Manufacturing transformation in the glass industry is accelerating, and flexible intelligent solutions for glass deep‑processing have become critical to lifting production efficiency, material utilization and product profitability.On August 11, 2026, the Scientific and Technological Achievement Evaluation Conference for Development and Industrial Application of Flexible Intelligent Manufacturing Technology for Glass Deep Processing was successfully held at Anhui Yinrui Intelligent Technology Co., Ltd. in Bengbu, Anhui Province, under the organization of the China Building Materials Federation. A seven‑member expert panel from national industry associations, authoritative testing institutes, universities, leading manufacturers and national‑level research institutions conducted full‑scale assessment including site inspection, document review, technical inquiry and group discussion. After closed‑door deliberation, the expert committee reached a unanimous conclusion: the project’s overall technical achievements have reached an internationally advanced level.

Anhui Yinrui’s general manager and project lead Mei Jian delivered a full report covering R&D background, core technology tackling, field application outcomes and intellectual property output. The expert team toured the actual production lines, reviewed site‑visit feedback and held in‑depth questioning targeting technical principles, process indicators, industry adaptability and economic returns. The project team responded item‑by‑item to all technical questions raised by the panel.

This flexible intelligent glass‑processing project delivers several landmark industry breakthroughs.
First, the self‑developed global intelligent nesting algorithm supports minute‑level production schedule re‑optimization, cross‑order dimensional matching and remnant glass reuse. The raw glass sheet utilization rate rises by 1%‑3%, cutting raw‑material waste for glass fabricators.
Second, the single‑pane cost accounting model realizes refined cost control at individual glass unit level, supporting precise cost forecasting and data‑driven cost analysis for every glass piece.
Third, digital twin‑powered rapid patch technology greatly shortens replacement‑glass production cycles and pushes production error rate below 0.1%, improving production stability for architectural, home‑appliance and photovoltaic glass.
Fourth, the original Cloud‑Side‑Device collaborative flexible intelligent manufacturing system solves long‑standing industry pain points such as automation silos and weak customized‑production adaptability. Mixed‑order production and fast production‑line switching become achievable, breaking limits of traditional rigid glass processing lines.
Up to now, the project has secured 4 granted invention patents, 21 utility model patents and 18 software copyrights. It leads the formulation of 1 industry standard plus 2 enterprise standards. All product performance indicators pass third‑party authoritative testing.
These mature technologies have been deployed widely across architectural glass, photovoltaic glass and home‑appliance glass scenarios. They drive the glass deep‑processing sector away from labor‑intensive extensive modes toward data‑based lean intelligent manufacturing. Meanwhile, the innovations boost domestic supply capacity of high‑end curtain‑wall glass, photovoltaic supporting glass and household‑appliance glass in China, bringing remarkable economic and social benefits.

Passing this official scientific and technological achievement assessment offers authoritative recognition of Anhui Yinrui’s continuous R&D strength in glass deep‑processing intelligent equipment. Moreover, it provides a replicable technical template for the intelligent upgrade and high‑quality growth of the whole building‑materials glass sector.
Going forward, Anhui Yinrui will keep advancing technical iteration, scale up nationwide promotion of advanced smart‑manufacturing solutions, and cooperate with upstream and downstream industrial partners. Joint efforts will push China’s glass‑processing industry forward into a new global‑oriented phase marked by higher quality and higher added‑value output.