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真空玻璃封接用旋转式激光加工装备的设计

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激光封边具有封接效率高的优势,但真空玻璃激光封边过程中易发生透射、反射、吸收等相互作用,导致封边质量不佳.针对上述问题,设计了一种包含夹持机构、翻转机构、同步旋转机构的真空玻璃封接用旋转式激光加工装备,并通过对双平行四杆、曲柄摇杆、滑块摇杆的运动分析,优化该装备的翻转机构.实验结果表明,该装备可实现玻璃夹持、翻转、同步旋转等功能,优化后的翻转机构在夹持机构翻转90°时末线速度为0mm·s-1,且翻转过程中线加速度无突变,对支撑柱冲击较小,可稳定夹持平板玻璃,为真空玻璃的封接工艺及制造装备设计提供了参考.
Design and optimization of rotary laser processing equipment for vacuum glazing sealing
Laser edge banding has the advantages of high efficiency,but the interaction of transmis-sion,reflection and absorption is easy to occur in the process of vacuum glass laser edge banding,resulting in poor edge banding quality.In order to solve the above problems,a rotary laser process-ing equipment for vacuum glass sealing is designed,which includes clamping mechanism,turning mechanism and synchronous rotating mechanism.The turning mechanism of the equipment is opti-mized by analyzing the motion of double parallel four-rod,crank rocker and slider rocker.The experimental results show that the equipment can realize the functions of glass clamping,flipping,synchronous rotation,glass strip installation,solder addition,laser sealing,etc.The final linear velocity of the optimized flipping mechanism is 0 when the clamping mechanism is flipped 90°,and the linear acceleration during the flipping process has no abrupt change,therefore the impact on the support column is small,and the flat glass can be held stably.It provides a reference for sealing process and manufacturing equipment design of vacuum glass.

new vacuum glasslaser sealingclamping mechanismflip mechanismsynchronous rotation mechanism

王彪、奚小波、史扬杰、张剑峰、张翼夫、张瑞宏

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扬州大学机械工程学院,江苏扬州 225127

新型真空玻璃 激光封接 夹持机构 翻转机构 同步旋转机构

国家自然科学基金扬州大学高端人才支持计划扬州大学科技创新培育基金

52072334

2024

扬州大学学报(自然科学版)
扬州大学

扬州大学学报(自然科学版)

影响因子:0.473
ISSN:1007-824X
年,卷(期):2024.27(1)
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