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首页> 外文期刊>Journal of Applied Polymer Science >Synergistic effect of graphene and carbon nanotube on lap shear strength and electrical conductivity of epoxy adhesives
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Synergistic effect of graphene and carbon nanotube on lap shear strength and electrical conductivity of epoxy adhesives

机译:石墨烯和碳纳米管对环氧粘合剂膝剪力强度和电导率的协同作用

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In this study, synergy between graphene platelets (GnPs) and carbon nanotubes (CNTs) in improving lap shear strength and electrical conductivity of epoxy composite adhesives is demonstrated. Adding two-dimensional GnPs with one-dimensional CNTs into epoxy matrix helped to form global three-dimensional network of both GnPs and CNTs, which provide large contact surface area between the fillers and the matrix. This has been evidenced by comparing the mechanical properties and electrical conductivity of epoxy/GnP, epoxy/CNT, and epoxy/GnP-CNT composites. Scanning electron microscopic images of lap shear fracture surfaces of the composite adhesives showed that GnP-CNT hybrid nanofillers demonstrated better interaction to the epoxy matrix than individual GnP and CNT. The lap shear strength of epoxy/GnP-CNT composite adhesive was 89% higher than that of the neat epoxy adhesive, compared with only 44 and 30% increase in the case of epoxy/GnP and epoxy/CNT composite adhesives, respectively. Electrical percolation threshold of epoxy/GnP-CNT composite adhesive is recorded at 0.41 vol %, which is lower than epoxy/GnP composite adhesive (0.58 vol %) and epoxy/CNT composite adhesive (0.53 vol %), respectively. (c) 2019 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2019, 136, 48056.
机译:在该研究中,证实了石墨烯血小板(GNP)和碳纳米管(CNT)之间的协同作用,提高了膝盖剪切强度和环氧复合粘合剂的电导率。将具有一维CNT的二维GNP添加到环氧基质中有助于形成GNPS和CNT的全局三维网络,其在填充物和基质之间提供大的接触表面区域。通过比较环氧/ GNP,环氧/ CNT和环氧/ GNP-CNT复合材料的机械性能和导电性,已经证明了这一点。扫描电子显微镜的复合粘合剂的剪切断裂表面表明,GNP-CNT杂交纳米填料比单个GNP和CNT表现出与环氧基质的更好的相互作用。环氧/ GNP-CNT复合粘合剂的轧辊剪切强度比整齐的环氧粘合剂的剪切强度高89%,而环氧/ GNP和环氧/ CNT复合粘合剂的情况分别比仅为44和30%。环氧/ GNP-CNT复合粘合剂的电渗滤阈值记录在0.41体积%,分别低于环氧/ GNP复合粘合剂(0.58体积%)和环氧/ CNT复合粘合剂(0.53体积%)。 (c)2019 Wiley期刊,Inc.J.Phill。聚合物。 SCI。 2019,136,48056。

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