rigid dynamic analysis 허유정 - egloospds7.egloos.com/pds/200712/23/01/rigid_dynamic.pdf ·...
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![Page 1: Rigid Dynamic Analysis 허유정 - Egloospds7.egloos.com/pds/200712/23/01/rigid_dynamic.pdf · 2/23/2007 © 2007 ANSYS, Inc. All rights reserved. Inventory #002382 1-2 11.0 New Features](https://reader034.vdocuments.pub/reader034/viewer/2022052213/5a79079e7f8b9a68148e1b0a/html5/thumbnails/1.jpg)
11.0 New Features
2/23/2007© 2007 ANSYS, Inc. All rights reserved.
11.0 New FeaturesANSYS, Inc. Proprietary
Inventory #0023821-1
Rigid Dynamic Analysisin WorkbenchRigid Dynamic Analysisin Workbench
![Page 2: Rigid Dynamic Analysis 허유정 - Egloospds7.egloos.com/pds/200712/23/01/rigid_dynamic.pdf · 2/23/2007 © 2007 ANSYS, Inc. All rights reserved. Inventory #002382 1-2 11.0 New Features](https://reader034.vdocuments.pub/reader034/viewer/2022052213/5a79079e7f8b9a68148e1b0a/html5/thumbnails/2.jpg)
2/23/2007© 2007 ANSYS, Inc. All rights reserved.
Inventory #0023821-2
11.0 New FeaturesANSYS, Inc. Proprietary
Training Manual
ANSYS v11.0Introduction
• Rigid Dynamic Analysis:– Calculates dynamic response of an assembly of rigid bodies.– Can be used to study the kinematics of an assembly.– Bodies are linked via joints and springs.
![Page 3: Rigid Dynamic Analysis 허유정 - Egloospds7.egloos.com/pds/200712/23/01/rigid_dynamic.pdf · 2/23/2007 © 2007 ANSYS, Inc. All rights reserved. Inventory #002382 1-2 11.0 New Features](https://reader034.vdocuments.pub/reader034/viewer/2022052213/5a79079e7f8b9a68148e1b0a/html5/thumbnails/3.jpg)
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Inventory #0023821-3
11.0 New FeaturesANSYS, Inc. Proprietary
Training Manual
ANSYS v11.0Rigid Dynamics
• Inputs and outputs are forces, moments, displacements, velocities and accelerations.
• All parts are assumed rigid (no stress/strain).• Viscous damping is accounted for via spring definitions.
![Page 4: Rigid Dynamic Analysis 허유정 - Egloospds7.egloos.com/pds/200712/23/01/rigid_dynamic.pdf · 2/23/2007 © 2007 ANSYS, Inc. All rights reserved. Inventory #002382 1-2 11.0 New Features](https://reader034.vdocuments.pub/reader034/viewer/2022052213/5a79079e7f8b9a68148e1b0a/html5/thumbnails/4.jpg)
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Inventory #0023821-4
11.0 New FeaturesANSYS, Inc. Proprietary
Training Manual
ANSYS v11.0Rigid Dynamic Setup
• Solid geometry is used to define the model (no multibody parts).• Parts are considered rigid so density is the only required material
property.• To begin a rigid dynamic analysis parts must have their stiffness
behavior flagged as rigid.
![Page 5: Rigid Dynamic Analysis 허유정 - Egloospds7.egloos.com/pds/200712/23/01/rigid_dynamic.pdf · 2/23/2007 © 2007 ANSYS, Inc. All rights reserved. Inventory #002382 1-2 11.0 New Features](https://reader034.vdocuments.pub/reader034/viewer/2022052213/5a79079e7f8b9a68148e1b0a/html5/thumbnails/5.jpg)
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Inventory #0023821-5
11.0 New FeaturesANSYS, Inc. Proprietary
Training Manual
ANSYS v11.0D. Joint Types
• There are 9 available joint types in Simulation:• Fixed Joint• Revolute Joint• Cylindrical Joint• Translational Joint• Slot Joint• Universal Joint• Spherical Joint• Planar Joint• General Joint
• Remember, joint DOF are with respect to the joint’s reference coordinate system.
• Examples follow . . .
![Page 6: Rigid Dynamic Analysis 허유정 - Egloospds7.egloos.com/pds/200712/23/01/rigid_dynamic.pdf · 2/23/2007 © 2007 ANSYS, Inc. All rights reserved. Inventory #002382 1-2 11.0 New Features](https://reader034.vdocuments.pub/reader034/viewer/2022052213/5a79079e7f8b9a68148e1b0a/html5/thumbnails/6.jpg)
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Inventory #0023821-6
11.0 New FeaturesANSYS, Inc. Proprietary
Training Manual
ANSYS v11.0Dynamics Joint Types
Revolute Cylindrical
TranslationalSlot
Spherical
Planer
Universal
![Page 7: Rigid Dynamic Analysis 허유정 - Egloospds7.egloos.com/pds/200712/23/01/rigid_dynamic.pdf · 2/23/2007 © 2007 ANSYS, Inc. All rights reserved. Inventory #002382 1-2 11.0 New Features](https://reader034.vdocuments.pub/reader034/viewer/2022052213/5a79079e7f8b9a68148e1b0a/html5/thumbnails/7.jpg)
2/23/2007© 2007 ANSYS, Inc. All rights reserved.
Inventory #0023821-7
11.0 New FeaturesANSYS, Inc. Proprietary
Training Manual
ANSYS v11.0Joint Types
• Revolute Joint:– Constrained DOF: UX, UY, UX, ROTX, ROTY
FreeFixed
![Page 8: Rigid Dynamic Analysis 허유정 - Egloospds7.egloos.com/pds/200712/23/01/rigid_dynamic.pdf · 2/23/2007 © 2007 ANSYS, Inc. All rights reserved. Inventory #002382 1-2 11.0 New Features](https://reader034.vdocuments.pub/reader034/viewer/2022052213/5a79079e7f8b9a68148e1b0a/html5/thumbnails/8.jpg)
2/23/2007© 2007 ANSYS, Inc. All rights reserved.
Inventory #0023821-8
11.0 New FeaturesANSYS, Inc. Proprietary
Training Manual
ANSYS v11.0Joint Types
• Cylindrical Joint:– Constrained DOF: UX, UY, ROTX, ROTY
Fixed
Free
![Page 9: Rigid Dynamic Analysis 허유정 - Egloospds7.egloos.com/pds/200712/23/01/rigid_dynamic.pdf · 2/23/2007 © 2007 ANSYS, Inc. All rights reserved. Inventory #002382 1-2 11.0 New Features](https://reader034.vdocuments.pub/reader034/viewer/2022052213/5a79079e7f8b9a68148e1b0a/html5/thumbnails/9.jpg)
2/23/2007© 2007 ANSYS, Inc. All rights reserved.
Inventory #0023821-9
11.0 New FeaturesANSYS, Inc. Proprietary
Training Manual
ANSYS v11.0Joint Types
• Translational Joint:– Constrained DOF: UX, UZ, ROTX, ROTY, ROTZ
Fixed
Free
![Page 10: Rigid Dynamic Analysis 허유정 - Egloospds7.egloos.com/pds/200712/23/01/rigid_dynamic.pdf · 2/23/2007 © 2007 ANSYS, Inc. All rights reserved. Inventory #002382 1-2 11.0 New Features](https://reader034.vdocuments.pub/reader034/viewer/2022052213/5a79079e7f8b9a68148e1b0a/html5/thumbnails/10.jpg)
2/23/2007© 2007 ANSYS, Inc. All rights reserved.
Inventory #0023821-10
11.0 New FeaturesANSYS, Inc. Proprietary
Training Manual
ANSYS v11.0Joint Types
• Slot Joint:– Constrained DOF: UY, UZ
Fixed
Free
![Page 11: Rigid Dynamic Analysis 허유정 - Egloospds7.egloos.com/pds/200712/23/01/rigid_dynamic.pdf · 2/23/2007 © 2007 ANSYS, Inc. All rights reserved. Inventory #002382 1-2 11.0 New Features](https://reader034.vdocuments.pub/reader034/viewer/2022052213/5a79079e7f8b9a68148e1b0a/html5/thumbnails/11.jpg)
2/23/2007© 2007 ANSYS, Inc. All rights reserved.
Inventory #0023821-11
11.0 New FeaturesANSYS, Inc. Proprietary
Training Manual
ANSYS v11.0Joint Types
• Universal Joint:– Constrained DOF: UX, UY, UZ, ROTY
Fixed
Free
![Page 12: Rigid Dynamic Analysis 허유정 - Egloospds7.egloos.com/pds/200712/23/01/rigid_dynamic.pdf · 2/23/2007 © 2007 ANSYS, Inc. All rights reserved. Inventory #002382 1-2 11.0 New Features](https://reader034.vdocuments.pub/reader034/viewer/2022052213/5a79079e7f8b9a68148e1b0a/html5/thumbnails/12.jpg)
2/23/2007© 2007 ANSYS, Inc. All rights reserved.
Inventory #0023821-12
11.0 New FeaturesANSYS, Inc. Proprietary
Training Manual
ANSYS v11.0Joint Types
• Spherical Joint:– Constrained DOF: UX, UY, UZ
Fixed
Free
![Page 13: Rigid Dynamic Analysis 허유정 - Egloospds7.egloos.com/pds/200712/23/01/rigid_dynamic.pdf · 2/23/2007 © 2007 ANSYS, Inc. All rights reserved. Inventory #002382 1-2 11.0 New Features](https://reader034.vdocuments.pub/reader034/viewer/2022052213/5a79079e7f8b9a68148e1b0a/html5/thumbnails/13.jpg)
2/23/2007© 2007 ANSYS, Inc. All rights reserved.
Inventory #0023821-13
11.0 New FeaturesANSYS, Inc. Proprietary
Training Manual
ANSYS v11.0Joint Types
• Planar Joint:– Constrained DOF: UZ, ROTX, ROTY
Fixed
Free
![Page 14: Rigid Dynamic Analysis 허유정 - Egloospds7.egloos.com/pds/200712/23/01/rigid_dynamic.pdf · 2/23/2007 © 2007 ANSYS, Inc. All rights reserved. Inventory #002382 1-2 11.0 New Features](https://reader034.vdocuments.pub/reader034/viewer/2022052213/5a79079e7f8b9a68148e1b0a/html5/thumbnails/14.jpg)
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Inventory #0023821-14
11.0 New FeaturesANSYS, Inc. Proprietary
Training Manual
ANSYS v11.0Joint Types
• Fixed Joint:– Constrained DOF: All
• General Joint:– Constrained DOF: Fixed All, Free X, Free Y, Free Z, Free All– General joints allow configurations not covered by the basic joints shown
on the previous pages.– A free body must be linked to ground using a general BTG joint with
“Free All” specified (recall that all bodies must be defined such that a path to ground exists via joints).
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11.0 New FeaturesANSYS, Inc. Proprietary
Training Manual
ANSYS v11.0Springs
• Springs can be added from the BTG or BTB menus.
• In BTG a reference CS is used to locate the ground location.
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Inventory #0023821-16
11.0 New FeaturesANSYS, Inc. Proprietary
Training Manual
ANSYS v11.0Rigid Dynamic Solution Setup
• From the “New Analysis” menu choose “Rigid Dynamic”.
• The “Analysis Setting” branch contains the controls for setting up the analysis:
– Number of steps– Time step controls– Output controls– Solver tolerances
• Note, additional steps are generally used when loads are applied or removed or when load histories undergo abrupt changes.
![Page 17: Rigid Dynamic Analysis 허유정 - Egloospds7.egloos.com/pds/200712/23/01/rigid_dynamic.pdf · 2/23/2007 © 2007 ANSYS, Inc. All rights reserved. Inventory #002382 1-2 11.0 New Features](https://reader034.vdocuments.pub/reader034/viewer/2022052213/5a79079e7f8b9a68148e1b0a/html5/thumbnails/17.jpg)
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Inventory #0023821-17
11.0 New FeaturesANSYS, Inc. Proprietary
Training Manual
ANSYS v11.0Rigid Dynamic Solution Setup
• For rigid dynamic analysis only inertial loads (acceleration and/or gravity) are used. No loads or supports are used as in flexible body analyses.
• Joint conditions are used to apply all other loads as constants or time varying using tabular or functional definitions.
• Once inserted each joint in the model is available via the drop down list in the joint condition details.
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2/23/2007© 2007 ANSYS, Inc. All rights reserved.
Inventory #0023821-18
11.0 New FeaturesANSYS, Inc. Proprietary
Training Manual
ANSYS v11.0Joint Conditions
• Joint conditions can be defined as constant, tabular or as a function.
• Tabular data can be input in the table in Simulation or in the Engineering Data application.
• Once entered in Simulation the data can be saved to the ED application.
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Inventory #0023821-19
11.0 New FeaturesANSYS, Inc. Proprietary
Training Manual
ANSYS v11.0Joint Conditions
• Functional joint conditions can be entered in the details or defined in the ED application.
• From the EDA choose to “Insert New Load History”.
• Select the appropriate type and indicate the data is in the form of a function.
![Page 20: Rigid Dynamic Analysis 허유정 - Egloospds7.egloos.com/pds/200712/23/01/rigid_dynamic.pdf · 2/23/2007 © 2007 ANSYS, Inc. All rights reserved. Inventory #002382 1-2 11.0 New Features](https://reader034.vdocuments.pub/reader034/viewer/2022052213/5a79079e7f8b9a68148e1b0a/html5/thumbnails/20.jpg)
2/23/2007© 2007 ANSYS, Inc. All rights reserved.
Inventory #0023821-20
11.0 New FeaturesANSYS, Inc. Proprietary
Training Manual
ANSYS v11.0Joint Conditions
• Various mathematical functions and arithmetic operators can be used to construct functions using time as an independent variable.
• The function is displayed in function and graphical formats.
• Can type in functions or choose to insert them.
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11.0 New FeaturesANSYS, Inc. Proprietary
Training Manual
ANSYS v11.0Rigid Dynamic Postprocessing
• Results available from rigid dynamic analyses are deformations, velocities, accelerations and various probe results.
• As with other analysis types results may be scoped to entire assemblies or to individual parts, surfaces, edges or points.
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11.0 New FeaturesANSYS, Inc. Proprietary
Training Manual
ANSYS v11.0Rigid Dynamic Postprocessing
• Rigid dynamic results are graphical, tabular or animations.
![Page 23: Rigid Dynamic Analysis 허유정 - Egloospds7.egloos.com/pds/200712/23/01/rigid_dynamic.pdf · 2/23/2007 © 2007 ANSYS, Inc. All rights reserved. Inventory #002382 1-2 11.0 New Features](https://reader034.vdocuments.pub/reader034/viewer/2022052213/5a79079e7f8b9a68148e1b0a/html5/thumbnails/23.jpg)
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11.0 New FeaturesANSYS, Inc. Proprietary
Training Manual
ANSYS v11.0
Rigid Dynamic Demonstration
Body to Body Revolute
Body to Body Revolute
Body to Ground Revolute
Body to Body Translational
Body to Ground Fixed
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11.0 New FeaturesANSYS, Inc. Proprietary
Training Manual
ANSYS v11.0
![Page 25: Rigid Dynamic Analysis 허유정 - Egloospds7.egloos.com/pds/200712/23/01/rigid_dynamic.pdf · 2/23/2007 © 2007 ANSYS, Inc. All rights reserved. Inventory #002382 1-2 11.0 New Features](https://reader034.vdocuments.pub/reader034/viewer/2022052213/5a79079e7f8b9a68148e1b0a/html5/thumbnails/25.jpg)
11.0 New Features
2/23/2007© 2007 ANSYS, Inc. All rights reserved.
11.0 New FeaturesANSYS, Inc. Proprietary
Inventory #0023821-25
11.0 New Features LectureWorkbench SimulationFlexible Dynamic Analysis
11.0 New Features LectureWorkbench SimulationFlexible Dynamic Analysis
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Inventory #0023821-26
11.0 New FeaturesANSYS, Inc. Proprietary
Training Manual
ANSYS v11.0Introduction
• If inertial effects are significant, the use of static structural analyses is not sufficient in determining the dynamic response of a system
• Flexible dynamic analysis in Workbench Simulation 11.0 provides users with the ability to determine the dynamic response of the system under any type of time-varying loads.
– Unlike rigid dynamic analyses, bodies can be either rigid or flexible. For flexible bodies, nonlinear materials can be included, and stresses and strains can be output.
– Flexible dynamic analysis is also known as time-history analysis or transient structural analysis.
Assembly shown here is from an Autodesk Inventor sample model
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11.0 New FeaturesANSYS, Inc. Proprietary
Training Manual
ANSYS v11.0Dynamics From Rigid to Flexible
Step 1 - Add Flexible Dynamics Analysis to solution leg of tree
![Page 28: Rigid Dynamic Analysis 허유정 - Egloospds7.egloos.com/pds/200712/23/01/rigid_dynamic.pdf · 2/23/2007 © 2007 ANSYS, Inc. All rights reserved. Inventory #002382 1-2 11.0 New Features](https://reader034.vdocuments.pub/reader034/viewer/2022052213/5a79079e7f8b9a68148e1b0a/html5/thumbnails/28.jpg)
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11.0 New FeaturesANSYS, Inc. Proprietary
Training Manual
ANSYS v11.0Dynamics From Rigid to Flexible
Step 2 - Change part definition from Rigid to
Flexible
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11.0 New FeaturesANSYS, Inc. Proprietary
Training Manual
ANSYS v11.0Dynamics From Rigid to Flexible
Step 3 - Preview Flexible Part Mesh
![Page 30: Rigid Dynamic Analysis 허유정 - Egloospds7.egloos.com/pds/200712/23/01/rigid_dynamic.pdf · 2/23/2007 © 2007 ANSYS, Inc. All rights reserved. Inventory #002382 1-2 11.0 New Features](https://reader034.vdocuments.pub/reader034/viewer/2022052213/5a79079e7f8b9a68148e1b0a/html5/thumbnails/30.jpg)
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11.0 New FeaturesANSYS, Inc. Proprietary
Training Manual
ANSYS v11.0Dynamics From Rigid to Flexible
Step 4 - Set Analysis Options for time step etc.
and solve
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2/23/2007© 2007 ANSYS, Inc. All rights reserved.
Inventory #0023821-31
11.0 New FeaturesANSYS, Inc. Proprietary
Training Manual
ANSYS v11.0Loads and Supports
• For flexible bodies, any type of load or support can be applied• For rigid bodies, acceleration load and joint conditions are available• Multiple Steps are supported for load histories:
– Similar to the static case, user can easily define multiple steps– As shown below, loads, supports, and joints may be deactivated or
activated at any step simply by right-clicking on the Timeline. This gives the user flexibility in the load definition.
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Inventory #0023821-32
11.0 New FeaturesANSYS, Inc. Proprietary
Training Manual
ANSYS v11.0Postprocessing Probe Results
• The “Probe” tool has also been enhanced at 11.0 to include more results, including Energy, Reactions, Joint results, and Spring results
– After a Probe result is added, the Timeline and Tabular Data views show the values. From the Tabular Data view, the user can check/uncheck the columns to show what will be displayed in the Timeline
– A “New Chart and Table” can also be added to create customized charts and tables for output purposes.
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2/23/2007© 2007 ANSYS, Inc. All rights reserved.
Inventory #0023821-33
11.0 New FeaturesANSYS, Inc. Proprietary
Training Manual
ANSYS v11.0
Flexible Dynamic Demonstration
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2/23/2007© 2007 ANSYS, Inc. All rights reserved.
Inventory #0023821-34
11.0 New FeaturesANSYS, Inc. Proprietary
Training Manual
ANSYS v11.0