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Damage monitoring of adhesively bonded composite-metal hybrid joints using carbon nanotube-based sensing layer

机译:使用碳纳米管的传感层损伤粘合复合金属杂交接头的损伤监测

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Improving mechanical properties and decreasing costs have significantly increased the use of fiber composites in automotive, aerospace, and civil engineering applications. Structural composites are bonded to traditional metallic materials in a variety of applications, and mechanical fasteners often cannot be used due to the low bearing strength of composites. With the increasing use of adhesives in load-bearing structures, novel techniques are required for monitoring the structural integrity of adhesive joints. Previously, carbon nanotubes (CNTs) have been added to adhesives and resins to create in-situ sensors, but the increased viscosity and potential for galvanic corrosion remains a challenge. In this research, a piezoresistive carbon nanotube-based sensing layer is embedded in a composite/steel adhesive joint for damage sensing. The use of a thin sensing layer with low-fiber volume fraction enables the use of existing adhesives without causing any major changes in the physical properties of the adhesives or the curing cycle and reduces the chances of galvanic corrosion. Different approaches of using an adhesive layer and a nonconductive fabric are investigated for insulation of the sensing layer. The nonconductive fabric approach for insulating the specimen yields better mechanical properties as the there are no weak interfaces in the adhesive bondline. Additionally, it is more convenient for scaling up for field applications as the adhesive is cured in one stage. The sensing layer can not only be used to detect incipient damage in the joint, but also identify different modes of failure.
机译:提高机械性能和降低成本已显着增加了汽车,航空航天和土木工程应用中的纤维复合材料的使用。结构复合材料与传统的金属材料粘合到各种应用中,并且由于复合材料的低轴承强度,通常不能使用机械紧固件。随着粘合剂在承载结构中越来越多地使用,需要进行新技术来监测粘合剂接头的结构完整性。以前,已加入碳纳米管(CNT)在粘合剂和树脂中加入以产生原位传感器,但是增加的粘度和电流腐蚀的潜力仍然是一个挑战。在该研究中,压阻碳纳米管的传感层嵌入复合/钢粘合剂接头中,用于损坏感测。使用具有低纤维体积馏分的薄感测层可以使用现有的粘合剂,而不会导致粘合剂的物理性质或固化循环的任何主要变化,并降低了电抗腐蚀的机会。研究了使用粘合剂层和非导电织物的不同方法以防止感测层。用于绝缘样品的非导电织物方法产生更好的机械性能,因为粘合粘合线中没有弱界面。另外,在一个阶段固化粘合剂时,更方便地缩放现场应用。传感层不仅可以用于检测关节中的初始损坏,还可以识别不同的失败模式。

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