Terrasi Giovanni Pietro, McIntyre Emma R E, Bisby Luke A, Lämmlein Tobias D, Lura Pietro
Mechanical Systems Engineering Laboratory, Empa, Swiss Federal Laboratories for Materials Science and Technology, Überlandstrasse 129, CH-8600 Dübendorf, Switzerland.
BRE Centre for Fire Safety Engineering, Institute for Infrastructure & Environment, School of Engineering, University of Edinburgh, The King's Buildings Edinburgh, EH93JL Scotland, UK.
Polymers (Basel). 2016 Dec 21;8(12):446. doi: 10.3390/polym8120446.
A novel ultra-high modulus carbon fibre reinforced polymer (CFRP) prestressing tendon made from coal tar pitch-based carbon fibres was characterized in terms of high temperature tensile strength (up to 570 °C) with a series of transient thermal and steady state temperature tensile tests. Digital image correlation was used to capture the high temperature strain development during thermal and mechanical loading. Complementary thermogravimetric (TGA) and dynamic mechanical thermal (DMTA) experiments were performed on the tendons to elucidate their high temperature thermal and mechanical behaviour. The novel CFRP tendons investigated in the present study showed an ambient temperature design tensile strength of 1400 MPa. Their failure temperature at a sustained prestress level of 50% of the design tensile strength was 409 °C, which is higher than the failure temperature of most fibre reinforced polymer rebars used in civil engineering applications at similar utilisation levels. This high-temperature tensile strength shows that there is potential to use the novel high modulus CFRP tendons in CFRP pretensioned concrete elements for building applications that fulfill the fire resistance criteria typically applied within the construction industry.
一种由煤焦油沥青基碳纤维制成的新型超高模量碳纤维增强聚合物(CFRP)预应力筋,通过一系列瞬态热和稳态温度拉伸试验,对其高温拉伸强度(高达570°C)进行了表征。采用数字图像相关技术来捕捉热加载和机械加载过程中的高温应变发展。对这些筋进行了补充热重(TGA)和动态机械热(DMTA)实验,以阐明其高温热性能和机械性能。本研究中所研究的新型CFRP筋在环境温度下的设计拉伸强度为1400MPa。在设计拉伸强度的50%的持续预应力水平下,其失效温度为409°C,这高于土木工程应用中大多数纤维增强聚合物钢筋在类似使用水平下的失效温度。这种高温拉伸强度表明,在满足建筑行业通常应用的耐火标准的建筑应用中,有可能将新型高模量CFRP筋用于CFRP先张法混凝土构件。