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Symons Cone Crusher

Symons cone crusher technical parameter chart can be developed for use as an application tool to properly utilize the Symons cone crusher’s capabilities. The Symons cone crusher is one component of the production line. As such, its performance is in part dependent on the proper selection and operation of feeders, conveyors, screens, supporting structure, electric motors, drive component and surge bins.

Symons Cone Crusher Symons Cone Crusher

The Zenith Symons Cone Crusher Advantages:

Where used, attention to the following factors will enhance Symons cone crusher capacity and performance.

1. Proper selection of crushing chamber for material to be crushed.
2. A feed grading containing proper distribution of the particle size.
3. Controlled feed rate.
4. Proper feed distribution 360° around crushing chamber.
5. Discharge conveyor sized to carry maximum crusher capacity.
6. Properly sized scalping and closed circuit screens.
7. Automation controls.
8. Adequate crusher discharge area.

The following factors will detract from ymons cone crusher capacity and performance.

1. Sticky material in crusher feed.
2. Fines in crusher feed (smaller than crusher setting) exceeding 10% of crusher capacity.
3. Excessive feed moisture.
4. Feed segregation in crusher cavity.
5. Improper feed distribution around circumference of crusher cavity.
6. Lack of feed control.
7. Inefficient use of recommended connected horsepower.
8. Insufficient conveyor capacity.
9. Insufficient scalper and closed circuit screen capacities.
10. Insufficient crusher discharge area.
11. Extremely hard or tough material.
12. Operation of crusher at less than recommended full load countershaft speed

If your aggregate or mining business demands the 24-hours running, high-reduction, big capacity application, you will find the Symons type cone crusher optimized for your demands.
The innovations like the stable lubrication, excellent sealing feature, great abrasive material applied in key components and rugged construction effectively reduce the wear rate , extend the replacement period of the spare parts, evidently reduce the production cost in per ton hour material processed. All of these can help you to achieve the highest level of profitability.

The Zenith Symons Cone Crusher Technical Data:

Model

Cavity

Recommended Minimum Discharge Setting A(mm)

Feed Opening With Min.Recommended Discharge Setting A(mm)

Capacities In Tons Per Hour Passing Through The Crusher At Indicated Discharge

Power(KW)

Opening Side”B”

Closed Side”B”

36”

(3’)

Fine

9

102

83

45-93

75

Coarse

13

175

159

59-165

Extra Coarse

25

178

163

129-198

51"

( 4.25' )

Fine

13

137

109

106-183

185

Medium

16

210

188

132-304

Coarse

19

241

216

171-349

Extra Coarse

25

259

238

230-450

66"

( 5.5' )

Fine

15

209

188

180-324

240

Medium

22

241

213

252-437

Coarse

25

269

241

299-634

Extra Coarse

38

368

331

431-680

84"

( 7' )

Fine

19

278

253

381-1028

400

Medium

25

334

303

605-1284

Coarse

31

369

334

786-1450

Extra Coarse

38

460

425

886-1637

Specification Chart In Open Circuit(SHORT HEAD):

Model

Cavity

Recommended Minimum Discharge Setting A(mm)

Feed Opening With Min.Recommended Discharge Setting A(mm)

Capacities In Tons Per Hour Passing Through The Crusher At Indicated Discharge

Power(KW)

Opening Side”B”

Closed Side”B”

36”

(3’)

Fine

3

41

13

27-91

75

Coarse

3

60

33

28-100

Extra Coarse

6

76

51

58-127

51"

( 4.25' )

Fine

3

64

29

36-160

155

Medium

6

89

54

84-164

Coarse

8

105

70

110-224

Extra Coarse

16

133

98

209-236

66"

( 5.5' )

Fine

5

70

35

90-207

240

Medium

6

89

54

137-280

Coarse

10

133

98

190-330

Extra Coarse

13

133

117

253-337

84"

( 7' )

Fine

5

105

51

189-509

400

Medium

10

133

95

352-617

Coarse

13

178

127

450-687

Extra Coarse

16

203

152

505-727

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