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Baokang Apple pomace hollow blade dryer
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Baokang
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China
Main Products:
Dryers, granulators, mixers, dust removal machines, etc
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Product information

Apple pomace hollow blade dryer

working principle

The apple pomace hollow blade dryer consists of two to four blade shafts engaged with each other, a W-shaped shell with a jacket, a base and a transmission part. The entire drying process of the material is carried out in a closed state, with organic volatile gases and odorous gases. The gas is sent to the exhaust gas treatment device in a closed atmosphere to avoid environmental pollution.

The dryer uses steam, hot water or heat transfer oil as the heating medium, and the shaft end is equipped with a rotary joint for introducing and discharging the heat medium. The heating medium is divided into two paths, which enter the jacket of the dryer shell and the inner cavity of the blade shaft respectively, heating the dryer body and the blade shaft at the same time, and heating and drying the material in a conductive heating method. The dried material is quantitatively and continuously fed into the feeding port of the dryer by the screw feeder. The material enters the back of the dryer. Through the rotation of the blades, the material is turned over and stirred. The heating interface is constantly updated, and it comes into contact with the body and blades. It is fully heated to evaporate the surface moisture contained in the material. At the same time, the material is transported in a spiral trajectory towards the discharge port with the rotation of the blade shaft, and continues to be stirred during the transportation, so that the water seeping out in the sludge continues to evaporate. Finally, the evenly dried qualified product is discharged from the discharge port

equipment characteristics

1. The equipment structure is compact and the device covers a small area. It can be seen from the structure of the equipment that the heat required for drying is mainly provided by the wall surfaces of the hollow blades arranged on the hollow shaft, while the heat transfer capacity of the jacket wall only accounts for a small part. Therefore, the heat transfer area per unit volume of equipment is large, which can save equipment area and reduce infrastructure investment.

2. High heat utilization rate. The sludge dryer uses conductive heating for heating, and all heat transfer surfaces are covered with materials, reducing heat loss; there is no hot air to carry away heat, and the heat utilization rate can reach more than 90%.

3. Wedge blades have self-purification ability, which can improve the heat transfer effect of the blades. The dispersing force generated by the combined movement of the inclined surface of the rotating blade and the particle or powder layer automatically removes the sludge attached to the heating slope, and the blade maintains an efficient heat transfer function. In addition, due to the reverse rotation of the two shaft blades and the stirring functions of alternating segmented compression (when the two shaft blade surfaces are closest to each other) and expansion (when the two shaft blade surfaces are farthest apart), the heat transfer is uniform and the heat transfer is improved. effect.

flowchart

 

苹果渣空心桨叶干燥机

Applicable materials

Food

Agricultural products

Chemical products

Ores and minerals

Building materials industry

Solid waste sludge

technical specifications
 

project

model

JYG3

JYG9

JYG13

JYG18

JYG29

JYG41

JYG52

JYG68

JYG81

JYG95

JYG110

Heat transfer area (m2)

3

9

13

18

29

41

52

68

81

95

110

Effective volume (m3)

0.06

0.32

0.59

1.09

1.85

2.8

3.96

5.21

6.43

8.07

9.46

Speed range (rmp)

15-30

10-25

10-25

10-20

10-20

10-20

10-20

10-20

5-15

5-15

5-10

Power (kw)

2.2

4

5.5

7.5

11

15

30

45

55

75

95

Body width A(mm)

306

584

762

940

1118

1296

1476

1652

1828

2032

2210

Overall width B(mm)

736

841

1066

1320

1474

1676

1854

2134

1186

2438

2668

Body width C(mm)

1956

2820

3048

3328

4114

4724

5258

5842

6020

6124

6122

Overall length D(mm)

2972

4876

5486

5918

6808

7570

8306

9296

9678

9704

9880

Material inlet and outlet distance E(mm)

1752

2540

2768

3048

3810

4420

4954

5384

5562

5664

5664

Center height F(mm)

380

380

534

610

762

915

1066

1220

1220

1220

1220

Overall height H(mm)

762

838

1092

1270

1524

1778

2032

2362

2464

2566

2668

Steam inlet N(inch)

3/4

3/4

1

1

1

1

11/2

11/2

11/2

11/2

2

Water outlet O(inch)

3/4

3/4

1

1

1

1

11/2

11/2

11/2

11/2

2

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 


 

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