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YAG laser welding machine
YAG laser welding mach÷δine
Specifications:

Device model: FL-HJ-YAG150/FL-HJ-YA∞ ™"G300/FL-HJ-YAG600

Laser power: 150W/300W/600W

Pulse width: 0.5-30ms

Laser wavelength: 1064nm

Maximum single pulse energy: 5&♦5J/60J/100J

Fiber core diameter: 300/4☆♠00/600um optional

Pump lamp: xenon lamp, single lam♦™™≤p/xenon lamp, dual lampΩ§↔↑/xenon lamp, dual lamp

Aiming and positioning: with red ligh₽σπt indicator (welding head CCD positi €oning)

Feedback method: energy negativ¶→±e feedback

Spectroscopic method: energy spectr∞π∑​oscopy/time spectros₽©←★copy

Maximum number of lig★✔≠ht paths: 4

Cooling capacity requiremen≤₽ts: 5KW/7.5KW/15KW

Cooling method: water cooling

Whole machine power consu‌₩←mption: <6KW/<12KW/

Power demand: 380V, 50/60Hz

Feature description

1. The optical fiber transmission l$®aser welding machine has the charact←↑→₩eristics of high single-point ener€×gy, small welding width, ↕↔small thermal influence, and smal'σ‍l deformation. It is very su®‍★itable for welding thin plates belσ™αow 0.5mm;

2. Equipped with a CCD monitoring sys™λ>≤tem, which can observe the wel≤®↕Ωding seam effect and weldin©‌α☆g position in real time;

3. The welding seam is smoo&λ✔th and beautiful, without air ho↕α☆ les, and the back of the weldin≥§∞g place is not easy to tu✘↑¶♠rn yellow;

4. Capable of detection fδ→unction, which can monitor laser eπ₽αnergy and power output in real time, ‍∞★ find abnormalities and ac$σtivate protection;

5. Energy feedback function, real-t≥'ime inspection of laser en‌φergy. It can effectively sol‌®÷‌ve energy fluctuations caused by ®&♦changes in voltage fluct≈≤↕δuations, xenon lamp disc↑"→harge differences, xenon lamp agin€®g, water flow, water temperatur→↔e and other factors (energ¶♥&y feedback and current feedback are oγπ​ptional);

6. The equipment can be set wi§$th 32 sets of different welding$λΩ€ process parameters t↓λλo meet different weldλ£γ↔ing requirements;

7. The power supply has an ≈©☆≠automatic shutter control functi&±on, which can realize mult÷≠←i-head laser welding¶  ε of time and energy (optioΩ≈nal);

8. It can meet welding ←♣×≤requirements such as spot weldiα±σng, tailor welding, stitch weσ¶lding, and sealing welding;

9. There are consumables $ $in the later stage (lamps ♦< need to be replaced every 4 m ®÷onths or so).

Note: The shape and performanc​π≠"e of the machine can be designed accordΩ✔ε¶ing to the actual situa™₽tion and requirements&∏ of the customer, and the weld✔★ing machine, special fixtu☆ <re and laser automatio∏♣•n integration (non-standard machine) c∑¥an be customized for the ↓≈customer. There are no fixe≥$πd models for non-standard machines.'¥ All styles are based on✘© meeting customer requirem£×✔™ents and then make corresponding cβ≥• hanges.

Application area

Mainly used for welding thin metal γγδ♠plates below 0.5mm. ±£>πSuch as: stainless stee♣λl, aluminum alloy, ste'©∏el, aluminum, gold, silver a✘₽nd other metals in theβ↔★¥ industries of electro₩  ←nic components, lithium batte♣"÷ries, medical equipment, mob₽"♣∏ile phone communications, glasses an₩↕™★d watches, welding of the same mate↓φ$rial and welding of some dissimi$ lar materials.

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