Muffle Furnace
Industrial Large Box Furnace 1700C 216L High Temp Muffle Sintering System
Item Number: TU-CT26
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Product Overview


This high-capacity thermal processing system represents the pinnacle of industrial heating technology, designed specifically for high-volume sintering and material synthesis. By combining a massive 216-liter chamber with a peak operating temperature of 1700°C, the equipment provides researchers and production managers the capability to process large-scale components or batch-process multiple small samples with exceptional uniformity. The core value proposition of this unit lies in its ability to bridge the gap between laboratory-scale experimentation and industrial-scale production, offering a robust platform for demanding thermal cycles.
Targeted primarily at material science laboratories, aerospace manufacturing, and advanced ceramic industries, this system is engineered to handle rigorous schedules. Whether it is used for high-temperature calcination, glass melting, or the sintering of high-performance oxides, the unit delivers consistent results. The separation of the furnace chamber and the control unit ensures that sensitive electronic components are shielded from the extreme thermal environment, significantly extending the operational life of the system and reducing the frequency of maintenance interventions.
Reliability is the cornerstone of this design. Utilizing premium alumina fiber insulation and high-grade molybdenum disilicide (MoSi2) heating elements, this furnace provides the stability required for critical industrial processes. The air-cooled double-layer steel casing maintains a safe external surface temperature even during 1600°C continuous operation, ensuring a safe working environment. Buyers can invest with confidence, knowing this system is built to provide high-precision thermal control and long-term durability under the most demanding industrial and R&D conditions.
Key Features
- Massive 216L Chamber Capacity: With internal dimensions of 600x600x600mm, this system accommodates large industrial components and high-volume batches, maximizing throughput for pilot plants and research facilities.
- Superior MoSi2 Heating Architecture: Equipped with 12 high-grade 1700°C Molybdenum Disilicide (MoSi2) heating elements, the unit ensures rapid heating and excellent temperature uniformity throughout the internal workspace. These elements form a protective quartz layer during operation, preventing oxidation and ensuring long-term performance.
- Precision Alumina Fiber Insulation: The interior is lined with high-purity alumina fiber brick, which features exceptionally low thermal mass. This allows for faster heating rates and significant energy savings by minimizing heat loss through the furnace walls.
- Advanced PID Temperature Control: The system utilizes a sophisticated PID automatic controller with a 30-step programmable interface. This allows operators to create complex thermal profiles for annealing, sintering, and stress-relieving processes with an accuracy of +/- 1°C.
- Enhanced Safety with Dual-Layer Construction: The air-cooled double-layer steel casing prevents the accumulation of heat on the outer surface. Integrated cooling fans circulate air between the layers, protecting personnel and maintaining the integrity of the structural frame.
- Current Limiting Phase Angle Firing: To protect the high-performance heating elements from current surges, the system employs phase angle fired resistors. This technology ensures a soft start and stable power delivery, particularly critical when the MoSi2 elements are at low temperatures and high resistance.
- Separate Industrial Control Unit: The independent control module houses the electrical components away from the heat source, preventing thermal degradation of the circuitry and allowing for easier access during adjustments or troubleshooting.
- B-Type Thermocouple Accuracy: Featuring a high-stability Type B thermocouple, the system provides reliable temperature feedback at the highest operating ranges, ensuring the internal environment matches the programmed setpoints precisely.
Applications
| Application | Description | Key Benefit |
|---|---|---|
| Advanced Ceramic Sintering | Processing of large-scale zirconia, alumina, or silicon nitride components for industrial use. | Achieves high density and structural integrity through precise ramp control. |
| Aerospace Material Testing | High-temperature stress testing and heat treatment of composite materials and superalloys. | Simulates extreme operational environments with high repeatability. |
| Metallurgical Heat Treatment | Large-scale annealing and tempering of specialty metal parts to improve ductility and toughness. | Ensures uniform grain structure across the entire 216L volume. |
| Solid Oxide Fuel Cell (SOFC) | Calcination and sintering of large fuel cell stacks and electrolyte materials. | Maximizes batch output while maintaining strict thermal tolerances. |
| Glass Melting & Refining | High-temperature fusion of specialty optical or industrial glass formulations in crucibles. | Provides the clean environment and high heat required for glass clarity. |
| Nuclear Material Research | Thermal processing of ceramic nuclear fuels and waste form development in research labs. | Robust construction provides the reliability needed for high-stakes research. |
| Electronic Component Aging | Stress testing of high-power semiconductors and ceramic capacitors at elevated temperatures. | Maintains stability over long-duration continuous operation cycles. |
Technical Specifications
| Parameter | Specification Details (Item Number: TU-CT26) |
|---|---|
| Model Number | TU-CT26 |
| Chamber Dimensions | 600 mm x 600 mm x 600 mm (W x H x D) |
| Total Chamber Volume | 216 Liters |
| Maximum Working Temp | 1700 °C (Short-term duration < 30 minutes) |
| Continuous Working Temp | 1600 °C |
| Heating Rate | ≤ 10°C/min (0-1400°C); ≤ 5°C/min (1400-1600°C); ≤ 2°C/min (>1600°C) |
| Temperature Control | PID Automatic Control, 30-step programmable segments |
| Temperature Accuracy | ± 1 °C |
| Heating Elements | 12 pcs MoSi2 (High-purity 1700°C grade) |
| Thermocouple Type | Platinum-Rhodium (Type B) |
| Insulation Material | High-quality Alumina Fiber Brick |
| Casing Construction | Double-layer steel with integrated air cooling fans |
| Voltage Requirements | 480 VAC +/- 10%, Three Phases, 50/60Hz |
| Maximum Power Output | 32 KW |
| Control Unit Design | Independent separate cabinet for thermal isolation |
Why Choose Us
- Industrial Grade Scalability: This system offers a massive 216L chamber, allowing users to scale up from small-scale laboratory samples to full industrial batch production without sacrificing thermal precision.
- Engineered for Longevity: By utilizing B-type thermocouples, 12-element MoSi2 arrays, and phase-angle firing, the furnace is designed to withstand the stresses of high-temperature cycling for years of reliable service.
- Exceptional Thermal Efficiency: The combination of low-mass alumina fiber and double-wall cooling makes this unit significantly more energy-efficient than traditional refractory brick furnaces, reducing long-term operational costs.
- Uncompromising Safety Standards: Integrated safety features including over-temperature protection, current limiting, and active fan cooling ensure the safety of both the equipment and the operators in a high-intensity industrial environment.
- Global Support & Customization: As a leader in thermal processing, we provide comprehensive technical support and the ability to customize configurations to meet specific atmospheric or geometric requirements for your unique process.
This high-capacity industrial furnace is the definitive solution for organizations requiring high-volume thermal processing at temperatures up to 1700°C. Contact our technical sales team today for a formal quote or to discuss how this system can be integrated into your production workflow.
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