Introduction to Key Parameters
Maximum feed size: 500–1000 (MM)
Feed inlet dimensions: 910×630, 1070×760, 1220×910, 1370×1070, 1520×1220 (MM)
Application areas
Widely applicable for crushing operations in large-scale water conservancy, hydropower, highway, railway, and other engineering projects, both domestically and internationally.
Applicable Materials
The ASJ-E jaw crusher is not only suitable for crushing materials such as limestone, medium-hard iron ore, and feldspar, but can also be used in the production of various-sized aggregates and artificial sand.
Features of the ASJ-E Series Jaw Crusher
1. Adopting a new "V"-shaped symmetrical crushing chamber design, the effective opening size matches the nominal opening dimension (conventional jaw crushers use a traditional asymmetrical crushing chamber design, where the effective opening is smaller than the nominal size), resulting in a 15–20% increase in crushing capacity compared to previous models.
2. The discharge port design incorporates advanced hydraulic adjustment mechanisms;
3. The main structural components of the rack are made from high-quality manganese steel and thickened steel plates. During the design phase, finite element analysis was thoroughly utilized to evaluate mechanical strength, ensuring the rack boasts exceptional load-bearing capacity and impact resistance during operation. Additionally, the bearings are installed using a cold-mounting process, which not only extends their service life but also enhances rotational efficiency.
4. The ASJ-E incorporates four highly user-friendly maintenance methods for wear parts: a bolt-fixed spring removal tool, a moving jaw body maintenance device, an edge guard plate removal kit, and an adjustment seat replacement system. These four tools enable maintenance personnel to effortlessly carry out inspections, routine upkeep, and overall servicing.
How it works
This machine primarily consists of components such as the frame, moving jaw, eccentric shaft, jaw plates, and adjustment seat. During operation, the electric motor drives the eccentric shaft via a V-belt connected to a pulley, causing the moving jaw to follow a specific motion trajectory. This action crushes the material fed into the crushing chamber. Finally, the crushed material is discharged through the discharge opening under the influence of its own weight.
Technical specifications
| Specification Model | Maximum Feeding Size (mm) | Feed inlet size (mm) | CSS (Closed Side Discharge) Processing Capacity (t/h) | Power | ||||||||
| 50 | 75 | 100 | 125 | 150 | 180 | 200 | 220 | 250 | (kw) | |||
| ASD-36-25 | 500 | 910×630 | 125 | 160 | 195 | 225 | 255 | 290 | 90 | |||
| ASJ-E42-30 | 610 | 1070×760 | 215 | 260 | 305 | 345 | 390 | 420 | 110 | |||
| ASJ-E48-36 | 730 | 1220×910 | 280 | 330 | 385 | 440 | 495 | 535 | 570 | 160 | ||
| ASJ-E54-42 | 860 | 1370×1070 | 395 | 470 | 535 | 615 | 670 | 720 | 185 | |||
| ASJ-E60-48 | 1000 | 1520×1220 | 530 | 620 | 720 | 785 | 850 | 950 | 220 | |||
Note:
1. The above-mentioned throughput corresponds to the parameters for crushing limestone with a loose density of 1.6 t/m³.
2. Depending on the material, the throughput capacity may vary.
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ASJ-E Series Jaw Crusher
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