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Single Platform Fully Enclosed Sheet Metal Laser Cutting Machine High Speed

Categories Sheet Metal Laser Cutting Machine
Brand Name: QiHai
Model Number: QH-3015FC
Certification: CE, ISO
Place of Origin: Foshan, Guangdong, China
MOQ: 1 set
Price: Negotiable
Payment Terms: T/T
Supply Ability: 90set/mon
Delivery Time: 45-60 work days
Packaging Details: wooden box
Product: QH-3015FC High Speed Single Platform Fully Encloesd Sheet Metal Cutting Machine
Processing Area: 3000 * 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
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Single Platform Fully Enclosed Sheet Metal Laser Cutting Machine High Speed

QH-3015FC High Speed Single Platform Fully Encloesd Sheet Metal Cutting Machine
Description
The QH-3015FC is a high-performance sheet metal laser cutting machine engineered for fast, efficient batch processing, with its core strength lying in exceptional high-speed capabilities paired with a single-platform fully enclosed design. Tailored to industries like automotive parts, hardware manufacturing, and electrical cabinet production, it features a 3000×1500mm processing area (supporting up to 800kg maximum loading weight) and delivers industry-leading speed: a maximum linkage speed of 100m/min and 1.5G maximum linkage acceleration—enabling it to complete high-volume cutting tasks far faster than standard laser cutters.
Quick Detail

High Speed Core: 100m/min maximum linkage speed + 1.5G acceleration, cutting batch processing time by 35%-50% vs. standard machines; ±0.03mm precision retained at high speed.

Key Specs: 3000×1500mm processing area (800kg max loading), 1500W-20KW laser power, double rack & pinion servo transmission.

Design & Safety: Single-platform for easy loading/unloading; fully enclosed structure (laser safety + low noise) for workshop use.

Application Fit: Automotive parts, hardware batch production; 380V/50Hz for industrial continuous workflows.

Technical Specifications
Processing Area3000 * 1500mm
Maximum Loading Weight800kg
Machine Weight1800kg
Overall Dimensions4800 * 2350 * 1900mm
Laser Power Range1500W - 20KW
X/Y-axis Positioning Accuracy±0.03mm
X/Y-axis Repositioning Accuracy±0.03mm
Maximum Linkage Acceleration1.5G
Maximum Linkage Speed100m/min
Transmission SystemDouble rack & pinion transmission with servo drive
Voltage Requirement380V
Frequency50Hz

Advantage

Unmatched Batch Processing Speed: With 100m/min linkage speed and 1.5G acceleration, the QH-3015FC drastically reduces cycle time for high-volume tasks—for example, cutting 500 pieces of 300×200mm stainless steel sheets (1mm thick) takes just 40-45 minutes, compared to 65-70 minutes with standard 60m/min machines. This directly boosts daily output by 35%+, critical for meeting tight production deadlines in mass manufacturing.

High Speed Without Precision Loss: The double rack & pinion servo transmission minimizes backlash and ensures stable motion even at maximum speed, allowing the machine to maintain ±0.03mm axis accuracy. Unlike low-end high-speed cutters that sacrifice precision for speed, it avoids post-cut rework (e.g., trimming uneven edges), further saving time and reducing scrap rates by 20%-25%.

Fully Enclosed Safety for High-Speed Operation: High-speed cutting often increases risks of debris splatter or laser exposure, but the fully enclosed structure eliminates these hazards—meeting international laser safety standards (e.g., Class IV protection). It also reduces cutting noise by 15-20dB, creating a safer, more comfortable workshop environment for operators working alongside continuous high-speed production.

Single Platform Efficiency for Fast Batch Transitions: The single-platform design simplifies loading/unloading of 800kg workpieces (e.g., large sheet stacks), with no complex dual-table switching delays. This ensures minimal downtime between batches—when paired with 100m/min cutting speed, it achieves a total equipment efficiency (TEE) of over 85%, outperforming dual-platform machines that may have longer transition times in high-volume scenarios.

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