

Labotemp Tube Furnace FMT-18 is a precision tubular furnace for ultra-high-temperature processing to 1700°C (working ≤1550°C). It features a ∮80 mm corundum tube, 350 mm heating zone, 1200 mm tube length and 80×350 mm chamber. MoSi₂ heating rods, B-type thermocouple, PID control and 30-segment programming deliver ±1°C accuracy and ±5°C uniformity with 0–20°C/min ramps and alumina ceramic-fiber insulation.
Manufactured by a specialist furnace manufacturer and supplied through authorised furnace suppliers, FMT-18 suits high-temperature material synthesis, sintering, annealing, calcination, crystal growth, powder metallurgy and semiconductor diffusion. The horizontal tubular design accommodates large samples and supports controlled-atmosphere or vacuum configurations; optional touchscreen, PC software and safety interlock are available.
Why choose Labotemp Tube Furnace FMT-18?
✓ Large-sample capacity: ∮80 mm tube and 1200 mm length.
✓ Ultra-high performance: MoSi₂ elements for reliable 1700°C operation.
✓ Precision control: PID regulation, B-type thermocouple and 30-seg profiling.
| No. | Specification | Value |
|---|---|---|
| 1 | Maximum Temperature | 1700°C |
| 2 | Standard Heating Zone Length (mm) | 440 |
| 3 | Chamber Size (mm) | 80×440 |
| 4 | Standard Tube Diameter (mm) | ∮80 |
| 5 | Total Length of Furnace Tube (mm) | 1200 |
| 6 | External Size (mm) | 794×590×800 |
| 7 | Working Temperature (℃) | ≤1550 |
| 8 | Heating Rate | 0 ~ 20℃/min |
| 9 | Temperature Accuracy | ±1 |
| 10 | Temperature Uniformity | ±5 |
| 11 | Furnace Tube Material | Corundum Tube |
| 12 | Heating Element | MoSi₂ Heating Rod |
| 13 | Thermocouple Type | B Type |
| 14 | Chamber Material | Alumina Ceramic Fiber |
| 15 | Power Supply | AC 220V, 50Hz/60Hz |
| 16 | Package Dimensions | 930x740x1150 mm |
| 17 | Accessories Package Size | 1300x200x300 mm |
| 18 | Net Weight | 170kg |
| 19 | Gross Weight | 210kg |
| 20 | Accessories Weight | 14Kg |
Used for high-temperature material synthesis, sintering, annealing, calcination, and crystal growth in ceramics, metals, semiconductors, and advanced material research
