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This Asscher cut pave engagement ring showcases architectural precision combined with refined brilliance. The design features a square step-cut Asscher center stone secured in a structured four-prong setting that emphasizes clean lines and sharp geometry. The elevated head construction allows maximum light entry, enhancing the signature hall-of-mirrors effect of the Asscher cut.
The shank is adorned with round brilliant diamonds in a finely aligned pave setting, delivering continuous sparkle along the upper band while maintaining a slim and elegant profile. The transition between the head and shank is engineered for strength, ensuring durability during everyday wear and long-term use.
The band features a comfort-fit interior with balanced thickness, making it suitable for engagement and bridal collections. The prong structure is carefully positioned to protect the corners of the Asscher stone while maintaining visual symmetry.
This CAD model is professionally built with precise stone seats, clean surfaces, optimized wall thickness, and accurate tolerances for casting. The geometry is production-ready, minimizing corrections and ensuring smooth workflow from 3D printing to final finishing.
Perfect for jewellery manufacturers, custom designers, and retailers looking for a modern yet timeless Asscher pave engagement ring model.
Included Files:
3DM file (Editable Rhino format)
STL file (Ready for 3D printing and casting)
Important Points:
Designed for Asscher cut center stone
Four-prong secure corner setting
Pave-set round diamonds on shank
Elevated head for enhanced light performance
Casting-ready solid CAD structure
Balanced proportions and durability
Smooth comfort-fit inner band
Suitable for gold, platinum, or silver production
Customer Support:
Full support is available for ring size adjustments, center stone dimension changes, pave stone modifications, prong refinements, and metal weight optimization. Assistance is provided to ensure seamless manufacturing and customer satisfaction.
REVIEWS & COMMENTS
accuracy, and usability.
