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首页> 外文期刊>Journal of geotechnical and geoenvironmental engineering >Effect of GCL Properties on Shrinkage When Subjected to Wet-Dry Cycles
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Effect of GCL Properties on Shrinkage When Subjected to Wet-Dry Cycles

机译:干湿循环下GCL性能对收缩率的影响

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摘要

The potential shrinkage of eight different geosynthetic clay liners (GCLs) subjected to wetting and drying cycles is examined. It is shown that the initial (e.g, off-the-roll) moisture content may affect the initial shrinkage but did not notably affect the final equilibrium shrinkage. For GCLs with granular bentonite and wetted to a moisture content of about 60% (or greater) in the hydration phase, the actual moisture content did not appear to affect the magnitude of the final equilibrium shrinkage. However, it did affect the rate of shrinkage. Specimens brought to about 100% moisture content in each cycle reached a constant shrinkage value much faster than those brought to about 60% in each wetting cycle. GCLs containing powdered bentonite generally shrank more than those containing granular bentonite. All of the powdered bentonite specimens continued a slow accumulation of strain with increasing cycles, even up to 75 cycles. The shrinkage of a needle-punched GCL with a thermally treated scrim-reinforced nonwoven carrier geotextile and granular bentonite was less than that for a needle-punched GCL with a simple nonwoven carrier and granular bentonite. For some products, there was considerable variability in GCL shrinkage for specimens from the same roll and tested under nominally identical conditions, whereas for other products, the variability was relatively small. The shrinkage strain required to cause the loss of a 150-300 mm panel overlap is shown to be able to be mobilized in about five wet-dry cycles in the experiments reported.
机译:检查了八个不同的土工合成粘土衬里(GCL)经受湿润和干燥循环的潜在收缩率。结果表明,初始(例如,车外)水分含量可能会影响初始收缩率,但不会显着影响最终平衡收缩率。对于具有粒状膨润土并在水化阶段润湿至水分含量约为60%(或更高)的GCL,实际水分含量似乎并未影响最终平衡收缩的幅度。但是,它确实影响了收缩率。在每个循环中达到约100%水分含量的样品达到恒定的收缩值要比在每个润湿周期中达到约60%水分含量的样品快得多。含有粉状膨润土的GCL通常比含粒状膨润土的GCL收缩得更多。所有粉末状膨润土样品都随着循环的增加(甚至达到75个循环)而缓慢地累积应变。经热处理的稀松布增强非织造布土工布和膨润土的针刺GCL的收缩率小于具有简单非织造布和粒状膨润土的针刺GCL的收缩率。对于某些产品,同一卷样品并在名义上相同的条件下进行测试的GCL收缩率存在较大差异,而对于其他产品,变异性相对较小。在所报道的实验中,导致损失150-300 mm面板重叠所需的收缩应变能够在大约五个干湿循环中动员。

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