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首页> 外文期刊>The Baltic journal of road and bridge engineering >EXPERIMENTAL INVESTIGATION ON STIFFNESS AND STRENGTH OF SINGLE-LAP Z-PINNED JOINTS IN A LAMINATED CFRP STRESS-RIBBON STRIP
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EXPERIMENTAL INVESTIGATION ON STIFFNESS AND STRENGTH OF SINGLE-LAP Z-PINNED JOINTS IN A LAMINATED CFRP STRESS-RIBBON STRIP

机译:叠层CFRP应力-碳带的单圈Z型销节点刚度和强度的试验研究

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摘要

Carbon fiber-reinforced polymer (carbon-polymer) is an advanced lightweight composite material with high strength and excellent resistance to corrosion and fatigue. Over the past decades, application of fiber-reinforced polymers has been spread from the aerospace to other branches of industry such as automobile and civil engineering. Unidirectional carbon-polymers have a high potential for replacing steel in tensile members. Recently, the first carbon polymer stress-ribbon bridge has been constructed in Germany. The non-laminated strip-loop carbon-polymer thin strips were used as the load bearing components in this bridge. In comparison with the laminated components, the applied cables are characterized by a more uniform strain distribution though reduced structural integrity. Alternative jointing technologies of carbon-polymer laminates are considered in this paper with an intention to increase the structural integrity and reliability of the production. Tensile behavior of the single-lap joints was investigated experimentally. Three types of the joints were considered. Adhesive joint was set as the reference. The overlap region of the mechanically fastened joints was produced using 9, 25, or 36 steel needles (z-pins) of 1 mm diameter. The proposed hybrid joints were additionally connected with adhesive increasing the load-bearing capacity of the reference joint up to 230%. Concerning the brittle fracture of the adhesive counterparts, the extended progressive failure process within the hybrid joints is responsible for the improvement.
机译:碳纤维增强聚合物(carbon-polymer)是一种先进的轻质复合材料,具有高强度,出色的耐腐蚀性和耐疲劳性。在过去的几十年中,纤维增强聚合物的应用已从航空航天扩展到其他工业领域,例如汽车和土木工程。单向碳聚合物具有替代抗拉构件中钢的巨大潜力。最近,德国建造了第一座碳聚合物应力带桥。未层压的条带环碳聚合物薄带被用作该桥的承重组件。与层压组件相比,所施加的电缆的特点是应变分布更均匀,尽管结构完整性有所降低。本文考虑了碳聚合物层压板的替代连接技术,旨在提高产品的结构完整性和可靠性。实验研究了单膝关节的拉伸行为。考虑了三种类型的关节。以胶粘接头为参考。机械固定的接头的重叠区域是使用9毫米,25毫米或36毫米直径1毫米的钢针(z针)制成的。拟议中的混合接头还通过胶粘剂连接,从而使参考接头的承重能力提高了230%。关于粘合剂对应物的脆性断裂,混合接头内扩展的渐进破坏过程是改善的原因。

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