Car Exhaust Honeycomb Ceramic Catalyst Carrier Al2O3 Substrate

Body Material: Ceramic
Discharge Standard: Euro IV
Certification: ISO9001
Component: Catalytic Converter
Material: Cordierite
Specification: Diameter<120mm/Diameter<200mm, etc
Customization:
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Guangxi, China
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Basic Info.

Model NO.
CHS
Cell
100-600cpsi
Application
as Catalyst Used in Automobile/Motorcycle
Transport Package
Wooden Box and Pallet/Packed as Customers′ Need
Trademark
DXY
Origin
China
Production Capacity
100, 000pieces/Month

Product Description

Ceramic honeycomb substrate is used as catalytic converters of gasoline engines, the honeycomb ceramic catalyst substrates are coated by catalyst. Meanwhile our factory improves the specific surface areas and cuts down the heat capacity to increase the catalytic function. When the noxious emissions pass through, HC, CO and NOX will be converted into harmless components. It's three-dimensional connected mesh structure and high porosity has many advantages, for example, large surface area of slags collection, large inner surface area of filtering, small flow resistance, good filtering effect, etc.

Ceramic Honeycomb is made of cordierite, the cells density can be 100cpsi, 300cpsi, 400cpsi or 600cpsi. The usual cpsi (Cell Per Square Inch) for catalytic converter substrate is 400, the shape of ceramic converter substrate is round, racetrack, ellipse and other special shape as per customers' request. The preferred catalyst support structure is a honeycomb configuration which includes a variety of unobstructed parallel channels sized to through gas flow and bounded by thin ceramic walls. The walls of these channels provide the surface for precious-metal catalysts that convert noxious emissions into carbon dioxide, nitrogen and water vapor. We can provide honeycomb ceramic substrate has been coated and non-coated precious-metal.

Advantages:
*Thin wall thickness
*Better air flow
*High surface area
*Less backpressure
*Low thermal expansion coefficient
*Good thermal shock
*High thermal resistant function
*Good cold start
*Low ignition temperature
*Fast in temperature rising
*Low air resistance
*High transforming efficiency

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