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A Modified Triaxial Cell for Stress-Path Testing of Weak Rock (Hard Soils)

机译:一种用于弱岩(硬土)应力路径测试的改进三轴单元

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摘要

A simple conversion of a standard triaxial apparatus for stress path testing is presented and illustrated. The conversion is effected by incorporating a balanced ram arrangement into the top plate of a conventional triaxial cell, which, together with some additional modifications to the sample top cap and ram connection details, provides a cost-effective stress path testing cell. This modified triaxial cell, combined with a suitable external loading frame, allows the axial and radial stresses to be independently controlled. Consequently, any desired stress path can be applied to a specimen mounted in the modified cell. The functionality of the modified cell is demonstrated through the results of long-term stress-path tests performed as part of a creep study of intact medium porosity chalk. In this study, the modified cells were used with cantilever type loading frames, and subjected to continuous loading for periods in excess of 400 days. The performance of the modified cells was very satisfactory, and demonstrates that such an arrangement can provide a simple and a cost-effective system for conducting laboratory stress-path tests.
机译:介绍并说明了用于应力路径测试的标准三轴设备的简单转换。转换是通过将平衡的压头装置并入常规三轴样品池的顶板中进行的,再加上对样品顶盖和压头连接细节的一些其他修改,可提供一种经济高效的应力路径测试池。这种改进的三轴单元与合适的外部加载框架相结合,可以独立控制轴向和径向应力。因此,可以将任何所需的应力路径应用于安装在修改后的单元中的样本。通过长期应力路径测试的结果证明了改性电池的功能,长期应力路径测试是对完整中等孔隙度白垩进行蠕变研究的一部分。在这项研究中,修饰的细胞与悬臂式加载框架一起使用,并连续加载超过400天。修饰的电池的性能非常令人满意,并证明了这种布置可以为进行实验室应力路径测试提供简单且经济高效的系统。

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