The TT-IF-1000-1700 is a high-performance industrial furnace with an automatic door, engineered for advanced heat treatment applications. Capable of reaching a maximum temperature of 1700°C with a continuous working temperature of 1600°C, this furnace is designed for processes such as quenching, tempering, normalizing, and annealing of metal components. It is also highly suitable for the sintering of non-metallic ceramic materials, making it a versatile solution for both metallurgical and ceramic processing needs.
Featuring a spacious 800 × 1000 × 1250 mm chamber, the TT-IF-1000-1700 is equipped with durable MoSi₂ heating rods and a B-type thermocouple, ensuring reliable performance and long service life under extreme conditions. With a precision of ±1°C and powered at 380V, it provides accurate, consistent heating control, making it ideal for small-scale production, pilot testing, and research in both laboratory and industrial environments.
Metallurgical Heat Treatment – Designed for quenching, tempering, normalizing, and annealing of metal components. Ensures precise, uniform heating for structural integrity and mechanical performance.
Ceramic Sintering – Supports high-temperature sintering of non-metallic ceramics, enabling production of dense, durable, and high-strength ceramic materials for industrial and research use.
Powder Metallurgy – Provides stable high-temperature conditions for sintering powdered metals into complex shapes and advanced alloys, supporting both research and pilot-scale production.
Aerospace & Advanced Materials – Suitable for processing heat-resistant alloys, ceramics, and composites used in aerospace engineering, ensuring thermal stability and performance validation under extreme conditions.
Energy & Electronics – Applied in the thermal processing of advanced electronic ceramics, solid-state energy materials, and functional components requiring precise temperature control.
Research & Development – Ideal for universities, research institutes, and laboratories conducting material science studies, offering programmable thermal cycles and reliable performance for experimental applications.
Industrial Quality Control – Used in certification and compliance testing of high-temperature materials, meeting international standards such as ISO, CE, SGS, and TÜV.
Furnace Shell
- The shell is constructed from Q235 low-carbon steel with an electrostatic, anti-corrosion finish.
- Its reinforced metal frame design helps maintain a low external surface temperature.
- Equipped with an electro-hydraulic lifting door and a built-in limit switch for added safety.
- Users can choose between a button-activated or foot pedal-activated automatic door opener.
Refractory
- Features a multi-layer thermal insulation system with a double layer of lightweight refractory brick.
- Built for durability with high-strength stacking and tight joints.
- Free from asbestos, the design ensures minimal heat loss and reduced energy use.
Heating System
- Fitted with premium metal or ceramic heating elements that deliver efficient, radiant heat throughout the chamber.
- Three-sided heating—left, right, and bottom—ensures uniform temperature distribution.
- A silicon carbide base plate protects the bottom heating zone, offering strong mechanical support and reliable thermal conductivity.
Temperature Control Panel
- Uses PID and SCR control technology for accurate temperature regulation.
- Includes a high-quality thermocouple designed for extended use.
- A safety switch automatically shuts off power when the door is opened.
- The temperature controller is mounted on the right side of the furnace, with an optional standalone control cabinet available.
Program Controller
- Equipped with an advanced controller capable of handling complex thermal processes.
- User-friendly interface with flexible programming options.
- Supports up to 4 programs with 32 segments each.
- Built-in over-temperature and system fault alarms with automatic safety functions.
- Optional features include manual air intake, automated exhaust, and a rapid cooling system that brings the chamber down to 400°C quickly.
| Model | Chamber size(mm) | Chamber volume | Max temp. | Working temp. | Voltage | Power | Heating element | Temp Precision |
| TT-IF-100-1200P | 400×530×460 | 100L | 1200℃ | 1100℃ | 380V | 15KW | HRE | ±1℃ |
| TT-IF-150-1200P | 450×530×590 | 150L | 1200℃ | 1100℃ | 380V | 24KW | HRE | ±1℃ |
| TT-IF-200-1200P | 500×530×720 | 200L | 1200℃ | 1100℃ | 380V | 27KW | HRE | ±1℃ |
| TT-IF-300-1200P | 550×700×780 | 300L | 1200℃ | 1100℃ | 380V | 45KW | HRE | ±1℃ |
| TT-IF-660-1200P | 600×1100×1000 | 660L | 1200℃ | 1100℃ | 380V | 60KW | HRE | ±1℃ |
| TT-IF-1000-1200P | 800×1000×1250 | 1000L | 1200℃ | 1100℃ | 380V | 80KW | HRE | ±1℃ |
| TT-IF-96-1400P | 400×600×400 | 96L | 1400℃ | 1300℃ | 380V | 21KW | SIC | ±1℃ |
| TT-IF-150-1400P | 450×530×590 | 150L | 1400℃ | 1300℃ | 380V | 25KW | SIC | ±1℃ |
| TT-IF-200-1400P | 500×530×720 | 200L | 1400℃ | 1300℃ | 380V | 28KW | SIC | ±1℃ |
| TT-IF-288-1400P | 600×800×600 | 288L | 1400℃ | 1300℃ | 380V | 30KW | SIC | ±1℃ |
| TT-IF-640-1400P | 800×1000×800 | 640L | 1400℃ | 1300℃ | 380V | 50KW | SIC | ±1℃ |
| TT-IF-1200-1400P | 1000×1200×1000 | 1200L | 1400℃ | 1300℃ | 380V | 100KW | SIC | ±1℃ |
| TT-IF-96-1700P | 400×600×400 | 96L | 1700℃ | 1600℃ | 380V | 25KW | MoSi2 | ±1℃ |
| TT-IF-150-1700P | 450×530×590 | 150L | 1700℃ | 1600℃ | 380V | 30KW | MoSi2 | ±1℃ |
| TT-IF-200-1700P | 500×530×720 | 200L | 1700℃ | 1600℃ | 380V | 40KW | MoSi2 | ±1℃ |
| TT-IF-288-1700P | 600×800×600 | 288L | 1700℃ | 1600℃ | 380V | 50KW | MoSi2 | ±1℃ |
| TT-IF-640-1700P | 800×1000×800 | 640L | 1700℃ | 1600℃ | 380V | 80KW | MoSi2 | ±1℃ |
| TT-IF-1200-1700P | 1000×1200×1000 | 1200L | 1700℃ | 1600℃ | 380V | 150KW | MoSi2 | ±1℃ |

