Siliziumkarbid -Sic -beschichtete Heizungen

Silicon carbide heater is coated with metal oxide, that is, far infrared paint silicon carbide plate as a radiation element, in the element hole (or groove) into the electric heating wire, in the bottom of the silicon carbide plate put thicker insulation, refractory, heat insulation material, and then installed on the metal shell, the terminal can be used to connect the power supply.When the far infrared ray of the silicon carbide heater radiates to the object, it can absorb, reflect and pass through. The heated and dried material absorbs far-infrared radiation energy at a certain depth of internal and surface molecules at the same time, producing a self-heating effect, so that the solvent or water molecules evaporate and heat evenly, thus avoiding deformation and qualitative change due to different degrees of thermal expansion, so that the appearance of the material, physical and mechanical properties, fastness and color remain intact.

Beschreibung

Our company provides SiC coating process services by CVD method on the surface of graphite, ceramics and other materials, so that special gases containing carbon and silicon react at high temperature to obtain high purity SiC molecules, molecules deposited on the surface of the coated materials, forming SIC protective layer.

SiC Heating Element (17)

SiC Heating Element (22)

SiC Heating Element (23)

Hauptmerkmale

1. High temperature oxidation resistance:
the oxidation resistance is still very good when the temperature is as high as 1600 C.
2. High purity: made by chemical vapor deposition under high temperature chlorination condition.
3. Erosion resistance: high hardness, compact surface, fine particles.
4. Corrosion resistance: acid, alkali, salt and organic reagents.

Main Specifications of CVD-SIC Coating

SIC-CVD-Eigenschaften

Kristallstruktur FCC -β -Phase
Dichte g/cm ³ 3.21
Härte Vickers Härte 2500
Körnung mm 2~10
Chemische Reinheit % 99.99995
Wärmekapazität J · kg-1 · k-1 640
Sublimationstemperatur 2700
Felexurale Stärke MPA (RT 4-Punkt) 415
Der Modul von Young GPA (4PT Bend, 1300 ℃) 430
Wärmeausdehnung (CTE) 10-6K-1 4.5
Wärmeleitfähigkeit (W/mk) 300

SEMICERA -Arbeitsplatz

Semizelle Arbeitsplatz 2

Ausrüstungsmaschine

CNN -Verarbeitung, chemische Reinigung, CVD -Beschichtung

Semizera Ware House

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