• High frequency induction furnace System 1
  • High frequency induction furnace System 2
  • High frequency induction furnace System 3
High frequency induction furnace

High frequency induction furnace

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Loading Port:
Guangzhou
Payment Terms:
TT OR LC
Min Order Qty:
-
Supply Capability:
-

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Packaging & Delivery

Packaging Detail:The high frequency induction furnace is packed with plastic paper inside, Polyfoam filled, Wooden box outside.
Delivery Detail:30-40days after receiving your deposite

Specifications

1.The high frequency induction furnace apply the nitriding,carburizing for the tooling,moulding,axes,gear whell
2.factory

high frequency induction furnace

Function:              

The high frequency induction furnace is batch furnace,which is used for mild steel cementite,carbonitriding and surface chemistry treatment.

Structure specification:

Furnace lining: It adopt composite moniker energy effiency furnace lining,which consists of super light firebrick and high quality silicic acid aluminium firefibre.

Heating element:The heating system and the charger basket are all welded by the high heat-resisting steel sheet and plate.There is the ventilator on the furnace lid to force the gas cycle,so that to make the temperature and atmosphere to be even.The lifting of the furnace is drived by the motor-driven worm decelerating installation.

Controlling system:the standard configuration is KRG6 series controller.There are the imported digital temperature controller and automatic recording,which could show,record and adjust the temperature automatically.It also have the alarm protective function.

We also can adopt the KRG7 series controller according the processing requirement.The accuracy of the silicon control PID regulating electric furnace controller is ±10°C.

code                

Power

kw

Temperature

°C

Voltage

V

Phase

Heat element connection

Heating-up time

Empty load loss power(kw)

Loading quantity

Kg

Working size

Mm

Outline Demision

mm

Quality

Kg

ZHRJ3-25-9D

25

950

380

3

Y

≤2

≤7

70

Φ300*450

1790*1410

1600

ZHRJ3-25-9D

60

950

380

3

Y;Y

≤18

550

Φ450*600

1940*1560

2800

ZHRJ3-25-9D

75

950

380

3

Y;Y

≤22

720

Φ450*900

1940*1250

3200

ZHRJ3-25-9D

90

950

380

3

Y;YY

≤2.5

≤27

900

Φ600*900

2100*1720

3700

ZHRJ3-25-9D

105

950

380

3

Y;YY

≤30

1000

Φ800*1200

2100*1720

4500

ZHRJ3-25-9D

180

950

380

3

Y;YY

≤40

2000

Φ1800*2000

2600*2800

7500

ZHRJ3-25-9D

300

950

380

3

Y;YY

≤55

4500

Φ1800*3000

2800*4000

9000



Q: Selection of heat preservation material for industrial furnace
In the neutral and oxidizing atmosphere, the tensile strength, toughness and fiber structure can be maintained for long term use. The temperature is 950-1400 centigrade. Excellent chemical stability; excellent thermal stability; excellent tensile strength; low thermal conductivity; low thermal capacity; excellent sound absorption and noise reduction performance.
Q: What is the difference between industrial furnaces and boilers?
Hot water or steam generated in the boiler can directly provide necessary energy for industrial production and people's life, but also by the steam power device is converted to mechanical energy, or through the generator converts mechanical energy into electrical energy. Hot water boilers are called hot water boilers. They are mainly used in daily life, and are also used in industrial production. Steam generating boilers are called steam boilers, often referred to as boilers. They are used in thermal power stations, ships, locomotives and industrial and mining enterprises.
Q: Should the industrial furnace shell cool down?
Normally, the furnace shell temperature of an industrial furnace is below 50 degrees, so there is no need to cool down.
Q: What are the companies in the world that are currently engaged in metallurgical furnaces?
Each manufacturer has its own industry and technological advantages.If you say that the performance rankings, turnover, and so on, it seems that no one has done this ranking.
Q: What are the combustion equipments used in industrial boilers?
The boiler is an energy conversion equipment. The energy input to the boiler has the chemical energy and the electric energy in the fuel. The boiler outputs steam with certain heat energy and high temperature water.
Q: What's the role of anchor bricks in industrial furnaces?
Anchorage brick is a new type of anchor brick relates to an industrial furnace, in particular to anchor brick of an industrial furnace roof, including column hanging end and the anchor structure, opened in the anchor on the surface of the spacing of the grooves in the anchor on at least one surface is arranged along the length direction ribs is provided with ribs, the ribs of the reinforcement and anchorage tension, tensile and flexural strength was obviously improved, the stress generated in the groove at the bar at the barrier can not continue to transfer, so the anchor brick of this kind of structure is not easy to break.
Q: How many kinds of industrial electric furnaces are there?
Industrial furnace according to the heating mode is divided into two categories: one is the fuel furnace, combustion heat with solid, liquid or gaseous fuel in the furnace for heating the workpiece; the second is in the furnace, the furnace converts electrical energy to heat the heat.
Q: How to use industrial furnace equipment?
If it is water cooling furnace door, but also to ensure the smooth flow of pipes, winter pipes are not frozen. When the boiler is in a limited position, the interlocking device for cutting off the power supply shall be provided when the furnace is in and out, and the number of broken wires in the pitch of the steel wire shall not exceed 10%, and the counterweight of the furnace door shall be reliably hung.
Q: Brief introduction to repair of industrial furnace
The industrial furnace is the main production equipment in the machinery industry. The repair of industrial furnace directly affects the quality, high yield, long life, low consumption and safe production of the furnace.
Q: What is an industrial furnace pit?
In twentieth Century 50s, coreless induction furnaces were developed rapidly. Later, electron beam kilns, using electron beams to impact solid fuels, strengthen the surface to heat and fuse materials with high melting point.

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