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Development of Tailored Hybrid Laminates: Manufacturing of Basalt Fibre Reinforced Thermoplastic Orthoses with Aluminum Thin Sheets

机译:经定定杂交层压板的开发:用铝薄板制造玄武岩纤维增强热塑性矫形器

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Nowadays, orthoses are made from fibre reinforced thermoset based composites with a high manual labor input. These thermoset based orthoses are no longer formable, which brings forth a significant disadvantage. Hence, hybrid laminates consisting of fibre reinforced thermoplastic films and thin metal sheets can replace successive thermoset based systems due to their advantages of higher formability and the suitability for mass production.In the present work, various surface treatment methods like pickling or mechanical blasting have been used on thin metal sheets to increase the adhesive and shear strength of the produced thermoplastic based hybrid laminates. The modified metal sheets were further combined with basalt fibre reinforced interlayers to manufacture overlap samples, which were used to determine the tensile shear strength. In addition, the roughness of the modified metal sheets has also been investigated. Moreover, the consolidation parameters such as pressure, holding time and temperature have been varied for the production of hybrid laminates using hot-pressing process and then the microstructural images have been recorded. Finally, the mechanical properties of the produced hybrid laminates have been tested by means of a three-point bending test and the interlaminar shear strength has been analyzed.
机译:如今,透明件由具有高手动劳动力输入的纤维增强热固性复合材料制成。这些热固性基于偏差不再可形成,从而提出了显着的缺点。因此,由纤维增强热塑性薄膜和薄金属板组成的混合层压材料可以代替连续的热固性的系统,因为它们的成形性更高和批量生产适合性的优点。在目前的工作中,各种表面处理方法如酸洗或机械喷砂等用于薄金属板,以提高所生产的热塑性塑料杂交层压物的粘合剂和剪切强度。改性金属片与玄武岩纤维增强夹层一起制造重叠样品,用于确定拉伸剪切强度。此外,还研究了改性金属板的粗糙度。此外,使用热压过程的混合层压板的生产已经改变了诸如压力,保持时间和温度的固结参数,然后记录了微结构图像。最后,通过三点弯曲试验测试了所生产的混合层压材料的机械性能,并分析了层间剪切强度。

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