Tekla Structural Designer 2015 The Revolutionary Construction Sofiware 1 From 6

Tekla Structural Designer 2015 The Revolutionary Construction Sofiware 1 From 6

Tekla Structural Designer 2015 The Revolutionary Construction Sofiware 1 From 6

Tekla Structural Designer is revolutionary software that enables engineers to analyze and design multi-material buildings efficiently and profitably.

Fully automated and with powerful features for optimizing concrete and steel design, engineers can quickly compare alternative design schemes, manage changes efficiently and collaborate seamlessly.

Regardless of project size or complexity, Tekla Structural Designer helps engineering offices maximize profits by improving productivity.

Using its fully automated design capabilities, structural engineers can save time, enhance client service and successfully bid for more projects.

Tekla Structures is used in the construction industry for steel and concrete detailing, precast and cast in-situ.

The software enables users to create and manage 3D structural models in concrete or steel, and guides them through the process from concept to fabrication.

The process of shop drawing creation is automated.

It is available in different configurations and localized environments.

Tekla is known to support large models with multiple simultaneous users, but is regarded as relatively expensive, complex and difficult to learn.

It competes in the BIM market with AutoCAD, Autodesk Revit, Profiler and Digital Project, Trimble Real works, Lucas Bridge, PERICAD and others.

Tekla Structures is Industry Foundation Classes (IFC) compliant, among about 40 other competitive systems.

Modeling scopes within Tekla Structures includes Structural Steel, Cast-in- Place (CIP), Concrete, Reinforcing Bar, Miscellaneous Steel and Light Gauge Drywall Framing.

It is often used in conjunction with Autodesk Revit, where structural framing is designed in Telka and exported to Revit using the DWG/ DXF formats.

2015 Service Pack

This service pack should be installed to ensure optimum function of the program.

Several improvements and issues have been resolved including:

Enhancements to performance and stability particularly related to tolerances.

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