To do this we'll be using geometry nodes, drivers, and Blender's Python API to prepare the renders. In this article, we'll explain how to create a 3d NFT collection based on this sample forest render and walk you through how we modified the blend file to create a large collection of individual, unique NFTs. ![]() But if you need complex modifications, a short Python script or the use of specialized add-ons such as Blend_My_NFTs may be better contenders. Do you want a collection with truly random elements, or would you rather have finer control over what the final renders look like? For randomization, using geometry nodes or shaders could be enough to find your desired output. First Stepsīefore working on automating creation of your 3d NFT collection, it's important to analyze how much variability you're looking for in your collection. Automate the creation of your 3D NFTs by using Python scripting to change geometry seed values and materials automatically. Keep your workflow organized and find what you need to edit easily by organizing your collections and textures. In this articles, you'll earn how to create a dynamic 3D NFT collection in Blender using geometry nodes, drivers, and Blender's Python API to prepare the renders. With this in mind, this guide will walk you through developing a basic Blender scene into an iterative and dynamic project capable of generating hundreds or even thousands of individual artworks. As 3d NFTs gain traction in the art scene, it's a valuable skill to know how to develop your 3d artworks from single images, into larger, more diverse NFT collections that allow you to share something unique with collectors. NFTs have quickly become an outlet for artists to gain recognition for their work while allowing collectors to take part in the world of digital art. ![]() ![]() How to create a 3D NFT collection in Blender
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