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Influence of metal surface preparation on the flexural strength and impact damage behaviour of thermoplastic FRP reinforced metal laminate made by press forming

机译:金属表面处理对压制成型热塑性FRP增强金属层压板的弯曲强度和冲击破坏行为的影响

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In this paper the relationship between surface energy and flexural strength of metal laminate made by reinforcing glass fibre reinforced polymer on steel surfaces was investigated. Sand blasting was performed on 22MnB5 steel surface. This steel was stacked together with layers of unidirectional glass/polyamide-6 prepreg, followed by pressing in a hot press. Influenced parameters are pressure, temperature and time. 3D profilometer analysis was used to investigate the roughness profile on the surface of the steel generated by the sand blasting. The surface energy of the steel surface was calculated from a set of contact angles measured by three different liquids. To identify the optimal surface treatment, the variation of surface energy, flexural strength and roughness of the steel surface was determined as function of the surface treatment. Surface roughness (R-a of 1.08 mu m), results indicate that increasing surface roughness leads to improvement in flexural modulus. The increase further leads to decrease in flexural modulus. In addition, the influence of surface energy and flexural strength on the impact damage behaviour was investigated too. The results showed that the sample with highest flexural modulus had the lowest impact-induced damage area.
机译:本文研究了通过在钢表面增强玻璃纤维增​​强聚合物制成的金属层压板的表面能与抗弯强度之间的关系。在22MnB5钢表面进行喷砂处理。将该钢与单向玻璃/聚酰胺6预浸料层堆叠在一起,然后在热压机中压制。影响的参数是压力,温度和时间。使用3D轮廓仪分析来研究喷砂产生的钢表面的粗糙度轮廓。根据三种不同液体测得的一组接触角计算出钢表面的表面能。为了确定最佳的表面处理,确定了表面能,抗弯强度和钢表面粗糙度随表面处理的变化。表面粗糙度(R-a为1.08微米),结果表明,增加表面粗糙度会导致弯曲模量的提高。该增加进一步导致挠曲模量降低。此外,还研究了表面能和抗弯强度对冲击破坏行为的影响。结果表明,弯曲模量最高的样品具有最小的冲击诱导损伤面积。

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