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Uniaxial compression and tension tests of anthracite and loading rate dependence of peak strength

机译:无烟煤的单轴压缩和拉伸试验以及峰值强度的加载速率依赖性

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The mechanical characteristics of coal under uniaxial compressive stress and uniaxial tensile stress are key factors in investigations of the stability of galleries and coal faces, and are vital considerations for the efficient design of coalmines, disaster prevention, and environmental preservation. These mechanical characteristics have long been a topic of research, but remain insufficiently understood. In this study we performed uniaxial compression tests and uniaxial tension tests on coal, with particular attention to two concerns. The first was to measure the loading rate dependence of the peak strength of coal. Coal shows high sample-to-sample scatter in strength; test methods that are successful in comparatively homogeneous rock types cannot be used for coal. We therefore used an alternative test method that was recently developed by the authors. Anthracite samples were subjected to alternating slow and fast strain rates. Measured variations in stress during this process were used to estimate the loading rate dependence of peak strength. The second objective was to obtain complete stress-strain curves for coal under uniaxial tensile stress. It is difficult to hold samples secure during a tensile test: consequently, such curves have yet to be obtained. This study presents a successful application of the authors' method to the analysis of coal samples, yielding a complete stress-strain curve under tensile stress. The two methods presented here hold promise for application not only to anthracite but also to a wide variety of coals. It is possible to derive the values of the constants used in constitutive equations from the obtained experimental results. Once these equations are determined, they can be incoiporated into finite-element software to investigate various time-dependent behaviors of coal and aid in the efficient design of coalmines and the prevention of subsidence and mine disasters.
机译:煤在单轴压应力和单轴拉应力下的力学特性是研究巷道和煤壁稳定性的关键因素,也是有效设计煤矿,防灾和环境保护的重要考虑因素。这些机械特性长期以来一直是研究的主题,但仍缺乏足够的了解。在这项研究中,我们对煤进行了单轴压缩试验和单轴拉伸试验,尤其要注意两个方面。首先是测量煤的峰值强度的加载速率依赖性。煤在样品之间的强度散布很大;在相对均质岩石类型中成功的测试方法不能用于煤炭。因此,我们使用了作者最近开发的替代测试方法。无烟煤样品经受缓慢和快速的交替应变速率。在此过程中测得的应力变化用于估计峰值强度的加载速率依赖性。第二个目标是获得单轴拉伸应力下煤的完整应力-应变曲线。在拉伸试验中很难固定样品:因此,尚未获得这种曲线。这项研究提出了作者的方法在煤样品分析中的成功应用,在拉伸应力下产生了完整的应力-应变曲线。这里介绍的两种方法不仅有望应用于无烟煤,而且还可以应用于多种煤。从获得的实验结果中可以得出在本构方程中使用的常数的值。一旦确定了这些方程,就可以将它们纳入有限元软件中,以研究煤炭随时间变化的各种行为,并有助于高效设计煤矿以及预防塌陷和矿难。

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