Model | Cavity Type | Maximum feed size (mm) | Minimum discharge size (mm) | Motor Power (kw) | Crushing capacity(t/h) Closed side discharge opening(mm) | |||||||||
6 | 10 | 13 | 16 | 19 | 22 | 25 | 38 | 51 | 64 | |||||
CC1500 | C | 235 | 22 | 185-220 | 265 | 310 | 420 | 525 | 580 | |||||
M | 175 | 19 | 185-220 | 215 | 240 | 265 | 320 | |||||||
F | 130 | 13 | 185-220 | 180 | 210 | 235 | 255 | 275 | ||||||
EF | 90 | 10 | 185-220 | 148 | 178 | 200 | 220 |
*Note: The processing capacity of the CC1500 cone crusher may vary with different materials and feeding sizes.
It’s seen the crusher is installed below the silo; the aggregates are fed into the crusher in a convenient and efficient manner. The corresponding motor equipped ensures equipment to operate according to rated power with low consumption.
At the production site it is seen that several trucks are waiting to be loaded with material for transporting. The site sale situation is very hot. These customers are attracted by the high quality and large reserve of fine stone.
Our companys technical staffs according to the customers request develop the entire production line of stone production process and select the required types of equipment and its supporting parts.
The CC1500 cone crusher is a remarkable piece of equipment in the field of crushing, renowned for its excellent performance and versatility that make it a valuable asset in numerous industrial applications.
The CC1500 comes equipped with four distinct cavity types, namely C, M, F, and EF. Each cavity type is designed to handle specific maximum feed sizes, catering to different input material dimensions. The C cavity can accommodate materials with a maximum feed size of 235mm, allowing it to process relatively large pieces of raw materials. The M cavity is suitable for a maximum feed size of 175mm, while the F cavity can handle up to 130mm. The EF cavity, on the other hand, is optimized for inputs with a maximum size of 90mm. This diversity in cavity options enables the crusher to adapt effectively to a wide variety of feedstock conditions, providing flexibility in various production processes where the size of the incoming materials may vary.
An important aspect of the CC1500 is its precise control over the discharge size. The minimum discharge size varies depending on the cavity type. In the C cavity, the minimum discharge size is 22mm. For the M cavity, it is 19mm, offering a finer output compared to the C cavity. The F cavity has a minimum discharge size of 13mm, and the EF cavity can achieve an even smaller minimum discharge size of 10mm. This level of precision in discharge size control empowers operators to produce crushed materials with highly specific particle sizes, which is crucial in industries such as construction, mining, and manufacturing, where the quality and consistency of particle sizes are essential for downstream processes and end products.
The CC1500 is powered by a motor with a power range of 185 - 220kw, providing sufficient energy to drive the crushing process efficiently. When it comes to the crushing capacity, it varies significantly based on the cavity type and the closed side discharge opening size. For instance, in the C cavity, when the closed side discharge opening reaches a certain size where the crushing capacity starts to be measurable, it begins at a value that corresponds to a crushing capacity of 265t/h (at an appropriate opening size), and as the opening gets larger, the capacity increases, reaching up to 580t/h at larger sizes. In the M cavity, starting from a specific minimum discharge size of 19mm, the capacity commences at 215t/h and changes accordingly with different discharge opening sizes. Similar variations in crushing capacity can be observed for the F and EF cavities based on their respective discharge opening sizes. This variability in crushing capacity makes the CC1500 adaptable to different production demands, whether it's for medium to large-scale operations in various industries.
In summary, the CC1500 cone crusher, with its multiple cavity types, precise discharge size control, and variable crushing capacities, plays a vital role in facilitating efficient and high-quality material crushing processes across many industries.
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