| Brand Name: | WONDERY |
| Model Number: | WDL-446 |
| MOQ: | 1 Set |
| Price: | Negotiable |
| Delivery Time: | 30 Days |
| Payment Terms: | L/C, T/T |
WDL-446 Vacuum High-Temperature Brazing Furnace | Molybdenum Heating Medium Furnace | Stainless Steel & Superalloy Brazing Equipment | WUXI WONDERY INDUSTRY EQUIPMENT CO., LTD.
The WDL-446 Vacuum High-Temperature Brazing Furnace, manufactured by WUXI WONDERY INDUSTRY EQUIPMENT CO., LTD. , is designed for medium-scale production requirements. With an effective heating zone of 400×400×600mm and a maximum load capacity of 200kg, this furnace utilizes high-purity molybdenum heating elements and all-metal heat shields to completely eliminate carbon contamination, making it ideal for precision brazing of stainless steel, superalloys, and titanium alloys.
This model balances laboratory-grade precision with increased productivity, serving as an ideal solution for medical devices, automotive components, and medium-small aerospace structural parts. Temperature uniformity of ±5℃ (AMS2750E compliant) and maximum temperature of 1300℃ meet international standards including ISO and ASTM.
Capacity-Precision Balance: 400×400×600mm chamber volume nearly doubles that of smaller models, significantly increasing single-batch output while maintaining ±5℃ uniformity.
Carbon-Free Assurance: All-metal hot zone design ensures no brittle carbide formation at brazing interfaces for stainless steel and titanium alloys.
Fast Pumping System: Optimized vacuum circuitry for 200kg load improves pumping efficiency and shortens cycle times.
Industrial Control System: PLC with touchscreen supports multiple recipe storage and recall with full data traceability.
| Parameter | Specification |
|---|---|
| Model | WDL-446 |
| Effective Zone | 400×400×600 mm |
| Max Load | 200 kg |
| Heating Element | High-purity Molybdenum |
| Max Temperature | 1300 ℃ |
| Temperature Uniformity | ±5 ℃ |
| Ultimate Vacuum | 4×10⁻¹ Pa (std) / 4×10⁻⁴ Pa (upgraded) |
| Leak Rate | ≤0.5 Pa/h |
| Cooling | Natural / Optional forced cooling |