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Parallel precision alignment of multiple micro components

机译:多个微组件的平行精确对准

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摘要

Micro components are available in a variety of shapes sizing from 1 mm down to 0.01 mm. Today, their mass production is quite common using state of the art production technology. Micro spheres for example, are on the one hand available in lot sizes up to some thousands in a constant quality within micron accuracy. On the other hand they are quite commonly provided as bulk material with diameter variations of up to 10% in each lot size Brandau (Chem Ingenieur Tech 75:1741–1745, 2003). In both cases, the bulk micro components are usually arranged in incoherent batches which are packed in plastic bags or small jars for handling and shipping. The decollating of the single components for follow-up micro assembly processes is complicated by the well-known effects in micro handling such as dominating adhesion and friction forces (Petersen 2003). These effects limit the post processing of bulk micro components to manual work in order to sort and align the single micro components prior to their exposure to an automated assembly line. To enable a sophisticated and automated handling of the single micro components, automated sorting and alignment mechanisms are necessary to arrange the bulk micro components in a well defined pattern structure which is essential to realize an efficient automated micro assembly.
机译:微型组件的尺寸从1 mm到0.01 mm不等。如今,使用最先进的生产技术进行批量生产已相当普遍。例如,一方面,微球以微米精度提供恒定质量的批量,多达数千个。另一方面,它们通常以散装物料的形式提供,每批布兰道的直径变化最大为10%(Chem Ingenieur Tech 75:1741-1745,2003)。在这两种情况下,散装的微型组件通常都以不连贯的批次排列,然后包装在塑料袋或小罐子中进行装卸。后续微装配过程中单个零件的脱卷由于微操纵中众所周知的效果(如支配附着力和摩擦力)而变得很复杂(Petersen 2003)。这些效果将散装微零件的后处理限制为手动工作,以便在将单个微零件暴露于自动装配线之前对其进行分类和对齐。为了能够对单个微组件进行复杂且自动化的处理,必须采用自动分类和对齐机制,才能将大量的微组件布置在定义良好的图案结构中,这对于实现高效的自动化微组件至关重要。

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  • 来源
    《Microsystem Technologies》 |2008年第12期|1847-1853|共7页
  • 作者单位

    Fraunhofer Institute for Production Technology IPT Aachen Germany;

    Fraunhofer Institute for Production Technology IPT Aachen Germany;

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  • 原文格式 PDF
  • 正文语种 eng
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