Transverse Infeed Core Veneer Hollow Dryer
Transverse Infeed Core Veneer Hollow Dryer
The Transverse Infeed Core Veneer Hollow Dryer is a high-efficiency wood drying solution designed for plywood production lines. It is specifically engineered to dry core veneer sheets uniformly and rapidly using advanced hollow tube heat transfer technology.
By adopting a transverse feeding structure and multi-layer drying system, this machine ensures stable operation, excellent drying quality, and reduced energy consumption—making it an ideal choice for modern plywood manufacturers seeking automation and cost efficiency.
Core veneer dryers play a crucial role in plywood processing by removing excess moisture from freshly peeled veneer, ensuring it meets the required standards for gluing and pressing.
By adopting a transverse feeding structure and multi-layer drying system, this machine ensures stable operation, excellent drying quality, and reduced energy consumption—making it an ideal choice for modern plywood manufacturers seeking automation and cost efficiency.
Core veneer dryers play a crucial role in plywood processing by removing excess moisture from freshly peeled veneer, ensuring it meets the required standards for gluing and pressing.
Quantity:
Transverse Infeed Core Veneer Hollow Dryer
1. Product Detailed Description
The Transverse Infeed Core Veneer Hollow Dryer utilizes a hollow square tube heat conduction system, where hot air or thermal oil circulates inside the tubes to evenly distribute heat across multiple layers of veneer.
Structure Composition:
- Transverse feeding system (side infeed design)
- Multi-layer drying chamber (typically 10–20 layers)
- Hollow square tube heating system
- Hot air circulation & exhaust system
- Automatic control system (PLC-based)
- Discharge and cooling section
Working Principle:
- Veneer sheets are fed transversely into the dryer
- Heat is transferred through hollow tubes via conduction and convection
- Hot air circulates evenly between layers to ensure uniform drying
- Moisture is evaporated and discharged through the exhaust system
- Dried veneer exits with stable moisture content
This design ensures consistent drying, minimal deformation, and high productivity.
2. Product Features & Advantages
2.1 High Drying Efficiency
- Multi-layer structure increases production capacity
- Uniform airflow ensures fast and consistent drying
- Shorter drying cycle compared to traditional dryers
2.2 Energy Saving & Low Consumption
- Optimized hot air circulation reduces heat loss
- Hollow tube system improves heat transfer efficiency
- Compatible with steam, thermal oil, or biomass heating
2.3 Excellent Drying Quality
- Uniform moisture content across veneer sheets
- Prevents cracking, warping, or deformation
- Improves bonding quality in plywood production
2.4 Compact Structure & Space Saving
- Transverse infeed design reduces workshop space usage
- Multi-layer stacking maximizes capacity per unit area
2.5 Intelligent Control System
- PLC automatic control for temperature, humidity, and time
- Easy operation with minimal labor requirements
- Stable and reliable performance
2.6 Strong Durability
- High-strength steel structure
- Corrosion-resistant hollow tubes
- Long service life with low maintenance
2.7 Wide Applicability
- Suitable for various wood species:
- Poplar veneer
- Pine veneer
- Eucalyptus veneer
- Adaptable to different veneer thickness ranges

3. Main Applications & Use Scenarios
3.1 Plywood Production Line
- Core veneer drying before gluing and hot pressing
- Essential for improving bonding strength and panel quality
3.2 Blockboard & LVL Manufacturing
- Ensures uniform moisture for structural panels
- Enhances product durability
3.3 Veneer Processing Factories
- Suitable for continuous large-scale veneer drying
- Supports automated production lines
3.4 Furniture & Decorative Panel Industry
- Provides high-quality dried veneer for surface layers and cores
3.5 Industrial Wood Panel Plants
- Used in film-faced plywood, construction boards, and packaging panels

4. Technical Parameter
| Brand | BM |
| Direction of Feeding Plate | horizontal |
| Layer Counting | 15 |
| Opening Distance | 60mm-65mm |
| Numbers of Hot Plate | 16 |
| Dimension of Hot Plate | 2700x1350x40mm |
| Numbers of Cylinder | 2 |
| Diameter of Cylinder | 110mm |
| Stroke of Cylinder | 1100mm |
| Working Pressure | 6Mpa |
| Closing Time | 25s |
| Overall Dimensions | 3150x1350x2280mm |
| Machine Weight | 4.6T |