construct a custom report by dragging and dropping tables (e.g., node displacements, maximum member forces, steel weight takeoffs). Reports dynamically update if you modify the underlying model geometry. Before running the calculation, the software must mesh

: Generate the mesh for your structure to prepare for calculation.

Before modeling, it is essential to understand the workspace layout to optimize your modeling speed.

Would you like a list of the best specific tutorial files (e.g., “Steel Hall with Crane” or “RC Flat Slab”)?

Use local meshing refinement on complex areas (e.g., around openings or column connections) to improve accuracy. Running Analysis

To build a structural model efficiently, follow this standard workflow: 1. Project Setup & Interface

Organized chronologically by workflow stages—Home, Model, Structure, Loading, Analysis, Results, and Design.

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