# Quick Answer: Does Solidworks motion assume the parts to be rigid or flexible?

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## How does solidworks motion work?

The motion simulation program uses material properties from the CAD parts to define inertial properties of mechanism components, and translates CAD assembly mating conditions into kinematic joints. It then auto- matically formulates equations that describe the mechanism motion.

## What does solidworks motion analysis calculate?

A Motion Analysis study combines motion study elements with mates in motion calculations. Consequently motion constraints, material properties, mass, and component contact are included in the SOLIDWORKS Motion kinematic solver calculations.

## What is motion study in Solidworks?

Motion studies are graphical simulations of motion for assembly models. You can incorporate visual properties such as lighting and camera perspective into a motion study. Motion studies do not change an assembly model or its properties. They simulate and animate the motion you prescribe for a model.

## What is motion simulation used for?

Motion simulation uses multibody dynamics to calculate the reaction forces, torques, velocities, acceleration and more for mechanical systems. You can directly convert CAD geometry and assembly constraints into an accurate motion model or create your own multibody model from scratch.

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## How do you animate moving parts in Solidworks?

You can create an animation by dragging the time bar along the timeline to a point in time, and then moving a component to a target location. The MotionManager moves the component from its initial position to the position that you designate at a specified time.

## What is the difference between animation and basic motion in Solidworks?

Animations use interpolation to define the motion of components between these key points. In basic motion studies, on the other hand, mass, inertia, component interaction and gravity are taken into account and the motion is calculated. The position of components is determined by the physics of the situation.

## How do you simulate movements in Solidworks?

To start a motion study in SOLIDWORKS you can click on “Motion Study 1” tab on the lower left corner of SOLIDWORKS user interface. Make sure to click on “Expand Motion Manager” to display the SOLIDWORKS Motion Manager timeline view. The first thing you need to do is to select the type of simulation you want to perform.

## How do you do a motion study in Solidworks?

To start a new motion study for an assembly: Open the assembly and do one of the following: Right-click the Motion Study tab and click Create New Motion Study. Click New Motion Study (Assembly toolbar).

## What is solidworks flow simulation?

SOLIDWORKS® Flow Simulation is an intuitive Computational Fluid Dynamics (CFD) solution embedded within SOLIDWORKS 3D CAD that enables you to quickly and easily simulate liquid and gas flows through and around your designs to calculate product performance and capabilities.

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## How do you animate in Solidworks?

You can create an animation by dragging the time bar along the timeline to a point in time, and then moving a component to a target location. The MotionManager moves the component from its initial position to the position that you designate at a specified time.

## How do you animate a model in Solidworks?

How to create a SOLIDWORKS exploded animation view

1. Right click SOLIDWORKS Exploded View animation and then click Animate explode or Animate collapse.
2. To rotate parts and for full control over each step of the animation, use the Animation Wizard.

## How do I import a motion load in Solidworks?

To import motion loads from SOLIDWORKS Motion database:

1. Click Simulation > Import Motion Loads.
2. Select assembly component(s). …
3. Select Single Frame Study or Multiple Frame Study (Design Scenarios). …
4. Click OK. …
5. To evaluate results for a component, open the part document of the component.

## What is motion modeling?

A motion model is defined as an algorithm f, which, from a collection of agent states , derives new states X t + 1 for these agents, representing their motion over a timestep toward the agents’ immediate goals G, (17.8)