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ZHENGZHOU SONGYU HIGH TEMPERATURE TECHNOLOGY CO.,LTD william@songyuht.com 86-0371-6289-6370

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Home > products > MoSi2 Heating Element > 3.5kW MoSi2 Heating Element 1700C-1800C MoSi2 Heater For Laboratory Furnace

3.5kW MoSi2 Heating Element 1700C-1800C MoSi2 Heater For Laboratory Furnace

Product Details

Place of Origin: China

Brand Name: SONGYU

Payment & Shipping Terms

Minimum Order Quantity: 10pcs

Price: Negotiable

Packaging Details: WOODEN CASE

Delivery Time: 15 work days

Payment Terms: T/T, Western Union

Supply Ability: Spark Industry (Henan) Co., Ltd.

Get Best Price
Product Details
Highlight:

3.5kW MoSi2 Heating Element

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MoSi2 Heating Element 1700C

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Laboratory Furnace MoSi2 Heater

Diameter:
6-12 Mm
Thermal Conductivity:
45 W/m·K
Hot Zone Temperature:
1700-1800°C
Maximum Operating Temperature:
1800°C
Shape:
Rod/Tube/Coil
Electrical Resistivity:
1.2×10⁻⁴ Ω·m
Application:
Industrial Furnaces, Laboratory Furnaces, Heat Treatment Processes
Cold Zone Temperature:
100-200°C
Maximum Power Output:
3.5kW
Material:
Molybdenum Disilicide (MoSi₂)
Density:
6.5 G/cm³
Heating Zone Length:
100-200 Mm
Surface Load:
5-8 W/cm²
Usage:
High Temperature Heating
Diameter:
6-12 Mm
Thermal Conductivity:
45 W/m·K
Hot Zone Temperature:
1700-1800°C
Maximum Operating Temperature:
1800°C
Shape:
Rod/Tube/Coil
Electrical Resistivity:
1.2×10⁻⁴ Ω·m
Application:
Industrial Furnaces, Laboratory Furnaces, Heat Treatment Processes
Cold Zone Temperature:
100-200°C
Maximum Power Output:
3.5kW
Material:
Molybdenum Disilicide (MoSi₂)
Density:
6.5 G/cm³
Heating Zone Length:
100-200 Mm
Surface Load:
5-8 W/cm²
Usage:
High Temperature Heating
Product Description

SPK MoSi₂ heating element

The advantages of irregular silicon molybdenum rods mainly include the following aspects:

1. High temperature resistance and oxidation resistance: The silicon molybdenum rod is made of molybdenum disilicide powder, which has a high melting point (2030 ℃). In a high-temperature oxidizing atmosphere, a bright and dense quartz glass film is formed on the surface, which can protect the inner layer of the silicon molybdenum rod from oxidation. This characteristic enables silicon molybdenum rods to work stably for a long time in high temperature environments.

2. Low thermal conductivity and energy saving: The thermal conductivity of silicon molybdenum rod is only 0.03W/m.K, which is one tenth of the thermal conductivity of traditional high-temperature materials. This makes it significantly effective in thermal insulation and can significantly reduce energy consumption. In addition, the service life of silicon molybdenum rods is long, with an efficiency more than 30% higher than traditional coal combustion, further improving energy utilization efficiency.

3. Good electrical and thermal conductivity: Silicon molybdenum rods have dual characteristics of metal and ceramic, with both high conductivity of metal and high temperature stability of ceramic. This allows it to maintain good electrical and thermal conductivity even in high temperature environments.

4. Environmental Protection: Silicon molybdenum rods are processed from pure inorganic materials, non-toxic and harmless, and will not produce any volatile gases or impurities during use, meeting environmental protection requirements.

5. Special shape design: The shaped silicon molybdenum rod can be designed into various shapes according to specific needs, such as circular shape, closed mouth shape, etc., suitable for local heating and special process requirements. This design makes silicon molybdenum rods more flexible and efficient in industrial applications.

Thermal Conductivity 45 W/m·K
Hot Zone Temperature 1700-1800°C
Maximum Operating Temperature 1800°C
Shape Rod/Tube/Coil
Electrical Resistivity 1.2×10⁻⁴ Ω·m
Cold Zone Temperature 100-200°C