Precision Hot Foil Stamping Machine for Round Bottles Containers and CapsOverview
This specialized hot foil stamping machine is engineered for the precise, high-quality decoration of elegant glassware, tubes, and jars—particularly ideal for prototype development, sample making, and small to medium production runs. It excels at applying metallic finishes with accurate registration, even on surfaces requiring foiling away from parting lines. Equipped with an advanced optical sensor system and full servo control, it guarantees exceptional overprinting accuracy and flexibility for a wide range of container shapes.
Technical Specifications
- Production Speed: 1,000 – 1,500 pcs/hour
- Foiling Range: Diameter 10–100 mm | Length 20–200 mm
- Compatible Objects: Round plastic/glass bottles, jars, tubes, and flat/square shapes
- Power Supply: 380V AC, 3-Phase, 2.8 kVA
- Air Pressure: 6–8 Bar
- Machine Dimensions (L×W×H): 1907 × 1000 × 1500 mm
Core Features
- Advanced Optical Registration: A high-precision optical sensor ensures flawless alignment and overprinting accuracy, which is critical for complex or positioning-sensitive designs.
- Full Servo-Driven Control: Servo motors manage all critical movements, including screen frame positioning and fixture rotation, for smooth and repeatable operation.
- User-Friendly Touchscreen Operation: An imported PLC and intuitive touchscreen interface allow easy setup, with recipe storage for fast recall of product parameters (diameter, speed, position).
- Rapid Changeover & Versatility: Designed for quick job transitions and capable of handling round, flat, and square containers, making it perfect for flexible, low-volume production.
- Compact & Robust Design: Offers a sturdy build in a relatively compact footprint, suitable for various production environments.
Ideal For
- Sample and prototype development for new packaging designs.
- Short-run production of premium cosmetic jars, perfume bottles, and glassware.
- Customized decoration projects requiring precise foil application on complex surfaces.