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Electrothermal Ceramic Fiber Furnace Chamber

An electrothermal ceramic fiber furnace chamber is a heating element product that integrates heating elements (resistance wire, silicon carbide rod, or silicon molybdenum rod) with ceramic fiber material. The product uses high-purity aluminosilicate ceramic fiber or alumina fiber as the matrix, and the heating element is embedded or buried within the fiber through a vacuum forming process, forming a fibrous electrothermal body that integrates heating and insulation.

This product features lightweight, rapid heating, uniform furnace temperature, and high energy efficiency, and has gradually replaced traditional heavy refractory furnace chambers, becoming an ideal core component for high-temperature electric furnaces. Our company is a reputable manufacturer with many years of processing experience and a professional technical team. We can customize box-type furnace chambers, tube-type furnace chambers, and various electric heating plates. Custom orders based on drawings or samples are welcome.

Características del producto

  1. Rapid Heating and High Thermal Efficiency

The fiber material has low heat capacity and low heat storage, resulting in a much faster heating rate than traditional heavy-duty furnaces. A 1000℃ furnace can be heated from room temperature to 1000℃ in approximately 30 minutes, significantly reducing process waiting time.

  1. Uniform Furnace Temperature and Precise Temperature Control

The fiber furnace has low thermal conductivity and good insulation performance, resulting in a uniform temperature field within the furnace. Combined with a precision temperature control system, temperature control accuracy can reach ±1℃.

  1. Lightweight and Significantly Energy-Saving

The fiber furnace has low density and is lightweight (a 6-liter furnace weighs only about 50 kg), significantly reducing equipment load compared to traditional refractory brick furnaces. Energy savings can reach 20-50%, significantly reducing operating costs.

  1. Low Thermal Conductivity and Excellent Insulation Performance

The low thermal conductivity (approximately 0.16 W/(m·K) at 1000℃) provides significant thermal insulation. When heated to 1000℃, the furnace surface temperature is only about 50℃, far exceeding the national standard (100℃).

  1. No slag shedding, no dust, no cracking

Using high-purity fiber raw materials, the structure remains stable at high temperatures, preventing slag shedding, dust generation, and cracking, ensuring furnace cleanliness and preventing contamination of heated materials.

  1. Customizable and flexible

Supports personalized customization of box-type furnaces, tube-type furnaces, and various electric heating plates to meet the needs of different scenarios such as laboratories and industries.

Electrothermal Ceramic Fiber Furnace Chamber
ItemCeramic Fiber Chamber (Low-Temp Series)Alumina Fiber Chamber (High-Temp Series)
MaterialAluminosilicate ceramic fiberPolycrystalline mullite fiber / Polycrystalline alumina fiber
Design Temperature200 ~ 1200℃1300 ~ 1700℃
Heating ElementsResistance wire (Fe-Cr-Al / Ni-Cr), SiC rodsSiC rods, MoSi₂ rods
Resistance Wire ArrangementZigzag / Spiral / W/Z/O typeZigzag / Spiral
Forming MethodFully embedded, slightly exposed, slotted, exposedInlaid, embedded
Bulk Density200 ~ 600 kg/m³300 ~ 700 kg/m³
Thermal Conductivity~0.16 W/(m·K) at 1000℃~0.14 ~ 0.20 W/(m·K) at 1200℃
Energy Saving Rate—Up to 20 ~ 50%
PresupuestoCustomized per drawingsCustomized per drawings
Standard Size Reference900 × 600 ×(30 ~ 130)mm900 × 600 ×(30 ~ 130)mm

Áreas de aplicación

  • Experimental Electric Furnaces and Muffle Furnaces: Used in material sintering and heat treatment experiments in universities and research institutes.
  • Industrial Heat Treatment Furnaces: Used for heat treatment processes such as annealing, quenching, and tempering of metallic materials.
  • Ceramics and Building Materials Industry: Used for the lining of furnaces such as ceramic firing kilns, hornos lanzadera, and tunnel kilns.
  • Electronics and Semiconductors: Used for precision temperature control processes such as sintering of electronic components and heating of photovoltaic silicon wafers.
  • Powder Metallurgy and New Materials: Used for high-temperature processes such as reduction sintering of metal powders and synthesis of new materials.

Perfil de la empresa

Una empresa profesional especializada en servicios de tecnología de tratamiento térmico y R.&D, fabricación, y venta de hornos eléctricos de alta temperatura.

La empresa se centra en el desarrollo de hornos eléctricos de alta temperatura que cubren un rango completo de temperatura de -100 ℃ a 2600 ℃.. Entre sus productos se encuentran hornos eléctricos experimentales., hornos de atmósfera de vacío, hornos industriales, y equipos de calentamiento por inducción de media frecuencia. Los principales productos incluyen hornos de caja., hornos tubulares, hornos elevadores, hornos de empuje, hornos de bogie, hornos rotativos, hornos de túnel, y varios hornos especializados de media frecuencia.

La empresa se adhiere a la innovación tecnológica y ha aprobado las certificaciones ISO9001 y CE de la UE.. posee 21 marcas registradas, 29 patentes, y 27 derechos de autor del software.

Métodos de pago

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Métodos de envío

The electric furnace is packaged in thThe electric furnace is packaged in three layers: primero envuelto en papel de espuma, luego envuelto en película plástica, y finalmente embalado en una caja de madera..

Preguntas frecuentes (Preguntas frecuentes)

  1. Will the product shed slag or generate dust at high temperatures?

The product uses high-purity fiber raw materials, ensuring structural stability at high temperatures. It will not shed slag, generate dust, or crack, ensuring furnace cleanliness and preventing contamination of heated materials.

  1. What are the options for heating elements? How should they be arranged?

Low-temperature furnaces (≤1200℃) use resistance wire (iron-chromium-aluminum/nickel-chromium) or silicon carbide rods; ultra-high-temperature furnaces (1300~1700℃) use silicon carbide or silicon molybdenum rods. Resistance wires can be arranged in a zigzag, spiral, or W/Z/O pattern.

  1. What are the installation methods for resistance wires? What are their characteristics?

Mainly include fully embedded (high thermal efficiency), slightly exposed (good radiative heat dissipation), exposed (highest thermal radiation efficiency), and slotted (combining protection and heat dissipation). Specific selection can be determined based on furnace size and process requirements.

  1. What is the product’s heating rate?

Due to the low heat capacity of fiber materials, the heating rate is much faster than that of traditional heavy-duty furnaces. A 1000℃ furnace can heat from room temperature to 1000℃ in approximately 30 minutes, and a 1700℃ furnace to 1700℃ takes less than 90 minutes.

  1. Does the product support customization based on provided drawings?

Sí. Our company is a reputable manufacturer with many years of processing experience and a professional technical team. We can customize box-type furnaces, tube-type furnaces, and various electric heating plates. Customization based on provided drawings or samples is welcome.

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