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Hot Zone/Cold End

315

355

410

500

620

730

800

820

1000

470

5904

0.078

21.5

6562

0.087

23.9

7468

0.099

27.2

8949

0.118

32.5

10925

0.144

39.7

12736

0.168

46.3

13889

0.184

50.5

14218

0.188

51.7

17181

0.227

62.5

500

5938

0.079

21.6

6597

0.087

24.0

7502

0.099

27.3

8984

0.119

32.7

10960

0.145

39.9

12771

0.169

46.4

13923

0.184

50.6

14252

0.188

51.8

17216

0.228

62.6

520

5961

0.079

21.7

6620

0.088

24.1

7525

0.100

27.4

9007

0.119

32.8

10983

0.145

39.9

12794

0.169

46.5

13946

0.184

50.7

14275

0.189

51.9

17239

0.228

62.7

560

6007

0.079

21.8

6666

0.088

24.2

7571

0.100

27.5

9053

0.120

32.9

11029

0.146

40.1

12840

0.170

46.7

13992

0.185

50.9

14321

0.189

52.1

17285

0.229

62.9

580

6030

0.080

21.9

6689

0.088

24.3

7594

0.100

27.6

9076

0.120

33.0

11052

0.146

40.2

12863

0.170

46.8

14015

0.185

51.0

14344

0.190

52.2

17308

0.229

62.9

600

6053

0.080

22.0

6712

0.089

24.4

7617

0.101

27.7

9099

0.120

33.1

11075

0.146

40.3

12886

0.170

46.9

14038

0.186

51.0

14367

0.190

52.2

17331

0.229

63.0

630

6088

0.080

22.1

6746

0.089

24.5

7652

0.101

27.8

9133

0.121

33.2

11109

0.147

40.4

12920

0.171

47.0

14073

0.186

51.2

14402

0.190

52.4

17365

0.230

63.1

Specifications:

Element temperature 1500 ℃

Furnace temperature 1300 ℃

Current 275A

Surface loading 14.5W/cm2

Power: W

Resistance: Ω

Voltage: V

 

The Molybdenum Disilicide Heater is a cutting-edge heating solution tailored for high-temperature applications across diverse industries. Capable of withstanding temperatures up to 1800°C (3272°F), this heater is specifically designed for processes like sintering, firing, and annealing in ceramic and glass production.

A key feature of the Molybdenum Disilicide Heater is its superior oxidation resistance. At elevated temperatures, it forms a silica layer that protects the element from degradation, significantly prolonging its service life. This durability results in lower maintenance costs and less frequent replacements, offering a significant advantage in operational efficiency.

Moreover, the heater’s excellent thermal conductivity promotes even heat distribution, reducing the risk of hot spots that can compromise product quality. With a range of configurations available, including rods and plates, the Molybdenum Disilicide Heater can be seamlessly integrated into both new and existing systems. This versatility, coupled with its energy-efficient operation, makes it a vital component for any high-temperature industrial application seeking reliable and effective heating solutions.

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