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Hydrothermal ageing on self-sensing bonded joints with novel carbon nanomaterial reinforced adhesive films

机译:具有新型碳纳米材料增强粘膜膜的自感应接头上的水热老化

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摘要

The effects of hydrothermal ageing on adhesive joints with surface treated aluminium substrates and a novel graphitic nanoparticle reinforced adhesive film have been explored. The adhesive doped with carbon nanotubes (CNTs) shows the highest diffusion coefficient whereas the adhesive film doped with graphene nanoplatelets (GNPs) presents the lowest one. This is explained by the combined effect of both barrier properties of graphitic nanoparticles, which is more prevalent in case of GNPs because of their 2D nature, and the amphiphilic behaviour of the surfactant used during the manufacture of the nano-reinforced adhesive film, which is more significant in case of CNTs because of their higher correlation nanoparticle to surfactant. Glass transition temperature shows a similar trend in every case, with a decrease with ageing time due to plasticization effect of hydrogen bonds. However, the lowest degradation takes place in CNT samples due to a reduction of the free volume induced by a higher porosity, so the plasticization effect is not as prevalent as in GNP or neat adhesive specimens, confirmed by DMTA analysis. Single lap shear (SLS) tests were also conducted using aluminium substrates. The results reveal a higher degradation on mechanical properties in GNP and neat adhesive joints, as expected and a stiffening effect from 15 days to 1 month because of a secondary crosslinking at water saturation. Structural health monitoring (SHM) capabilities were also analysed, indicating a good correspondence between interface properties and electrical measurements, confirming their high potential in SHM applications.
机译:探讨了水热老化对具有表面处理铝基衬底的粘合接头和新型石墨纳米粒子增强粘合剂膜的影响。掺杂有碳纳米管(CNT)的粘合剂显示出最高的扩散系数,而掺杂有石墨烯纳米片(GNPS)的粘合剂膜呈现最低的粘合剂。这是通过石墨纳米颗粒的两个屏障性质的综合作用来解释,这在GNPS的情况下更普遍,因为它们的2D性质,以及在制造纳米增强粘合剂膜的制造过程中使用的表面活性剂的两亲性能,即在CNT的情况下更为显着,因为它们具有较高的纳米粒子至表面活性剂。玻璃化转变温度显示出各种情况的相似趋势,随着氢键的塑性效应而随老化时间而降低。然而,由于通过较高孔隙率诱导的自由体积的减少,因此,在CNT样品中发生最低的降解,因此通过DMTA分析证实,塑化效果不像GNP或整齐的粘合剂样本那样普遍存在。还使用铝基材进行单圈剪切(SLS)测试。结果揭示了GNP和整齐粘合剂的机械性能较高的降解,如预期的那样,由于水饱和度的二次交联,从15天至1个月的加强效果。还分析了结构健康监测(SHM)能力,表明界面性能与电测量之间的良好对应关系,确认其SHM应用中的高潜力。

著录项

  • 来源
    《Polymer Degradation and Stability》 |2020年第7期|109170.1-109170.8|共8页
  • 作者单位

    Materials Science and Engineering Area Escuela Superior de Ciencias Experimental y Tecnologia Universidad Reyjuan Carlos Calle Tulipan S 28933 Mdstoles Madrid Spain;

    Materials Science and Engineering Area Escuela Superior de Ciencias Experimental y Tecnologia Universidad Reyjuan Carlos Calle Tulipan S 28933 Mdstoles Madrid Spain;

    Materials Science and Engineering Area Escuela Superior de Ciencias Experimental y Tecnologia Universidad Reyjuan Carlos Calle Tulipan S 28933 Mdstoles Madrid Spain;

    Materials Science and Engineering Area Escuela Superior de Ciencias Experimental y Tecnologia Universidad Reyjuan Carlos Calle Tulipan S 28933 Mdstoles Madrid Spain;

    Materials Science and Engineering Area Escuela Superior de Ciencias Experimental y Tecnologia Universidad Reyjuan Carlos Calle Tulipan S 28933 Mdstoles Madrid Spain;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Carbon nanotubes; Graphene nanoplatelets; Hydrothermal ageing; Water uptake; Structural health monitoring; Mechanical properties;

    机译:碳纳米管;石墨烯纳米片;水热老化;浇水;结构健康监测;机械性能;

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