首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Micro laser welding of polymer microstructures using low power laser diodes
【24h】

Micro laser welding of polymer microstructures using low power laser diodes

机译:使用低功率激光二极管的聚合物微结构的微激光焊接

获取原文
获取原文并翻译 | 示例
           

摘要

The use of laser welding for joining micro parts has experienced a substantial increase in popularity during recent years. Specifically translucent microfluidic devices are assembled using laser welding; however, a major issue is the laser beam size of commercially available laser-welding equipment and thus the resulting welding seam size, which may be orders of magnitude larger than microfluidic channels and structures. We have successfully achieved extremely small welding seams using focussed low-power laser diodes. Commercial laser welding stations for polymer assembly will typically operate in the power-region 15–50 Watts. The focussed laser beam will have a size of typically 500 μm × 500 μm and may, depending on optical configuration, be up to several mm2. The resulting welding-seam will thus be in the area of 300–600 μm depending on beam energy distribution; additionally the melt will spread to unheated areas due to capillary forces. As microfluidic channels are in 20–100 μm regions, even a very limited amount of stray melt may completely fill a part of a channel and thus render it useless. We have used commercially available “single-die” laser-diodes of optical power 200–500 mW. The beam has been focussed and directed using simple optical installations, resulting in a beam-size in the area of 50 μm × 5 μm full width half maximum (FWHM) We have achieved firm welding seams of width <10 μm, with a welding speed of 15 mm/s and with virtually no noticeable spread of melt.
机译:近年来,使用激光焊接来连接微型零件已大为普及。具体而言,半透明的微流体装置是使用激光焊接组装的。然而,主要的问题是可商购的激光焊接设备的激光束尺寸以及由此产生的焊缝尺寸,该尺寸可能比微流体通道和结构大几个数量级。我们已经成功地使用聚焦低功率激光二极管实现了极小的焊缝。用于聚合物组装的商业激光焊接站通常将在15-50瓦的功率范围内运行。聚焦的激光束的大小通常为500μm×500μm,并且根据光学配置的不同,可能高达几平方毫米。因此,根据束能量分布,所得到的焊缝将在300-600μm的范围内。另外,由于毛细作用力,熔体将扩散到未加热的区域。由于微流体通道位于20-100μm的区域内,即使非常有限的杂散熔体也可能会完全填充通道的一部分,从而使其无效。我们已经使用了市售的光功率为200–500 mW的“单片”激光二极管。使用简单的光学装置即可对光束进行聚焦和定向,从而使光束尺寸在50μm×5μm的全宽半高(FWHM)范围内。我们已经实现了宽度小于10μm的牢固焊缝,且焊接速度速度为15毫米/秒,几乎没有明显的熔体扩散。

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