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首页> 外文期刊>Rock Mechanics and Rock Engineering >The Effect of Specimen Size on Strength and Other Properties in Laboratory Testing of Rock and Rock-Like Cementitious Brittle Materials
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The Effect of Specimen Size on Strength and Other Properties in Laboratory Testing of Rock and Rock-Like Cementitious Brittle Materials

机译:岩石和类似水泥的脆性材料在实验室测试中,试样尺寸对强度和其他性能的影响

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摘要

The effect of specimen size on the measured unconfined compressive strength and other mechanical properties has been studied by numerous researchers in the past, although much of this work has been based on specimens of non-standard dimensions and shapes, and over a limited size range. A review of the published literature was completed concentrating on the presentation of research pertaining to right cylindrical specimens with height:diameter ratios of 2:1. Additionally, new data has been presented considering high strength (70 MPa) cement mortar specimens of various diameters ranging from 63 to 300 mm which were tested to failure. Currently, several models exist in the published literature that seek to predict the strength–size relationship in rock or cementitious materials. Modelling the reviewed datasets, statistical analysis was used to help establish which of these models best represents the empirical evidence. The findings presented here suggest that over the range of specimen sizes explored, the MFSL (Carpinteri et al. in Mater Struct 28:311–317, 1995) model most closely predicts the strength–size relationship in rock and cementitious materials, and that a majority of the empirical evidence supports an asymptotic value in strength at large specimen diameters. Furthermore, the MFSL relationship is not only able to model monotonically decreasing strength–size relationships but is also equally applicable to monotonically increasing relationships, which although shown to be rare do for example exist in rocks with fractal distributions of hard particles.
机译:过去,尽管许多工作都是基于非标准尺寸和形状且尺寸范围有限的标本,但过去许多研究人员一直在研究标本尺寸对测得的无侧限抗压强度和其他机械性能的影响。完成了对已发表文献的综述,重点介绍了高度与直径之比为2:1的右圆柱样品的研究成果。此外,已经提出了新数据,其中考虑了各种直径从63到300 mm的高强度(70 MPa)水泥砂浆样本,这些样本经过了测试以达到破坏目的。当前,已发表的文献中存在几种模型,这些模型试图预测岩石或胶凝材料的强度-尺寸关系。对审查的数据集进行建模,使用统计分析来帮助确定这些模型中的哪一个最能代表经验证据。此处提出的发现表明,在探索的标本尺寸范围内,MFSL模型(Carpinteri等人,Mater Struct 28:311-317,1995)最能预测岩石和胶凝材料的强度-尺寸关系,并且大部分经验证据都支持大直径试样时强度的渐近值。此外,MFSL关系不仅能够模拟强度强度单调减小的关系,而且同样适用于单调增大的关系,尽管这种情况很少见,例如存在于具有硬质颗粒分形分布的岩石中。

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