
Bowl helix with diagonal grid bulges 3D print model
cgtrader
High-definition 3D model designed specifically for VR applications, real-time visualization projects, architectural interior scenes, and other computer-generated visualizations or animations that demand cutting-edge precision. The model boasts precise dimensions comparable to its real-world counterparts, ensuring seamless integration with your project. Originally created using industry-leading software 3ds Max 2016 and seamlessly exported to a range of formats to accommodate various applications. The 3D geometry can be effortlessly subdivided for increased resolution without the need for any additional modifications. This robust model has been crafted as a single unified object, streamlining the subdivision process and ready to elevate your visual projects to the next level. A Turbosmooth modifier has been strategically applied to the mesh, enhancing the model's sophistication with 2 precise iterations. Situated precisely at the scene's origin point for optimal flexibility and rendering ease, the 3D model showcases its potential through uncomplicated Vray 3.0 visuals with basic Vray standard material, lacking any distracting textures that might disrupt its pristine appearance. Please note that this scene has been rendered without illumination settings, allowing you complete creative control over the lighting and visual effects to best complement your project. Suitable dimensions for 3D printing stand at 24298cm x 24405cm x 12448cm, offering a versatile framework for customization or modifications if required. In need of customizations or changes? Simply contact us and we'll be delighted to help you achieve the desired outcome for your unique vision.
With this file you will be able to print Bowl helix with diagonal grid bulges 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 Bowl helix with diagonal grid bulges 3D print model.