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Intensity increasing up to 4 MW/cm~2 with BALB'svia wavelengths coupling

机译:BALB'SVIA波长耦合增加了强度高达4 MW / cm〜2

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An increase in the performance of micro-optic beam shaping resulted in diode laser modules with more than 400W out of 200 μm fibre based on Broad Area Laser Bars (BALB). The brightness of a 400 W laser module opened the door for new applications in material processing such as temper marking of stainless steel and metal sheet cutting. Further improvements of the light sources and the beam shaping for BALB's have increased the efficiency of the laser modules.Therefore we present an output power of 1200 W out of a 200 μm fibre (0.22 NA). This is achieved by further sophistication of the coupling technique and four wavelength coupling. The beam parameter product is still 22 mm~*mrad with a power density of 3800 kW/cm~2 if focussed to a 200 μm spot. Furthermore, each of the four wavelength modules are separately exchangeable and checkable.The availability of a top-hat profile out of the fibre proves itself to be advantageous compared to the traditional Gaussian beam profiles of fibre, solid-state and gas lasers. This leads to excellent laser cutting results with extremely small cutting kerfs down to 200 μm and very plane cutting edges. Process speeds rise up to more than 10 m/min i.e. for thin sheet stainless steel or titanium. In the near future, 600 W out of 200 gm based on BALB's with a beam compressor is possible. With wavelength coupling, power levels with up to 2 kW out of 200 gm fibre will be reached. This will result in a power density of more than 6 MW/cm~2.
机译:微光束成形性能的增加导致二极管激光模块,基于宽面积激光棒(BALB)超过200μm光纤超过400W。 400 W激光模块的亮度打开了用于材料处理中的新应用的门,例如不锈钢和金属板切割的调气标记。光源的进一步改进和BALB的光束整形具有提高了激光模块的效率。因此我们介绍了200μm光纤中的1200W的输出功率(0.22NA)。这是通过进一步复杂的耦合技术和四个波长耦合来实现的。光束参数产品仍然是22 mm〜* Mrad,如果聚焦到200μm的位置,则功率密度为3800 kW / cm〜2。此外,四个波长模块中的每一个可单独地更换和可检测。与纤维,固态和气体激光器的传统高斯梁轮廓相比,顶部帽子轮廓的可用性被证明是有利的。这导致优异的激光切割结果,将切削速度极小的切削速度降至200μm,平面非常平面。工艺速度上升至超过10米/分钟的即薄板不锈钢或钛。在不久的将来,可以基于BALB的200克与带梁压缩机的600瓦。通过波长耦合,将达到200克纤维中最多2千瓦的功率水平。这将导致功率密度超过6mW / cm〜2。

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