Energy-saving fiber muffle Furnace

The energy-saving fiber muffle furnace uses fiber materials for insulation and resistance wire for heating, with temperature controlled by a temperature regulation system. It is used for sample ashing, melting, heat treatment, and other applications, suitable for high-temperature processing experiments in the fields of chemistry, materials, and environmental protection.
Selection
Select the furnace capacity based on the sample size, matching commonly used temperature ranges such as 1100℃ or 1300℃. Consider the heating rate and temperature control accuracy, and check the furnace sealing and safety protection features. Choose the power specifications according to the budget, and confirm the convenience of after-sales maintenance.

Terms

Standards

Instruments

Pottery and porcelain fiber Furnace and multi-faceted heating technology, Temperature Fluctuation +/- 2 ℃, energy saving rate of 40%, with 30 program settings and over-temperature protection function.

$ 2744.00

Pottery and porcelain fiber Furnace to achieve multi-faceted heating, temperature uniformity +/- 2 ℃, heating rate 1-30 ℃/min adjustable, with 30 programming and double over-temperature protection function.

$ 1661.00

Pottery and porcelain fiber Furnace and multi-sided heating technology, temperature uniformity +/- 2 ℃, heating rate 1-30 ℃/min adjustable, with 30 program programming and over-temperature protection function, significant energy saving.

$ 1661.00

Ceramic fiber Furnace to achieve multi-faceted heating, Temperature uniformity less than +/- 5 ℃, heating rate ≥ 10 ℃/min, with nitrogen filling device to slow down oxidation and flue discharge of harmful gases.

$ 1937.00

The ceramic fiber Furnace is used to achieve rapid heating and 40% energy saving rate, 30-stage programming supports complex processes, equipped with double over-temperature protection and automatic thermostatic function, temperature fluctuation is controlled within the range of +/- 2 ℃, Furnace size 100 * 100 * 100mm.

$ 800.00

Temperature uniformity less than +/- 5 ℃, heating rate ≥ 10 ℃/min. Equipped with ash experimental flue and nitrogen filling device, it has multiple Safety protection functions such as over-current, over-pressure and over-temperature.

$ 1445.00

The double-decked Furnace shell insulation design is adopted, and the shell is not hot; the Furnace temperature distribution uniformity is less than +/- 5 ° C, and the heating rate is ≥ 10 ° C/min; it has a nitrogen filling device to slow down oxidation and supports flexible setting of self-made temperature control programs.

$ 1019.00

Pottery and porcelain fiber Furnace and multi-faceted heating technology, temperature uniformity +/- 2 ℃, heating rate 1-30 ℃/min adjustable, with 30 programming and over-temperature protection function, energy saving rate of 40%.

$ 4737.00

Pottery and porcelain fiber Furnace to achieve multi-sided heating, temperature uniformity +/- 2 ℃, 30 program control, heating rate 1-30 ℃/min adjustable, with over-temperature protection and automatic thermostatic function.

$ 1342.00

Pottery and porcelain fiber Furnace multi-sided heating, temperature uniformity +/- 2 ℃, heating speed 1-30 ℃/min adjustable, with 30-stage programming and two-level over-temperature protection function.

$ 1137.00

Pottery and porcelain fiber Furnace structure, low heat capacity small empty Furnace loss, energy saving more than 70%; fast heating speed, room temperature to 1000 ℃ only 15-30 minutes; High Accuracy PID intelligent instrument control, high temperature control accuracy.

$ 587.00

Pottery and porcelain fiber Furnace and multi-faceted heating technology, excellent temperature uniformity, adjustable heating rate of 1~ 30 ℃/min, with 30-segment programming and PID adjustment function, built-in secondary over-temperature protection device to ensure safe operation.

$ 1994.00

Heating speed is fast, room temperature to 1200 ℃ is less than 25 minutes; Temperature control accuracy +/- 1 ℃, Temperature Uniformity +/- 5 ℃; ceramic fiber insulation material, surface temperature as low as about 50 ℃, energy saving and long service life.

$ 1414.00

It only takes 25 minutes to heat up to 1200 ° C, temperature control accuracy +/- 1 ° C and Temperature Uniformity +/- 5 ° C, using ceramic fiber insulation material to make the shell surface temperature only 50 ° C, less heat pollution and energy saving.

$ 3570.00

Using ceramic fiber Furnace and air insulation structure, the surface temperature is only about 50 ℃. Heating to 1200 ℃ for less than 25 minutes, temperature control accuracy +/- 1 ℃, support multi-step program control.

$ 2048.00

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.
Heat Deflection Temperature Tester for Measuring the Thermal Resistance of Carbon Fiber Reinforced Plastics
This article introduces the method of testing the heat resistance of carbon fiber-reinforced plastics using a heat deflection temperature tester. The instrument applies a fixed load to the material while increasing the temperature, measuring the temperature at which the material reaches a specified deformation, thereby evaluating its short-term resistance to thermal deformation.
Charpy Impact Tester Evaluates Brittle Fracture of Carbon Fiber Plates
This article explains how to use a simply supported beam impact testing machine to evaluate the brittle fracture characteristics of carbon fiber plates. During the test, a pendulum impacts the sample, and the energy absorbed by the material during fracture is calculated based on the energy difference, which helps determine its tendency toward toughness or brittleness.
Selection of Wear Testing Machine: Types of Abrasion Wheels and Load Setting Methods
The test results of the wear testing machine primarily depend on the type of grinding wheel and the load setting. Grinding wheels include rubber wheels, abrasive wheels, wire wheels, and fiber wheels, among others. The selection should be matched based on the material characteristics and the actual wear scenario.
Universal Testing Machine evaluates the mechanical properties of carbon fiber reinforced resin.
This article introduces how to use a universal material testing machine to test the mechanical properties of carbon fiber-reinforced resin. Carbon fiber-reinforced resin is widely used in aerospace and other fields due to its lightweight and high strength.
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.
IGT Printability Tester Evaluates Paper Surface Pick Resistance
This article introduces how to use the IGT printability tester to evaluate the surface pick resistance of paper. Picking refers to the phenomenon where the tack force of the ink is too high during printing, causing the surface fibers of the paper to be lifted, which affects print quality.
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.
The laboratory pulp wet disintegrator is used for pulp disintegration treatment.
The laboratory pulp wet disintegrator is a device used to simulate the industrial pulping process. It disperses pulp fibers into individual fibers or small fiber bundles through mechanical action, while simultaneously promoting fiber swelling and fibrillation, thereby providing standardized samples for subsequent performance evaluation.
Application of Dry Pulp Zero-Span Tensile Strength Tester
The dry pulp zero-span tensile strength tester is a device used to measure the intrinsic strength of pulp fibers. It directly determines the tensile properties of fibers by clamping and stretching them to the point of rupture at an extremely close distance, thereby avoiding the influence of fiber length and bonding forces.
Zero-span tensile strength tester measures the tensile strength of wet pulp.
This article introduces the method of measuring the tensile strength of wet pulp using a zero-span tensile strength tester. Traditional testing is often conducted after the pulp is dried, but testing in the wet state can more directly reflect the bonding potential between fibers.
Application of Valley Beater in Pulp Laboratory Beating
The Valley beater is a device used in laboratories to simulate industrial beating processes. It modifies the morphology of pulp fibers through mechanical action, thereby influencing paper properties. During operation, parameters such as beating pressure, pulp consistency, and beating time must be controlled, with the beating degree serving as a quantitative measure of the effect.
Standard Method for Determining the Beating Degree of Pulp Using a PFI Mill
This article introduces the standard method for measuring the degree of pulp beating using a PFI mill. The beating degree is a key indicator of the extent of pulp fiber processing and directly affects paper quality.
Bauer-McNett Classifier Method and Fiber Fractionation Principle of Pulp Fiber Classifier
The Bauer-McNett classifier is a standard method that separates fibers by length and morphology through the sequential screening of pulp suspensions using sieves with different aperture sizes.