首页> 外文期刊>Welding International >Laser absorption characteristics in high-power fibre laser welding of stainless steel
【24h】

Laser absorption characteristics in high-power fibre laser welding of stainless steel

机译:不锈钢大功率光纤激光焊接中的激光吸收特性

获取原文
获取原文并翻译 | 示例
           

摘要

A tightly focused high-power fibre laser beam can produce a narrower and deeper penetration weld than a conventional laser weld of wine cup shape, which is expected to improve laser absorption. The objective of this research was to assess laser absorption in a wide range of conditions such as laser powers of 2-10 kW or welding speeds of 17-250 mm/s in bead-on-plate welding of Type 304 austenitic stainless steel with a laser beam of 200 μm spot diameter by water-calorimetric method. Furthermore, the relationship between the laser absorption and the keyhole formation location to a focused laser beam was revealed by using X-ray transmission in-site observation system and high-speed video camera with diode-laser illumination. It was found that the absorption at 10 kW laser power and 17 mm/s welding speed was 89% high. Compared X-ray transmission observation images of the keyhole with the focusing feature of the fibre laser beam and the centre part of the incident beam with a bell-shaped profile were delivered directly to the tip of a keyhole. Moreover, the increase in the welding speed from 17 to 250mm/s reduced the absorption from 89 to 65%. The high-speed observation pictures indicated that the incident fibre laser beam was partially exposed out of the keyhole inlet at higher welding speed, which led to the decrease in the laser absorption. Consequently, it was confirmed that the tightly focused high-power fibre laser welding was high-efficiency process at the maximum of about 90% in laser absorption at low welding speeds, owing to the irradiation of almost all the incident laser beam into the keyhole inlet. It was also assessed that the energy loss due to vapourization was smaller than 1%.
机译:紧密聚焦的高功率光纤激光束可以产生比酒杯形状的传统激光焊缝更窄和更深的熔透焊缝,有望改善激光吸收。这项研究的目的是评估在各种条件下的激光吸收率,例如2-10 kW的激光功率或17-250 mm / s的焊接速度,用于304型奥氏体不锈钢与钢的盘焊焊接中。水量热法测量光斑直径为200μm的激光束。此外,通过使用X射线透射现场观察系统和带有二极管激光照明的高速摄像机,揭示了激光吸收与聚焦激光束的小孔形成位置之间的关系。发现在10kW激光功率和17mm / s焊接速度下的吸收为89%高。将具有光纤激光束聚焦特征的钥匙孔的X射线透射观察图像与具有钟形轮廓的入射光束的中心部分进行比较,然后直接将其传输到钥匙孔的尖端。此外,焊接速度从17mm / s增加到250mm / s,吸收率从89%降低到65%。高速观察图表明,入射光纤激光束以较高的焊接速度部分地从钥匙孔入口露出,这导致激光吸收率降低。因此,可以肯定的是,由于几乎所有入射激光束都照射到了锁孔进口中,因此紧密聚焦的高功率光纤激光焊接是一种高效过程,在低焊接速度下最大吸收率约为90%。 。还评估了由于汽化导致的能量损失小于1%。

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