The Morelli Rhodium Nickel Titanium Universal Form Archwires (Rectangular) are superelastic NiTi archwires finished with a thin rhodium plating — a silver-white precious metal that gives the wire a whitish, tooth-like appearance. The rectangular cross-section engages the bracket slot in three planes, allowing torque expression and finishing while the aesthetic finish is maintained. Each pack contains a single archwire.
Key Features
Rhodium plating — silver-white precious metal finish with a whitish, tooth-like appearance
Aesthetics with mechanical performance — the plating does not replace the superelastic NiTi core
Rectangular cross-section — enables torque expression and three-dimensional control
Light and constant force release — sustained throughout the working phase
Single-wire packaging — order exactly the size and arch the case requires
Separate upper and lower arches — anatomy-specific selection at the point of order
Technical Specifications
Material: NiTi (Nickel Titanium), superelastic
Finish: Rhodium plating (thin layer, silver-white)
Arch Form: Universal
Wire Cross-Section: Rectangular
Wire Sizes: .017″ × .025″ (0,43 × 0,63 mm), .019″ × .025″ (0,48 × 0,63 mm)
Arch Options: Upper and Lower, sold separately
Quantity: 01 wire per pack
Purpose: Torque expression, finishing and detailing with an aesthetic rectangular archwire
Certifications: FDA Approved, CE Approved, ISO 9001:2015, ISO 13485:2016
Country of Manufacture: Brazil
Package Includes: 01 Morelli Rhodium-plated Superelastic NiTi Universal Form rectangular archwire in the selected size and arch (upper or lower)
Clinical Applications
Torque expression and finishing in the working and detailing phases
Aesthetic cases requiring a rectangular wire that fills the slot without a bright metallic appearance
Use with conventional and self-ligating bracket systems accepting .025″ rectangular sections
Why choose Morelli Rhodium NiTi rectangular archwires?
A rhodium-plated surface keeps the wire visually discreet while the rectangular section delivers the torque and three-dimensional control the finishing phase requires.