Additive Manufacturing Scenario Creation
Additive Manufacturing Scenario Creation Basics
Additive Manufacturing Scenario Creation Access to Content
Flyout for Finding Disconnected Bodies
Additive Manufacturing Section
Flyout for Translations/Rotations
Flyout for Connector Translation/Rotation
Flyout for Connector Translational/Rotational Velocity
Additive Manufacturing Scenario Creation
Thermal-Mechanical Simulation of a Powder Bed Process
Pattern-based Thermal-Mechanical Simulation of a Powder Bed Process
Eigenstrain-based Simulation of a Powder Bed Process
Thermal-Mechanical Simulation of FDM and LDED Processes
Controlling the Scale of the Simulation and the Solution Fidelity in a Thermal-Mechanical Simulation
Mapping Search Control Options
Direct Energy Deposition Additive Manufacturing Workflow
Eigenstrain Additive Manufacturing Workflow
Pattern-Based Additive Manufacturing Workflow
Thermal-Structural Additive Manufacturing Workflow
Creating Smooth Step Amplitudes
Selecting Which Parts to Include in a Simulation
Review and Edit Global Element Type Assignments
About Finite Element Model Representations
Associating a Finite Element Model with a Simulation
Associate a Predefined FEM with a Simulation
Create a FEM to Associate with a Simulation using Standard Mesh Types
Create a Voxel Mesh FEM to Associate with a Simulation
Creating Restart Analysis Cases
Restart for Explicit Dynamics Steps
Deleting Restart Analysis Data
About SOLIDWORKS in Simulations
Importing SOLIDWORKS Desktop Files
Updating Imported SOLIDWORKS Models
XML Schemas and User Subroutines
Steady-State Heat Transfer Steps
About Steady-State Heat Transfer Steps
Defining Steady-State Heat Transfer Steps
Define Steady-State Heat Transfer Steps Using Automatic Time Incrementation
Define Steady-State Heat Transfer Steps Using Fixed Time Incrementation
About Transient Heat Transfer Steps
Defining Transient Heat Transfer Steps
Define Transient Heat Transfer Steps Using Automatic Time Incrementation
Define Transient Heat Transfer Steps Using Fixed Time Incrementation
Define Static Steps Using Automatic Time Incrementation
Define Static Steps Using Fixed Time Incrementation
Adding Automatic Step Stabilization
Add Energy Fraction Stabilization
Initial DOF Rotational Velocities
About Initial DOF Rotational Velocities
Applying Initial DOF Rotational Velocities
Initial Stresses in Sequential Stress Analyses
Apply a Uniform Initial Stress
Apply Initial Stress in a Sequential Stress Analysis
Apply a Uniform Initial Temperature
Apply Varied Initial Temperatures with Mapped Data
Apply Initial Velocities to Structures
Apply Initial Velocities to Fluids
Shell Thickness and Offset in Contact Detection
Defining Contact Initialization
Contact Properties in Structural Steps
Contact Properties in Thermal Steps
Defining Contact Properties in Structural Steps
Define Tangential Contact Properties Using Rough Friction
Define Tangential Contact Properties Using Coulomb Friction
Define Normal Contact Properties
Defining Contact Properties in Thermal Steps
Define Thermal Conduction Contact Properties
Define Radiation Contact Properties
Define Electrical Conduction Contact Properties
Impact of Display Settings on Model Geometry Visualization
Defining General Contact in Implicit Steps
Using the Model Change Manager
Defining Surface-Based Contact in Implicit Steps
Define the Main and Secondary Surfaces
Define the Contact Property and Tie the Surfaces Together
Define the Discretization Method and Sliding and Clearance Behaviors
Define the Adjustment Behaviors
Defining Surface-Based Contact in Explicit Dynamic Steps
Defining Surface-Based Contact in Thermal Steps
About Tangential Behavior Overrides
Applying Tangential Behavior Overrides
Additive Manufacturing Library
About Additive Manufacturing Libraries
Adding Additive Manufacturing Libraries
Create an Additive Manufacturing Library
Use a Thermal Pattern Additive Manufacturing Library
Defining Trajectory-Based Material Activation
Defining Pattern-Based Material Activation
Defining Thermal Pattern-Based Material Activation
About Direct Energy Deposition
Defining Direct Energy Deposition
Tying the Components in an Additive Simulation
Define a Straight-Line Cutting Path
Define an Event Series Cutting Path
Apply Varied Film Conditions with Mapped Data
Apply User-Defined Film Conditions
Defining Free Surface Heat Transfer
Apply Varied Heat Fluxes with Mapped Data
Apply User-Defined Heat Fluxes
Uniform and Spatially Varying Prescribed Temperatures (All Simulation Types)
Prescribed Temperatures from a Thermal Step (Sequential Thermal-Stress Simulations Only)
Applying Prescribed Temperatures
Apply Uniform Prescribed Temperatures
Apply Spatially Varying Prescribed Temperatures with Mapped Data
Apply Prescribed Temperatures from Thermal Steps
Fixed Connector Displacement Restraints
About Fixed Connector Displacement Restraints
Applying Fixed Connector Displacement Restraints
About Fixed Displacement Restraints
Applying Fixed Displacement Restraints
About Planar Symmetry Restraints
Applying Planar Symmetry Restraints
Connector Rotational Velocities
About Connector Rotational Velocities
Applying Connector Rotational Velocities
Applying Connector Translations
Connector Translational Velocities
About Connector Translational Velocities
Applying Connector Translational Velocities
Apply Hydrostatic Pressure Distributions
Apply Varied Pressures with Mapped Data
About Applied Rotational Velocities
Applying Rotational Velocities
About Translational Velocities
Applying Translational Velocities
Using B.I. Essentials in Additive Manufacturing Scenario Creation