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Orthopedic Insoles SLA 3D Printer For Eyewear Manufacturing With Wax Resin

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  • Shipping Timeframes: All orders are processed within 2-5 business days (excluding weekends and holidays). After your order has been processed, the estimated delivery time is before 03 Feb, 2026, depending on customs, Please note that due to high demand, some items may experience longer shipping times, which will be communicated at order confirmation email.
  • Order Processing Time: Please allow 2-5 business days for us to process your order before it is shipped . Orders placed after 16:00 on Fridays, or during weekends and public holidays, will begin processing on the next business day. Processing times may be extended during peak seasons or sales events.
  • Manufacturing Time: Some products needs manufacturing time, the manufacturing process will take approximately 10-30 business days depending on the product. This timeframe may vary depending on the complexity of the product and current demand. but this will be communicated with you during order confirmation.
  • Returns and Exchanges: We offer a 30-day return policy for most items. If you are not completely satisfied with your purchase, you may return it within 30 days of receipt for a refund or exchange. Items must be unused, in their original packaging, and accompanied by proof of purchase. Return shipping costs are the responsibility of the customer, unless the item was damaged or defective upon arrival.
1. What is the Orthopedic Insoles SLA 3D Printer for Eyewear Manufacturing with Wax Resin designed to do?

This SY-600 SLA 3D printer is designed for high-precision production of orthopedic insoles and eyewear patterns, especially using wax resins for pattern-making and lost-wax casting workflows as well as other SLA photopolymer applications.

2. What are the machine's key specifications?

Model SY-600; physical dimensions 1293 × 1362 × 1960 mm; equipment weight about 1000 kg; power 350 W; build (maximum molding) size 600 × 600 × 400 mm; resin tank listed as 240 kg capacity; maximum production part weight 100 kg; repeatability ±0.01 mm.

3. What laser and optical specifications does the printer use?

Single laser: diode-pumped solid-state (ND:YVO4), wavelength 355 nm, laser power 3 W. Optical scanning uses a high-speed galvanometer system with spot diameter options of 0.12–0.6 mm.

4. What layer thicknesses and accuracy can I expect?

Selectable layer thicknesses: precise production 0.05 mm, normal 0.10 mm, fast/quick 0.15 mm, feature-making range 0.05–0.15 mm. Machine repeatability is ±0.01 mm.

5. What is the production speed and recommended scanning speeds?

Reference production throughput is approximately 200–300 g/h. Recommended part scanning speed is 6 m/s and part jumping speed is 10 m/s (actual throughput will vary by geometry, resin and process settings).

6. Which materials are compatible with this printer?

Primarily designed for wax resins used in pattern-making and lost-wax casting, and other SLA photopolymer resins that cure at or near the 355 nm wavelength. For best results, use manufacturer-recommended resins and verify optical compatibility.

7. How does this printer benefit eyewear manufacturing?

Large build volume and fine spot resolution allow printing multiple frame patterns, molds or wax casting patterns in a single run. Wax-resin compatibility simplifies casting workflows for metal frames or small production runs.

8. Is the printer suitable for producing full-size orthopedic insoles?

Yes. The 600 × 600 × 400 mm build area and ±0.01 mm repeatability allow full-size insoles and custom orthotic shapes, with the capacity to handle heavier parts (up to 100 kg per part).

9. What is the coating system and how does it work?

The printer uses a precise positioning vacuum adsorption coating system for resin distribution. Normal layer thickness is 0.10 mm with options down to 0.05 mm for fine-detail production.

10. What post-processing is required for wax resin prints?

Typical steps: remove parts from the build platform, clean excess uncured resin (appropriate solvent), remove supports, perform any required post-curing, and for lost-wax processes proceed to dewaxing/casting. Follow resin manufacturer and foundry guidelines.

11. What are the installation and site requirements?

Machine weight ~1000 kg requires a stable, level floor and adequate clearance for the 1293 × 1362 × 1960 mm footprint. Provide reliable 350 W power supply, temperature-stable environment, and proper ventilation or fume extraction for resin fumes and post-processing.

12. What safety precautions should operators follow?

Use PPE for resin handling (nitrile gloves, safety glasses), ensure adequate ventilation, follow laser safety protocols, avoid skin contact with uncured resin, and adhere to manufacturer maintenance and safety instructions. Training is recommended before operation.

13. What consumables and maintenance items should I plan for?

Consumables include resins (wax and photopolymer), resin tanks, build platform consumables, replacement optics/galvo servicing, and periodic calibration. Regular cleaning, filter replacement (if fitted), and preventive maintenance on moving parts and the laser are recommended.

14. Which file formats and software does the printer support?

The printer works with standard SLA workflows; common input file formats are STL and OBJ. The manufacturer typically supplies or recommends slicing/printing software and optimized parameters—contact them for software package and integration details.

15. What warranty, training and support are available?

Warranty, installation, and training options depend on the supplier. Contact the manufacturer or vendor for details on warranty terms, on-site installation, operator training, and technical support or service contracts.

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