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Prediction of creep behaviour from load relaxation behaviour of polymer geogrids

机译:从聚合物土工格栅的载荷松弛行为预测蠕变行为

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摘要

Evaluation of creep behaviour of polymer geosynthetic reinforcement is important for predicting the long-term performance of geosynthetic-reinforced soil (GRS) structures and determining the creep reduction factor of geosynthetic reinforcement for the design lifetime of a GRS structure. The inherent link between the creep behaviour and the stress relaxation behaviour was confirmed by performing a comprehensive series of sustained loading (SL) tests and stress relaxation (SR) tests and numerical simulations of SL and SR tests on several geogrid types. In the framework of the non-linear three-component (NTC) model, the creep strain in SL is entirely irreversible, while the tensile load decrement in SR is associated with the developed positive irreversible strain with zero total strain rate. Measured systematic relationships between the elapsed times necessary to reach the same irreversible strain rate in SL and SR tests and those between the irreversible strain increments necessary to reach the same irreversible strain rate in SL and SR tests are presented and simulated by the NTC model. It is shown that, based on these relationships, the time history of creep strain can be predicted from given results of SR tests performed for a much shorter period. This method is validated by successful simulations of experimental results.
机译:评估聚合物土工合成材料增强材料的蠕变行为对于预测土工合成材料加筋的土壤(GRS)结构的长期性能以及确定土工合成材料增强材料的蠕变减小因子对于GRS结构的设计寿命至关重要。通过对一系列土工格栅进行一系列全面的持续载荷(SL)测试和应力松弛(SR)测试以及SL和SR测试的数值模拟,证实了蠕变行为与应力松弛行为之间的内在联系。在非线性三分量(NTC)模型的框架中,SL中的蠕变应变是完全不可逆的,而SR中的拉伸载荷减小与总应变率为零的正不可逆应变的发展相关。由NTC模型给出并模拟了在SL和SR测试中达到相同不可逆应变率所需的经过时间与在SL和SR测试中达到相同不可逆应变率所需的不可逆应变增量之间的系统关系。结果表明,基于这些关系,可以从给定的SR测试结果中预测蠕变应变的时间历史,而SR测试的时间要短得多。通过成功模拟实验结果验证了该方法。

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