Configuration instructions
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Maximum machining size:
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Single station: 1130x1130x700mm Double station: 2400x1130x700mm
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X axis:3050mm Movement speed:40m/min
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Y/V axis:2200mm Movement speed:40m/min
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Z axis:1000mm Movement speed:40m/min
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C axis (rotary): ±400° Movement speed: 22.5 r/min
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A axis (rotary): ±360° Movement speed: 22.5 r/min
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Driving method:
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X/Y/V/Z axis: Taiwan ABBA precision ball screw drive
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ETectrical Configuration: |
Control System: Italy OSAI Open Key Series
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Servo drive: Japan YASKAWA X series
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Spindle type: manual tool change 7.5kW (air-cooled)* 4
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Video
FAQ
Q: What are the differences between "five-axis linkage" and "3+ 2-axis" machining?
A:
Five-axis linkage: Five axes move continuously simultaneously during the processing, which is used for machining complex continuous free-form surfaces, such as impellers, turbines, and precision mold cavities.
3+ 2-axis positioning machining: First, fix the two rotating axes at one Angle, and then perform three-axis milling. Essentially, it is still a three-axis machining process, but it avoids interference by tilting the workpiece or tool, and is used for machining features or polyhedral parts on an inclined surface. Five-axis linkage is a more advanced function.
Q:What are the core advantages of a five-axis machining center?
A:
One clamping, multi-sided processing completed: The greatest advantage is to eliminate repeated clamping errors, improve accuracy and efficiency.
Processing complex geometric shapes: It can complete complex parts such as aerospace, medical, and high-precision molds that three-axis machine tools cannot handle.
Using short tools: By adjusting the Angle, shorter and more rigid tools can be used to increase cutting speed, surface quality and tool life.
Excellent surface finish: Achieved by keeping the ball-end mill at the optimal cutting Angle all the time.
Q: Can it replace a three-axis machining center?
A: No, they are complementary. Five-axis machine tools are suitable for processing complex and high-value-added parts. For most regular and multi-faceted parts, three-axis or 3+ 2-axis processing is more efficient and less costly. A wise approach is to rationally allocate tasks between three-axis and five-axis machine tools based on the product structure to form an efficient processing combination.
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