Explosion-proof muffle Furnace

The explosion-proof muffle furnace prevents gas explosions during sample decomposition through a sealed furnace body and pressure relief devices, and is used for ash determination of flammable materials such as paints and inks. The furnace chamber is insulated with refractory materials, and the temperature control system maintains constant heating, making it suitable for high-temperature treatment of hazardous samples in chemical laboratories.
Selection
When selecting an explosion-proof muffle furnace, ensure the maximum operating temperature matches the sample requirements and check the certification marks on the pressure relief device. Consider whether the furnace chamber size is suitable for the sample capacity, and verify that the temperature control accuracy meets experimental standards. Confirm the corrosion resistance of the furnace body's sealing material and ensure the power supply specifications are compatible with the site conditions.

Terms

Standards

Instruments

Intrinsically safe explosion-proof design, up to CT4 grade, equipped with explosion-proof Sensor and display. Table size 410x510mm, weighing range 110kg, accuracy 10g, stable structure, support external calibrating and a variety of functions.

$ 190.00

Using explosion-proof composite explosion-proof technology, pumping rate of 4L/S, noise only 63dB, equipped with gas ballast valve can remove a small amount of water vapor, safe and reliable for dangerous environment.

$ 701.00

Using explosion-proof composite explosion-proof technology, pumping rate 2L/S, noise as low as 63dB, equipped with gas ballast valve can extract a small amount of water vapor, safe and reliable.

$ 517.00

Using explosion-proof composite explosion-proof technology, pumping rate 8L/S, noise as low as 66dB, equipped with gas ballast valve can extract a small amount of water vapor, suitable for flammable and explosive dangerous places.

$ 1024.00

Adopting explosion-proof, burn-seal, intrinsically safe composite explosion-proof technology, with anti-suction valve and gas ballast valve, the pumping rate is 16m ³/h, the ultimate pressure is 0.005mbar, and the noise value is 58dB (A).

$ 1063.00

The use of explosion-proof composite explosion-proof technology to ensure safe operation, pumping rate of 15L/S and noise only 66dB, equipped with gas ballast valve can handle a small amount of water vapor, compact suitable for use in hazardous environments.

$ 1308.00

It adopts explosion-proof composite explosion-proof technology to ensure safe operation. It is equipped with an anti-suction valve to prevent oil from being sucked back. It is equipped with a gas ballast valve to adjust the Vacuum Level. The pumping rate is 24m ³/h, and the noise value is 58dB.

$ 1192.00

The explosion-proof composite explosion-proof technology is used to ensure safe operation, with anti-suction valve and gas ballast valve, the pumping rate is 48m ³/h, and the ultimate pressure is as low as 0.005mbar, which is suitable for dangerous environments.

$ 1889.00

Using explosion-proof composite explosion-proof technology, explosion-proof mark ExdIBT4, pumping rate 90m ³/h, limit pressure as low as 0.005mbar, noise only 58dB, suitable for hazardous environments.

$ 2922.00

Using flameproof composite explosion-proof technology, the pumping rate is 1L/S, the ultimate pressure can reach 0.006mbar, and the noise is as low as 63dB, which is suitable for flammable and explosive environments.

$ 462.00

Adopt compound explosion-proof technology, pumping rate 0.5L/S, noise value 62dB, equipped with gas ballast valve can extract a small amount of water vapor, safe and reliable to adapt to harsh environment.

$ 462.00

Using MCU chip to achieve low power consumption operation, detection error ≤ +/- 3% F. S, Response Time ≤ 30 seconds, support a variety of signal output and wireless transmission, with explosion-proof and explosion-proof structure to ensure safety and reliability.

$ 486.00

Using EX-SH784050-100 carbon steel scale body and stainless steel mask, the structure is stable. Range 61kg, Readability 1g, Fast Response Time. With intrinsically safe Explosion-proof level CT4, and standard battery, support no power use.

$ 211.00

Adopt flameproof composite explosion-proof technology to ensure safe operation, with a pumping rate of 6L/S and a noise of only 64dB. Equipped with a gas ballast valve to handle a small amount of water vapor, it is compact and easy to install and maintain.

$ 817.00

Modular design with low power consumption, intelligent Sensor detection technology, Explosion-proof level Ex db IIC T6 Gb, Protection Rating IP66, support for multiple signal output and wireless transmission.

$ 887.00

Articles

How is a high-temperature muffle furnace applied in ash determination?
This article introduces the application of high-temperature muffle furnaces in ash determination. The principle of ash determination involves completely burning the sample at high temperatures, leaving behind inorganic mineral residues. The muffle furnace provides a stable and controllable thermal environment, ensuring accurate results.
Muffle furnace is used for the determination of coating loss on ignition and ash content.
A muffle furnace is a laboratory heating device used to determine the loss on ignition and ash content of coating materials. By incinerating the sample at high temperatures, the organic components decompose and volatilize, leaving behind inorganic residues as ash.
Muffle Furnace Ash Test Method for Determination of Inorganic Filler Residues in Varnish
This article introduces the method of using the muffle furnace ash test to determine the residual amount of inorganic fillers in varnish. The inorganic substances in varnish can affect the performance of the coating, making accurate determination of ash content important for quality control.
Use of Muffle Furnace for Ash Determination in Pulp Inorganic Matter Testing
This article introduces the application of the ash determination muffle furnace in the detection of inorganic substances in pulp. The muffle furnace removes organic matter in the sample through high-temperature combustion, and the remaining inorganic residue, known as ash, is used to analyze the content of fillers and metal ions in the pulp.