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Focusing lens of laser welder

Model: NULL

Minimum order: 1

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Function:

advantageHigh energy focusing ability: focus the laser beam to a very small spot (micron level), significantly improve the energy density, and achieve efficient cutting of metal or non-metallic materials.High precision spot control: strictly control the focus position and spot size to ensure that th
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Product Description

Advantage

High energy focusing ability: focus the laser beam to a very small spot (micron level), significantly improve the energy density, and achieve efficient cutting of metal or non-metallic materials.

High precision spot control: strictly control the focus position and spot size to ensure that the cutting edge is smooth and burr free to meet the requirements of high-precision processing.

High temperature resistance and damage resistance: quartz, zinc selenide and other high-temperature resistant materials can withstand long-time high-energy laser irradiation and reduce lens loss.

High transmittance and low scattering: the coating process is optimized to reduce light loss, ensure the efficient transmission of laser energy, and improve the cutting speed and quality.

Suitable for multiple power and materials: support different power laser sources and materials (metal, acrylic, ceramics, etc.), with strong versatility.

Application industry

Metal processing: cutting stainless steel, carbon steel and aluminum alloy plates (such as mechanical parts, flanges and sheet metal parts) to achieve high-precision processing of complex graphics.

Automobile manufacturing: cutting of automobile parts (body structure parts, chassis parts, interior parts) to meet the processing requirements of lightweight materials (such as aluminum alloy and carbon fiber).

Electronics and appliances: cutting precision electronic components (PCB circuit board, metal shield, connector) to avoid thermal damage to surrounding devices.

Advertising signs: Metal/non-metal (stainless steel, acrylic, galvanized sheet) advertising words, decorative parts cutting, supporting the fine processing of complex shapes.

Aerospace: cutting precision parts of titanium alloy, superalloy and other difficult to machine materials to ensure aviation grade accuracy and surface quality.

New energy: the cutting of lithium battery electrode, photovoltaic silicon wafer and energy storage equipment shell meets the high consistency requirements of the new energy industry for material cutting.


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