Ultra High Temperature 2200c Lab Vacuum Graphite Furnace, Graphite Vacuum Furnace

Product Details
Customization: Available
Max Temperature: 2000
Working Temperature: 1800
Diamond Member Since 2019

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Registered Capital
2000000 RMB
Plant Area
101~500 square meters
  • Ultra High Temperature 2200c Lab Vacuum Graphite Furnace, Graphite Vacuum Furnace
  • Ultra High Temperature 2200c Lab Vacuum Graphite Furnace, Graphite Vacuum Furnace
  • Ultra High Temperature 2200c Lab Vacuum Graphite Furnace, Graphite Vacuum Furnace
  • Ultra High Temperature 2200c Lab Vacuum Graphite Furnace, Graphite Vacuum Furnace
  • Ultra High Temperature 2200c Lab Vacuum Graphite Furnace, Graphite Vacuum Furnace
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Basic Info.

Model NO.
H-2200GVF
Heating Element
Graphite
Chamber Size
Dia160*160
Voltage
380~440V
Working Power
20kw
Heating Rate
<=15c/Min
Insulation Chamber
Graphite
Thermocouple
W-Re Armoured Thermocouple
Temperature Accuracy
+/-1c
Temperature Uniformity
+/-5c
Max Vacuum
6.67 X 10-3 PA
Pressure Rising Rate
≤3PA/H
Transport Package
Wooden Box
Specification
Dia160*160
Trademark
HIQ
Origin
China
HS Code
85141090
Production Capacity
120 Sets Per Month

Product Description

Pit type vacuum graphite furnace with High Vacuum Degree
The vacuum sintering furnace is circular operation type, which is used the graphite tube as the heating element, suitable for sintering of metal material, inorganic nonmetallic material under vacuum or protective atmosphere. Also can be used in roasting purification of optical material. 
Ultra High Temperature 2200c Lab Vacuum Graphite Furnace, Graphite Vacuum Furnace
Rated power 40KW
Rated temperature 2000ºC
Working zone Φ160×160mm(Dia×Height)
Cold state limiting vacuum ≤6.67×10-3Pa
Heating mode Graphite heaters
Temperature control accuracy  ≤ ± 1 ºC
Pressure rising rate  ≤3Pa/h
Protective atmosphere Nitrogen, Argon

Ultra High Temperature 2200c Lab Vacuum Graphite Furnace, Graphite Vacuum Furnace

The horizontal high-temperature graphitization furnace is mainly used for sintering and graphitization of carbon materials, graphitization of PI films, graphitization of thermal conductive materials, sintering of carbon fiber ropes, sintering graphitization of carbon fiber filaments, and others under a carbon environment. Graphitized material. Compared with the conventional vertical graphitizing furnace, the working principle is the same, and the main advantages are: convenient loading and unloading, easy cleaning in the furnace, easier control of the operation status of the patrol personnel in the workshop, daily maintenance, easy replacement of the easy-consumed parts in the furnace, and the like. There is a slight increase.

PRODUCT CHARACTERISTICS:
1. The equipment has a high degree of automation. All switch components and all operating parameters of the equipment are stored in the PLC database in a digital form, and a communication interface can be reserved to facilitate customer connection.
2. Ultra-high temperature furnace within 3000°C, to meet the graphite treatment of various carbon materials.
3. Using digital display intelligent temperature control system, automatic high-precision complete temperature measurement and temperature control process, the system can be heated according to a given temperature curve, and can store twenty different sections of a total of 400 different process heating curve.
4. Thoroughly solve the problem of ablation sinking in the crucible inside the horizontal graphitizing furnace. The actual production is 60 heats, only sinking 5mm.
5. Using the internal circulation of pure water cooling system; digital flow monitoring system, furnace body conversion using high-performance intermediate frequency contactor; comprehensive PLC water, electricity, gas automatic control and protection system
6. The unique induction coil adopts 5 times of insulation treatment to completely solve the application problems of induction coil or high temperature insulation, so as to ensure the coil can maintain good insulation performance in corundum aging and cracking conditions, which can effectively prevent coil ignition and current leakage phenomena.
 

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