

Labotemp 1700°C High Temperature Debinding Furnace LDB-201 delivers controlled high temperature processing up to 1700°C, with a 3 L chamber, MoSi₂ heating rods on two sides, and a B type thermocouple. Designed for controlled thermal debinding applications, the furnace provides a maximum temperature of 1700°C for up to 2 hours and a continuous working temperature of 1600°C for 24 hours. It features ±1°C temperature accuracy, ±5°C temperature uniformity, a heating rate of ≤10°C/min, and high alumina ceramic fiber chamber insulation for high temperature operation.
Debinding Furnace LDB 201 incorporates an inlet and exhaust air system with a manually controlled fan and a secondary combustion system to manage gases generated during the debinding process. Fresh air injection supports atmosphere dilution, while the furnace operates under positive pressure during debinding. A 50-segment PID controller with automatic tuning provides programmable temperature control, while over temperature protection, power failure protection, and microprocessor based control support safe and stable operation. Controlled airflow and exhaust management are important in thermal debinding because binder decomposition generates vapours that need to be removed from the furnace chamber.
Why Choose Labotemp High Temperature Debinding Furnace LDB 201?
✓ 1700°C Maximum Temperature: Supports high temperature processing up to 1700°C for demanding thermal applications.
✓ Secondary Combustion System: Helps manage gases generated during the thermal debinding process.
✓ Precise PID Temperature Control: 50-segment controller with automatic tuning supports controlled and repeatable heating processes.
| No. | Specification | Value |
|---|---|---|
| General Specifications | ||
| 1 | Furnace Type | Debinding Furnace |
| 2 | Chamber Size | 150 × 150 × 150 mm |
| 3 | Chamber Volume | 3 L |
| 4 | Maximum Temperature | 1700°C |
| 5 | Working Temperature | 1600°C, 24/7 |
| 6 | Heating Rate | ≤10°C/min |
| 7 | Temperature Accuracy | ±1°C |
| 8 | Temperature Uniformity | ±5°C |
| Heating & Temperature Control | ||
| 9 | Heating Element | MoSi₂ Rods |
| 10 | Heating Method | Two-Side Heating |
| 11 | Thermocouple | B Type |
| 12 | Temperature Controller | Yudian 828, 50 Segments |
| 13 | Control Method | PID Automatic Control & Auto-Tuning |
| 14 | Maximum Temperature Reached | <2 Hours |
| 15 | Temperature Measurement | Single-Point |
| Furnace Construction & Atmosphere System | ||
| 16 | Chamber Material | 1800°C High-Alumina Ceramic Fiber Board |
| 17 | Furnace Door | Side Opening |
| 18 | Furnace Shell | Double Carbon Steel Shell |
| 19 | Surface Finish | Environmental Powder Coating |
| 20 | Exhaust System | Inlet & Exhaust Air System with Fan |
| 21 | Fan Control | Manual |
| 22 | Secondary Combustion | Equipped |
| 23 | Cooling | Air Cooling |
| 24 | Atmosphere Operation | Overpressure During Debinding |
| 25 | Packaging Dimension(WxDxH) | 800 x 800 x 1400 mm |
| 26 | Gross weight | 270kg |
| Electrical, Safety & Operating Conditions | ||
| 27 | Power Supply | 110V, 60Hz, Single Phase |
| 28 | Rated Power | 6 kW |
| 29 | Electrical Components | Schneider |
| 30 | Operating Ambient Temperature | 0–50°C |
| 31 | Relative Humidity | ≤90% |
| 32 | Safety Protection | Overheat & Power Failure Protection |
Ceramic Debinding: Suitable for controlled removal of organic binders from ceramic components before subsequent high temperature processing.
Technical Ceramics: Suitable for thermal processing of ceramic components and materials requiring controlled binder removal and high temperature treatment.
Ceramic Powder Processing: Applicable to research involving ceramic powders and formed components that contain organic binders.
Electronic Ceramics: Suitable for laboratory and research applications involving electronic ceramic components requiring controlled thermal processing.
Materials Research: Suitable for universities, research laboratories, and industrial R&D applications involving high temperature debinding and thermal treatment.
