Calibration of Four Nonlinear Failure Envelopes from Triaxial Test Data and Influence of Nonlinearity on Geotechnical Computations

A. J. Anyaegbunam, F. Okafor
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Abstract

It is now recognized that many geomaterials have nonlinear failure envelopes. This non-linearity is most marked at lower stress levels, the failure envelope being of quasi-parabolic shape. It is not easy to calibrate these nonlinear failure envelopes from triaxial test data. Currently only the power-type failure envelope has been studied with an established formal procedure for its determination from triaxial test data. In this paper, a simplified procedure is evolved for the development of four different types of nonlinear envelopes. These are of invaluable assistance in the evaluation of true factors of safety in problems of slope stability and correct computation of lateral earth pressure and bearing capacity. The use of the Mohr-Coulomb failure envelopes leads to an overestimation of the factors of safety and other geotechnical quantities.
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基于三轴试验数据的四种非线性破坏包络的校正及非线性对岩土计算的影响
现在已经认识到,许多岩土材料具有非线性失效包络。这种非线性在较低的应力水平下最为明显,破坏包络线为准抛物线形状。从三轴试验数据中校准这些非线性破坏包络线并不容易。目前,只有功率型失效包络线被研究,并根据三轴试验数据建立了正式的确定程序。本文对四种不同类型的非线性包络线的展开过程进行了简化。这些对于评估边坡稳定性问题中的真实安全因素以及正确计算侧向土压力和承载力具有宝贵的帮助。莫尔-库仑破坏包络线的使用导致对安全系数和其他岩土工程量的高估。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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