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QH - 4015F High Speed Sheet Metal Laser Cutting Machine

QH - 4015F High Speed Sheet Metal Laser Cutting Machine

Brand Name: QiHai
Model Number: QH-4015F
MOQ: 1 set
Price: Negotiable
Payment Terms: T/T
Supply Ability: 90set/mon
Detail Information
Place of Origin:
Foshan, Guangdong, China
Certification:
CE, ISO
Product:
Sheet Metal Laser Cutting Machine
Processing Area:
4000 * 1500mm
Laser Power:
1500W-20000W
X/Y-axis Positioning Accuracy:
0.03mm
Frequency:
50Hz
Voltage:
380V
Laser Generator Classification:
Fiber Laser Generator
Transmission:
Double Rack&pinion Transmission And Servo Drive
Working Environment:
0-40℃, Humidity ≤80%
Graphic Format:
PLT, DXF
Packaging Details:
wooden box
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Product Description
QH - 4015F High Speed Sheet Metal Laser Cutting Machine


Description
The QH-4015F High Speed Sheet Metal Laser Cutting Machine is a dedicated efficient solution engineered for high-volume sheet metal processing, with its 1.5G maximum linkage acceleration as the core differentiator—delivering exceptional speed in start-stop, direction changes, and non-cutting traversal to minimize idle time.
Designed for medium-to-large workpiece batches, it features a 4000×1500mm processing area (supporting up to 900kg maximum loading weight) and pairs the 1.5G acceleration with a 100m/min maximum linkage speed, enabling rapid coverage of the entire workspace without compromising precision.

Quick Detail

High-Speed Core (1.5G Acceleration): 1.5G maximum linkage acceleration cuts non-cutting time (start/stop, traversal) by 40% vs. 1.0G machines; paired with 100m/min speed for fast batch processing.

Key Specs: 4000×1500mm area (900kg max loading), 1500W-20KW power (0.5-25mm thickness), ±0.03mm X/Y accuracy (maintained at high speed).

Efficiency: 1.5G acceleration + double rack & pinion drive slashes batch cycle time by 30%-35% for high-volume tasks.

Fit: Automotive components, hardware bulk production; 380V/50Hz industrial compatibility.


Technical Specifications
Processing Area 4000 * 1500mm
Maximum Loading Weight 900kg
Machine Weight 1700kg
Overall Dimensions 5500 * 2350 * 1900mm
Laser Power Range 1500W - 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

1.5G Acceleration Drives Unmatched Batch Efficiency: The 1.5G maximum linkage acceleration enables the machine to rapidly accelerate/decelerate between cutting segments—for example, reducing traversal time across the 4000×1500mm area by 40% compared to 1.0G accelerators. When processing batches of small-to-medium parts (e.g., 500pcs of 200×150mm hardware components), this cuts total cycle time by 30%-35%, directly boosting daily output without extending working hours.

High Speed Without Precision Compromise: Unlike low-acceleration machines that trade speed for accuracy, the QH-4015F’s double rack & pinion transmission with servo drive stabilizes motion even at 1.5G, retaining ±0.03mm X/Y-axis positioning and repositioning accuracy. This ensures consistent cut quality (smooth edges, no burrs) for high-speed batch jobs—eliminating the need for post-processing and reducing scrap rates by 25%-30%.

Adaptable High-Speed Processing for Diverse Workpieces: With a 4000×1500mm processing area and 900kg maximum loading weight, the machine’s 1.5G acceleration isn’t limited to small parts—it efficiently handles medium-large workpieces (e.g., 3.5m×1.2m automotive chassis panels) by minimizing time spent on positioning and path transitions. The 1500W-20KW laser power range further supports this versatility, cutting thin (0.5mm aluminum) and thick (25mm carbon steel) materials at high speed.

Stable High-Speed Operation for Longevity: Its 1700kg sturdy frame absorbs vibration generated by 1.5G acceleration, preventing wear on transmission components and extending machine lifespan. The 380V/50Hz standard power supply ensures consistent energy input for stable high-speed performance, avoiding speed fluctuations that could disrupt batch processing—making it a reliable choice for continuous industrial production shifts.