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Development and application of methods to characterize micro semi-finished products and micro components

机译:表征微型半成品和微型零件的方法的开发和应用

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In the production of semi-finished products for the production of microcomponents and the components themselves, the characterization of their physical properties is of particular importance. Due to the often oligocrystalline character of these semi-finished products and components, it is necessary to use a suitable testing technique for static and dynamic investigations, as the mechanical properties are not transferable from the macroscopic point of view. In addition, the micro semi-finished products and components often show inhomogeneities induced by the manufacturing process. On the one hand, these are directly reflected in the microstructure and on the other hand they have an effect on quantities such as hardness or residual stresses, which play a decisive role in the application. Mechanical testing, conventional metallography, scanning electron microscopy (SEM), electron backscatter diffraction (EBSD), ultra-microhardness testing and X-ray residual stress analysis were used as measuring and analysis techniques suitable for the sub-millimeter range. In the following, the possibilities and limitations of two these methods are illustrated using the example of mechanical testing and EBSD. In this paper several examples for possible characterization techniques are given.
机译:在用于生产微组件的半成品及其组件本身中,表征其物理性能尤为重要。由于这些半成品和组件通常具有寡晶特性,因此必须使用合适的测试技术进行静态和动态研究,因为从宏观的角度来看,机械性能是不可转移的。另外,微半成品和部件经常显示出由制造过程引起的不均匀性。一方面,它们直接反映在微观结构中,另一方面,它们对诸如硬度或残余应力之类的量有影响,它们在应用中起决定性作用。机械测试,常规金相学,扫描电子显微镜(SEM),电子背散射衍射(EBSD),超显微硬度测试和X射线残余应力分析被用作适合于亚毫米范围的测量和分析技术。下面,以机械测试和EBSD为例说明这两种方法的可能性和局限性。在本文中,给出了一些可能的表征技术的示例。

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