A hot bending device based on microcrystalline glass

By combining a dual-pushing device and internal and external cooling devices, efficient and uniform hot bending of microcrystalline glass is achieved, solving the problems of low pushing efficiency, low forming accuracy and uneven cooling of existing devices, reducing production costs and meeting the needs of large-scale high-precision processing.

CN122403756APending Publication Date: 2026-07-17SHANDONG HEISHAN GLASS GRP JIANGSU PHOTOELECTRIC TECH
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
SHANDONG HEISHAN GLASS GRP JIANGSU PHOTOELECTRIC TECH
Filing Date
2026-05-21
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Existing microcrystalline glass hot bending equipment suffers from low pushing efficiency, poor processing continuity, uneven heating of hot bending molds leading to low forming accuracy, a single cooling method resulting in low cooling efficiency and easy deformation of finished products, and cumbersome equipment installation, making it difficult to meet the needs of large-scale high-precision processing.

Method used

The system employs a dual-push device, a hot bending mold, and internal and external cooling devices to achieve continuous feeding of microcrystalline glass blanks and synchronous discharge of finished products. It features upper and lower dual-group heating structures for uniform temperature control and adopts a bidirectional synchronous cooling mode, with each processing step automatically linked and coordinated.

Benefits of technology

It improves the processing efficiency and forming precision of microcrystalline glass, reduces the risk of warping and cracking of finished products, lowers production costs, achieves efficient and uniform cooling effect, and simplifies the equipment installation process.

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Abstract

本发明提供一种基于微晶玻璃的热弯装置,涉及微晶玻璃加工设备技术领域,包括双推送装置、热弯模具、内外冷却装置和输出滑道;本发明结构简单合理,制造成本低廉,整体装配便捷,各机构衔接紧密流畅,整机运行稳定可靠,能够适配不同规格微晶玻璃热弯加工使用需求,实用性较强;本发明采用双推送组合式推送结构,可实现微晶玻璃坯料连续送料与成型成品同步出料作业,有效提升整体加工输送效率,保障加工工序连续不间断进行,大幅提升整体生产效率;本发明在热弯成型部位设置上下双组加热结构,可对微晶玻璃上下两面同步均匀控温保温,保证玻璃加工过程中塑性一致,有效提升热弯成型精度,减少弯曲成型偏差。
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