Shine Composing Solutions: Where Every Millimeter Creates Maximum Value
In the competitive veneer and plywood industry, raw material efficiency defines profitability. Shine’s advanced composing systems are engineered to maximize recovery, minimize waste, and reduce manual labor—setting new standards in quality, productivity, and cost-effectiveness.
Intelligent Composing Technology for Superior Yield
Shine offers a complete composing family designed to meet diverse production demands. Our core veneer composers utilize vision-guided defect clipping technology, allowing precise control over the balance between quality and recovery. This ensures optimal use of valuable raw materials without compromising on grade.
Our green veneer composers seamlessly integrate green random strips into full sheets before drying, increasing total usable volume and streamlining downstream processes. By handling full sheets through drying and layup, these systems reduce labor, improve energy efficiency, and boost overall line productivity.
The face veneer composer elevates potential face-grade recovery by up to 20% compared to conventional non-composing methods. It also enables production of larger panel sizes beyond the limits of your clipping line. With innovative defect clipping that creates nearly invisible joints, it meets the most stringent quality demands—including specialized applications such as LNG-grade plywood.
Expanding Raw Material Potential
Shine transforms raw material utilization through key innovations:
AI-Powered Defect Detection: Advanced vision systems like the S7-Composing with AI and S5-Composing with luminescence sensing ensure precise clipping, preserving more face-grade veneer.
Negative Clipping Margin: By applying a negative clipping margin (e.g., –10 mm), we significantly reduce waste and increase yield compared to traditional positive margins.
Automated Random Feeding: Our patented feeder handles both green and dry veneers across species and thicknesses with consistent efficiency.
Together, these advancements lower one of the highest costs in veneer and LVL production—raw materials—while elevating process control.
Automation That Empowers Your Team
Shine designs for the modern mill, where automation drives competitiveness. Our fully automated composing lines, supported by intuitive interfaces and machine vision, enable a single operator to manage multiple stations with minimal intervention. Preset recipes and multilingual controls ensure consistent quality across different product grades, while AI-enhanced scanning further optimizes defect detection and labor utilization.
Visualizing the difference: In comparative analysis, the same veneer sheet shows three bark defects. Conventional systems may miss or misclassify some defects, while Shine’s AI composer identifies each one accurately—including challenging sound knots—ensuring precise clipping and maximal recovery.
Lower Costs, Higher Quality Output
By improving recovery and enabling tighter joint quality, Shine’s technologies reduce production costs while delivering stronger, more consistent veneer sheets. This makes our systems a strategic investment for mills targeting high-value plywood, LNG-proof panels, or custom-grade products.
From 4ft to 8ft veneers, and across multiple wood species on a single line, Shine provides scalable solutions that adapt to your production needs.
Partnership Built on Continuous Performance
Shine supports your success beyond installation. With robust components, real-time monitoring via ShineSIGHTS data analytics, proactive maintenance networks, and readily available local service teams, we help you achieve sustained uptime and operational excellence. Comprehensive training and digital support tools keep your team confident and your process optimized.
Choose Shine—Where Every Sheet Matters
Shine is redefining veneer composing through smarter detection, automated handling, and AI-driven decisions. Together, we turn every millimeter of raw material into measurable value—elevating quality, maximizing yield, and future-proofing your production.


