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REPAIR CONCEPT SUPPORTED BY LASER REMOVAL AND INDUCTIVE HEATING

机译:通过激光去除和电感加热支撑的修理概念

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With the increasing number of composite applications in aircrafts, it is essential to supply repair concepts with respect to the material properties. In addition to the carbon fiber reinforced composites with a thermoset matrix system, other matrix systems like high-performance thermoplastics have been continuously gaining market share. In comparison to other matrix systems, high-performance thermoplastics have advantages like their ability to reshape and to weld after the first molding process. These advantages can be used to develop new repair concepts. The developing repair concept concentrates mainly on two steps between the detection of the damage and the post repair inspection. One of the steps is the scarfing out with the purpose to remove the damaged area. To simplify this step, the inclusion of a laser support to the repairing process was investigated. As a non-contact, thermal treatment, a UV Laser offers a ply-by-ply removal and can generate a precise stepped-lap repair geometry. With the help of these new possibilities, a load path conforming repair geometry can be developed. Another important step is the application of the repair patch by heating up the interface zone between the patch and the undamaged area. The necessary heat can be generated with the help of inductive heated metallic sheet. The results of the investigations regarding the laser support and the inductive heating will be presented in this paper.
机译:随着航空器中越来越多的复合应用,必须为材料特性提供修复概念。除了具有热固性矩阵系统的碳纤维增强复合材料之外,其他矩阵系统,如高性能热位基塑料,市场份额持续上涨。与其他矩阵系统相比,高性能热塑性塑料具有它们的优点,类似于它们在第一模制过程之后重塑和焊接的能力。这些优势可用于开发新的维修概念。发展修复概念主要集中在检测损坏和后修复检查之间的两个步骤。其中一个步骤是令人满意的,目的是去除受损区域。为了简化该步骤,研究了将激光载体施加到修复过程中。作为非接触式,热处理,UV激光器提供普利芯的去除并且可以产生精确的阶梯式修复几何形状。在这些新的可能性的帮助下,可以开发符合修复几何体的负载路径。另一个重要步骤是通过在补丁和未损坏区域之间加热接口区域来应用修复补丁的应用。在电感加热的金属片的帮助下可以产生必要的热量。本文将提出关于激光载体和电感加热的研究的结果。

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