Product Details:
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Material: | Molybdenum Disilicide And Self-forming Glaze Of Silicide Dioxide | Product Name: | MoSi2 Heating Element |
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Dimension(l*w*h): | Customized | Condition: | Brand New |
Application: | Used Up To Furnace Temperature Of 1800℃ | Shape: | U, L, W |
Highlight: | 7.4% Porosity MoSi2 Heating Elements,MoSi2 Molybdenum Disilicide Heating Elements,7.4% Porosity mosi2 heating element |
Molybdenum Di-Silicide Heating Elements (MoSi2 Heaters),Excellent High Temperature and Cycling Properties
ZG heating Industry manufactures Molybdenum disilicide (MoSi2) heating elements for industrial and laboratory furnaces. A ceramic-based resistant element, the MoSi2 heating elements produce furnace temperature to 1800°C. These custom heating elements provide longevity and reliability at a high temperature.
Physical Characteristics:
Volume Density | Bending Strength | Vickers Hardness | Porosity | Water absorption | Heating Elongation Rate |
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5.5 g/cm3 | 15-25 kg/cm3 | (HV)570kg/mm2 | 7.4% | 1.2% | 4% |
Chemical Characteristics:
MoSi2 heating element is used in the high temperature under oxidizing atmosphere. It will form the SiO2 film which can keep the element from being melted. During the oxidizing process, the SiO2 protecting film is formed again when the element continues to be used. The MoSi2 heating element must not be used in the temperature between 400C and 700C for a long time, otherwise the element will be cremated under the strong oxidizing function in the low temperature.
Element temperature up to 1820°C, Application temperature up to 1750°C
Different geometries: U-, L-, W-elements and further element geometries
High Surface load possible and long service life of the elements
Fully compatible with other elements from comparable manufacturers
All accessory parts such as holders and connecting bands are also available
Product info & Technical Data:
TYPE U
TYPE W
TYPE L
Quality Products:
Fast Delivery:
Order Sample:
d=6mm, c=12mm, Le=200mm, Lu=180mm, a=30mm Please specify as: dia 6/12 X 200 X 180 X 30mm (dia d/c X Le X Lu X a mm) |
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d = the diameter of hot zone |
c = the diameter of cold zone |
Le = the length of hot zone |
Lu = the length of cold zone |
Contact Person: Daniel
Tel: 18003718225
Fax: 86-0371-6572-0196