HC Cone Crusher
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Kefid HC cone crushers are of advanced design, with high capacity and high reduction efficiency. With hydraulically adjusted CSS and automatic wear compensation, a choice of different crushing chambers and eccentric throws, and many other high-performance features, each model is versatile, user-friendly and highly productive.
HC serious single cylinder cone crusher is the most advanced cone crusher. It adopts the newest research result of crushing technology, hydraulic techonology and computer control techonology etc. It is widely used for secondary, tertiary and unltrafine crushing. It can be used for different environment and various stones of different hardness.

Working Principle of HC Cone Crusher:
Crusher drives the large and small bevel gear through the motor to achieve dynamic cone turning the eccentric rotation. Oiling or drain to the axis cylinder through pump to regulating discharge opening under normal operation. The hydraulic oil injects into accumulator when over iron, and the accumulator will press the oil back after over iron, then crusher will operate normally.
Performance Characteristics of HC Cone Crusher:
1. the frame of the crushing machine is made of alloy steel, designed though finite-elemnt analysis. The main axis is forged with alloy, being able to bear the overweight crushing pressure.
2. The main axis, eccentric, eccentric bushing combined together. By rotating the eccentric can easily set multiple eccentricities, which can meet requirement of different minerals and mining.
3. Spiral bevel gear surface transmission makes it torque, efficiency.
According to the parietal broken principle and laminated material wear characteristic, the curve crushing chamber can ensure the large production, high quality, and low wear and tear cost of the crusher.
4. Lubrication system and hydraulic system adopt modular design, and they run independently. They chain with the host, enabling the protection of the oil temperature, flow, pressure, power, and abnormal power supply.
5. Self-operation system can achieve overload protection, over-iron protection and automatic compensation of liner wear during crushing operations. Feeding through crowded warehouse can maximize the effect of the crusher.
Technical Parameter Of HC cone crusher:
| Model | Main shaft speed(rpm) | Eccentric distance(mm) | Motor power(kw) | Weight(kg) |
| HC100S | 360 | 16-25 | 90 | 7100 |
| HC200S | 340 | 16-30 | 150 | 13200 |
| HC300S | 285 | 20-36 | 220 | 19500 |
| HC100 | 395 | 13-28 | 90 | 5400 |
| HC200 | 360 | 16-36 | 150 | 9400 |
| HC300 | 320 | 16-36 | 250 | 14500 |
| HC400 | 290 | 18-50 | 315 | 24200 |
| Model | Chamber Type |
Max.feeding size(mm) |
Capacityt/h:Capacity,Metric tons per hour | |||||||||||||
| CSS | ||||||||||||||||
| 16 | 19 | 22 | 25 | 29 | 32 | 35 | 38 | 41 | 44 | 48 | 51 | 54 | ||||
| HC100S | EC | 240 | 80 | 90 | 120 | 160 | 175 | 150 | 130 | |||||||
| C | 200 | 68 | 75 | 102 | 133 | 117 | 102 | |||||||||
| HC200S | EC | 360 | 122 | 131 | 180 | 243 | 258 | 325 | 343 | 360 | 320 | 269 | 225 | |||
| C | 300 | 104 | 142 | 152 | 209 | 267 | 284 | 299 | 316 | 277 | 189 | |||||
| 25 | 29 | 32 | 35 | 38 | 41 | 44 | 48 | 51 | 54 | 57 | 60 | 64 | ||||
| HC300S | EC | 450 | 248 | 264 | 350 | 371 | 468 | 493 | 630 | 550 | 479 | |||||
| C | 400 | 215 | 295 | 314 | 400 | 423 | 536 | 470 | 418 | 350 | ||||||
| 4 | 5 | 6 | 8 | 10 | 13 | 16 | 19 | 22 | 25 | 29 | 32 | 35 | ||||
| HC100 | EC | 130 | 48 | 89 | 97 | 104 | 110 | 118 | 127 | 134 | 103 | |||||
| C | 90 | 56 | 93 | 101 | 108 | 116 | 124 | 110 | 74 | |||||||
| M | 64 | 46 | 78 | 84 | 80 | 62 | ||||||||||
| MF | 48 | 38 | 70 | 74 | 71 | 56 | ||||||||||
| F | 38 | 35 | 51 | 52 | 56 | 60 | 50 | 40 | ||||||||
| EF available | 6 | 8 | 10 | 13 | 16 | 19 | 22 | 25 | 29 | 32 | 35 | 38 | 41 | |||
| HC200 | EC | 190 | 113 | 157 | 169 | 179 | 191 | 207 | 218 | 230 | 218 | 174 | ||||
| C | 145 | 138 | 149 | 160 | 170 | 182 | 196 | 207 | 197 | 156 | 120 | |||||
| MC | 115 | 60 | 147 | 158 | 170 | 182 | 193 | 168 | 152 | 123 | ||||||
| M | 90 | 88 | 138 | 149 | 160 | 170 | 161 | 137 | 109 | |||||||
| MF | 65 | 64 | 111 | 121 | 130 | 132 | 120 | 97 | ||||||||
| F | 50 | 82 | 87 | 92 | 101 | 108 | 110 | 100 | 81 | |||||||
| EF available | 10 | 13 | 16 | 19 | 22 | 25 | 29 | 32 | 35 | 38 | 41 | 44 | 48 | |||
| HC300 | EC | 210 | 210 | 290 | 309 | 329 | 355 | 374 | 395 | 415 | 434 | 403 | 320 | |||
| C | 170 | 106 | 229 | 307 | 327 | 348 | 377 | 397 | 378 | 352 | 276 | 240 | ||||
| MC | 140 | 128 | 275 | 296 | 316 | 336 | 363 | 344 | 322 | 254 | 221 | |||||
| M | 105 | 196 | 292 | 313 | 334 | 356 | 314 | 295 | 233 | 204 | ||||||
| MF | 80 | 120 | 238 | 257 | 276 | 295 | 314 | 277 | 260 | 206 | ||||||
| F | 65 | 185 | 201 | 216 | 232
|
248 | 263 | 233 | 218 | 172 | ||||||
| EF available | 13 | 16 | 19 | 22 | 25 | 29 | 32 | 35 | 38 | 41 | 44 | 48 | 51 | |||
| HC400 | EC | 300 | 186 | 355 | 458 | 487 | 526 | 574 | 605 | 635 | 665 | 695 | 663 | 536 | ||
| C | 210 | 200 | 385 | 504 | 535 | 579 | 611 | 643 | 675 | 643 | 538 | 426 | 371 | |||
| MC | 170 | 266 | 447 | 478 | 508 | 549 | 580 | 610 | 524 | 488 | 382 | 303 | ||||
| M | 130 | 310 | 462 | 494 | 525 | 567 | 527 | 504 | 423 | 389 | ||||||
| MF | 100 | 202 | 387 | 416 | 444 | 472 | 510 | 473 | 408 | 381 | ||||||
| F | 75 | 319 | 344 | 370 | 395 | 420 | 454 | 421 | 363 | 339 | ||||||
| EF | 55 | 295 | 318 | 313 | 304 | |||||||||||
EF = Extra fine
F = Fine
MF = Medium fine
MC= Medium coarse
M = Medium
C = Coarse
EC = Extra coarse
The capacity is based on granite, the density of aggregate is 1.6t/m3.
The technical data is only for reference, it is not considered as our guarantee. Please consult Kefid Machinery for more information.
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