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Test on Mechanical Properties of Cemented Soils Using Secondary Development Data Acquisition Test System

机译:使用二次开发数据采集测试系统测试水泥土的力学性能

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A secondary development of computer aided data acquisition test system is performed in order to improve the disadvantages of original system. In this way, the qualified influences of cement content and curing time on yield strength and stiffness of soil can be automatic acquisition in consolidated undrained triaxial tests. The data collected from the system show that the deviatoric stress of soil increases with increasing axial strain initially followed by a relatively smooth decline after yield point. Yield strength increases with increasing cement content and curing time at the same strain. A well-defined linear relationship between yield strength and cement content are observed and also the relationship between yield strength and curing time. Finally, a linear function is defined to express the linear relationship between yield strength and those two factors and corresponding linear coefficients are obtained through a multiple regression analysis of test data. Stiffness of specimens shows an initial sharp degradation followed by smooth attenuation with increasing axial strain. The addition of cement and long curing time can effectively improve the stiffness of specimens especially at low strain areas.
机译:为了改善原始系统的缺点,进行了计算机辅助数据采集测试系统的二次开发。这样,可以在固结不排水三轴试验中自动获取水泥含量和固化时间对土壤屈服强度和刚度的合格影响。从系统中收集的数据表明,土壤的偏应力最初随轴向应变的增加而增加,随后在屈服点之后相对平稳地下降。在相同应变下,屈服强度随水泥含量和固化时间的增加而增加。观察到屈服强度与水泥含量之间的明确定义的线性关系,以及屈服强度与固化时间之间的关系。最后,定义一个线性函数来表达屈服强度与这两个因素之间的线性关系,并通过对测试数据进行多元回归分析获得相应的线性系数。样品的刚度显示出最初的急剧下降,然后随着轴向应变的增加而平滑衰减。水泥的添加和较长的固化时间可以有效地提高试样的刚度,特别是在低应变区域。

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