RINGS N 28 3D print model

RINGS N 28 3D print model

cgtrader

The luxurious setting of a dazzling gemstone is offset by an equally resplendent golden crown. The focal point of the piece is an impressive diamond emerald, shining with brilliant luster and standing tall at an incredible size of 18 millimeters in diameter. This regal centerpiece is masterfully surrounded by 6 smaller diamonds, perfectly positioned to radiate a symphony of color and light from their strategic 1.10-millimeter placements. Around this gleaming cluster are delicately situated another six smaller gems that sparkle from their minuscule dimensions, barely reaching one point two millimeters each as they dance with subtle beauty, adding layers upon layers of shimmering facets to the display. Upon the base is expertly positioned a stunning halo comprised of 30 round cut diamonds, standing watchful at an awe-inspiring 7 millimeters. These shining beauties join forces with their six peers on top to bring unparalleled elegance and visual harmony to the intricate jewelry creation. As it wraps gently around the emerald's grand presence is a 3.5-millimeter band fashioned in elegant gold 14k that brings poise, symmetry, and sophisticated appeal. In addition, at 4 millimeters, the outer edge features an imposing band crafted with impeccable attention to detail from a rare combination of materials; two of which have their own special characteristics including eighteen-karat golden allure combined together with nine-hundred-and-fifty purity of pure silver to evoke unshakeable reliability in durability, creating a one-of-a-kind jewel box masterpiece that captivates the eyes with elegance and leaves hearts filled with satisfaction at this rare treasure of handcrafted workmanship.

Download Model from cgtrader

With this file you will be able to print RINGS N 28 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 RINGS N 28 3D print model.