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1600℃ High temperature box furnace, small laboratory heat treatment furnace

1600℃ High temperature box furnace, small laboratory heat treatment furnace

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Description:

BFseries High temperature box furnace products are mainly developed for daily laboratory applications. High quality furnace materials and a stable temperature control system can ensure the reliability of experimental data. The product adopts a new type of ceramic fiber material as the furnace material, selects high-quality high-temperature alloy heating elements as the heating element, and the temperature controller adopts an intelligent PID control module, which can achieve accurate temperature control and constant temperature requirements.

The product is used for pre firing and sintering of electronic components, glass, ceramic powders, and can also be used for firing other ceramic products, rare earth components, magnetic materials, etc.

Product features:

1. The furnace material is made of imported lightweight and high purity alumina ceramics with high hardness, no powder loss at high temperature and no volatilization at high temperature, which meets the international industry standards.

2. the heating body adopts high-quality silicon-molybdenum rods, which can bear large load, stable and long service life, and the silicon-molybdenum rods are uniformly arranged on both sides of the furnace with good uniformity of temperature field.

3. the heating rate is fast and the temperature uniformity is good, which can rise to 1600℃in 60 minutes.

4. The temperature control precision is high, the impulse temperature is small, and it has the functions of temperature compensation and temperature correction. The temperature control accuracy is±1℃.

5. The intelligent PID temperature control instrument is adopted, which has the program function, can set the heating curve, and can compile 30 program segments.

6. Integrated structure, double shell, air circulation insulation, excellent appearance design, beautiful and generous.

7. Electronic components are all made of Delixi products with leakage protection function.

8. This machine will send out an alarm signal to the over-temperature in the working process, and automatically complete the protection action.

9. When the instrument program is set, as long as the run button is pressed, the following work will be completed automatically.

10. Optional large screen paperless recorder or RS232 communication interface to realize real-time recording of the heating curve, and with a memory card to analyze and print the experimental data.

BF1600:

Model.

BF1600-I

BF1600-II

BF1600-III

BF1600-IV

BF1600-V

BF1600-VI

BF1600-I

Volume

1L

3L

8L

12L

20L

36L

1L

Size

100*120*100mm

150*150*150mm

200*200*200mm

200*300*200mm

250*320*250mm

300*400*300mm

100*120*100mm

Rated temperature

1600℃

Working temperature

1550℃

Control accuracy

±1℃

Heating rate

1-15℃/min

Power

220V/2KW

220V/4kw

220V/5kw

220V/6kw

380V/7kw

380V/13kw

220V/2KW

Control instrument

Adopting Xiamen Yudian intelligent microcomputer PID temperature control instrument, SCR/SSR control, PID parameter self-tuning function, and over temperature alarm function;

Programmable for 30 time periods, automatic heating, automatic insulation, and automatic stop, meeting continuous constant temperature and temperature control requirements

Electronic components are made of Delixi products to ensure long-term stability and reliability, with a control accuracy of ± 1 ℃

Heating rate

Vertical installation of U-shaped silicon molybdenum rods, evenly distributed on both sides of the furnace, with a uniform temperature field

Temperature measuring element

B-type national standard platinum rhodium thermocouple

Furnace material

The use of polycrystalline alumina ceramic fiber material, one-time molding and new splicing structure technology ensure the durability of the furnace.

Polycrystalline alumina ceramic fiber material is one of the new lightweight high-temperature insulation materials at home and abroad. It is prepared by using Mitsubishi polycrystalline fibers from Japan as the basic material and wet vacuum filtration molding to produce polycrystalline inorganic ceramic fiber material. It has good thermal shock performance and thermal stability, low heat capacity, and low thermal conductivity

Furnace structure

1. The furnace is composed of furnace materials, insulation materials, and heating elements

2. The temperature control system consists of temperature control instruments, control components, and thermocouples

3. The integrated structure of the furnace body and temperature control is fixed on the temperature controller, and the side of the furnace door opens axially

Personal safety device

Modular control, which will emit sound and light alarm signals for over temperature and disconnection during the working process, and automatically complete the protection action;

There is an air circuit breaker installed on the equipment, which will automatically pop open in case of short circuit or leakage, which can protect the equipment and operators

Dimension

383*432*660mm

510*560*870mm

600*620*920mm

600*693*920mm

610*730*970mm

700*840*1250mm

383*432*660mm

Weight

115Kg

140kg

165kg

180kg

260kg

300kg

115Kg

Standard configuration

1.One furnace body 2. One temperature controller 3. Power cord 3 meters 4. A thermocouple 5. One instruction manual 6. A crucible clamp 7. A pair of high-temperature gloves 8. One fire door  9 spare silicon carbide rods

Optional configuration

1. Paperless recorder, capable of online recording of temperature rise data, with storage function and USB interface. It can copy data to the computer through a USB flash drive, view and print data reports at any time

2. Computer communication control system, which can control equipment in real time through computers

3. Exhaust chimney, optional exhaust port can be installed behind the furnace for the volatilization and glue removal of high-temperature organic matter

4. Corundum crucibles, silicon carbide/corundum furnace bottom pads, caskets, and other furnace utensils

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