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Effect of Bedding Angle and Confining Pressure on the Brittleness of Geomaterials: A Case Study on Slate

机译:床上用品角度和限制对荒漠化脆性的影响 - 以石板为例

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Brittleness is one of the most significant properties of geomaterials. However, very few studies have been conducted on factors influencing the rock brittleness indices. In this paper, conventional triaxial compression tests were carried out to investigate the effects of confining pressure and bedding angle on the brittleness of slate. From the perspective of energy, brittleness is an index that could reflect the release rate of energy that accumulated in the slate under the effect of external energy after reaching peak strength. Therefore, a new brittleness index of slate based on postpeak energy release is proposed herein. The applicability of this index is illustrated by comparing with other five existing brittleness indices. The following results can be obtained. (1) The confining pressure exerts a great influence on the brittleness of slate. With the increase of confining pressure, the brittleness of slate decreases significantly. The dispersion of brittleness values of slate declines with increasing confining pressure. (2) There is a parabolic relationship between slate brittleness and bedding angle. As bedding angle increases, the brittleness is intensified and reaches its maximum at a bedding angle of about 45° and then decreases gradually. (3) In contrast to the previous indices, the brittleness index proposed in this paper can describe the whole process of the postpeak stage through an index of the energy release, which makes this measure more suitable for rock that has the characteristics of step-drop or bench-drop at the postpeak stage.
机译:脆性是岩石材料最重要的属性之一。然而,对影响岩石脆性指数的因素进行了很少的研究。本文进行了传统的三轴压缩试验,以研究限制压力和床上用品角度对板岩脆性的影响。从能量的角度来看,脆性是一个指标,可以反映在达到峰值强度后外部能量的在外部能量的效果下积聚在板岩中的能量释放速率。因此,本文提出了基于邮局能量释放的石板的新脆性指数。通过与其他五个现有的脆性指数进行比较来说明该指标的适用性。可以获得以下结果。 (1)限制压力对石板的脆性产生了很大影响。随着狭窄压力的增加,板岩的脆性显着降低。随着限制压力的增加,板岩的脆性值的分散下降。 (2)板岩脆性和床上用品角之间存在抛物线关系。随着嵌入角度增加,脆性会加剧并在约45°的床上用品角度下达到其最大值,然后逐渐降低。 (3)与先前的指数相比,本文提出的脆性指数可以通过能量释放指数描述邮局阶段的整个过程,这使得这一措施更适合具有阶梯下降特性的岩石或在Postpak阶段的台阶。

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