Product Overview
The Medium Speed High-Stability Paper Cup Machine is designed for continuous industrial production requiring stable output, consistent forming accuracy, and long-cycle operational reliability.
The system adopts a synchronized mechanical indexing architecture to maintain stable timing between all forming stations, ensuring consistent cup geometry, sealing strength, and repeatable production quality across different material batches.
It is suitable for manufacturers who prioritize production stability and process control in medium-speed continuous operation environments.
Key Features
Synchronized Rotary Indexing System
All forming stations operate under fixed mechanical timing to ensure stable coordination between feeding, sealing, curling, and stacking processes.
Stable Bottom Sealing System
A controlled heating and pressure mechanism ensures uniform energy distribution during bottom bonding, improving sealing consistency and structural reliability.
Precision Forming Control System
Optimized mold-guided design stabilizes cup wall positioning and reduces dimensional variation during continuous production.
Reinforced Stability Frame Structure
The mechanical structure reduces vibration interference between working units, supporting long-hour stable operation.
Material Adaptation System
Compatible with single and double PE coated paper, ensuring stable feeding performance across different paper thicknesses and batch variations.
Technical Specifications
|
Parameter |
Specification |
|
Production Speed |
80 – 100 pcs/min |
|
Paper Material |
150 – 350 g/m² (Single / Double PE / PLA coated paper) |
|
Cup Size Range |
2 oz – 16 oz (interchangeable molds) |
|
Rated Power |
11 – 13 kW |
|
Power Supply |
380V, 50Hz (customizable) |
|
Air Requirement |
0.4 – 0.6 MPa, ≥ 0.5 m³/min |
|
Machine Weight |
Approx. 2,800 kg |
|
Machine Size |
2400 × 1400 × 1800 mm |
Machine Structure
Paper Feeding System
Synchronized stable sheet transport
Cup Forming Unit
Precision mold-guided forming system
Bottom Sealing Unit
Controlled thermal bonding station
Knurling Unit
Bottom reinforcement system
Rim Curling Unit
Uniform edge finishing system
Stacking Unit
Automatic output collection
The layout minimizes mechanical interference and improves long-cycle stability.
Working Process
Vacuum Feeding System: Photoelectric suction system feeds paper blanks into positioning units.
Side Sealing Process: Paper is formed into a cylinder and sealed under controlled high temperature.
Bottom Punching System: Bottom paper is precisely cut and inserted into the cup body.
Heating & Knurling Process: Multi-stage heating ensures stable bonding, followed by mechanical pressing for reinforcement.
Rim Curling & Output: Cup rim is curled and finished before automatic stacking and collection.
Applications
Hot beverage cups
Cold drink cups
Food packaging containers
Quick service restaurant supply chains
Disposable packaging production lines
Customization Options
Cup size mold configuration
Heating adjustment for different paper thickness
Electrical system adaptation for regional standards
Integration with automated packaging lines
Quality Control & Delivery Standards
All equipment is manufactured under strict process control to ensure stable industrial performance:
• Premium electrical and mechanical components for long-duty operation
• 72-hour continuous factory testing before shipment
• Compliance with CE safety standards and ISO9001:2015 quality management system
Packaging & Shipping Protection
The machine is protected with anti-rust treatment, moisture-proof wrapping, and export-grade fumigated wooden cases. The base frame includes fixed anchoring points to ensure stability during long-distance sea transportation.
FAQ
Q: How is sealing reliability ensured for double PE coated paper?
A: The system uses controlled heating and cooling balance to ensure stable internal bonding while preventing outer film overheating.
Q: What is the typical changeover time for different cup sizes?
A: With standardized alignment design, tooling changeover typically requires 4–6 hours for trained technicians.
Q: Why use an open cam drive system?
A: It provides direct mechanical transmission, reducing timing drift, wear, and long-term backlash compared to chain systems.
Q: What spare parts are included?
A: Standard wear parts such as heating elements, sensors, suction components, and cutting tools are provided. Additional knurling and heating components are recommended for high-volume production.
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