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Effects of temperature rise on load-strain-time behaviour of geogrids and simulations

机译:温升对土工格栅荷载-应变-时间行为的影响及模拟

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摘要

To evaluate the effects of ambient temperature history on the load-strain-time behaviour, a series of tensile tests were performed on three geogrid types. The applied loading and temperature (T) schemes included: (i) continuous monotonic loading (ML) at different constant values of T; (ii) sustained (creep) loading (SL) during otherwise ML at different constant values of T and (iii) SL during which T was incrementally increased during otherwise ML. With an increase in T, the rupture tensile strength (V-max) and the elastic stiffness decreased while the creep strain increased. For the same ultimate T, the creep strain by scheme (iii) was significantly larger than the one by scheme (ii). The residual rupture tensile strength (V-res) observed in ML that followed SL was nearly the same as V-max in continuous ML at the same T, showing that creep is not a degrading phenomenon reducing V-res. A non-linear three-component (NTC) model was modified to incorporate the temperature effects. By modelling the trend that V-max and stiffness decrease with an increase of Tas a negative ageing effect, the modified NTC model successfully simulated all the different trends of load-strain-time behaviour, including creep strains, observed along various load and temperature histories in the experiments.
机译:为了评估环境温度历史记录对负荷-应变时间行为的影响,对三种土工格栅类型进行了一系列拉伸测试。施加的载荷和温度(T)方案包括:(i)在T的不同恒定值下的连续单调载荷(ML); (ii)在其他ML期间,在T的不同常数值下承受的持续(蠕变)载荷(SL);以及(iii)在其他ML期间,T逐渐增加的SL。随着T的增加,断裂拉伸强度(V-max)和弹性刚度降低,而蠕变应变增加。对于相同的极限T,方案(iii)的蠕变应变显着大于方案(ii)的蠕变应变。在SL上跟随SL的ML中观察到的残余断裂拉伸强度(V-res)与在相同T下连续ML中的V-max几乎相同,表明蠕变不是降低V-res的退化现象。修改了非线性三分量(NTC)模型以合并温度效应。通过模拟V-max和刚度随Tas的增加而减小的趋势,从而产生负的老化效应,改进的NTC模型成功地模拟了沿各种载荷和温度历史观察到的载荷-应变-时间-行为的所有不同趋势,包括蠕变应变。在实验中。

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