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QH-13025FD High Power Large-format Sheet Metal Laser Cutting Machine

QH-13025FD High Power Large-format Sheet Metal Laser Cutting Machine

Brand Name: QIHAI
Model Number: QH-13025FD
MOQ: 1 Set
Price: Negotiable
Payment Terms: T/T
Supply Ability: 100 Set/month
Detail Information
Place of Origin:
Foshan, Guangdong, China
Certification:
ISO, CE
Cooling Mode:
Water Cooling,protection System
Certification:
CE,ISO,SGS,FDA,GS
Graphic Format Supported:
PLT,AI,DXF,DST,BMP
Cnc Or Not:
Yes
Warranty:
1 Year
After-sales Service Provided:
Engineers Available To Service Machinery Overseas,Overseas Service Center Available
Color:
Blue And White,customizable
Packaging Details:
wood
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Product Description
QH-13025FD High Power Large-format Sheet Metal Laser Cutting Machine 0
QH-13025FD High Power Large-format Sheet Metal Laser Cutting Machine
Description
The QH-13025FD is a heavy-duty large-format sheet metal processing solution engineered for high-power thick-plate cutting scenarios, with its 6000W-20KW laser power range as the core driver—making it ideal for industries like heavy steel structures, shipbuilding, and large pressure vessels that demand deep, efficient cutting of thick metals. Designed to handle oversized 13000×2500mm workpieces (supporting up to 12000kg maximum loading weight), its high-power output enables seamless cutting of 0.5-30mm thick carbon steel, stainless steel, and high-strength alloy steel—addressing the limitations of low-power machines that struggle with thick-plate penetration.

Quick Detail

6000W-20KW High Power Core: Enables cutting of 0.5-30mm thick metals (vs. 25mm max for low-power models); ideal for thick carbon steel/stainless steel processing.

Key Specs: 13000×2500mm processing area (12000kg max loading), ±0.03mm axis accuracy, double rack & pinion transmission, 100m/min linkage speed.

Efficiency: 20KW power cuts 30mm carbon steel at 25-30m/min—2x faster than 6000W machines for the same thickness.

Fit: Heavy steel structures/shipbuilding; handles thick high-strength alloy plates that low-power cutters cannot process.

Technical Specifications
Specification Value
Processing Area 13000 × 2500mm
Maximum Loading Weight 12000kg
Machine Weight 10000kg
Overall Dimensions 16200×4060×2050mm
Laser Power Range 6000W - 20KW
X/Y-axis Positioning Accuracy ±0.03mm
X/Y-axis Repositioning Accuracy ±0.03mm
Maximum Linkage Acceleration 1.0G
Maximum Linkage Speed 100m/min
Transmission System Double rack & pinion transmission with servo drive
Voltage Requirement 380V
Frequency 50Hz

Advantage

High Power Enables Thick-Plate Penetration & Speed: The 6000W-20KW range solves thick-plate cutting challenges: 6000W efficiently cuts 10-15mm stainless steel at 40-45m/min, while 20KW achieves 25-30m/min cutting speed for 30mm carbon steel—eliminating the need for multi-pass cutting (common with <6000W machines) and reducing thick-plate processing time by 50%-60%.

Versatile High-Power Adaptation to Tough Materials: Unlike low-power models, its high power handles high-strength alloy steel (e.g., Q690) and thick stainless steel (e.g., 304/316L up to 25mm) with ease. The 20KW peak power ensures full penetration of dense materials, avoiding incomplete cuts or molten edges—critical for industries like pressure vessels where structural integrity is non-negotiable.

High Power Ensures Large-Format Thick-Plate Consistency: Across the 13000×2500mm large area, the machine’s high-power output maintains stable energy density—even for 12m-long 20mm carbon steel sheets, cut depth and edge quality remain uniform (no thickness-related precision loss). This consistency reduces post-cut grinding work by 40% compared to low-power machines that struggle with edge uniformity on large thick workpieces.

High Power + High Speed Boosts Throughput: The 100m/min linkage speed, paired with high power, creates a “fast-thick-cutting” synergy: 15KW power cuts 20mm carbon steel at 35m/min, allowing a 13m×2.5m thick plate to be processed in 30-35 minutes (vs. 60+ minutes with 3000W machines). This throughput improvement is amplified for batch production, cutting overall large-format thick-plate manufacturing cycles by 45%.