The TT-IF-56-1400 Industrial Furnace is engineered for high-temperature heat treatment, delivering a maximum operating temperature of 1400°C with continuous operation up to 1300°C. With a spacious 350 × 500 × 350 mm chamber and a manual door design, it is ideally suited for quenching, tempering, normalizing, and annealing of metal components. The furnace also supports the sintering of non-metallic ceramic materials, making it a reliable solution for laboratory testing, pilot production, and small-scale industrial manufacturing.
Equipped with silicon carbide rod (SiC) heating elements, an S-type thermocouple, and precise ±1°C temperature control, the TT-IF-56-1400 ensures uniform heating and consistent results across various applications. Its advanced design combines energy efficiency with long-term durability, enabling dependable performance under demanding operating conditions.
Ceramic & Refractory Materials Processing – Enables sintering and densification of non-metallic ceramics and high-temperature composites, providing strength, durability, and thermal stability for industrial and research use.
Powder Metallurgy & Alloy Development – Supports precise high-temperature treatment of metal powders and advanced alloys, ensuring density, uniformity, and repeatability in research and pilot-scale manufacturing.
Chemical & Petrochemical Research – Suitable for catalyst activation, thermal decomposition, and reaction studies under controlled high-temperature conditions, delivering accurate and reproducible laboratory results.
Aerospace & Automotive Engineering – Provides reliable thermal treatment of advanced alloys and composites for aerospace and automotive applications, ensuring performance validation under extreme operating conditions.
Energy & Advanced Materials Research – Facilitates thermal processing of high-performance materials such as battery components, energy storage systems, and next-generation composites requiring stable high-temperature environments.
Universities & Research Institutes – Ideal for advanced studies in materials science, chemistry, and engineering. Offers precise control, robust safety features, and programmable multi-segment operation for complex research needs.
Industrial Quality Control & Certification – Ensures precise ±1°C temperature accuracy with PID-SCR control, over-temperature protection, and compliance with ISO9001, CE, SGS, and TÜV standards for regulated testing and certification.
Furnace Shell
- The shell is constructed from Q235 low-carbon steel with an electrostatic, corrosion-resistant coating.
- Its reinforced metal frame ensures structural integrity and maintains a low surface temperature.
- The side-opening door, hinged on the left, offers convenient and reliable operation.
Refractory
- Designed with a multi-layer thermal insulation system, featuring double-layer lightweight refractory brick lining.
- The structure is robust, with high-strength stacking and seamless splicing.
- Free from asbestos, the design minimizes heat loss and ensures energy efficiency.
Heating System
- High-performance silicon carbide (SiC) heating elements are securely mounted on both sides of the furnace for efficient, uniform heating and reduced energy use.
- Dual-side heating ensures consistent temperature distribution throughout the chamber.
- A durable silicon carbide base plate shields the bottom heating elements, offering strong horizontal load support and excellent thermal conductivity.
Temperature Control Panel
- Equipped with a PID controller using SCR (silicon-controlled rectifier) control for accurate temperature regulation.
- Features an S-type platinum-rhodium thermocouple, conforming to international standards, with a temperature range of 0–1600°C and extended service life.
- Includes a safety switch that cuts power when the furnace door is opened.
Program Controller
- Advanced controller designed for complex processing needs.
- User-friendly interface with flexible programming capabilities.
- Supports up to 30 programmable segments per temperature curve.
- Includes over-temperature and fault alarms, along with automatic safety functions.
- Optional features include manual air intake, automated exhaust venting, and a rapid cooling system that enables fast cooldown from 400°C.
| Model | TT-IF-36-1400 | TT-IF-45-1400 | TT-IF-64-1400 | TT-IF-80-1400 | TT-IF-96-1400 |
Chamber size (W xD xH)mm | 300 x400x300 | 300 x500x300 | 400x400x400 | 400x500x400 | 400 x600x400 |
| Max temperature | 1400℃ | ||||
| Working Temperature | 1300℃ | ||||
| Voltage | 380V/12KW | 380V/15KW | 380V/18KW | 380V/20KW | 380V/21KW |
| Heating element | High quality Silicon carbide Rod (SIC) heater | ||||
| Chamber material | High temperature 1500 type polycrystal alumina ceramic fiber plate | ||||
| Temp. precision | ±1℃ | ||||
| Thermocouple | S type platinum rhodium thermocouple | ||||
| Temp controller | SHIMADEN (Japan) brand intelligent microcomputer PID controller can program 30 segments | ||||
| Heating rate | Suggest 1-15℃/min for longer life using | ||||
| Furnace structure | Furnace & temperature control integrated structure | ||||
| Equipment protection | Modular control, sound and light alarm signal will be sent out for over temperature and broken thermocouple in the working process, and the protection action will be completed automatically | ||||
| Safety protection | The equipment is equipped with a circuit breaker, which will automatically pop open in case of short circuit leakage, which can protect the safety of equipment and operators | ||||
| Furnace shell | High-quality cold-rolled steel plate CNC processing, after welding, grinding, polishing, phosphating, pickling, surface electrostatic spraying | ||||
| Quality Certification | ISO9001 CE SGS TUV | ||||
| Standard packing | 1. furnace body 2. Temperature controller 3. power cable 3 meters 4. Thermocouple 1 pc 5. operation manual 6. one pair of crucible tongs 7. one pair of high temperature gloves | ||||


