Faudree Michael C, Uchida Helmut Takahiro, Kimura Hideki, Kaneko Satoru, Salvia Michelle, Nishi Yoshitake
Faculty of Liberal Arts and Science, Tokyo City University, Yokohama-shi 224-8551, Japan.
Graduate School of Engineering, Tokai University, Hiratsuka-shi 259-1292, Japan.
Materials (Basel). 2022 Apr 29;15(9):3220. doi: 10.3390/ma15093220.
A literature review of up-to-date methods to strengthen Ti/carbon-fiber-reinforced polymer (CFRP) hybrid joints is given. However, there are little or no studies on Ti/CFRP joints by carbon fiber plug insert, which takes advantage of the extremely high surface adhesion area of ~6 μm CFs. Therefore, we cover the current status and review our previously published results developing hybrid joints by a CF plug insert with spot-welded Ti half-lengths to enhance the safety levels of aircraft fan blades. A thermoset Ti/CF/epoxy joint exhibited an ultimate tensile strength (UTS) of 283 MPa when calculated according to the rule of mixtures (RM) for the CF cross-section portion. With concern for the environment, thermoplastic polymers (TPs) allowed recyclability. However, a drawback is easy CF pull-out from difficult-to-adhere TPs due to insufficient contact sites. Therefore, research on a novel method of homogeneous low voltage electron beam irradiation (HLEBI) to activate a bare CF half-length prior to dipping in a TP resin was reviewed and showed that the UTS by the RM of Ti/CF/acrylonitrile butadiene styrene (ABS) and Ti/CF/polycarbonate (PC) joints increased 154% (from 55 to 140 MPa) and 829% (from 30 to 195 MPa), respectively, over the untreated sample. The optimum 0.30 MGy HLEBI prevented CF pull-out by apparently growing crystallites into the TP around the CF circumference, raising the UTS amount closer to that of epoxy.
本文对强化钛/碳纤维增强聚合物(CFRP)混合接头的最新方法进行了文献综述。然而,利用直径约6μm碳纤维极高的表面粘附面积通过碳纤维插塞插入法研究钛/CFRP接头的研究很少或几乎没有。因此,我们阐述了当前的研究现状,并回顾了我们之前发表的关于通过带有点焊钛半段的碳纤维插塞插入法开发混合接头以提高飞机风扇叶片安全水平的研究结果。对于碳纤维横截面部分,根据混合法则(RM)计算,热固性钛/CF/环氧树脂接头的极限拉伸强度(UTS)为283MPa。出于对环境的考虑,热塑性聚合物(TPs)具有可回收性。然而,一个缺点是由于接触位点不足,碳纤维容易从难以粘附的热塑性聚合物中拔出。因此,本文综述了一种新型的均匀低压电子束辐照(HLEBI)方法的研究,该方法在将裸露的碳纤维半段浸入热塑性树脂之前对其进行活化,结果表明,与未处理的样品相比,钛/CF/丙烯腈丁二烯苯乙烯(ABS)和钛/CF/聚碳酸酯(PC)接头通过RM计算的UTS分别提高了154%(从55MPa提高到140MPa)和829%(从30MPa提高到195MPa)。最佳的0.30MGy HLEBI通过使微晶明显生长到碳纤维周围的热塑性聚合物中,防止了碳纤维拔出,使UTS值更接近环氧树脂的UTS值。