Advanced Non-Glue Lamination & Embossing Unit | HX-1500B
Sustainable Multi-Ply Bonding Without Adhesive Cost
The HX-1500B is a high-performance paper production line module designed to revolutionize the way multi-ply tissues are bonded. By utilizing mechanical embossing force instead of chemical adhesives, this unit completes the lamination of multiple layers of paper with exceptional precision. The result is a premium, eco-friendly product with 3D aesthetic patterns, clear embossing textures, and a superior soft hand-feel that modern consumers demand.
Seamless Integration & Intelligent Speed Matching
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Adhesive-Free Technology: Eliminates the need for glue, reducing production costs, simplifying machine maintenance, and ensuring the finished tissue is free from chemical additives.
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Universal Compatibility: This versatile unit is engineered to be adapted to a variety of household paper processing equipment, making it an ideal upgrade for existing rewinding or folding lines.
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Synchronized PLC Operation: Integrated with a high-response encoder, the unit automatically detects and adapts to the host machine's speed, ensuring consistent embossing depth and lamination strength at all times.
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Robust Mechanical Structure: Weighing approximately 7 tons, the heavy-duty frame provides the necessary pressure and stability for deep, stereo-effect embossing without damaging the fiber integrity.
Technical Specification
| Metric | Data Profile |
| Stable Production Speed | 100 - 150 m/min |
| Max Jumbo Roll Width | ≤ 1500 mm |
| Total Power Load | 19 KW (380V 50HZ) |
| Equipment Weight | Approx. 7 Tons |
| Overall Dimensions (LWH) | 1800 × 2400 × 2100 mm |
Beyond Machinery: Engineering Success with Huaxun
At Huaxun (Fujian) Machinery, we specialize in providing high-ROI solutions for the global tissue industry. As globally recognized napkin machine manufacturers, our facility combines advanced CNC precision with a commitment to sustainable manufacturing. We empower our clients to produce premium, eco-friendly paper products while maintaining maximum operational efficiency.

