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首页> 外文期刊>Latin American Journal of Solids and Structures >Bonded Joints with a??Nano-Stitchesa??: Effect of Carbon Nanotubes on Load Capacity and Failure Modes
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Bonded Joints with a??Nano-Stitchesa??: Effect of Carbon Nanotubes on Load Capacity and Failure Modes

机译:具有“纳米针迹”的粘结接头:碳纳米管对载荷能力和破坏模式的影响

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Carbon nanotubes were employed as adhesive reinforcementano-stitches to aluminum bonded joints. The CNT addition to an epoxy adhesive not only lead to an increase on load capacity but it is also the most probable cause of the mixed failure mode (adhesive/cohesive). The damage evolution was described as the stiffness decrease and the failure mixed modes were related to the load capacity. Although the presence of CNT cluster were observed, in small concentrations (< 1.0 wt. %), these clusters acted as crack stoppers and lead to an increase on lap joint shear strength. The addition of 2.0 wt. % carbon nanotubes lead to an increase on load capacity of approximately 116.2 % when the results were compared against the single lap joints without carbon nanotubes.
机译:碳纳米管被用作铝结合接头的粘合剂增强剂/纳米缝线。 CNT添加到环氧粘合剂中不仅会导致负载能力增加,而且还是混合破坏模式(粘合剂/内聚力)的最可能原因。损伤演化描述为刚度降低,而失效混合模式与载荷能力有关。尽管观察到了CNT簇的存在,但是在小浓度(<1.0重量%)下,这些簇充当了裂纹止裂剂并导致搭接接头的剪切强度增加。添加2.0重量%。当将结果与没有碳纳米管的单搭接接头进行比较时,%碳纳米管导致负载能力增加约116.2%。

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