The TT-LF-27-1700 Lifting Bottom Loading Furnace, with a maximum temperature of 1700°C, is engineered for use in universities, research institutions, industrial facilities, and advanced laboratories. It provides reliable performance across a broad spectrum of applications involving advanced materials, including metals, ceramics, nanomaterials, and semiconductors.
In addition, this furnace is well-suited for dental laboratories, offering precise sintering for prosthetic teeth. With a 27L chamber, advanced MOSi₂ heating elements, and accurate temperature control of ±1°C, it ensures stable, efficient, and consistent operation for both research and practical applications.
Advanced Ceramic Materials – Enables high-temperature sintering and densification of ceramics, ensuring superior structural integrity, thermal stability, and mechanical strength. Suitable for industrial and research environments.
Nanomaterials Research – Provides precise and uniform heating for nanostructures and advanced composites. Supports R&D in functional nanomaterials applied in electronics, catalysis, and energy storage systems.
Semiconductor Materials – Facilitates processes such as annealing, diffusion, and oxidation of semiconductor substrates. Ensures reliable, precise temperature control critical for microelectronics and optoelectronics manufacturing.
Powder Metallurgy – Supports sintering of metal powders into dense, uniform components. Widely applied in the production of complex shapes and advanced alloys in both research and industrial applications.
Dental Laboratories – Delivers consistent, high-precision sintering of dental prosthetics. Ensures reliable strength, durability, and performance in dental materials.
Aerospace Materials Engineering – Suitable for thermal testing and processing of high-performance alloys, ceramics, and composites. Ensures reliability of materials under extreme conditions.
Energy & Battery Research – Provides thermal treatment for solid-state electrolytes, lithium-ion materials, and next-generation battery components. Ensures material stability and reproducibility in energy research.
Universities & Research Institutes – Ideal for advanced studies in physics, chemistry, materials science, and engineering. Offers flexible programming, precise control, and dependable safety features for academic labs.
Industrial Quality Control & Certification – Provides high-temperature testing for validation, compliance, and certification. Meets stringent international standards such as ISO, CE, SGS, and TÜV.
Furnace Shell
- Constructed from Q235 low-carbon steel with an electrostatic and corrosion-resistant surface.
- Durable metal tank structure helps maintain a low external surface temperature.
- Side-opening furnace door features a flanged sealing design and manual screw-lock mechanism for easier access.
Refractory Material
- Multi-layer insulation includes lightweight alumina ceramic fiber and premium insulating boards. Asbestos-free, with minimal heat loss and low energy consumption.
Heating System
- High-efficiency resistance heating elements deliver uniform, radiant heat and ensure long service life.
- Ring-style elements positioned on all sides provide excellent temperature uniformity.
- Optional components include a top exhaust port and a regulated air inlet at the bottom.
- The furnace base supports stacking of containers, allowing for two or three material layers depending on the furnace model.
Temperature Control Panel
- PID controller with SSR/SCR output ensures accurate temperature regulation.
- Equipped with a high-quality thermocouple designed for durability and reliability.
Program Controller
- Advanced control system handles complex thermal processes.
- Intuitive interface allows flexible and straightforward programming.
- Supports up to 30 programmable segments in a single curve.
- Built-in safety features include over-temperature protection and fault alarms.



| Product Model | Chamber Size(mm) | Volume | Max Temperature | Working Temperature | Voltage | Power | Heating Element | Temperature control accuracy |
| TT-LF-120-1200 | Φ120×120 | 2L | 1200℃ | 1100℃ | 220V (110V is also available) | 2KW | HRE | ±1℃ |
| TT-LF-150-1200 | Φ150×150 | 3L | 1200℃ | 1100℃ | 220V (110V is also available) | 3KW | HRE | ±1℃ |
| TT-LF-200-1200 | Φ200×200 | 6L | 1200℃ | 1100℃ | 220V (110V is also available) | 4KW | HRE | ±1℃ |
| TT-LF-300-1200 | Φ300×300 | 20L | 1200℃ | 1100℃ | 380V | 6KW | HRE | ±1℃ |
| TT-LF-120-1400 | Φ120×120 | 2L | 1400℃ | 1350℃ | 220V (110V is also available) | 3KW | SIC | ±1℃ |
| TT-LF-150-1400 | Φ150×150 | 3L | 1400℃ | 1350℃ | 220V (110V is also available) | 4KW | SIC | ±1℃ |
| TT-LF-200-1400 | Φ200×200 | 6L | 1400℃ | 1350℃ | 220V (110V is also available) | 5KW | SIC | ±1℃ |
| TT-LF-300-1400 | Φ300×300 | 20L | 1400℃ | 1350℃ | 380V | 6KW | SIC | ±1℃ |
| TT-LF-120-1700 | Φ120×120 | 2L | 1700℃ | 1600℃ | 220V (110V is also available) | 3KW | MoSi2 | ±1℃ |
| TT-LF-150-1700 | Φ150×150 | 3L | 1700℃ | 1600℃ | 220V (110V is also available) | 4KW | MoSi2 | ±1℃ |
| TT-LF-200-1700 | Φ200×200 | 6L | 1700℃ | 1600℃ | 220V (110V is also available) | 4KW | MoSi2 | ±1℃ |
| TT-LF-300-1700 | Φ300×300 | 20L | 1700℃ | 1600℃ | 380V | 8KW | MoSi2 | ±1℃ |