Vacuum Tube Furnace

A vacuum tube furnace heats a sealed quartz tube using electric heating elements to perform heat treatment on samples in a vacuum or controlled atmosphere environment. It is used for experiments such as material sintering, annealing, and synthesis, enabling the avoidance of oxidation and precise control of reaction conditions.
Selection
Select the furnace diameter based on the sample size, choose the type of heating element according to the maximum temperature, equip the vacuum pump and gas control system in line with the experimental atmosphere requirements, and consider the temperature control accuracy and uniformity to match the process requirements.

Terms

Standards

Instruments

Double shell structure with cold air system to achieve rapid cooling, 51 program temperature control system to ensure +/- 1 ℃ accuracy, the highest Operating temperature of 1700 ℃, corundum Furnace tube high temperature performance.

$ 4543.00

Double shell structure with Air-Cooled system to achieve rapid cooling, 51 program temperature control system to ensure +/- 1 ℃ accuracy, the highest Operating temperature of 1700 ℃ and equipped with corundum tube to ensure high temperature Stability.

$ 3640.00

Heating temperature up to 1200 ℃, temperature control accuracy +/- 1 ℃, support 10 program temperature control, equipped with vacuum flange and digital pressure monitoring, Operating interface is simple and easy to use, non-professionals can quickly master.

$ 2010.00

The double-shell Air-Cooled structure is used to achieve rapid cooling, and it is equipped with a 51-stage program temperature control system. The temperature control accuracy reaches +/- 1 ° C, and the highest Operating temperature is 1700 ° C, which meets the needs of precision heat treatment.

$ 3785.00

The highest temperature is 1400 ℃, the Furnace volume is 4.5L, and the aluminum oxide fiber Furnace and silicon carbon Rod heating elements are used to support the inert gas environment and ensure the uniform and stable sintering of the material.

$ 3720.00

Double shell structure with cold air system to achieve rapid cooling, 51 program temperature control system to ensure Temperature control accuracy +/- 1 ℃, the highest Operating temperature of 1400 ℃, support stable operation in a variety of atmosphere environment.

$ 3107.00

Operating temperature up to 1700 ℃, Furnace volume 80L, aluminum oxide fiber Furnace and double chill down system, support inert and reducing atmosphere environment material sintering treatment.

$ 7867.00

Operating temperature of 1400 ℃, Furnace volume of 36 liters, aluminum oxide fiber Furnace and double chill down system, support material sintering process in inert gas environment.

$ 4914.00

The maximum temperature is 1200 ° C, the Furnace volume is 16L, and the 30-segment programmable control is used to achieve precise temperature control. The safety switch of the Furnace door and the design of the corrosion resistance Furnace improve the operation safety and durability.

$ 1716.00

Enclosed aluminum silicate Furnace and nickel-chromium-aluminum alloy heating wire are used to reduce volatile gas corrosion; three-sided heating method combined with PID control, Temperature Fluctuation +/- 5%, accurate and stable temperature control.

$ 1138.00

Operating temperature up to 1400 ℃, Furnace volume 80L, using aluminum oxide fiber Furnace and silicon carbon Rod heating, with double chill down system and accurate Gas flow rate control, support inert atmosphere sintering process.

$ 6012.00

Maximum temperature up to 1700 ℃, Furnace volume 36L, using aluminum oxide fiber material and silicon molybdenum Rod heating element, equipped with a chill down system to ensure sealing performance, support inert or reducing gas environment sintering.

$ 6851.00

Maximum temperature 1000 ℃, temperature control accuracy 1 ℃, using high aluminum liner and upper and lower left and right 4-sided heating design, with 30 program settings and over-temperature protection function, uniform temperature in the Furnace.

$ 893.00

Adopt aluminum silicate ceramic fiber Furnace, heating rate ≤ 45 ℃/min, temperature control accuracy +/- 1 ℃, support multi-stage programmable control, with over-temperature protection and abnormal alarm function, Furnace body double-decked design with chill down fan.

$ 3038.00

Operating temperature up to 1100 ℃, Furnace size Φ 60 × 1000mm, using Air-Cooled system to ensure stable operation of the equipment, suitable for material sintering in an inert gas environment.

$ 1800.00

Articles

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The vacuum adsorption coating machine transfers graphene films smoothly onto target substrates through controlled negative pressure, solving issues such as wrinkling, tearing, and contamination often encountered with traditional methods.
The wire bar coater with heating and vacuum adsorption is used for the preparation of perovskite solar cell layers.
This article introduces a new technique for preparing the light-absorbing layer of perovskite solar cells: a wire-bar coater with heating and vacuum adsorption capabilities.
Vacuum adsorption coating machine is used for the coating of proton exchange membrane fuel cell electrodes.
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Negative pressure method leak detector for testing vacuum packaging seal integrity
The negative pressure leak detector evaluates the seal integrity of vacuum packaging by simulating a pressure differential environment. The instrument places the sample in a testing chamber and creates a vacuum to form negative pressure. If there is a leak, air or liquid will seep into the packaging, and the result is determined by observing pressure changes or the presence of bubbles.
Sealing Tester Measures Leak Points in Flexible Packaging Bags.
This article introduces how a seal tester detects air leak points in flexible packaging bags. It primarily identifies leaks through changes in pressure or vacuum, and the operation involves preparing samples, setting parameters, and conducting standardized testing.
Vacuum adsorption coating of perovskite precursors on flexible substrates.
This article introduces the process of vacuum adsorption coating for perovskite precursors on flexible substrates.
Vacuum adsorption coating table solves the problem of film substrate wrinkling.
The vacuum adsorption coating platform uses a microporous array connected to a vacuum system beneath the tabletop to create a pressure difference, tightly adsorbing the film substrate. This ensures it remains flat during the coating process, preventing wrinkles that could lead to uneven coating.
How to Utilize a Vacuum Adsorption Coating Machine to Solve the Slippage Issue During Coating on Flexible PET Substrates
The vacuum adsorption coating machine stabilizes the flexible PET substrate on the coating platform through negative pressure, effectively addressing the slipping issue during the coating process. Slipping is primarily caused by factors such as the smooth surface of PET, insufficient friction, and interference from coating pressure, which can lead to uneven coatings.
Application of Vacuum Heating Integrated Coating Machine in the Preparation of High-Temperature Curing Coating Samples
This article introduces the application of the vacuum heating integrated film coater in the preparation of samples for high-temperature curing coatings. The equipment reduces bubbles in the coating by creating a vacuum environment and integrates programmable heating and curing functions, enabling precise temperature control to promote the chemical cross-linking of the coating and form a uniform film.
Negative Pressure Method Sealing Tester for Detecting Leakage in Food Packaging
The negative pressure method seal tester creates a pressure difference inside and outside the packaging by evacuating air to detect leaks in food packaging. If there is a leak in the packaging, water will enter the packaging or produce continuous bubbles under the pressure difference, thereby determining the seal integrity. The test requires controlling parameters such as vacuum level and time, and should be conducted in accordance with relevant standards.
Principle and Application of Vacuum Decay Leak Testing Equipment
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Key Points for Operating Vacuum Adsorption Coating Machines on Flexible Substrates
Vacuum adsorption coating technology is a key process in flexible electronics, functional coatings, and the preparation of new materials. This technique uses vacuum negative pressure to ensure that flexible substrates are smoothly and evenly adsorbed onto the coating platform. Combined with precision coating, it effectively reduces defects such as wrinkles and bubbles, thereby enhancing the uniformity and consistency of the coating.
Detailed Explanation of Laboratory Vacuum Adsorption Platform: Flatness is the Cornerstone of Successful Coating
The vacuum adsorption platform is a key device in coating experiments, which stabilizes the substrate by negative pressure adsorption, providing a reference plane for coating. The flatness of the platform surface is crucial, as even minor deviations can lead to defects such as uneven coating thickness or the appearance of streaks.
What are the differences between a vacuum oven and a conventional oven?
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This article explores the process adaptability of slurries with different viscosities on vacuum adsorption coating machines. The slurries are categorized into low, medium, and high viscosity, and their flow characteristics during the coating process, along with key process control points, are discussed respectively.