At present, the AL5VMC1500 5-axis CNC machine center is the only means to solve the processing of impellers, blades, marine propellers, heavy-duty generator rotors, etc.
AL5VMC1500 5 axis cnc machine center for stainless steel,Not only used in civil industries, such as wood mold manufacturing, bathroom trimming, automotive interior parts processing, foam mold processing, European style home, solid wood chairs, etc., also widely used in aviation, aerospace, military, scientific research, precision equipment, high precision Medical equipment and other industries.
Main Technical Parameters
Item | Unit | AL5VMC1500 | ||
Worktable Size | mm2 | Φ1500 | ||
Pass Width | mm | 1200 | ||
T-Slot | Width | mm | 22 | |
Distance of Spindle to worktable | Max | mm | 780 | |
Min | mm | 30 | ||
Travel | Longitude (X) | mm | 1500 | |
Lateral (Y) | mm | 1480 | ||
Vertical (Z) | mm | 750 | ||
Head (A) | ±100° | |||
Rotary Table (C) | nX360° | |||
Spindle Number | BT50 | |||
Spindle Rotation Speeds | r/min | 10-4000 | ||
Spindle Torque | Nm | 288 | ||
In Feeding Speeds | Longitude (X) | mm/min | 10-8000 | |
Lateral (Y) | mm/min | 10-8000 | ||
Vertical (Z) | mm/min | 10-4000 | ||
Head (A) | r/min | 0-7 | ||
Rotatry Table (C) | r/min | 0-5 | ||
Fast In Feeding | Longitude (X) | mm/min | 12000 | |
Lateral (Y) | mm/min | 12000 | ||
Vertical (Z) | mm/min | 6000 | ||
Head (A) | r/min | 0-9 | ||
Rotary Table (C) | r/min | 0-8 | ||
Spindle Servo Power | Kw | 30 | ||
In Feeding Servo Power | Longitude (X) | Nm | 35 | |
Lateral (Y) | Nm | 27 | ||
Vertical (Z) | Nm | 35 | ||
Head (A) | Nm | 4 | ||
Rotary Table (C) | Nm | 35 | ||
Positioning Accuracy | mm | 0.02/1000 | ||
Re-positioning(mm) | mm | 0.02 | ||
Max Worktable Load Weight | T | 6 |
AL5VMC1500 5 axis cnc machine center for stainless steel is a machining center with high technology content and high precision for processing complex curved surfaces. At present, the AL5VMC1500 5-axis CNC machine center is the only means to solve the processing of impellers, blades, marine propellers, heavy-duty generator rotors, etc.
Precautions:
Due to the introduction of rotational coordinates, the kinematics of a five-axis CNC machine is much more complicated than that of a three-axis machine. The first problem associated with rotation is nonlinearity. The nonlinear error should be attributed to the programming error and can be controlled by reducing the step size. In the pre-calculation stage, the programmer cannot know the magnitude of the nonlinear error. Only after the machine program is generated by the post-processor, the nonlinear error can be calculated. Tool path linearization can solve this problem. Some control systems are capable of linearizing the tool path while machining, but are usually linearized in the post processor. Another problem caused by the rotating axis is singularity. If the singular point is at the extreme position of the axis of rotation, a small oscillation near the singular point will result in a 180° flip of the axis of rotation, which is quite dangerous.
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