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Carbon Steel / Fluoroplastic Corrosion Resistant Centrifugal Pump For Conveying Strongly Corrosive Wastewater

Carbon Steel / Fluoroplastic Corrosion Resistant Centrifugal Pump For Conveying Strongly Corrosive Wastewater

Brand Name: aa&ss
Model Number: FZB
MOQ: 1 unit
Price: $200-$8,000
Payment Terms: L/C,T/T
Supply Ability: 1-30 sets/month
Detail Information
Place of Origin:
China
Name:
Corrosion Resistant Centrifugal Pump
Material:
Carbon Steel / Fluoroplastic
Power Supply:
200V-400V 50/60Hz
Media:
Wastewater, Solvents, Corrosive Liquids
Temperature Range:
-20℃ - 150℃
Flow Rate:
3 M³/h ~ 1400 M³/h
Lift:
15 M ~ 125 M
Equipment Power:
Determined By Pump Model
PH:
1-13
Supply Ability:
1-30 sets/month
Highlight:

Carbon Steel Corrosion Resistant Centrifugal Pump

,

Fluoroplastic Corrosion Resistant Centrifugal Pump

,

Corrosion Resistant Centrifugal Pump 400V

Product Description

Corrosion-resistant centrifugal pump: Used for conveying strongly corrosive wastewater, strongly oxidizing wastewater and chemicals.

Quick Details

Corrosion-resistant centrifugal pump

Power Supply Voltage: AC 200~400V, optional

Power Supply Frequency: 50/60Hz

Equipment Power: Determined by pump model

Temperature Range: -20 - 150

Flow Rate: 3 m³/h ~ 1400 m³/h

Lift: 15 m ~ 125 m

Customizable on Demand

The single-stage single-suction fluoroplastic alloy chemical centrifugal pump is designed and manufactured in accordance with international standards and combined with the craftsmanship of non-metallic pumps. The pump body adopts a metal shell lined with fluorinated ethylene propylene (F46). The pump cover, impeller and shaft sleeve are all integrally sintered and pressed with fluoroplastic coated on metal inserts. The shaft seal uses an advanced externally mounted bellows mechanical seal, with the stationary ring made of 99.9% alumina ceramic (or silicon nitride) and the rotating ring made of polytetrafluoroethylene filled material, which features excellent corrosion resistance, wear resistance and sealing performance. Both the inlet and outlet of the pump are reinforced with cast steel bodies to enhance the pressure resistance of the pump. Practical application shows that this pump has the advantages of corrosion resistance, wear resistance, high temperature resistance, non-aging, high mechanical strength, stable operation, advanced and reasonable structure, strict and reliable sealing performance, convenient disassembly and maintenance, and long service life.

Design Features

The centrifugal pump is designed in accordance with international standards. The pump body consists of a metal shell lined with fluoroplastic. The impeller and pump cover are all formed by pressing fluoroplastic alloy coated on metal inserts. The shaft seal adopts an advanced externally mounted bellows mechanical seal, with the stationary ring made of 99.9% alumina ceramic and the rotating ring made of polytetrafluoroethylene filled material, which is characterized by good corrosion resistance, wear resistance and sealing performance.

Applications

The corrosion resistance and wear resistance of this centrifugal pump have been verified by practical use and unanimously recognized by the majority of users. At present, it has been widely applied in the following fields: transportation of corrosive media in chemical production; chlorine water wastewater treatment and acid adding processes in ion-exchange membrane caustic soda projects (most ion-exchange membrane caustic soda projects in China currently adopt our company's pumps); electrolyte transportation in non-ferrous metal smelting; pickling processes in automobile manufacturing; as well as numerous industries including pharmaceuticals, petroleum, electric power, electroplating, dyes, pesticides, papermaking, food, textiles, etc. It can continuously transport various strong corrosive media at any concentration—such as sulfuric acid, hydrochloric acid, hydrofluoric acid, nitric acid, aqua regia, strong alkali, strong oxidants, organic solvents and reducing agents—at a temperature ranging from -20 to 150 without any damage, making it one of the most popular pump equipment among users at present.

 Carbon Steel / Fluoroplastic Corrosion Resistant Centrifugal Pump For Conveying Strongly Corrosive Wastewater 0

Model and Technical Data

Model

Speed =2900r/min Medium Density=1000 kg/m³

 

Speed =1450r/min Medium Density =1000kg/m3

Flow Rate (m³/h)

Head (m))

Motor Power (kW)

Net Positive Suction Head (m)

Efficiency (%)

Flow Rate (m³/h)

Head (m))

Motor Power (kW)

Net Positive Suction Head (m)

Efficiency (%)

IHF40-25-125

4

6

8

23

20

18.5

1.5

2.0

40

2

3

4

5.5

5

4.5

0.55

2.0

34

IHF40-25-160

4

6

8

34

32

28

2.2

2.0

33

2

3

4

9

8

7

0.55

2.0

27

IHF40-25-200

4

6

8

52

50

48

4

2.0

26

2

3

4

13.5

12.5

12

0.75

2.0

20

IHF40-25-250

4

6

8

82

80

78

7.5

2.0

25

2

3

4

20.5

20

19.5

1.5

2.0

19

IHF50-32-125

10

12.5

15

23

20

18.5

2.2

3.0

51

5

6.3

8

5.5

5

4.5

0.55

3.0

45

IHF50-32-160

10

12.5

15

34

32

28

4

3.0

46

5

6.3

8

9

8

7

0.55

3.0

40

IHF50-32-200

10

12.5

15

52

50

48

7.5

3.0

39

5

6.3

8

13.5

12.5

12

1.1

3.0

33

IHF50-32-250

10

12.5

15

82

80

78

11

3.5

38

5

6.3

8

20.5

20

19.5

1.5

3.5

32

IHF65-50-125

15

25

30

23

20

18.5

3

3.5

62

7.5

12.5

15

5.5

5

4.5

0.55

3.5

55

IHF65-50-160

15

25

30

34

32

28

5.5

3.5

57

7.5

12.5

15

9

8

7

1.1

3.5

51

IHF65-40-200

15

25

30

52

50

48

11

3.5

52

7.5

12.5

15

13.5

12.5

12

1.5

3.5

46

IHF65-40-250

15

25

30

82

80

78

18.5

3.5

50

7.5

12.5

15

20.5

20

19.5

3

3.5

43

IHF80-65-125

40

50

60

23

20

18.5

5.5

4.0

69

15

25

30

5.5

5

4.5

1.1

4.0

64

IHF80-65-160

40

50

60

34

32

28

11

4.0

67

15

25

30

9

8

7

1.5

4.0

62

IHF80-50-200

40

50

60

52

50

48

15

4.0

63

15

25

30

13.5

12.5

12

2.2

4.0

57

IHF80-50-250

40

50

60

82

80

78

30

4.0

56

15

25

30

20.5

20

19.5

5.5

4.0

51

IHF80-50-315

40

50

60

127

125

123

37

4.0

56

15

25

30

34

32

30

7.5

4.0

51

IHF80-65-400

40

50

60

127

125

123

37

4.0

56

 

15

25

30

34

32

30

7.5

4.0

51

IHF80-65-400

 

 

 

 

 

 

25

50

15

4.0

51

IHF100-80-125

80

100

120

22

20

18.5

11

4.5

77

 

40

50

60

5.5

5

4.5

1.5

4.5

74

IHF100-80-160

80

100

120

34

32

28

15

4.5

73

40

50

60

9

8

7

2.2

4.5

69

IHF100-65-200

80

100

120

52

50

48

30

4.5

73

40

50

60

13.5

12.5

12

5.5

4.5

68

IHF100-65-250

80

100

120

82

80

78

45

4.5

71

40

50

60

20.5

20

19.5

7.5

4.5

64

IHF100-65-315

80

100

120

127

125

123

55

4.5

68

40

50

60

34

32

30

11

4.5

62

IHF125-100-160

120

150

180

34

32

28

30

5.0

70

80

100

120

9

8

7

5.5

5.0

70

IHF125-100-200

240

200

150

52

50

48

55

5.0

65

80

100

120

13.5

12.5

12

11

5.0

71

IHF125-100-250

240

200

150

82

80

78

75

5.0

68

80

100

120

20.5

20

19.5

15

5.0

72

IHF125-100-280

240

200

150

102

100

96

90

5.0

73

80

100

120

27

25

23

18.5

5.0

72

IHF125-100-315

 

 

 

 

 

80

100

120

34

32

30

22

5.0

69

IHF150-125-250

 

 

 

 

 

240

200

150

20.5

20

19.5

22

6.0

77

IHF150-125-315

 

 

 

 

 

240

200

150

34

32

30

45

6.0

75

IHF150-125-400

 

 

 

 

 

240

200

150

52

50

48

55

6.0

78

IHF200-150-250

 

 

 

 

 

250

400

480

20.5

20

19.5

45

7.0

74

IHF200-150-315

 

 

 

 

 

250

400

480

34

32

30

75

7.0

79

IHF200-150-400

 

 

 

 

 

250

400

480

52

50

48

90

7.0

78

Corrosion Resistance Performance Parameter Table of Fluoroplastic Alloy Pumps and Valves

Medium

Concentration

≤%

Temperature

Medium

Concentration

≤%

Temperature

25

75

25

75

Sulfuric Acid

90

Potassium Hydroxide

50

Nitric Acid

30

×

Ammonium Hydroxide

 

Hydrochloric Acid

 

 

Barium Hydroxide

50

Phosphoric Acid

 

Magnesium Hydroxide

 

Hydrofluoric Acid*

 

Aluminum Hydroxide

 

Hydrobromic Acid

 

Lithium Hydroxide

 

Hydroiodic Acid

 

Aqueous Hydrogen Peroxide

 

Hydrocyanic Acid

 

Aqueous Bromine Solution

 

Sulfurous Acid

 

Iodine Solution

 

Nitrous Acid

 

Anhydrous Ammonia

 

Hypochlorous Acid*

 

Methanol

 

Perchloric Acid*

 

Ethanol

 

Chromic Acid

80

Butanol

 

Aqua Regia*

 

Formaldehyde

 

Acetic Acid

 

Acetaldehyde

 

Formic Acid

 

 

 

 

 

Butyric Acid

 

Aniline

 

Valeric Acid

 

Chloromethane

 

Oleic Acid

 

Dichloromethane

 

Benzoic Acid

 

Trichloromethane

 

Sodium Hydroxide

50

Tetrachloromethane

 

"√" indicates good corrosion resistance;

"×" indicates corrosion occurs;

"*" indicates material selection is required for some parts;

Items without marked symbols indicate applicable to any concentration.