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Search inside document. Robot modules – 3 Robot modules window New project option. Navigation techniques – 6 o Once the cursor is positioned in the relevant quarter of the screen, the cursor shape changes Navigation tool ViewCube o ViewCube is a 3D interactive tool that lets you reorient a view and set the current orientation of a structure model.

Design of Elements of a Structure – 6 Note: There are some differences concerning the result display for various calculation options. Autodesk Robot Structural Analysis. Structural Analysis. Robot Lesson. Autodesk Robot Structural Analysis Professional. Robot Training Manual Eng The Insects. Structure and Function. Advanced analysis Robot Structural Analysis. Robot Training Manual Metric. Autocad Structural Detailing Brochure. Autocad Structural Detailing Standards. Bridge Design. Arc Reinforcement Handbook 6ed The Toolbox3.

Thursday Suveys. Opens the New Bracket dialog box. Select the New Bracket icon. In the Length L field enter the value Defines the bracket length 0. The structure defined is displayed in the drawing below. Selects the initial RSAP program layout.

Once this option is selected the initial view of the structure Select the Zoom All icon from will be presented. The defined structure is shown in the drawing below. LMC on the Nature field Selects the load case type: snow. While the graphic viewer with the Opens the Translation dialog box. The defined structure is presented in the drawing below. Translation dialog box, ,0,0 Execute, Close Translates bars and closes the Translation dialog box.

Select the Bar Sections icon from the Structure Model toolbar. Select the New section definition icon. Enter: Note: If you already created this moving load database, in the Database field: User you can skip this step.

OK Closes the Job Preferences dialog box. Opens the Moving Loads dialog box and starts defining Select the New vechicle icon a new vehicle. LMC the second line in the table Defines operating forces. OK in the Moving load databases Saves the defined vehicle to the user-defined database.

In the Name field, enter the name of Defines the name of the moving load. Polyline – Contour dialog box is opened. Activate the Line option. In the Geometry dialog box define Defines the vehicle route.

It generates the forces originating in vehicle braking, whose value equals 0. Activate the following options: Switching these options on assures that the forces defining Vehicle position limit — route the load will not be positioned off the route limits defining beginning and Vehicle position limit — the movement of the moving load.

Apply, Close Generates the moving load case according to the adopted parameters and closes the Moving loads dialog box. In the Loads tab: switch on the Presents the defined vehicle on the structure. Component Select: Current component 5 Selects the component 5 of the moving load case. LMC the Start button Starts the animation of the moving load applied to the structure; the vehicle will move along the defined route.

Stop the animation pressing the Stops presenting the vehicle animation. Selects the load case: 5 Moving crane. Select the Deformation tab in the Selects presentation of deformation for the selected moving Diagrams dialog box, turn on the load case. Similarly, the diagrams of other quantities available in the Diagrams dialog box can be presented. LMC the Start button Starts animation of deformation for the structure. Stop LMC the button and Stops the animation.

LMC on the line containing simplified Opens the Results dialog box for the selected member. Activate the options: Optimization and Limit state: Ultimate Press the Options button and Opens the Optimization Options dialog box; it will result in Activate the Weight option finding the section with the smallest weight during the optimization process. OK Closes the Optimization Options dialog box. LMC the Calculations button Starts design of the selected member groups; the Short results dialog box appears on the screen see the drawing below.

Recalculates the structure with the changed member Select the Calculations icon sections. Once calculations are finished, the following from the Standard toolbar.

Keep on repeating the calculations until the optimal sections are obtained. In the Point field set the Point The point position equal to 0. Select Open a new window Selects the 5th load case from the load case list. Note: The influence lines can be created only for a moving load case. Apply Opens another window presenting the influence lines for the selected quantities. RMC in the Influence lines viewer Opens the context menu.

Four load cases have been assigned to each of the structure frames and three of them are displayed in the drawings below. The vignette window will be displayed on the screen. Select icon in the first row Frame 3D Design. LMC on the Section field and select Note: If the HEB section is not available on the list, one … HEB should press the button located beside the Section field and add this section to the active section list in the New section dialog box LMC on the Beginning field Starts definition of bars in the structure structure columns.

Beginning and End field. HEB Note: If the HEB section is not available on the list, one … should press the button located beside the Section field and add this section to the active section list in the New section dialog box LMC on the Beginning field Starts definition of a beam in the structure. Mirror Graphically locate the vertical Performs the axial symmetry of selected bars and closes symmetry axis in the place of the the Vertical Mirror dialog box.

LMC on the Nature field Selects the type of load case wind. Execute, Close Translates the column and closes the Translation dialog box proceed to the next step to see changes. Selects the RSAP layout which allows definition of the bars. Select 4: LL1 from the Cases list located on the Standard toolbar Select the Deformation tab from the Displays structure deformation for the selected load case. Diagrams dialog box Turn on the Deformation option Apply Displays structure deformation see the drawing below.

In a similar way, diagrams that exhibit other values available from the Diagrams dialog box can be viewed. An additional the Support code option, OK column with codes defined for the structure supports appears. LMC on the Calculations button Starts verification of selected structure members; the Member Verification dialog box shown below will be displayed on the screen.

Move on to the View tab and while The structure will be presented as projected on the zx plane having the graphical field displaying y coordinate is assumed to equal 0. Added masses will be defined for the structure as well. They will participate in static and dynamic loads. The loads will include definition of body forces inertia loads due to rectilinear acceleration forces and centrifugal and angular acceleration forces inertia loads due to rotational motion forces.

The example comprises also modal and harmonic analyses. To start structure definition, run the RSAP system press the appropriate icon or select the command from the taskbar.

In the vignette window that will be displayed on the screen, the last but one icon Frame 3D Design in the first row should be selected. Select the Bar Selections icon from the structure model toolbar. The Parametric tab, section type: Defines a new round, tubular section with determined dimensions. Label: O x5 Defines the tubular section x5 mm. Select the Bars icon from the structure model toolbar.

LMC on the Beginning field color of Starts definition of structure bars structure columns. Opens the Sections dialog box. The bars defined automatically are assigned the properties that are currently chosen as default ones. Execute, Close Translates the structure and closes the Translation dialog box.

Click on the graphical viewer on the Switches off the current selection of bars and nodes. Opens the Supports dialog box. Select the Supports icon from structure model toolbar. In the Supports dialog box select Selects support type.

Switch to the graphical viewer; Enters the list of selected nodes: 1 4 13 16 to the Current keeping the left mouse button selection field. Turn on the Support Symbols Switches on displaying of supports. Selects the layout of the RSAP system which facilitates definition of structure loads there are dialog box and table LMC on the field to select the for load definition.

In the first load case the self-weight of the whole structure is added automatically, which can be seen in the load table. Displays the dialog box for view selection Selects 2D view of the structure. Close Opens the dialog box fo load definition. Opens the dialog box for definition of added masses. Switch to the graphical viewer; Enters the list of selected nodes: 2to14By4 3to15By4 to the keeping the left mouse button Apply to field. Opens the dialog box for load definition.

Opens the dialog box for definition of inertia loads due to rectilinear acceleration forces. Body forces relative x g Defines body forces with acceleration of gravity g for nodal Enter a: masses, i. Closes the Load Definition dialog box. Opens the dialog box for definition of inertia loads due to rotational motion forces, i. Add LMC on the Apply to field Selects structure elements for which centrifugal and angular acceleration forces will be defined.

Click on the graphical viewer; Selects the whole structure. Apply Defines the load. Opens again the dialog box for definition of inertia loads due to rotational motion forces.

Centrifugal and angular acceleration forces Apply to added masses For the current load parameters – selects the option Add enabling definition of load generated by added masses. Apply, Close Defines the load; for the load applied to added masses object selection is not required because action of this load concerns all the masses assigned to a given load case.

Switch to the graphical viewer; Enters the list of selected nodes: 6 7 10 11 to the Apply to keeping the left mouse button field. Self-weight and mass tab Goes to the tab for definition of self-weight loads and inertia loads. New Opens the New Case Definition dialog box. OK OK Accepts default parameters of modal analysis and closes the dialog box. Close Closes the Analysis Type dialog box. OK in the dialog box for definition of Accepts combination parameters.

Opens the combination parameters Combinations dialog box. Select case 1 from Case list, enter Defines combination cases and factors. OK in the dialog box for definition of Accepts combination parameters; opens the Combinations combination parameters dialog box. Apply, Close 7. Select the Calculations icon from the Standard toolbar. RMC, Display Opens the dialog box for selection of structure attributes to be displayed.

LMC on the Loads tab Goes to the tab for selection of structure attributes concerned with loads to be displayed. Forces generated automatcally OK On the top selection bar Selects the current load case, the program displays nodal forces generated automatically for added masses in the body force load.

Select the Deformation tab in the Selects presentation of structure deformations for the Diagrams dialog box selected load case. Switch on the Deformation option LMC on the Apply button Presents structure deformations see the figure below ; similarly, diagrams of other quantities available in the Diagrams dialog box may be presented.

Switch off the stress options: Excludes the columns with results for stresses due to axial Bending forces and bending from the table. Closes the dialog box with parameters. Download a free day trial of any software—you can try multiple products simultaneously—included in the Architecture, Engineering, and Construction Collection.

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Autodesk robot structural analysis professional 2018 tutorial pdf free download

 
Translation dialog box, ,0,0 Execute, Close Translates bars and closes the Translation dialog box. See all products from this Collection. Printout Composition 2. Four out of five load cases applied to the structure are displayed in the drawing below. It may be performed either in the dialog box or graphically on the screen. Switch to the graphic viewer and Sets a new global work plane for structure definition.

 
 

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