WS-2 WS-3 3D model
Home Catalog WS-2 WS-3 3D model

Publication date: July 06, 2022

Buy WS-2 WS-3 3D model

$140

License: Editorial Uses Only

Rigged PBR Realtime Animated Free
author:

Alex Kontz

Renders and source materials belong to the author Alex Kontz.
Specifications
Platform
turbosquid
Animated
Rigged
3D Print ready
VR / AR / Low-poly
PBR
Textures
Materials
UV Mapping
Polygons
181102
Vertices
99830
Geometry
Unknown
Usage recommendations
Realtime rendering
PC Game development
Mobile Game Development
VR/AR applications
Visualisation
Cinema
Advertising
3D Printing
CAD Engineering
E-Commerce & Interactive 3D Web
FAQ
Is this a free 3D model?

No, this model costs $140.

How do I download this 3D model?

Click the "Go to purchase" button to buy and download this model.

What license applies to this model?

The Editorial Uses Only license applies to this model. More details are available via the "Go to purchase" button.

Does it include rigging and animation?

This model has no rig or animation. It is a static 3D object.

Does this model have UV mapping?

Yes, this model has UV mapping. Full technical parameters are outlined in the Specifications block.

What textures and materials does this 3D model include?

This model has textures and materials. Full technical parameters are outlined in the Specifications block.

Can I use it for 3D printing?

No, this model is not intended for 3D printing.

Additional information
WS-2 and WS-3 are Chinese PLA long range 400mm guided MLRS with maximum range of fire from 200 to 400 km, depending on type of rockets. Firing accuracy is <3% at a maximum range. In service since 2004. Crew consist of 3 men. Deployment time 12 min. . WS-2 look similar as WS-3 MLRS, but use different type of rockets. So you can use this model as both of them.

The scene contain two models of WS-2/WS-3 launcher in stowed and deployed positions. This help understand, how the model should look in these positions.

The model is real-world scaled and hierarchically linked. All objects and materials use corresponding unique names.
Similar models