...
首页> 外文期刊>Composites >Effect of alternating load on the residual strength of environmentally aged adhesively bonded CFRP-aluminum alloy joints
【24h】

Effect of alternating load on the residual strength of environmentally aged adhesively bonded CFRP-aluminum alloy joints

机译:交变载荷对环境时效粘结CFRP-铝合金接头残余强度的影响

获取原文
获取原文并翻译 | 示例
           

摘要

Due to their good mechanical performance and lightweight advantages, adhesively bonded CFRP-aluminum alloy joints have seen increasingly widespread use in the automotive industry. However, the mechanical properties of adhesive joints may degrade when exposed to a hygrothermal environment and to alternating loads. In this study, the influence of alternating load on the residual strength of hygrothermally aged joints was investigated. CFRP-aluminum alloy joints bonded with epoxy adhesive were aged in constant and cyclic hygrothermal (Con-H/Cyc-H) environments, after which the fatigue life and residual strength of the joints were measured. A differential scanning calorimetry (DSC) analysis of Araldite (R) 2015 and CFRP was performed to evaluate the effect of hygrothermal aging. The failure modes were also investigated to explain the failure mechanism. The results show that the adhesive, CFRP and joints all degenerate after hygrothermal aging. For the materials, the decrease in the glass transition temperature (T-g) is more significant under Con-H environmental conditions, while the static failure strength and fatigue performance of the joint after Cyc-H aging are the lowest. As the number of cycles of alternating load increases, the damage in the adhesive system accumulates continuously, resulting in the strength of the aged and imaged joints declining, first slowly and then quickly. The decrease in strength is more apparent at higher load. After 15 days of hygrothermal exposure, nearly complete cohesive failure is more likely to be observed relative to CFRP fiber tear for initial joints, and the interfacial failure tends to occur at the boundary of the CFRP-adhesive interface under the influence of alternating load conditions. Finally, environmental and fatigue degradation factors were defined based on the test data and incorporated into the numerical simulation to predict the residual strength of CFRP-Al alloy bonding joints exposed to alternating load.
机译:由于其良好的机械性能和轻巧的优势,胶粘的CFRP-铝合金接头在汽车工业中的使用越来越广泛。但是,粘合接头的机械性能在暴露于湿热环境和交变载荷下可能会降低。在这项研究中,研究了交变载荷对湿热老化接头残余强度的影响。在恒定和循环湿热(Con-H / Cyc-H)环境中老化用环氧树脂胶粘剂粘结的CFRP-铝合金接头,然后测量接头的疲劳寿命和残余强度。进行了Araldite(R)2015和CFRP的差示扫描量热(DSC)分析,以评估湿热老化的影响。还研究了失效模式以解释失效机理。结果表明,湿热老化后,胶粘剂,CFRP和接缝均退化。对于这些材料,在Con-H环境条件下,玻璃化转变温度(T-g)的降低更为明显,而Cyc-H老化后接头的静态破坏强度和疲劳性能最低。随着交替载荷循环次数的增加,胶粘剂系统中的损伤不断累积,导致老化的接头和成像接头的强度先缓慢然后快速下降。强度的降低在较高的负载下更加明显。湿热暴露15天后,相对于初始接头的CFRP纤维撕裂,更有可能观察到几乎完全的内聚破坏,并且在交变载荷条件的影响下,界面破坏倾向于发生在CFRP-胶粘界面的边界。最后,根据测试数据定义了环境和疲劳退化因素,并将其纳入数值模拟中,以预测承受交变载荷的CFRP-铝合金键合接头的残余强度。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号