首页> 外文会议>International Congress on Applications of Lasers Electro-Optics >FREEFORM BEAM SHAPING WITH MULTI-PLANE LIGHT CONVERSION FOR 1.07μM ULTRA-HIGH THROUGHPUT LASER-BASED MATERIAL MACROPROCESSING: Paper # Macro 402
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FREEFORM BEAM SHAPING WITH MULTI-PLANE LIGHT CONVERSION FOR 1.07μM ULTRA-HIGH THROUGHPUT LASER-BASED MATERIAL MACROPROCESSING: Paper # Macro 402

机译:Freeform梁整形,具有1.07μm超高通量激光的材料Macroprocessing的多平面光转换:纸#宏402

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High-power laser-based macro-processing applications are numerous among all fields of industry. A proper intensity shaping of these beams is key for the improvement of those processes. Indeed, beam shaping allows yield improvement by scrap reduction for Laser Beam Welding (LBW) and allows processing of new material leading to parts' weight reduction with Selective Laser Melting (SLM). With the CUSTODIANCUSTODIAN project, as part of H2020 European program, a methodology for tailoring the beam shape based on the desired material microstructure is being developed, which shall help to solve current hot cracking issues in LBW and SLM. The methodology includes metallurgical studies and multi-physics simulations in order to define the characteristics to be matched by a beam shape. A general description of the numerical study will be presented alongby. Thanks to Multi-Plane Light Conversion (MPLC) the tailoring of beam shape is very flexible. MPLC is an innovative technique for beam shaping based on the iterative modification of the beam transverse profile after successive reflections onto a phase plate. The theoretically lossless transformation allows obtaining complex beam shapes with high control over amplitude and phase. We describe here the beam shaping capabilities that allow the widest range of possible energy profiles for LBW and SLM applications in accordance with targeted intensity profiles. Thereby the free-from and high fidelity of the MPLC will be demonstrated. Dealing with high-power lasers demands a specific design to evacuate the heat by maintaining the performance over a long time. A specific MPLC configuration has been developed to withstand the high power needed for such processes. Continuous high-power tests have been performed on a MPLC module up to 3kW over one hour. We describe the main features of the MPLC setup and demonstrate its capability to work properly and safely at high power, with high stability even for very long processing times.
机译:基于高功率激光的宏观处理应用在所有行业领域中都有众多。这些光束的适当强度整形是改善这些过程的关键。实际上,光束整形允许通过对激光束焊接(LBW)的废料减少产生提高,并允许使用选择性激光熔化(SLM)来处理导致部分重量的重量减轻的新材料。通过监护人委员会项目,作为H2020欧洲计划的一部分,正在开发基于所需的材料微观结构来定制梁形状的方法,这有助于解决LBW和SLM中的电流热裂解问题。该方法包括冶金研究和多物理模拟,以便通过光束形状定义要匹配的特性。将举出数值研究的一般描述。由于多平面光转换(MPLC),梁形状的剪裁非常灵活。 MPLC是一种基于在连续反射到相板上的横梁横向曲线的迭代修改的光束整形的创新技术。理论无损变换允许在高控制幅度和相位上获得复杂的波束形状。我们在此描述了光束整形功能,允许根据目标强度配置文件的LBW和SLM应用的最宽范围的能量配置文件。从而将证明MPLC的自由和高保真度。处理高功率激光器要求特定设计通过长时间维持性能来疏散热量。已经开发出特定的MPLC配置以承受此类过程所需的高功率。已经在MPLC模块上执行了连续的大功率测试,在一小时内最高可达3kW。我们描述了MPLC设置的主要特点,并展示了其在高功率上正常和安全地工作的能力,即使对于非常长的处理时间,即使是非常长的稳定性。

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