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Ansys Mechanical - What's New 2023 R1
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212 Support Mechanical more complex models
Articles in this issue
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Slide 1
Slide 2: Table of Contents
Slide 3: Enabling More Efficient and Accurate FEA Simulations
Slide 4: Enabling More Efficient and Accurate FEA Simulations
Mechanical
Slide 5
Slide 6
Slide 7: GBA: Scoping Wizard
Slide 8: GBA: Scoping Wizard
Slide 9: GBA: Scoping Wizard - Preferences
Slide 10: GBA Graphics
Slide 12: GBA Graphics
Slide 13: GBA Graphics
Slide 19
Slide 20: Geometry Integrity in Simulations
Slide 21: Geometry Preserving Adaptivity
Slide 22: GPAD – Mesh Exploration or Aggressive Remeshing
Slide 23: GPAD – Accurate Geometry Recovery Through Mesh adaptivity
Slide 24: GPAD - Element Size based remeshing control
Slide 25: GPAD – Equivalent Stress and Strain based remeshing control
Slide 26: GPAD and NLAD - Improved Solver Messages for Mesh Rejection
Slide 27: GPAD Meshing – Incorporating Defeaturing during Remeshing
Slide 29
Slide 30: Message Filtering
Slide 31: Message Filtering
Slide 32: Message Pop-up
Slide 33
Slide 34: Copy/Paste Between Sessions Using Clipboard
Slide 35
Slide 36: Command Snippet Output Search Prefix – Variables Inside Percentage (%) Symbols
Slide 37
Slide 38: Close Mechanical During Launch if No License
Slide 39
Slide 40: Connection Statistics
Post Processing
Slide 41
Slide 50
Slide 51: Before the enhancement
Slide 52: With the enhancement
Slide 55
Slide 56: Fracture Tool Results for Multiple Crack Fronts
Slide 57: Tabular Data and Graph
Slide 60
Slide 61: Contact Distance Probe graphics
Slide 62
Slide 63: Introduction
Slide 64: Elliptical Cracks (Tetrahedrons)
Slide 72: Arbitrary Through Crack (Embedded)
Slide 77
Slide 78: Appending the Graph to Image Exports
Slide 79: Composite Image Export (Windows Only)
Slide 80: No-GUI Animation Export
Slide 81: Animation Export Example
Slide 82
Slide 83: Display Graph in the current viewport window
Slide 84: Embedded Charts in Graphics Window
Slide 90
Slide 91: Motivation for Accelerated Animation
Slide 92: Additional Support in Accelerated Animation
Slide 100
Slide 101: Appending the Graph to Image Exports
Slide 102: How to activate...
Slide 103: Example (an enclosure that is not obvious without using section planes)
Slide 104: Notes
Composites
Slide 105
Slide 106
Slide 107: Short Fiber Composites in Workbench LS-DYNA
Slide 108
Slide 109: User Interface in ACP
Slide 110: Sampling Point - Laminate Properties of Variable Materials
Slide 111: HDF5 Composite CAE Interface
Slide 112: Other Enhancements
Slide 113
Slide 114: Triply Periodic Minimal Surface RVEs
Structural Optimization
Slide 115
Slide 116: Overview of the different methods
Slide 117
Slide 118: Structural Optimization
Slide 119: Structural Optimization
Slide 120: Topography Optimization
Slide 122: learn by examples (1/2)
Slide 123: learn by examples (2/2)
Slide 124
Slide 125: Multiple Optimization type Capability
Slide 126: learn by examples (1/2)
Slide 127: learn by examples (2/2)
Slide 128
Slide 129: Topology Optimization – Housing constraint
Slide 130: Shape Optimization Design constraint
Slide 131: Learning by examples
Slide 132: Exclusion Region: Special Extension
Slide 133: Improvement & Corrections
Fracture
Slide 134
Slide 135: Fracture Enhancements for 2023 R1
Slide 136: Analytical Crack : Elliptical Crack
Slide 137: Analytical Crack : Ring Crack
Slide 138: Arbitrary Crack - Elliptical and Ring shaped
Slide 139: Arbitrary Crack - Through Crack
Slide 140: Arbitrary Crack – Intersecting at multiple corners
Slide 141: Crack Front Number property on named selections
Slide 142: Unique solver ids for fracture parameters
Slide 143: Fracture results for all crack fronts
Slide 144: Results on specific crack front using Crack Front Number
Slide 145: Results - All Cracks selection mode on Fracture Tool
Slide 146: SMART Crack Growth support for new crack shapes
Slide 147: Commands (APDL) - For specific crack front
Slide 148
Slide 149: Electric Conduction in Coupled Field Transient
Slide 150: Electrostatic Force Coupling in Coupled Field Static
Slide 151: Electrostatic Force Coupling in Prestressed Coupled Field Harmonic
Slide 152: 4. General Miscellaneous Enhancements
Slide 153
Slide 154: Contact Enhancements
Slide 155: Default Pinball Radius Factor for Shells
Slide 156: Default Pinball Radius Factor for Shells
Slide 157: Projected Contact for Gaskets
Slide 158: Edge-Edge Detection
Slide 159: An example shown below where the edge contact with Line-Line detection option gives better results
Slide 160: Connection Enhancements
Slide 161: Connection Enhancements
MAPDL Materials
Slide 162
Slide 163: Finite strain plasticity material model
Slide 164: Material-agnostic Generalized TMF Damage
Slide 165: Mesh Independent INISTATE
Slide 166: AML Development Update
Slide 167: Viscoelastic Materials Fitting
MAPDL Contacts
Slide 168
Slide 169: 2023R1 Contact & Nonlinear Solver Heuristics Enhancements
Slide 170: 2D axisymmetric elements with torsion ROTY
Slide 171: Double Sided Target Surface
Slide 172: Double Sided Target Surface
Slide 173: Limited CEs for Rigid Constraint under Small Deflection
Slide 174: Terminate analysis automatically based on tracked results
MAPDL BCs
Slide 175
Slide 176: DDELE in Restart and NLAD
Slide 177: Simple Example of DDELE behavior with Restart
Slide 178: Simple Example of DDELE in NLAD
Slide 179: Examples of DDELE in RESTART and NLAD
MAPDL Elements
Slide 180
Slide 181: Coupled-Field Link Element (LINK228)
Slide 182
Slide 183: Bending & Torsional Stiffness for Discrete Reinforcing Element
Slide 184: Electrostatic-Structural Analysis Enhancements
Slide 185: MORPH Command Enhancement
MAPDL Thermal
Slide 186
Slide 187: RADIOSITY ENHANCEMENTS
Slide 188: Radiosity Enhancements
MAPDL Fracture
Slide 189
Slide 190: SMART support for non-proportional loading
Slide 191: Crack-face-traction from initial stress
Slide 192: SMART with Cohesive Zone Modeling
Slide 193: Crack Arrest Modeling
MAPDL Solvers
Slide 194
Slide 195: Overview
Slide 196
Slide 197: What's New?
Slide 198: Compute Resource Prediction
Slide 199: Resource Prediction Enhancements
Slide 200: Compute Resource Prediction: Solver Memory Requirements
Slide 201: Harmonic Analysis Enhancements
Slide 202: KRYLOV Method
Slide 203: KRYLOV Method
Slide 204: KRYLOV Method
Slide 205: KRYLOV Method
Slide 206: KRYLOV Method
Slide 207: Miscellaneous Enhancements
Slide 208: Beta Features
Mechanical APDL Linear Dynamics
Slide 209
Slide 210: Overview: Solver + UI/UX
Slide 211: Multistage Cyclic Symmetry Analysis
Slide 212
Slide 213: Multistage Cyclic Symmetry Analysis
Slide 214: Multistage Cyclic Symmetry Analysis
Slide 215: Multistage Exposure in Mechanical
Slide 216: Improved performance for Substructuring Analyses
Slide 217: Bottom-up CMS: Export files for On Demand Expansion
Slide 218: Bottom-up CMS: Import Substructure file
Slide 219: Bottom-up CMS: Perform on demand expansion
Slide 220: Bottom-up CMS: Load vector limit for Substructure Generation
Slide 221: Scope of Harmonic Balance Method Initiative - beta
Slide 222: Harmonic Balance Method Workflow
Slide 223: 2023R1 Example: Simplified model of blade-disk assembly with under platform damper [Poudou thesis 2007]
Slide 224: 2023R1 Example: Simplified model of blade-disk assembly with under platform damper [Poudou thesis 2007]
Slide 225: 2023R1 Bolted Beam Assembly – HBM Customer Benchmark
Slide 229: Miscellaneous: Solver
Slide 230: Miscellaneous: Multi-Steps Harmonic
Slide 231: Miscellaneous: On Demand Expansion
Slide 232: Miscellaneous: Integration
Slide 233: Miscellaneous
Slide 234: Miscellaneous
Slide 235: Miscellaneous
DCS
Slide 236
Slide 237: Distributed Compute Services (DCS) enhancements
Slide 238: Distributed Compute Services (DCS) enhancements
AQWA
Slide 239
Slide 240: Time Domain Wave Surface Animation
Slide 241: Part Transforms in Aqwa Workbench
Additive
Slide 242
Slide 243: Improved Automatic Distortion Compensation
Slide 244: Other Improved Capabilities into Mechanical Additive
Slide 245: Automatic Distortion Calibration Wizard
Slide 246: Improved DED Simulation
Explicit Simulation
Slide 247
Slide 248
Slide 249: Explicit Dynamics – Per Material Erosion Controls
Slide 250
Slide 251
Slide 252: Drop Case Setup
Slide 253: Drop Case Setup
Slide 254: Coordinate System Definition
Slide 255: Coordinate System Definition
Slide 256: Coordinate System Definition
Slide 257: Drop Plane Definition
Slide 258: Multiple Case Definition
Slide 259: Additional Output Settings
Slide 260: Dimensionally Reduced Rigid Body Behavior
Slide 261
Slide 262: D3Part
Slide 263: D3Part
Slide 264: D3Max
Slide 265: D3Max
Slide 266: Case
Slide 267: Case
Slide 268
Slide 269: SPG : Smoothed Particle Galerkin
Slide 270: ISPG : Incompressible Smoothed Particle Galerkin
Slide 271: ISPG To Surface Coupling
Motion
Slide 272
Slide 273
Slide 274: Edge Contact
Slide 275: FTire Interfacing
Slide 276: Joint Consistency
Slide 277: Simulation Scenario with BC
Slide 278: Mesh Automation
Slide 279: Numerical Damping
Slide 280: Residual Tolerance
Slide 281: Solving Speed for Motor EM Force (with modal bodies)
nCode
Slide 282
Slide 283: 1.1 Frequency-Based Modal Superposition Vibration Fatigue Analysis
Slide 284: 1.2 Frequency-Based Modal Superposition Vibration Fatigue Analysis
Slide 285: 2.1 Time-Based Modal Superposition Fatigue Analysis
Slide 286: 2.2 Time-Based Modal Superposition Fatigue Analysis (Motion)
Slide 287: 3.1 Seam Weld Material Customization
Slide 288
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