Thermal CVD system for synthesizing nanocarbon composite materials MPCVD-Composite

Back

Thermal CVD system for synthesizing nanocarbon composite materials [MPCVD-Composite]

                                         

                                                                                        Figure of system components


Purpose: A furnace type of thermal CVD system, equipped with a sample-rotating mechanism, developed for directly synthesizing nanocarbon in composite materials.
Features:    
Nanocarbon materials can be directly synthesized in inorganic powder materials.
Intermittent sample feeding system is equipped, enabling a continuous production.
Furnace with a 3-zone thermal control and a large quartz tube (120mm in diameter) is used.

Nanocarbon composite materials are getting to be closed up. Compositing CNT in metals can improve the thermal conductivity, compositing CNT in ceramics can improve the electrical conductivity, coating carbon films on compound materials can shield the surfaces.
In the most cases, composite materials are made by simply mix and disperse nanocarbon materials into base materials. However, because carbon materials are usually incompatible with other materials, uniform disperse of nanocarbon materials in base materials is a serious problem.
The concept of our product MPCVD-Composite is to synthesize nanocarbon materials directly in a base material to achieve more uniform dispersion, because catalysts can be dispersed uniformly in a base material. In particular, It will show much good effect for coating carbon films or graphene films on base materials.
In order to achieve a large yield, we developed an intermittent sample feeding system, enabling a continuous production of nanocarbon composite materials without lowering the temperature of the furnace and also without releasing the reaction chamber.
We will propose an optimum system and proper specifications to meet your purpose or requests.

Specifications

Configuration

Tubular Furnace

Operating Temp.

400~1100℃

Control of Temperature

3zone Program Control

Dimension

W940㎜×H810㎜×D510㎜

Electric Capacitance

AC200V 30A three-phase

Furnace Tube

Material

Quartz

Dimension

OD120㎜×L1400㎜

Control of Gases

Mass Flow Controller

Introduced Gases

Carrier Gas:N2 or Ar
Reducing Gas:H2
Hydrocarbon Gas:C2H2 or C2H4 or CH4

Dimension(Box)

W250㎜×H310㎜×D450㎜

Vacuum Gauge

Bourdon Gauge

Vacuum Pump

Oil-sealed Rotary Vacuum Pump

Continuous Feed Mechanism for Base Material

Continuous Collected Mechanism for Composite Materials