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PRODUCT PARAMETERS
Description
Overview of Tube Furnace
A tube furnace is a type of laboratory equipment used for high-temperature applications, featuring a cylindrical heating chamber designed to heat samples uniformly along its length. Commonly used in material processing, chemical analysis, and semiconductor manufacturing, it supports processes like annealing, sintering, and calcination.
Features of Tube Furnace
Uniform Heating: Ensures even temperature distribution throughout the sample.
Cylindrical Design: Facilitates consistent heating by minimizing hot spots.
Temperature Range: Capable of achieving high temperatures suitable for various processes.
Programmable Controls: Allows for precise control over heating cycles and profiles.
Gas Flow Control: Supports controlled atmosphere environments for specific reactions.
Compact and Efficient: Designed for efficient operation with minimal footprint.

(Standard Compact Electrical Heating 1600C Diameter 100mm Alumina Tube 1600C Tube Furnace)
Specification of Standard Compact Electrical Heating 1600C Diameter 100mm Alumina Tube 1600C Tube Furnace
The Standard Compact Electric Home Heating 1600 ° C Tube Heating System with a 100mm size alumina tube is crafted for high-temperature applications needing precision, durability, and uniform heating. Made for lab, industrial, and study atmospheres, this heating system incorporates robust building and construction with advanced thermal efficiency. The core element is a high-purity alumina tube (99.8% Al ₂ O ₃) with a 100mm internal diameter, supplying outstanding thermal stability, chemical resistance, and a maximum operating temperature level of 1600 ° C. The tube’s size is adjustable, normally ranging from 200mm to 600mm, to fit diverse sample sizes and experimental setups.
The furnace includes a molybdenum disilicide (MoSi ₂) heating element set up around the alumina tube, making sure fast heat-up rates (as much as 20 ° C/min) and excellent temperature level uniformity ( ± 1 ° C across the warm zone). A high-efficiency ceramic fiber insulation layer decreases heat loss, improving power efficiency. Temperature control is managed through a programmable PID controller with a straightforward user interface, sustaining multi-segment accounts, real-time monitoring, and data logging. Safety features include over-temperature protection, automatic power-off, and Kind S thermocouples for exact readings.
The compact design (approx. 600mm x 400mm x 500mm) and lightweight construction (30– 50kg, depending on setup) make it very easy to incorporate into existing arrangements. Power needs consist of 220V single-phase or 380V three-phase choices, with power input ranging from 3kW to 6kW based on tube measurements. Applications span products sintering, ceramic handling, metallurgical researches, stimulant research, and semiconductor annealing.
Optional devices include alumina crucibles, burning watercrafts, insulation end caps, and gas-tight flange packages for inert or responsive ambiences. The heating system is developed to endure thermal cycling and rough environments, with a water-cooled shell for exterior temperature administration. Conformity with global safety requirements makes certain trusted procedure. Ideal for scholastic and commercial customers, this tube furnace provides accuracy, sturdiness, and convenience for high-temperature procedures approximately 1600 ° C.

(Standard Compact Electrical Heating 1600C Diameter 100mm Alumina Tube 1600C Tube Furnace)
Applications of Standard Compact Electrical Heating 1600C Diameter 100mm Alumina Tube 1600C Tube Furnace
The Criterion Compact Electrical Home Heating 1600 ° C Size 100mm Alumina Tube Furnace is a high-performance home heating remedy created for precision applications needing extreme temperature levels and trusted thermal stability. Its small design, combined with a robust alumina tube (100mm internal size), makes it optimal for laboratories, study centers, and commercial settings. The heating system runs at temperatures up to 1600 ° C, making sure adaptability across a wide range of high-temperature procedures.
Material Synthesis & Study : This heater is commonly used in products scientific research for synthesizing sophisticated porcelains, compounds, and nanomaterials. Scientist utilize its consistent home heating to establish superconductors, catalysts, and high-purity oxides. The alumina tube’s chemical inertness ensures marginal contamination during procedures like sintering, annealing, and calcination.
Metallurgical Applications : It is employed in heat therapy procedures such as hardening, solidifying, and stress-relieving of metals and alloys. The accurate temperature control enables controlled atmosphere therapies (inert or oxidizing), important for generating specialized alloys or researching phase improvements.
Semiconductor & Electronics : The furnace supports semiconductor wafer handling, diffusion doping, and thermal oxidation. Its secure high-temperature setting is vital for growing thin movies, screening tool longevity, and prototyping electronic parts.
Glass & Ceramics : Glass producers use it for melting, shaping, and screening high-temperature glass make-ups. Ceramic manufacturers depend on it for shooting technical ceramics, making certain regular density and mechanical properties.
Academic & Industrial Labs : Compact and energy-efficient, it is perfect for scholastic study, including thermogravimetric evaluation (TGA), thermal disintegration research studies, and stimulant testing. Industrial laboratories utilize it for quality assurance, such as testing refractory products or assessing high-temperature reactions.
Advanced Applications : The heating system supports carbon nanotube synthesis, battery product testing (e.g., cathode/anode sintering), and aerospace component testing under extreme conditions. The alumina tube’s thermal shock resistance allows fast heating/cooling cycles without jeopardizing architectural integrity.
With rapid heating prices, specific PID temperature control, and compatibility with gas atmospheres, this heating system ensures repeatability and performance. Its compact footprint conserves room while providing industrial-grade efficiency, making it an important tool for innovators pressing the limits of high-temperature science and design.
Company Introduction
Welcome to Designerstudiostore, your premier source for high-quality industrial furnaces designed to meet the stringent demands of modern manufacturing. Our extensive range includes electric, gas, and oil-fired furnaces tailored for various applications such as heat treatment, forging, and laboratory use. With cutting-edge technology and innovative designs, we ensure energy efficiency and superior performance in every product. At Designerstudiostore, we prioritize customer satisfaction by offering customized solutions, reliable after-sales support, and seamless global delivery options. Explore our catalog and discover why businesses worldwide trust us for their heating needs.
If you have any questions, please feel free to contact us(nanotrun@yahoo.com).
Payment Methods
T/T, Western Union, Paypal, Credit Card etc.
Shipment Methods
By air, by sea, by express, as customers request.
5 FAQs of Standard Compact Electrical Heating 1600C Diameter 100mm Alumina Tube 1600C Tube Furnace
What is the maximum temperature the Standard Compact Electrical Heating 1600°C Tube Furnace can reach? The furnace achieves a maximum operating temperature of 1600°C (2912°F) with excellent thermal uniformity and stability. It is designed for high-temperature applications requiring precise heat treatment, utilizing advanced heating elements and insulation to maintain consistent performance at extreme temperatures.
What materials or processes is this furnace suitable for? This tube furnace is ideal for sintering, annealing, calcination, and heat-treating materials like ceramics, metals, glass, and advanced composites. It is widely used in research labs, industrial settings, and universities for materials science, chemistry, and metallurgy applications. The alumina tube is compatible with inert gas environments, making it suitable for processes requiring controlled atmospheres.
How is the heating rate controlled in this furnace? The heating rate is adjustable, typically ranging from 5°C to 20°C per minute, depending on the thermal mass of the sample. Temperature control is managed via a programmable PID (Proportional-Integral-Derivative) controller, ensuring precise regulation and repeatability. Users can set custom temperature profiles, including ramping, holding, and cooling cycles, via an intuitive interface.
What are the specifications of the alumina tube? The furnace features a 100mm-diameter high-purity alumina (Al₂O₃) tube with exceptional thermal shock resistance and chemical inertness. Alumina tubes withstand temperatures up to 1600°C and are ideal for oxidizing environments. Custom tube sizes or alternative materials (e.g., quartz or zirconia) may be available for specific requirements, though these might lower the maximum temperature capability.
What safety features are included? The furnace incorporates multiple safety mechanisms, including over-temperature protection, automatic power cutoff, and robust ceramic fiber insulation to prevent external overheating. The housing remains cool to the touch during operation, and the system includes error alarms for abnormal conditions. It complies with international electrical safety standards, ensuring reliable operation in laboratory or industrial environments.

(Standard Compact Electrical Heating 1600C Diameter 100mm Alumina Tube 1600C Tube Furnace)
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