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Ultra-high-strength micro-mechanical interlocking by injection molding into laser-structured surfaces

机译:通过注塑到激光结构表面中的超高强度微机械互锁

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摘要

Surface structuring provides the ability to generate new strong composite materials by employing micro-mechanical interlocking (MMI). The present state-of-the-art in composite materials is often based on advanced chemical bonding along with simple roughening of the surface, while the use of a specifically designed surface topography has been given much less consideration. The adhesive-based techniques may, however, not provide bonding that exhibits sufficiently high mechanical strength as well as a high tolerance to temperature changes that is essential for many industrially relevant situations. In the present paper, recent results from the optimization of material interlocking properties by laser-based surface microstructuring are reported. The laser-based structuring provides much flexibility in the geometry of the interface, and a high strength is ensured by directly injection molding a plastic into the laser-structured surface. The dependence of the mechanical strength of the joint on the exact laser generated surface morphology is investigated. It is shown that appropriate surface structuring can increase the bonding strength by several orders of magnitude, yielding interlocking of very high mechanical stability.
机译:通过使用微机械互锁(MMI),表面结构化提供了生成新的坚固复合材料的能力。目前,复合材料的最新技术通常基于先进的化学键合以及表面的简单粗糙化,而使用专门设计的表面形貌却很少被考虑。然而,基于粘合剂的技术可能无法提供表现出足够高的机械强度以及对许多工业相关情况至关重要的对温度变化的高耐受性的粘合。在本文中,最近报道了通过基于激光的表面微结构优化材料互锁特性的结果。基于激光的结构在界面的几何形状上提供了很大的灵活性,并且通过将塑料直接注模到激光结构化的表面中来确保高强度。研究了接头机械强度对激光产生的精确表面形态的依赖性。结果表明,适当的表面结构化可以将粘结强度提高几个数量级,从而产生非常高的机械稳定性。

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