Jaw Crusher
Jaw crusher because of its simple structure, reliable operation, applicability, etc., are widely used. The disadvantage is non-continuity broken, inefficient, to mine uneven wear and serious jaw. Especially domestic jaw crusher with foreign compared to the same type crusher machine important weight, many domestic experts and scholars on the crusher Theoretically, the parts and the whole have done in-depth research and discussion, particularly finite element analysis is done for the optimization of jaw crusher and prepared the way.
In the dynamic simulation analysis 1998 jaw crusher kinematic characteristics, one scholar established a kinematics analysis model jaw crusher mechanism, whereby the development of the motion characteristics of a dynamic simulation program broken bodies, broken bodies analyzed law of motion characteristics and application examples are given. In the jaw crusher design agency `kinematic analysis must be carried out, get moving collar trajectory and other sports properties such as speed, acceleration, etc., in order to determine the reasonableness of the parametric design.
Research on new theories and calculation methods jaw crusher. Since the 80s of last century, Professor Wang Hongxun Institute of equipment proposed the concept of working nip angle, and use this concept to develop a bracket mounted under the efficient, low wear curve crushing chamber single toggle jaw crusher plates, aircraft and primary jaw crusher increased by 20% -50% compared to the ability to work, tooth plate life increased nearly 2-fold.
Traditional design, kinematics analysis is completed by the graphic method and calculation. Graphic method not only less accurate, but time consuming, especially when performing program comparison, this part of the work will account for a larger proportion of the entire design work. This design greatly improves design efficiency and quality.
| Model | Feed Opening (mm) | Max Feeding (mm) | Discharge Opening (mm) | Capacity (t/h) | REV (r/min) | Power (kw) | Motor Model | Machine Size (mm) |
|---|---|---|---|---|---|---|---|---|
| PEW200×1000 | 200×1000 | 220 | 20-40 | 15-50 | 330 | 6-37 | Y250M-6/37 | 1400×1850×1310 |
| PEW250×1200 | 250×1200 | 220 | 20-40 | 20-50 | 330 | 6-37 | Y250M-6/37 | 1400×2050×1310 |
| PEW400×600 | 400×600 | 350 | 35-85 | 15-70 | 250 | 6-37 | Y250M-6/37 | 1920×1460×1840 |
| PEW760 | 760×1100 | 620 | 75-200 | 150-350 | 270 | 6-110 | Y315L1-6/110 | 2600×2500×2200 |
| PEW860 | 860×1100 | 720 | 100-225 | 200-500 | 240 | 6-132 | Y315L2-6/132 | 3300×2320×3120 |
| PEW1100 | 1100×1200 | 930 | 150-275 | 300-650 | 210 | 8-185 | Y355L1-8/185 | 4140×2660×35600 |



