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A probabilistic approach for identification of compressive strength of fly ash bricks

机译:一种确定粉煤灰砖抗压强度的概率方法

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In the present industrial scenario, the production of fly ash being a waste from thermal power plants is increasing at an alarmingrnrate. Fly ash not only creates a major problem at its disposal but also causes other environmental/health-related issues.rnTo combat this waste is to find its application in the construction sector. In the past, fly ash is recognized as a promisingrnreplacement of clay in brick industry. The aim of the present work is to determine the characteristic compressive strength inrna probabilistic approach for the Fal-G (fly ash–lime–gypsum) bricks constitutes the consumption of two waste products (flyrnash and sludge lime) in brick manufacturing. For casting of Fal-G bricks, a semiautomatic, hydraulic operated brick manufacturingrnmachine is fabricated and the compressive strength of the compacted bricks is observed. However, the compressivernstrength of the resulted bricks observed to be quite satisfied with the minimum value recommended as per IS 12894-1990.rnThe study is further extended towards the fitting of randomly generated compressive strength values of Fal-G bricks to fourrndifferent probability distribution functions and adopting Kolmogorov–Smirnov (KS) test to detect the best-fitted probabilityrndistribution of the present data. From the descriptive statistics of KS test results, it is inferred that the most common distribution,rni.e. normal distribution, fits well to the data with the highest p value of 0.898. Normality test such as P–P and Q–Qrnplots is used to further confirm that the present data follow the normal distribution. Actual and expected z-scores are plottedrnto get all the data points on y = x line that follows the normal distribution. Determining the frequency factor of the normalrndistribution, the compressive strength is calculated at each probability level. At 95% probability level, the characteristicrncompressive strength of Fal-G bricks is obtained 4.8 N/mm2. Further, a curve fitting between a probability of exceedancernand compressive strength shows logarithmic relationship which holds between the two variables with R2 = 0.932.
机译:在当前的工业场景中,来自火力发电厂的粉煤灰的产量正以惊人的速度增长。粉煤灰不仅造成了主要问题,而且还引起了其他与环境/健康相关的问题。要解决这种浪费,必须在建筑行业中找到应用。过去,粉煤灰被公认为是砖工业中粘土的有前途的替代品。本工作的目的是确定Fal-G(粉煤灰-石灰-石膏)砖的特征抗压强度概率方法构成砖制造中两种废品(粉煤灰和污泥石灰)的消耗。为了铸造Fal-G砖,制造了一种半自动的液压砖制造机器,并观察了压实砖的抗压强度。但是,观察到的所得砖的抗压强度完全符合IS 12894-1990推荐的最小值。研究进一步扩展为将随机生成的Fal-G砖的抗压强度值拟合为四个不同的概率分布函数和采用Kolmogorov–Smirnov(KS)检验来检测当前数据的最佳拟合概率分布。从KS测试结果的描述统计中可以推断出最常见的分布rni.e.正态分布,非常适合最高p值为0.898的数据。使用正态检验(例如P–P和Q–Qrnplots)可以进一步确认当前数据遵循正态分布。绘制实际和预期的z分数,以得到遵循正态分布的y = x线上的所有数据点。确定正态分布的频率因子,在每个概率水平上计算抗压强度。在95%的概率水平下,Fal-G砖的特征抗压强度为4.8 N / mm2。此外,超过概率和抗压强度之间的曲线拟合显示了对数关系,该关系在R2 = 0.932的两个变量之间成立。

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