Vase puffy triangle smooth 3D print model

Vase puffy triangle smooth 3D print model

cgtrader

This highly detailed 3D model is designed to seamlessly integrate into a variety of applications including VR, real-time experiences, and architectural visualizations that demand precise, realistic representation. It can also serve as a base for intricate animations or other complex computer-generated scenes where photorealistic visuals are paramount. One key benefit lies in its suitability for 3D printing purposes, as it adheres strictly to the exact measurements found in the real world. Originally crafted with precision using the 2016 edition of 3ds Max software and effortlessly converted into other widely accepted formats, this model can easily be customized or further refined for specific projects. At its core, this detailed digital entity is comprised of a singular solid geometry object, optimized to handle high resolution enhancements via subdivision techniques. When utilized, it offers an increased level of graphical fidelity that was made possible by applying Turbosmooth modifier in addition to the foundational mesh structure and two meticulous iterations thereof. Its origin serves as its natural pivot point for any adjustments or modifications. For applications requiring maximum accuracy such as photorealistic visualizations, this model can be refined using a simple yet powerful standard material within Vray 3.0 software. Given its minimalist approach to texture overlay and absence of additional decorative elements, the inherent realism is maintained throughout. Importantly, it's worth noting that lighting adjustments in this particular setup are solely defined by the illumination present in any 3ds Max environment.

Download Model from cgtrader

With this file you will be able to print Vase puffy triangle smooth 3D print model with your 3D printer. Click on the button and save the file on your computer to work, edit or customize your design. You can also find more 3D designs for printers on Vase puffy triangle smooth 3D print model.