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Freecad assembly tutorial
Freecad assembly tutorial




freecad assembly tutorial

Simulation progress is animated and the simulation can be stopped any time. It does redundant constraint removal automatically and nondimensionalizes the equations for improved accuracy and stability of models that are microscopic or gigantic. Users can specify constant gravity of arbitrary magnitude and direction.įreeCAD can compute kinematic, quasi-static or dynamic solutions for any interval of time going forward or backward based on the assembly and user requests.

freecad assembly tutorial

Available functions are sqrt, exp, ln, lg, sin, cos, tan, arctan, arctan2, spline, spectral density. Example formulas for spring, damper, bushing, beam, aerodynamic, inverse square law and other forces and torques are given. Forces and torques are user prescribed functions of time, displacements and velocities in all three components or along connecting markers. Their motions are user prescribed functions of time.

#Freecad assembly tutorial full#

Available actuators are rotational, translational and full six DOF. The curve-curve contact allows liftoffs and collisions based on coefficient of restitution. Both open and closed 3D loops are permitted. Available joints are spherical (ball), revolute (pin), translational (slider), cylindrical, planar, fixed, universal, point in line, point in plane, parallel, perpendicular, no rotation, constant velocity, rack pinion, screw. Mass and inertia properties can be user specified or automatically computed based on uniform density. Exact specification of linear and angular velocities of parts in space are also possible. The parts can be positioned and oriented exactly in space, as are markers on the parts. Available solids are extrusions of rectangles, circles, ellipses and polygons. FreeCAD is capable of full 3D pan, zoom, tilt and rotate on an assembly of parts in wireframe or rendered graphics.






Freecad assembly tutorial