D-SLA Pure Titanium Surface Technology
Masterful design, stable integration — every technical detail of an OYRAY implant serves a single goal: long-term, stable, predictable osseointegration.

- Higher purity 100% pure titanium surface with superior biocompatibility. Energy-dispersive spectroscopy (EDS) shows titanium (Ti) mass and atomic percentage both at 100.00% ± 0.34, with a fitting ratio of 0.0113 — traceable, controlled purity.
- Safer Spherical sandblasting combined with a 16-step cleaning process eliminates contamination at the source, ensuring a fully pure and reliable surface treatment process.
- Stronger An upgraded microstructure delivers faster, stronger osseointegration, providing robust support for early implant stability.
| Element | Line | Mass% | Atom% |
|---|---|---|---|
| Ti (Titanium) | K | 100.00 ± 0.34 | 100.00 |
| Total | — | 100.00 | — |
From Purity to Integration
A deep bond between the pure titanium surface and trabecular bone structure is the foundation of long-term implant success.

Implant Design Features
- Universal tapered structure Easy operation, efficient implantation, simplified clinical workflow.
- Variable thread design Suitable for various bone conditions, with smoother implantation.
- Combined tapered cutting grooves Efficient cutting, easily penetrates through dense bone.
- Morse taper connection An 11° Morse taper combined with an internal hex delivers a tight seal and reliable torque transmission.
- Optimized neck design Significantly increases bone contact area, achieving excellent primary stability even in cancellous bone.

Premium Materials, Long-Lasting Reliability
Original precision component system: ultra-low-clearance titanium alloy for a precise fit, effectively preventing micro-movement, wear, and mechanical failure.

Source cleanliness
Contact-free from production to packaging, eliminating contaminants and impurities.
Process safety
Internal fixation design prevents friction and vibration during transport and storage.
Intraoperative efficiency
An integrated quick-open design enables faster transfer, improving surgical efficiency.