Description
When considering metal fabrication, investing in a laser welding machine is crucial for achieving high precision and efficiency. The price of these machines can vary significantly based on their power output, features, and brand reputation. For instance, 1kW, 2kW, and 3kW laser welding machines each cater to different industrial needs. A 1kW laser welding machine is typically best suited for thin metals, offering an entry-level option for small-scale projects, with prices averaging around $8,000 to $12,000.
In contrast, a 2kW laser welding machine can handle thicker materials and is ideal for medium-scale production, with costs ranging from $12,000 to $20,000. For heavy-duty applications requiring robust performance, the 3kW laser welding machine becomes essential. These models can efficiently weld thicker metals and complex assemblies, with price tags from $20,000 up to $40,000 or more depending on customization and additional features.
Moreover, fiber laser welding machines have gained popularity due to their superior precision and lower maintenance costs. The investment in a fiber laser welding machine can range from $10,000 to $50,000, depending on the wattage and specifications. This technology is particularly effective for stainless steel welding (SS welding), enabling high-quality joints with minimal thermal distortion.
In summary, understanding the price breakdown for different metal welding machines?such as the 1kW, 2kW, and 3kW laser welding machines?can help businesses choose the right equipment for their specific needs. Whether you’re looking for a simple SS welding machine or a more complex fiber laser solution, the investment in quality welding technology pays dividends in efficiency and output.
Water Cooled Handheld laser welding
Specification | Units | |||
---|---|---|---|---|
Power | Watts | 1500 | 2000 | |
Wave length | nm | 1080 ? 10 | 1080 ? 10 | |
Mode of operation | Continuos Wave (CW) | Continuos Wave (CW) | ||
Output Power Tunability | % | 10 – 100 | 10 – 100 | |
Modulation Frequency | 0 – 5000 Hz | 0 – 5000 Hz | ||
Power supply | 230 ? 5% VAC, 3 ?, 50/60 Hz | 230 ? 5% VAC, 3 ?, 50/60 Hz | ||
Overall Size (L ? B ? H) (Approx) | mm | 1300 ? 685 ? 1200 | 1300 ? 685 ? 1200 | |
Weight (Approx) | kg | 150 | 150 | |
Maximum Power Consumption | kW | 5.5 | 5.5 | |
Position indication | Red Light | Red Light | ||
Welding Nozzle Wire Length | mtr | 10 mtr | 10 mtr | |
Operation Temperature | ?C | 10 to 50 | 10 to 50 | |
*Welding Thickness | mm | Mild Steel: 4 | Stainless Steel: 4 | Aluminum: 2 | Aluminum Alloy: 2 | Galvanized Iron: 2 |
Air Cooled Handheld laser welding
Specification | Units | 1 |
---|---|---|
Power | Watts | 2000 |
Wave length | nm | 1070 ? 10 |
Mode of operation | Continuos / modulation | |
Output Power Tunability | % | 10 – 100 |
Modulation Frequency | 0 – 5000 Hz | |
Power supply | 230 ? 5% VAC, 3 ?, 50/60 Hz | |
Overall Size (L ? B ? H) (Approx) | mm | 650 ? 300 ? 621 |
Weight (Approx) | kg | 70 |
Maximum Power Consumption | kW | 6.5 |
Position indication | Red Light | |
Welding Nozzle Wire Length | mtr | 10 |
Operation Temperature | ?C | 10 to 50 |
*Welding Thickness | mm | Mild Steel: 4 | Stainless Steel: 4 | Aluminum: 2 | Aluminum Alloy: 2 | Galvanized Iron: 2 |
*The table above indicastes a thickness with a maximum penetration capacity of 2000 Watts
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