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DESIGN AND CHARACTERIZATION OF A 1 MICRON HIGH POWER CUTTING HEAD WITH MINIMAL THERMAL FOCUS SHIFT

机译:1微米高功率切割头的设计与表征,具有最小的热聚焦换档

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The performance of high power laser cutting systems is often degraded by thermal lensing of the cutting head optics. Thermal lensing occurs when a small fraction of the beam is absorbed by the lens during operation. The absorbed power increases the temperature of the lens, which raises its index of refraction in positive dn/dT materials. The increased index of refraction causes the beam to focus early, shifting the focus back towards the cutting head. With three or more lenses in most 1 μm laser cutting heads, thermal lensing effects can quickly accumulate, resulting in focus shifts of several millimeters or more in multi-kW systems [1]. Mirrors, alternatively, have the opposite effect on focus shift [2]. A mirror surface becomes more convex as its surface temperature rises from laser power absorption. Consequently this causes the laser beam to diverge and shift the focus away from the cutting head. Mirrors used with lenses in this way can help compensate for thermal lensing effects in high power laser systems. The goal of this paper is to characterize thermal focus shift mechanisms for different lenses and mirrors. A high power cutting head will be designed using a combination of mirrors and lenses to minimize focus shift. A breadboard version of the cutting head will be tested.
机译:高功率激光切割系统的性能通常通过切割头光学器件的热透镜来降低。当在操作期间透镜吸收小部分时,发生热透镜。吸收功率增加了透镜的温度,其在正DN / DT材料中提高了其折射率。增加的折射率导致光束早期聚焦,将焦点移回切割头。在大多数1μm激光切割头中有三个或更多个镜头,热镜头效果可以快速积聚,导致多kW系统中的几毫米或更高的聚焦偏移[1]。镜子,或者,对焦点移位有相反的影响[2]。由于其表面温度从激光功率吸收升高,镜面变得更加凸起。因此,这导致激光束发散并将远离切割头的焦点移位。以这种方式与透镜一起使用的镜子可以帮助补偿高功率激光系统中的热镜头效果。本文的目的是为不同透镜和镜子的热聚焦换档机制表征。使用镜子和镜头的组合设计大功率切割头,以最大限度地减少焦点偏移。将测试切割头的面包板版本。

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