【24h】

Dash line glass- and sapphire-cutting with high power USP laser

机译:用高功率USP激光器的冲绳线和蓝宝石切割

获取原文

摘要

Glass cutting is a subject of high interest for flat panel display and consumer electronics industries. Among laser-based, water jet-based and diamond tool-based existing solutions, ultrashort pulses (USP) appear as a promising technology since this laser technology has the unique capacity to produce highly localized bulk modification owing to non-linear absorption. The cutting using USP lasers could be performed either by full ablation which is slow and generates a lot of dust, by controlled fracture propagation which is slow as well and may lead to path deviation, by stealth dicing which produces rough sidewalls, or by self-breaking induced by in-volume laser irradiation. The laser treatment is often continuous which is not necessary to perform glass cutting and may lead to over-exposure. In this paper we report on single pass glass and sapphire cutting using an USP laser (20W @200kHz or 8W@2MHz) using dash line laser treatment along the cutting trajectory. In-volume energy deposition was done along the glass thickness owing to a Bessel beam. The results will be discussed in terms of sidewall profile and roughness, path deviation, rim sharpness, energy dose and feedrate. Dash line treatment enables to tune the energy deposition and to produce the cutting effect but with a narrower heat affected zone, a better sidewall quality and a more accurate trajectory control of the cutting path.
机译:玻璃切割是平板显示器和消费电子行业高兴趣的主题。在基于激光的基于水射流和基于钻石工具的现有解决方案中,超短脉冲(USP)出现为希望的技术,因为这种激光技术具有由于非线性吸收而产生高度局部化的散装改性的独特能力。使用USP激光器的切割可以通过慢速并产生大量的灰尘,通过受控的裂缝传播来进行速度,这也可能导致路径偏差,通过隐形切割,它们产生粗糙的侧壁,或通过自我由体积体激光照射引起的断裂。激光处理通常是连续的,这是不需要进行玻璃切割并且可能导致过度暴露。在本文中,我们使用USP激光(20W @ 200kHz或8W @ 2MHz)报告单通玻璃和蓝宝石切割,沿着切割轨迹使用DASH线激光处理。由于贝塞尔梁沿着玻璃厚度完成体积蓄能沉积。结果将以侧壁轮廓和粗糙度,路径偏差,轮辋清晰度,能量剂量和饲料来讨论。短划线处理使能量沉积能够调整能量沉积并产生切割效果,而是具有较窄的热影响区域,更好的侧壁质量和对切割路径的更准确的轨迹控制。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号