Naqvi A A, Garwan M A, Maslehuddin M, Nagadi M M, Al-Amoudi O S B, Raashid M
Department of Physics, King Fahd University of Petroleum and Minerals, Dhahran 31261, Saudi Arabia.
Appl Radiat Isot. 2009 Sep;67(9):1707-10. doi: 10.1016/j.apradiso.2009.03.094. Epub 2009 Mar 28.
Preventive measures against corrosion of reinforcing steel require making the concrete dense by adding pozzolanic materials, such as fly ash, silica fume, Superpozz, blast furnace slag, etc. to Portland cement. In order to obtain the desired strength and durability of concrete, it is desirable to monitor the concentration of the pozzolan in the blended cement concrete. Addition of pozzolan to blended cement changes the overall concentration of calcium and silicon in the blended cement concrete. The resulting variation in calcium and silicon gamma-ray yield ratio from blended cement concrete has found to have an inverse correlation with concentration of fly ash, silica fume, Superpozz, blast furnace slag in the blended cement concrete. For experimental verification of the correlation, intensities of calcium and silicon prompt gamma-ray due to capture of thermal neutrons in blended cement concrete samples containing 5-80% (by weight of cement) silica fume, fly ash and Superpozz were measured. The gamma-ray intensity ratio was measured from 6.42 MeV gamma-rays from calcium and 4.94 MeV gamma-ray from silicon. The experimentally measured values of calcium to silicon gamma-ray yield ratio in the fly ash, silica fume and Superpozz cement concrete specimens agree very well with the results of the Monte Carlo simulations.
防止钢筋腐蚀的预防措施需要通过向波特兰水泥中添加火山灰质材料(如粉煤灰、硅灰、超级火山灰、高炉矿渣等)来使混凝土致密。为了获得所需的混凝土强度和耐久性,监测混合水泥混凝土中火山灰质材料的浓度是很有必要的。向混合水泥中添加火山灰质材料会改变混合水泥混凝土中钙和硅的总体浓度。已发现混合水泥混凝土中钙和硅的伽马射线产额比的变化与混合水泥混凝土中粉煤灰、硅灰、超级火山灰、高炉矿渣的浓度呈负相关。为了对这种相关性进行实验验证,测量了含5 - 80%(按水泥重量计)硅灰、粉煤灰和超级火山灰的混合水泥混凝土样品中因热中子俘获产生的钙和硅瞬发伽马射线的强度。伽马射线强度比是通过测量来自钙的6.42兆电子伏特伽马射线和来自硅的4.94兆电子伏特伽马射线来确定的。粉煤灰、硅灰和超级火山灰水泥混凝土试件中钙与硅伽马射线产额比的实验测量值与蒙特卡罗模拟结果非常吻合。