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Read more. Once the Properties are set up as required, you can then insert them into the model in a variety of different ways, including by left clicking on the grid intersections at the start and end of the wall, or by clicking on each of the grid intersections that define the walls corners when working in 3D or a frame view. Activate your Tekla student subscription. Micro Station v 8 i Quick Start Guide. Flag for tekla structures 2017 course free download content. Modern practice of designing building structures allows transmitting data for the production of structures to tekla structures 2017 course free download of varying degrees of courde. Creating individual frame element detail drawings❿

11 ways for beginners to learn Tekla Structures – TSGuide. Tekla structures 2017 course free download

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Component of Turnout. The full intended slab design process is detailed on the following page.❿

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This will show the graphical design Status of each element in the model to see if they have passed or failed or if there are any other issues with them. The Status Tree has become active in the Project Workspace, showing the status of the validations and analyses completed errors and warnings would also be displayed here The Status bar shows green ticks and red crosses to highlight completed analyses and designs The Review ribbon tab contains several other features to review and edit the model, including checking which members are pinned and which are set to be auto-designed or check-designed The Slab Design Status will be Unknown as slab design is completed in a separate process.

The results displayed are dependent on the load case, combination or envelope selected in the Loading Drop List, and you can adjust the scale of the diagrams using the Scale Settings.

If you are unsure why you are getting certain results, you can also try switching view mode to the Solver View on the Status Bar, so you can see the actual analysis model that was analysed. This will give you a different insight into the model and could allow you to spot the issue more easily.

Change to a Results view mode and investigate some of the various results available Change to a Solver view mode and take a look at the analysis solver model As well as being able to view the analysis results for the whole model, you can also view results for individual elements. These can be accessed by hovering the cursor over the element in question, right clicking and choosing Open Load Analysis View. A new scene view will be created, and a Loading Analysis ribbon tab will automatically open.

This will allow you to choose which results are displayed and from which analysis. The Properties window also helps control the information displayed. The Interactive Design will first perform a Check Design on that member, where it checks the elements current design against its current analysis results, and then allows you to: View the existing design status, and adjust various parameters, including bar sizes and links View the Interaction Diagrams for columns and walls only Preview a Detail Drawing of the element, and adjust the Drawing Options As you edit the design parameters, a check design is again performed instantly.

Clicking the Check button in this window also performs another Check Design, and will then allow you to view the check results in more detail, so you can view the design calculations based on the edited design. Once Check is clicked, a Design Summary is displayed. You can then drill down to view the appropriate checks on the left hand side and then expand the calculations on the right hand side to see exactly why a particular element is passing or failing.

Once you are satisfied with the design of the element, clicking OK in the Interactive Design window will confirm your changes and apply the selected reinforcement to both this element and all other elements in the same Design Group.

Therefore, you may find that if you have not interactively designed the critical element in a design group, then other elements from that group may be updated to a Fail status. When slabs are initially created, they have several properties relating to reinforcement this is known as their background reinforcement, which will be placed throughout the whole panel. However, designing the background reinforcement to resist all forces in the slabs would result in excessive reinforcement provisions, so a variety of Patches of additional reinforcement are also required.

Both the slabs and the patches are set to be automatically designed by default. The placement of the patches is a manual process, so it is important to place appropriately sized patches in the correct locations.

Patches contain a number of strips, some of which are set to design for the average design forces across their widths, and others simply gather a maximum value. The patches also have a variety of properties allowing you to control options like strip widths, bar sizes and their spacings. Patches are inserted into the model by first selecting the patch command you want to use, then by either left clicking on an appropriate element, or by dragging a window around multiple elements.

Theres a variety of different Patch types available, depending on the location of where the patch is to be placed, and theyre found on the Design ribbon tab. They include:. Patch Column Placed on columns in flat slab models, to deal with local peak moments Patch Beam Placed along beams, usually to deal with hogging moments Patch Wall Placed along walls, with options associated with the position and span of the wall Patch Panel Placed in the middle of slab spans to deal with local peak moments.

The full intended slab design process is detailed on the following page. Insert the Patches in the appropriate locations. Its important to make sure the patch sizes are appropriate the easiest way to do this is to insert the patches whilst viewing the results contours to ensure the peaks are contained within the patches. You should also ensure that both the slab panel and patch minimum bar spacings are sensible before attempting the design Design the Slab Panels by clicking Check Slabs on the Design ribbon tab Autodesign selects the background reinforcement for the slab panels.

The reinforcement is selected ignoring the forces that develop within the slab patch areas of the slabs, but is placed throughout the whole slab panel Review and optimise the panel designs by using the Slab Reinforcement option on the Review ribbon tab when in the Review View. The Slab setting in the Properties window should be set to Panel first, and it will then allow you to rationalise the background reinforcement for all slab panels Design the Patches by clicking Check Patches on the Design ribbon tab Autodesign selects the additional reinforcement required in the slabs within the patch areas, taking into account the already placed background reinforcement Review and optimise the patch designs by using the Slab Reinforcement option on the Review ribbon tab when in the Review View.

The Slab setting in the Properties window should be set to Patch first, and it will then allow you to rationalise the patch rebar. Punching Shear Checks can also be added to specific columns and walls in a similar manner to adding patches, using the Add Check command on the Design ribbon tab.

These checks should be added once the slabs and patches have been designed to ensure realistic reinforcement levels are considered during the punching checks. Once inserted, they can then be checked using the Check Punching Shear command.

Try inserting some patches into the model at St. This is another area of the program that is a work in progress, so there will be significant changes and improvements in this area in future versions. All drawings are created based on the Drawing Settings, which can be accessed by clicking the Edit option on the Draw ribbon tab.

Additional detailing preferences that affect the actual selection of reinforcement are found in the Design Settings, as discussed previously. All of these settings allow you to control a wide variety of things, including what information is displayed in each type of drawing, the colours of the different layers, section information, labels and dimensions. The detail drawings will be generated as DXF files and will be displayed by exporting them to another program, so youll need a program such as AutoCAD or TrueView to be able to view them.

Go onto the Draw ribbon tab and review the Drawing Settings. Once this option is selected, you will be prompted to specify the file name and location, drawing type and style, and a drawing scale. Clicking OK will then open the appropriate program and generate the detail drawing. You can also access this option by clicking the Detail Drawing button from within the elements Interactive Design window.

Depending on your drawing settings, the detail drawings generated here will include an elevation of the element, a number of sections and a quantity table.

Once one of these options has been clicked, you will be prompted to choose which elements you want included in the schedule, provided there is more than one of these element types present. You will then be faced with similar options to those when creating a detail drawing, as detailed above. Try generating some detail drawings and schedules for the frame elements of your choice Quick Start Guide Tekla Corporation March 4, The General Arrangement option provides information on the general arrangement of the model, including member labels and slab thicknesses.

Trimble Connect Get started with Trimble Connect Personal, which allows uploading and sharing of 10 GB of data and five project members.

Tekla learning resources and certificate. Tekla User Assistance Get help with your Tekla products. Learn more. Visit the forum. News about Tekla for education. Its whole purpose is to help beginners start learning Tekla Structures. But even if you are not a student, you can use this opportunity to learn and get started.

Not many people know that you can also use it for creating model settings for your company by creating them in the Educational model, then copying the created files to the firm Template model. Keep in mind that Tekla Structures educational configuration is for non-commercial use only and there are some limitations:.

Apart from Tekla Campus lessons, Tekla also has shorter support videos. There are many of these videos, and one covers something very specific. The first is case studies with clients about the best practices, which you can put into use in your own company.

Keep in mind that they show only the new or improved features, and you need to get your base knowledge from somewhere else. These webinars normally happen twice a year with each new version. Spiral Beam can create modeling structures like spiral shaped stairs. The developer has made it easy to tackle steel bent plates. And great focus was put on precast concrete Floor and Wall Layout and the flexible, smart way of modeling, and modifying reinforcement.

With the Tekla Structures free download full version, creating drawings has just got better and quicker. The update is beautifully designed with a customizable user interface, contextual toolbar, and other improvements, to produce modeling better and easier and make communication way more useful. A biennial event that celebrates the achievements of Tekla users in the building and construction industry.

The student category highlights the talents of engineering students worldwide. Register Register to create your free Trimble account. Activate Activate your Tekla student subscription. Download Download the Tekla education products you need. Learn Start learning with our free Tekla certificate courses.