The High Temperature Lifting Furnace TT-LF-321-1800C, with a maximum temperature of 1800°C, is specifically designed for use in universities, research institutes, manufacturing facilities, and industrial laboratories. Built for reliability and precision, it supports advanced thermal processing across a broad spectrum of applications.
This furnace is ideal for handling advanced materials such as metals, ceramics, nanomaterials, and semiconductors. In addition, it is well-suited for dental laboratories, providing accurate and consistent sintering performance for dental prosthetics in the denture industry.
Advanced Ceramic Materials – Enables high-temperature sintering and densification of electronic, structural, and functional ceramics. Provides excellent thermal stability and mechanical strength, making it suitable for both R&D and industrial applications.
Magnetic & Electronic Materials – Facilitates precise sintering of magnetic materials, ITO targets, and electronic ceramics. Ensures uniform temperature distribution critical for stable magnetic and electronic performance.
Nanomaterials Research – Delivers accurate and consistent thermal treatment for nanostructures and composite materials. Supports advanced R&D in electronics, catalysis, coatings, and energy storage.
Semiconductor Processing – Ideal for annealing, diffusion, and oxidation processes at ultra-high temperatures. Ensures precise control for microelectronics, semiconductor wafers, and optoelectronic device fabrication.
Powder Metallurgy & Advanced Alloys – Provides reliable sintering of powdered metals and advanced alloy systems into dense, high-performance components. Supports the production of complex geometries in laboratory-scale manufacturing.
Dental Prosthetics – Suitable for dental laboratories requiring precise and consistent sintering of prosthetic teeth and advanced dental ceramics. Ensures repeatable results with superior structural integrity.
Universities & Research Institutes – Widely used in academic research programs across physics, chemistry, and materials science. Offers versatility, safety, and programming flexibility for teaching and experimental work.
Industrial R&D and Quality Control – Supports testing, certification, and validation of high-performance materials under extreme thermal conditions. Provides dependable results for industries requiring compliance with ISO, CE, and SGS standards.
Furnace Shell
- Constructed with Q235 low-carbon steel, featuring an electrostatic-resistant, corrosion-resistant surface.
- Durable metal tank design ensures low external surface temperatures during operation.
- The furnace door includes a flange-sealed structure with manual screw compression and a side-opening design for easier access and operation.
Refractory Material
- Multi-layer insulation system made from lightweight alumina ceramic fiber and premium-grade insulating boards. The insulation is asbestos-free, with excellent thermal efficiency, minimal heat loss, and reduced energy use.
Heating System
- Equipped with high-quality resistance heating elements that provide efficient, radiant heating within the chamber for long-term reliability.
- Surrounding ring-type heating elements ensure uniform temperature distribution throughout the furnace.
- Optional features include a top-mounted exhaust port and a bottom air inlet with adjustable flow.
- The bottom platform supports stackable charge containers, allowing for multi-layer loading depending on furnace configuration.
Temperature Control Panel
- PID controller with SSR/SCR output for highly accurate temperature regulation.
- Uses a high-durability, internationally standardized thermocouple for consistent readings.
Program Controller
- Advanced controller designed to handle complex heating processes.
- User-friendly interface with flexible and intuitive programming.
- Supports up to 30 programmable segments per curve.
- Includes over-temperature and system fault alarms with automatic safety shutoff.



| 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℃ |