Feng Bin, Fang Xiang, Wang Huai-Xi, Dong Wen, Li Yu-Chun
College of Field Engineering, PLA University of Science and Technology, Nanjing 210007, China.
The Equipment Research Institute of the Rocket Force, Beijing 10085, China.
Polymers (Basel). 2016 Oct 11;8(10):356. doi: 10.3390/polym8100356.
Al-PTFE (Al-polytetrafluoroethene) is an important kind of Reactive Material (RM), however only limited importance was placed to the effect of crystallinity of PTFE on the mechanical and reactive behavior. This paper investigated the influence of crystallinity on the compression behavior of Al-PTFE at strain rates range from 10 to 3 × 10³ s. Two kinds of samples were prepared by different sintering procedures to acquire different crystallinity. The samples' crystallinity was characterized by the density method and X-ray diffraction method. The samples were tested using an electro-hydraulic press for quasi-static loading, and split Hopkinson pressure bars (SHPBs) for high strain rates. Low crystalline samples have consistently higher strength and toughness than the high crystalline samples. The phenomenon was explained by an "elastic-plastic network" model combined with the effect of chain entanglement density. A bilinear dependence of true stress on log ε ˙ was observed, and Johnson-Cook models were fitted separately according to the different strain rate sensitivity. Finally, a close connection between fracture and initiation of Al-PTFE was confirmed in quasi-static tests, SHPB tests, and drop weight tests. It was hypothesized that the high temperature at the crack tips of PTFE is an important promoting factor of initiation.
铝-聚四氟乙烯(Al-聚四氟乙烯)是一种重要的反应性材料(RM),然而,聚四氟乙烯的结晶度对其力学和反应行为的影响仅受到有限的关注。本文研究了结晶度在10至3×10³ s⁻¹应变率范围内对铝-聚四氟乙烯压缩行为的影响。通过不同的烧结程序制备了两种样品,以获得不同的结晶度。采用密度法和X射线衍射法对样品的结晶度进行了表征。使用电动液压机进行准静态加载测试样品,并使用分离式霍普金森压杆(SHPB)进行高应变率测试。低结晶度样品的强度和韧性始终高于高结晶度样品。结合链缠结密度的影响,用“弹塑性网络”模型对这一现象进行了解释。观察到真应力与对数应变率呈双线性关系,并根据不同的应变率敏感性分别拟合了约翰逊-库克模型。最后,在准静态试验、SHPB试验和落锤试验中证实了铝-聚四氟乙烯的断裂与起爆之间存在紧密联系。据推测,聚四氟乙烯裂纹尖端的高温是起爆的一个重要促进因素。