Tang Waiching, Cui Hongzhi, Tahmasbi Soheil
School of Architecture and Built Environment, The University of Newcastle, Callaghan NSW 2308, Australia.
Shenzhen Durability Center for Civil Engineering, Shenzhen University, Shenzhen 518060, Guangdong, China.
Materials (Basel). 2016 Jul 28;9(8):630. doi: 10.3390/ma9080630.
This paper mainly reports an experimental investigation on the residual mechanical and fracture properties of polystyrene aggregate concrete (PAC) after exposure to high temperatures up to 800 degrees Celsius. The fracture properties namely, the critical stress intensity factor ( K I C S ), the critical crack tip opening displacement () for the Two-Parameter Model, and the fracture energy () for the Fictitious Crack Model were examined using the three-point bending notched beam test, according to the RILEM recommendations. The effects of polystyrene aggregate (PA) content and temperature levels on the fracture and mechanical properties of concrete were investigated. The results showed that the mechanical properties of PAC significantly decreased with increase in temperature level and the extent of which depended on the PA content in the mixture. However, at a very high temperature of 800 °C, all samples showed 80 percent reduction in modulus of elasticity compared to room temperature, regardless of the level of PA content. Fracture properties of control concrete (C) and PAC were influenced by temperature in a similar manner. Increasing temperature from 25 °C to 500 °C caused almost 50% reduction of the fracture energy for all samples while 30% increase in fracture energy was occurred when the temperature increased from 500 °C to 800 °C. It was found that adding more PA content in the mixture lead to a more ductile behaviour of concrete.
本文主要报道了一项关于聚苯乙烯集料混凝土(PAC)在高达800摄氏度的高温下暴露后的残余力学性能和断裂性能的试验研究。根据RILEM建议,采用三点弯曲缺口梁试验研究了断裂性能,即双参数模型的临界应力强度因子(KICS)、临界裂纹尖端开口位移()和虚拟裂纹模型的断裂能()。研究了聚苯乙烯集料(PA)含量和温度水平对混凝土断裂性能和力学性能的影响。结果表明,PAC的力学性能随着温度的升高而显著降低,其降低程度取决于混合料中PA的含量。然而,在800℃的高温下,所有样品的弹性模量与室温相比均降低了80%,与PA含量水平无关。对照混凝土(C)和PAC的断裂性能受温度的影响方式相似。当温度从25℃升高到500℃时,所有样品的断裂能几乎降低了50%,而当温度从500℃升高到800℃时,断裂能增加了30%。研究发现,在混合料中添加更多的PA含量会使混凝土表现出更具延性的行为。