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The Taguchi approach to the evaluation of the influence of different testing conditions on the mechanical properties of rock

机译:Taguchi方法评估不同测试条件对岩石力学性能的影响

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Laboratory testing is often used to derive the mechanical properties of rock. Testing conditions heavily influence the results of such laboratory experiments in which factors, including the water content, diameter of samples, slenderness of sample and strain (or loading) rates are of great importance. This paper evaluates the influences of four major test conditions: water content, strain rate, sample diameter and sample slenderness, on the peak uniaxial compressive strength (UCS) and modulus of elasticity (MoE) of sandstone. Following the Taguchi approach, an experimental study was conducted on cylindrical sandstone specimens, and the results were interpreted using signal-to-noise ratio (S/N) and analysis of variance (ANOVA). The results reveal that water content is the most influential test condition for peak UCS and the influence of sample diameter, slenderness and strain rate decreases in the cited order. MoE is greatly affected by sample slenderness, whereas the other three test conditions show an approximately similar and smaller influence. These characteristics were further verified by the ANOVA results. These behaviours are consistent with the results reported in the literature. Finally, the Taguchi approach, which is a very useful and versatile technique, which has not been effectively applied in rock mechanics and rock engineering, was successfully used to evaluate the influences of different test conditions on the peak UCS and MoE of laboratory rock samples.
机译:实验室测试通常用于推导岩石的机械性能。测试条件严重影响了此类实验室实验的结果,在这些实验中,水含量,样品直径,样品细长度和应变(或加载)速率等因素非常重要。本文评估了四个主要测试条件:含水量,应变率,样品直径和样品细长度对砂岩峰值单轴抗压强度(UCS)和弹性模量(MoE)的影响。遵循Taguchi方法,对圆柱形砂岩标本进行了实验研究,并使用信噪比(S / N)和方差分析(ANOVA)解释了结果。结果表明,水分含量是影响UCS峰值的最有力的测试条件,并且样品直径,细长度和应变率的影响按引用顺序降低。 MoE受到样品细长度的极大影响,而其他三个测试条件显示出近似相似且较小的影响。这些特征已通过方差分析结果进一步验证。这些行为与文献报道的结果一致。最后,Taguchi方法是一种非常有用且用途广泛的技术,尚未在岩石力学和岩石工程中得到有效应用,已成功用于评估不同测试条件对实验室岩石样品的UCS峰值和MoE的影响。

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