The tracked mobile cone crushing plant has low consumption of vulnerable parts and low operating costs, the structural design is reasonable, the crushing principle and technical parameters are advanced, the operation is reliable, and the maintenance cost can be minimized.
With hydraulic protection, hydraulic cleaning, a high degree of automation, and reduced downtime, this mini cone crusher significantly enhances operational efficiency. The hydraulic adjustment of the discharge port and overload protection improve the overall operation, making maintenance simpler and operation more convenient. For example, the bidirectional iron release hydraulic cylinder can allow the iron block to pass through the crushing chamber. In the event of iron passing or instantaneous blockage, it can be hydraulically lifted and automatically discharged, greatly reducing the trouble of manual discharge when the original spring cone crusher needs to be stopped.
Working Principle
Application
The primary purpose of the tracked mobile cone crusher is similar to that of the HP300 cone: both are designed to crush large stones into particle sizes that meet building aggregate standards. In the mining of metallic and non-metallic ores, it finely grinds extracted ore to provide suitable particle size raw materials for subsequent beneficiation. For instance, in gold, copper, and iron mines, cone crushers efficiently reduce ores to the desired particle size for improved mineral processing.
Additionally, as a key piece of equipment in the sand-making process, it works alongside other machines to produce high-quality machine-made sand.
Video Presentation
Product Parameter
Serial number | Project | Description | SY-HP200 |
1 | Feeding equipment | Hopper volume(m³) | 1.5 |
2 | Feed height(mm) | 2600 | |
3 | Maximum feed size(mm) | 185 | |
4 | Size of feeder (length x width)(mm) | 10250×1000 | |
5 | Feed capacity (t/h) | 150-300 | |
6 | Power of Feeder | 7.5 | |
7 | Cone Crusher | Models | HP200 |
8 | Maximum feed particle size (mm) | 185 | |
9 | Size range of ore discharge outlet (mm) | 0-38 | |
10 | Processing capacity(t/h) | 100-250 | |
11 | Power(kw) | 160 | |
12 | Weight(t) | 12 | |
13 | Vibrating screen | Screen size (length x width)(mm) | 5000×1500 |
14 | Maximum feeding granularity(mm) | 100 | |
15 | Processing capacity(t/h) | 150-500 | |
16 | Power(kw) | 3.7kw×2 | |
17 | The number of screen layer (layer) | 1 | |
18 | Main belt conveyor (top of the screen) |
Width/length (mm) | 1200×19500 |
19 | Discharge height(mm) | 3200 | |
20 | Power(kw) | 15 | |
21 | Sift down the belt | Width/length (mm) | 1000×11500 |
22 | Discharge height(mm) | 2400 | |
23 | Power(kw) | 7.5 | |
24 | Transition Belt Machine | Width/length (mm) | 500*4400 |
25 | Discharge height(mm) | 1400 | |
26 | Power(kw) | 3 | |
27 | Return material belt machine | Width/length (mm) | 500*18500 |
28 | Discharge height(mm) | 3800 | |
29 | Power(kw) | 5.5 | |
30 | Track system | Country of origin | England |
31 | Brand | Strickland | |
32 | Specification length x width(mm) | 4160×500 | |
33 | Maximum inclination of walking (°) | 30 | |
34 | Walking speed(km/h) | 0.8-1.5 | |
35 | Power System (for single walking) | Models | QSB3.9-G3 |
36 | Fuel consumption (L/h) | 3.9 | |
37 | Power(kw) | 79 | |
38 | Tank volume(L) | 200 | |
39 | Emission standards | National III | |
40 | Power System -LRB-both oil and electricity) | Models | QSZ13-G11(CUMMINS) |
41 | Fuel consumption (L/h) | ||
42 | Power(kw) | 512 | |
43 | Tank volume(L) | 600 | |
44 | Emission standards | National III | |
45 | Accessories brand | Control System (electrical) | Chuan Ken |
46 | Walking system | Strickland | |
47 | Conveyor belt | Qingdao Global | |
48 | Hydraulic machinery | Bomke | |
49 | The engine | CUMMINS | |
50 | Steel | Models | Q355B(Materials used for warships) |
51 |
The whole machine |
Weight(t) | 42 |
52 | Shipping dimensions(mm) | 15800×3500×3800 | |
53 | Working size(mm) | 15200×3500×4100 |
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