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Laser welding relies on high-energy density beams to become the preferred heat source for precision welding, and its high-precision requirements ensure that the beam position is not significantly offset, otherwise insufficient assembly or positioning is prone to welding defects, limiting its process potential, because the laser focusing spot is small and the welding line is narrow.
In order to break through this limit, the double wedge laser vibration welding method is introduced, which is realized by integrating oscillating vibration module in the welding head. This technological innovation broadens the application boundary of laser welding, enabling efficient precision welding of large workpieces and wide welds, showing significant technical advantages.
Supply Voltage(V)
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220V±10% AC 50Hz
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Placement environment
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Flat, vibration and shock free
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Operating Temperature(°C)
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10~40
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Operating Humidity(%)
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<70
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Cooling method
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water cooling
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Applicable wavelength
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1064nm(±10nm)
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Applicable power
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≤2000W
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Collimation
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D16*5-F60
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Focusing
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D20*3.5-(F400/F600/F800)
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Reflection
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20x15.2xT1.6
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Lens Specifications
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D30*T5
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Maximum air pressure
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15Bar
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Focus Vertical Adjustment Range
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±10mm
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Scanning Width-Welding | F400-0~150mm |
F600-0~225mm |