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Static and fatigue tensile properties of cross-ply laminates containing vascules for self-healing applications

机译:包含血管的交叉层压板的静态和疲劳拉伸性能,可实现自愈

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摘要

The effect of including hollow channels (vascules) within cross-ply laminates on static tensile properties and fatigue performance is investigated. No change in mechanical properties or damage formation is observed when a single vascule is included in the 0/90 interface, representing 0.5% of the cross sectional area within the specimen. During tensile loading, matrix cracks develop in the 90° layers leading to a reduction of stiffness and strength (defined as the loss of linearity) and a healing agent is injected through the vascules in order to heal them and mitigate the caused degradation. Two different healing agents, a commercial low viscosity epoxy resin (RT151, Resintech) and a toughened epoxy blend (bespoke, in-house formulation) have been used to successfully recover stiffness under static loading conditions. The RT151 system recovered 75% of the initial failure strength, whereas the toughened epoxy blend achieved a recovery of 67%. Under fatigue conditions, post healing, a rapid decay of stiffness was observed as the healed damage re-opened within the first 2500 cycles. This was caused by the high fatigue loading intensity, which was near the static failure strength of the healing resin. However, the potential for ameliorating (via self-healing or autonomous repair) more diffuse transverse matrix damage via a vascular network has been shown.
机译:研究了在交叉层压材料中包含空心通道(血管)对静态拉伸性能和疲劳性能的影响。当在0/90界面中包含单个血管时,未观察到机械性能或损伤形成的变化,这表示样品内横截面积的0.5%。在拉伸载荷期间,基体裂纹会在90°层中发展,从而导致刚度和强度降低(定义为线性度降低),并且通过血管注射治疗剂以治愈血管并减轻引起的降解。两种不同的愈合剂,一种市售的低粘度环氧树脂(RT151,Resintech)和一种增韧的环氧共混物(定制的内部配方)已被用来成功恢复静态载荷条件下的刚度。 RT151系统恢复了初始破坏强度的75%,而增韧的环氧共混物恢复了67%。在疲劳条件下,愈合后,随着愈合的损伤在前2500个循环中重新打开,观察到刚度迅速衰减。这是由于疲劳负荷强度高,接近于修复树脂的静态破坏强度。但是,已显示出通过血管网络改善(通过自愈或自主修复)更多弥漫性横向基质损伤的潜力。

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