High-Performance Lab Sintering Furnace 1600°C
Introduction
This advanced Lab Sintering Furnace 1600°C features a corundum tube as the heating and sealing carrier. It offers a maximum temperature of 1700°C, with a continuous working temperature of 1600°C, making it ideal for high temperature applications. Equipped with a touchscreen auto temperature controller, it provides high temperature accuracy and easy operation for seamless user experience.
The furnace boasts excellent heat insulation and symmetrical temperature uniformity. It is widely used in various research fields, including vacuum sintering, sintering under protective atmospheres, nanomaterials preparation, battery material synthesis and other multiple research fields.
Features
1.Max. Temperature 1700.C, suggest working temperature 800-1600.C.
2.High purity alumina(Corundum tube as furnace tube, with excellent corrosion resistance and high temperature resistance, longer service life.
3. 30 segments programmable and auto control.
4. Intelligent 7”Color Touch screen LCD man-machine English interface temperature controller, more intuitive and convenient operation, the graph of sintering curve with temperature changes makes you clear at a glance.
5. Can presetting 15 sintering curves to avoid the trouble caused by repeated settings of different experimental processes.
6. High purity alumina inorganic refractory, overall vacuum molding chamber, energy saving and ensure uniformity of temperature zone and a fast heating rate.
7. By using special lining and high quality heating elements made of pure type molydenum disilicide, protected against chemical contamination at the best and longer service life.
8. Double layers steel casing with fan cooling, to ensure the surface of furnace below 50.C, safety for the operator.
9. Come with gas flowmeter, atmosphere sintering more convenient.
10. Unique flange has a multi-function test holes, insert the corresponding electrode to test tube temperature or atmosphere environment.
11. Low power consumable, exquisite structure and light weight, it is the ideal tube furnace for labs.
Main Specifications:
Model | T1700-IT |
Chamber Material | High quality alumina fiber refraction insulation |
Heating Element | High purity mosi2 rod |
Max.temperature | 1700.C |
Working Temperature | 1600.C |
Heating Rate | ≤20.C /min(advice:10.C/min) |
Heating Zone | One(optional:two) |
Length of Heating Zone | 180m |
Constant temperature Zone | 130mm |
Tube Material | High Purity Alumina(Corundum tube) |
Tube Size(mm) | Dia50x700mm
Other optional size: Φ50*1000,Φ60*1000,Φ80*1000(heating length 310mm) Φ50*1200,Φ60*1200,Φ80*1200(heating length 480mm) |
Sealing Mode | Vacuum Flange |
Vacuum | ≤ 10pa |
Control Mode | Smart PID Control |
Temperature Accuracy | +/- 1.C |
Operating Interface | English Graphical Interface |
Presetting Curve | 15 Presetting Curve, 30 Segments Programmable |
Protection Setting | Over Temperature Alarm, Over Current Protection, Broken Thermocouple Prompt |
Thermocouple | B Type |
Power | 1.8kw |
Working Voltage | 208-240V 50/60HZ |
Dimensions | 850x680x420mm |
Standard Accessories | Alumina Tube, Vacuum Flange,Vacuum Gauge, Gas Flow Meter,Tube Block, O-ring, Protective Gloves, Crucible Hook, Manual Book |
Warranty | 12 months(not including consumable parts, such as alumina tube, heating elements, thermocouple, etc), lifetime support. |
Certification | CE,ISO |
Which kinds of industry can use this Lab Sintering Furnace 1600°C?
College & Universities, New Material Research, Chemistry, Building Materials, Coal Mining, Metallurgy, Electronics, Ceramic, etc.
Applications
- Vacuum Sintering: Ideal for sintering materials under a vacuum, which helps prevent oxidation and ensures high-purity results in applications like metal alloys and ceramics.
- Sintering under Controlled Atmosphere: Perfect for processes requiring sintering in controlled atmospheres, such as inert gases or reactive gases, to prevent contamination or oxidation of the materials being processed.
- Nanomaterial Synthesis: Essential for producing high-quality nanomaterials, where precise temperature control is critical to achieve the desired particle size, composition, and structure.
- Battery Material Preparation: Used extensively in the preparation of battery materials like lithium-ion and sodium-ion batteries, which require precise sintering to enhance conductivity and stability.
- Ceramic Material Processing: Perfect for sintering various ceramic materials, ensuring uniform heating and optimal structural integrity for advanced ceramics used in electronics, sensors, and other high-performance applications.
- Metal and Alloy Sintering: Suitable for sintering metals and alloys, including precious metals, to achieve the desired mechanical properties, density, and thermal conductivity.
- Research and Development in Material Science: Used in R&D settings for studying and developing new materials, including advanced composites, superalloys, and high-performance coatings.
- Powder Metallurgy: A key tool for sintering powder-based materials into solid forms, used in the production of metal parts, tools, and components for aerospace, automotive, and medical industries.
- Catalyst Development: Used for the sintering and activation of catalysts in chemical reactions, ensuring high surface area and activity for industrial processes.
For More Options on High Temperature Furnaces
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