By Kent Lawrence
The routines within the ANSYS Workbench instructional (Release 10) introduce the reader to powerful engineering challenge fixing by utilizing this robust modeling, simulation and optimization instrument. issues which are coated contain reliable modeling, pressure research, conduction/convection warmth move, thermal pressure, vibration and buckling. it really is designed for working towards and scholar engineers alike and is appropriate to be used with an geared up process guideline or for self-study. CONTENTS: advent evaluate the method The Tutorials The ANSYS Workbench Interface precis 1 – reliable MODELING basics evaluation creation instructional 1A – Extrusion educational 1B – Revolution educational 1C – Sweep Sketching precis difficulties 2 – put positive factors, meeting assessment advent instructional 2A – including A gap to the Extrusion educational 2B – including a around to the Extrusion educational 2C – including a Chamfer to the Extrusion educational 2nd – styles instructional 2E – Clevis meeting instructional 2F – trade good Modeler precis difficulties three – MODELING ideas evaluation creation educational 3A – Parameters different CAD platforms floor And Line versions educational 3B – Planar floor types educational 3C – 3D floor versions educational 3D – Line types precis difficulties four – SIMULATION I assessment advent educational 4A – Plate with valuable round gap educational 4B – Plate with crucial sq. gap precis difficulties five - SIMULATION II review advent instructional 5A – Cylindrical strain Vessel educational 5B – Bracket educational 5C – Clevis meeting precis difficulties 6 – WIZARDS & instruments review creation instructional 6A – Static Loadings – Ductile fabrics educational 6B – Static Loadings – Brittle fabrics educational 6C – Fatigue Loadings – Ductile Materials SummaryProblems 7 – warmth move & THERMAL pressure evaluate advent warmth move instructional 7A – Temperature Distribution in a Cylinder Thermal tension I educational 7B – Uniform Temperature swap Thermal pressure II instructional 7C – Thermal tension in a Cylinder precis difficulties eight – floor & LINE versions assessment creation educational 8A – Sheet with round gap – airplane tension educational 8B – strain Vessel educational 8C – Bracket instructional 8D – Line-Body version precis difficulties nine – ordinary FREQUENCIES & BUCKLING quite a bit review advent educational 9A – easily Supported Beam Frequencies instructional 9B – ordinary Frequencies of a Chime instructional 9C – typical Frequencies of an meeting Buckling lots instructional 9D – Fixed-Free Column (Flagpole) instructional 9E – Buckling of a Pinned-Pinned Column educational 9F – Buckling of a Built-Up constitution precis difficulties concerning the writer: Kent L. Lawrence is Professor of Mechanical and Aerospace Engineering, collage of Texas at Arlington the place he has served as Graduate consultant, Chair of the dept, and supervised the graduate paintings of over 100 masters and PhD scholars. he's a lifestyles Fellow of ASME, the writer of the e-book ANSYS educational, SDC guides, 2002, 2003, 2004, 2005, 2006 and coauthor with Robert L. Woods of the textual content Modeling and Simulation of Dynamic structures, Prentice-Hall, 1997.
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This is where the earlier discussion about Apple hardware comes back into play. Most Macintosh-using SolidWorks users would like SolidWorks to write a new version of SolidWorks especially for the Mac. Fortunately, the graphics engine used by Mac is OpenGL (DirectX is again a Microsoft product, archenemy of Apple). Therefore, CAD software that is using Direct 3D will probably not be ported to Mac. Anything using OpenGL has one less hurdle. So what is the short answer? There is no short answer. With the need to look forward, it is hard to say if SolidWorks will go to Direct3D for all the benefits of being mainstream with more modern development, or if they will stay with the huge investment they have made in OpenGL and leave the door open to a Mac version at some point.
N My point of view while writing this book has been that of someone who is actually using the software, not of someone trying to sell ideas, nor of someone trying to make the software look good, or even that of an academic trying to make a beautiful argument. I try to approach the software objectively as a tool, recognizing that complex tools are good at some things and not so good at others. Both kinds of information (good and not-so-good) are useful to the reader. Pointing out negatives in this context should not be construed as criticizing the SolidWorks software, but rather as preparing the reader for real-world use of the software.