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Fracture Toughness of CFRP Adhesive Bonded Joints at Cryogenic Temperature

机译:低温下CFRP胶粘接头的断裂韧性

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摘要

The present paper presents the fracture toughness of carbon fiber reinforced plastic (CFRP) bonded joints at cryogenic temperature. In order to investigate mode I and mode II fracture toughnesses, double cantilever beam (DCB) and three-point end notched flexure (ENF) tests are conducted on CFRP/adhesive/CFRP, CFRP/adhesive/aluminum plate bonded specimens at room temperature (296 K), at low temperature (223 K) and at cryogenic temperature (77 K). Effect of thermal deformation on the fracture toughness is considered since large difference in coefficients of thermal expansion (CTE) between CFRP and aluminum alloy generates considerable thermal stress at cryogenic temperature. In both DCB and ENF tests, crack extends in the adhesive film (cohesive failure) at room temperature, whereas it propagates along the interface between CFRP and adhesive film (interfacial failure) at cryogenic temperature. The fracture toughness becomes lower when interfacial failure occurs. DCB and ENF tests results reveal that the transition of the failure mode from the cohesive failure to the interfacial failure significantly degrades the fracture toughness of bonded joint, and that the transition occurs more easily at lower temperature.
机译:本文介绍了碳纤维增强塑料(CFRP)粘结接头在低温下的断裂韧性。为了研究I型和II型断裂韧性,在室温下对CFRP /胶粘剂/ CFRP,CFRP /胶粘剂/铝板粘结试样进行了双悬臂梁(DCB)和三点末端缺口挠曲(ENF)测试( 296 K),低温(223 K)和低温(77 K)。考虑到热变形对断裂韧性的影响,因为CFRP和铝合金之间的热膨胀系数(CTE)的较大差异会在低温下产生相当大的热应力。在DCB和ENF测试中,裂纹在室温下会在粘合膜中扩展(内聚破坏),而在低温下会沿着CFRP与粘合膜之间的界面扩展(界面破坏)。发生界面破坏时,断裂韧性降低。 DCB和ENF测试结果表明,失效模式从内聚破坏到界面破坏的转变显着降低了粘结接头的断裂韧性,并且在较低温度下更容易发生转变。

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