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ANSYS WORKBENCH TUTORIAL RELEASE 13 PDF

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>13 Once again don't be surprised if the suffix .. ANSYS® Workbench Tutorial ANS' Y8 Release 70 Kent L. Filetype: PDF. ANSYS Workbench Tutorial Structural & Thermal Analysis using the ANSYS Workbench. Release 13 Environment Kent L. Lawrence Mechanical. ANSYS Workbench Tutorial Video on Bolt Pretension Fastener or Bolt & nut Contact Non. workbench tutorial release 13 pdf free download videos and guides.


Ansys Workbench Tutorial Release 13 Pdf

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ANSYS Workbench Tutorial Release 13 PDF - Ebook download as PDF File .pdf ), Text File .txt) or read book online. Manual muy completo de ansys. Ansys Tutorial Release Kent Lawrence - Download as PDF File .pdf), Text File now for free or you can read online ansys workbench tutorial release 13 book. the ANSYS Workbench Release 14 These tutorials explore solid modeling by: . View > Ruler (Top menu) to turn off the ruler display. Use the middle.

Slideshare uses cookies to improve functionality and performance, and to provide you with relevant advertising. If you continue browsing the site, you agree to the use of cookies on this website. See our User Agreement and Privacy Policy. See our Privacy Policy and User Agreement for details. Published on Oct 6,

Lawrence is Professor of Mechanical and Aerospace Engineering, University of Texas at Arlington where he has served as Graduate Advisor, Chair of the Department, and supervised the graduate work of over one hundred masters and PhD students.

All rights reserved. No part of this book may be reproduced in any form or by any means without written permission from the publisher. The author and publisher of this book have used their best efforts in preparing this book. The efforts include the testing of the tutorials to determine their effectiveness. However, the author and publisher make no warranty of any kind, expressed or implied, with regard to the material contained in this book.

The author and publisher shall not be liable in any event for incidental or consequential damages in connection with the use of the material contained herein. Dedicated to: Lawrence, Jr. Topics that are covered include solid modeling, stress analysis. It is designed for practicing and student engineers alike and is suitable for use with an organized course of instruction or for self-study.

Heartfelt thanks go to Prof. Dereje Agonafer, ever a supporter of this effort, who together with Ajay Menon and Abhij it Kaisare provided examples for use herein. Thanks also go to Mukund Narasimhan who read portions of the material as well as test- solved a number of the tutorials. To Stephen I am most indebted as well as to Ms. Mary Schmidt of SDC for her careful assistance with the manuscript. Hats off also to the University of Alberta group for establishing high standards.

Special thanks go as usual to Carol Lawrence, ever supportive and always willing to proof even the most arcane and cryptic stuff. Please feel free to point out any problems that you may notice with the tutorials in this book. Your comments are welcome at Iawrence uta. Additions and corrections to the book will be posted on mae. Lawrence 6. This book presents a collection of tutorials for ANSYS Workbench, one of the most versatile and widely used of the commercial solid modeling, simulation and optimization programs.

Mesh creation and adjustment as well as transferring models from CAD solid modelers other than DesignModeler are also included. The tutorials progress from simple to complex. Each tutorial can be mastered in a short period of time; the entire book provides a complete, basic introduction to the concepts and capabilities of the extensive ANSYS Workbench software suite. The execution of these three steps is conveniently encapsulated in the ANSYS Workbench environment as we shall see in the chapter tutorials that follow.

Chapter 2 - Placed Features, Assembly — This chapter covers creation of features whose shape is predetermined. Among these are: Holes, Rounds, Chamfers, and Pattems. A simple assembly modeling exercise is also L. In particular we discuss the use of Wizards for simulation problem setup and Tools for simulation result assessment.

Ansys Tutorial Release Kent Lawrence

These include: Plane stress, plane strain or axisymmetric problems, Plate shell problems, Line-body beam element problems. The determination of buckling load estimates for such objects is also covered. Also note that a solid modeler other than DesignModeler can be used in many of the tutorials. Files relevant to the pull-down selection are listed in order of most recently open for easy access. Workbench Protects " " A ; Q T9.

V-' Plate. BI P ate. Module Tabs along the top of the screen allow you to switch between applications. This feature allows changes made in one module to be immediately incorporated in the model for another module.

More on this later in the tutorials.

Regenerate Plate. Figure Module tabs and options. In short, model building and output evaluation based upon the sound fundamental principles of engineering and physics is the key to using any program such as ANSYS Workbench correctly and successfully. These tutorials explore modeling by: That is the approach we will use for many of object models created in this book.

Figure shows an L-shaped cross section that has been variously extruded, revolved, or swept along a curve to produce the solid object models shown. In the following we use the simple L-shaped section to illustrate these three fundamental solid modeling approaches. Select New geometry. Select OK — To work in millimeter units. We will sketch the L-shaped cross section on the XY Plane. Make it 35 mm high, 20 mm wide with 5 mm thick legs.

Then click on the Look at icon to view the XYPlane. YZP ane I I: XYPlane ,3. Change from Modeling to Sketching by selecting the Sketching tab. Use the line drawing tool to draw the left vertical edge of the L-shape. Left click at the beginning and again at the end of the line. Continue sketching until you have something like what is shown below. Notice that the top edge is not quite horizontal. N g Figure L-section sketch. Solid Modeling Fundamentals Now use constraint options to make the top edge horizontal and to make sure that the vertical and horizontal legs of the L are of the same thickness.

The figure is just a sketch so far, and a number of different dimensioning schemes could be used to produce the section we want. Figure L-section sketch. The bottom edge is located directly on the X axis but we need to locate the vertical edge with respect to the Y axis.

Solid Modeling Fundamentals Use the middle mouse roller to zoom in and out. To reposition the section on the screen, Right Click and select one of the following options: Cursor Mode, View, or Zoom to Fit. To perform the extrusion, switch from Sketching to Modeling.

If is not already highlighted, click Sketch] to highlight it. Edit this value 45 mm to give the solid a depth of mm. E Extrudel '3 0 Parts, 0 Bodies i. No Selection Figure Section ready for extrusion. Click the Generate icon to complete creation of the extruded shape model. Click on the Display Plane icon to tum off the axes display and high-light the last item in the model tree Solid to display the volume, surface area, faces, edges and vertices in this model.

Save your work — Use the Save As option to save the extrusion using a name e. TIA and location of your choice. Basic solid modeling notions have been used thus far to demonstrate creating a solid by extruding a two-dimensional section. In the next tutorial we will revolve the same L- shape to create a solid of revolution. Start from the screen shown below if the extrusion is still in memory, or start Workbench and reload the extrusion. First modify the tree structure.

XYPlane cf-El Sketchl pf. Click on Extrudel and press Delete. Click Yes to the query.

The extrusion is deleted and the new tree structure shows 0 Parts and 0 Bodies. Click on Sketchl, the Display Plane icon and the Look at Plane icon We obtain the view of the same sketch we had earlier.

Sketching Modeling l Figure Select the sketch. X" P ane 4. P ane4 5. Figure Revolvel tree. XYPlane iii Sketchl V. ZXP ane V. Save to archive your work. Next we will take the same cross section and sweep it along an arbitrary path to create the third kind of modeling discussed in this chapter. Sketch the 20 x 35 mm L-shape on the XYPlane as before. ElNo Dimensions: We now want to sketch a path along which the L—shape will be swept to produce a solid.

Use the Line option to sketch a simple two-segment line in the YZPlane similar to the one below. Tum on the Ruler and use the middle scroll wheel to Zoom out so that your line is about. I deleted several before settling on the one shown, so my sketch is numbered Sketch6. Not to worry if your number is different.

XYPlane ,7. Select Sweep to create the solid. Your path sketch number will be different. Solid Modeling Fundamentals Generate.

XYPlane '. Generate to obtain the solid shown next. Also the path can be a more complex curve as in the example of Figure where a spline was used for the path. We used the line drawing option and the equality constraint option in the tutorials above.

Some of the other sketching features are shown below. The next illustration shows the Draw and Modify options.

Spline and Construction Point. Replicate and Offset. We will have the occasion to illustrate the use of many of these options in what follows. Select Semi- Automatic Dimensioning if you want DesignModeler to select a dimensioning scheme automatically.

As sketching proceeds DesignModeler will attempt to detect and enforce constraints that seem to be part of the design intent of the sketch. The Auto Constraints option allows you to turn these on and off as desired. Cursor triggered constraints are local, while Global constraints relate to all entities in the sketching plane.

Figure Dimensioning schemes. If you over dimension a sketch, DesignModeler will issue the following warning: New dimension makes model over-constrained. In the next chapter we will extend these ideas and introduce additional modeling features. Select your own units and dimensions.

Measure the exterior dimensions of a light bulb, estimate the wall thickness of the glass and base, and create a model by revolving the sketch. Create the shape shown and extrude it to form a solid. Choose your own dimensions. Use the Sketching Trim option to help in the sketch development. The features illustrated in Chapter 1 are sometimes called sketched features because they were based upon sketched cross sections we drew.

Sketched features can have virtually any shape we desire. The basic parts of Chapter 1 can also be called base features since we started from scratch each time and created a new part.

We can add features to base features to create more complex parts. If these added features have predetermined shapes they are often called placed features because all we need to do is specify the location or placement of the new feature on an existing base feature. This demonstrates the manner in which features can be added to a The tutorials that follow illustrate how to add these placed features to the basic parts created in Chapter 1.

Figure Extrusion with placed features. We will create a new plane on which to place the circle that generates the hole. Selection Filter: Model Faces 31 U3! Click on the top surface of the short leg. ZXP ane ,3. YZPlane a Z'. Sketching Modem-,9 l Figure Surface selected. Tutorialm ,3.

YZPlane ,. Click Generate 3; Generate 6 W2 7. Figure New plane is created. We want to place a 10 mm diameter circular hole halfway along the length of the mm leg and 8 mm from the edge. V V 3 Tangent: Placed Features 9. The number attached to each dimension, the 2 in H2, is an intemal numbering scheme and depends upon the sketching sequence.

Your numbers may be different. Details of Extrude3 ' 3 Details of E: Wes L". To Surface 2 Figure Extrude details.

Generate to complete the feature. Keep this part in memory since we have more work to do on it. J I Save your part using a new name. Select the inside edge of the part. Figure Select the edge. Placed Features 4. Cancel t 6. Select the top inside edge of the part.

Ansys Tutorial Release Kent Lawrence | Multimedia | Computing

Figure The chamfer completed. Placed Features 1. Sketch a 50 mm diameter circle with center at the origin of the XYPlane. Click on the sketch then on Extrude and set the extrusion depth to be 10 mm.

Click Generate to complete the base feature disk. Sketch an 8mm diameter circle on this plane. Dimension as shown in Figure Sketch an 18 mm line from the center of the base feature to the center of the small circle. Dimension as shown below. Locate the line with an angular dimension. Place the dimension as shown.

Switch to Modeling. Placed Features u. Figure Placement of small hole.

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Add a 1 mm chamfer to the top edge of the small hole. Sketch a short line along the Z axis in the ZXPlane. We will use this for the pattem angular direction reference later. Modeling l Figure Line along the Z axis. Placed Features 1 Click Selection Filter: Model Faces 31 Figure Line along the Z axis. Edges Tutoria 2E. The selected edge is used as the axis for determining the positive direction of incrementing the angular placement taken according to the right-hand rule.

XYPlane ! Sketchl ,. Same with the lighting bolts indicating need for generation. Some experimentation with generation, views, etc. If you have a problem, delete the problem object in the tree and start again.

The positive direction for incrementing the angular placement is along the selected edge according to the right-hand rule. Linear pattems are created using similar steps. The direction of the pattem can be along an existing edge or perpendicular to a surface. Figure Clevis assembly. If you make a mistake, just delete the item in question and redraw, or just start over. Create the sketch shown above and extrude it symmetrically 0.

Total height will be 1. The two semicircles are separated by 0. Tangent line and trim will be useful. Figure Slot sketch. Extrude this sketch through all, removing material. We obtain the solid model shown next. Placed Features 2. Figure Complete clevis. To this we want to add the stem and pin to complete the assembly. First hide the clevis. View the XZ sketch plane and sketch the rectangle and circle below for creation of the brick-shaped stem extrusion.

Figure Stem sketch. Refer to Figure and give the dimensions the values shown below. The Add Frozen option adds the stem as a new, separate object and does not merge the new geometry into the existing clevis. Download now for free or you can read online ansys workbench tutorial release 14 book. This book is good alternative for Ansys. Download now for free or you can read online creo simulate tutorial release 1 0 2 0 book. Download now for free or you can read online finite element simulations with ansys workbench 15 book.

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