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Self-healing composite sandwich structures

机译:自愈复合夹芯结构

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摘要

Impact damage can degrade the flexural strength of composite sandwich structures by over 50% due to a loss of skin support inducing localized skin buckling. Various self-healing methodologies have been applied to laminated composites but the concept of delivering a healing agent from a remote reservoir to a region of damage via a vascular network offers the potential for a robust and replenishable system housed in the core of a sandwich structure. In this pilot study a vascular sandwich structure that appears as a conventional sandwich composite has been developed and tested. The network has been shown to have negligible influence on the innate static mechanical properties of the host panel. Infiltration of the vascular network with a pre-mixed epoxy resin system after impact damage demonstrated a complete recovery of flexural failure mode and load. Infiltration with the same resin system from separate unmixed networks, where self-healing is initiated autonomously via mixing within the damage, has also been shown to fully recover undamaged failure load when both networks are successfully breached.
机译:由于失去了皮肤支撑物,导致局部的皮肤屈曲,冲击损伤会使复合材料三明治结构的抗弯强度降低50%以上。各种自我修复方法已应用于层压复合材料,但是通过血管网络将治疗剂从远端储库传递到受损区域的概念,为在三明治结构核心中容纳坚固而可补充的系统提供了潜力。在该初步研究中,已开发并测试了一种以传统三明治复合材料形式出现的血管三明治结构。该网络对主机板的固有静态机械性能的影响可忽略不计。冲击损伤后,用预混合的环氧树脂体系对血管网络的浸润证明了弯曲破坏模式和负荷的完全恢复。从单独的未混合网络渗透到相同的树脂系统后,通过在损伤内混合自动启动自我修复,也显示出当两个网络都成功突破时,可以完全恢复未损坏的破坏负荷。

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