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兰武铁路白垩系泥岩工程特性初步研究
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作者 宋旭东 《科技交流》 2003年第4期17-20,共4页
主要针对兰武铁路永登地区泥岩工程特性进行初步研究;从泥岩的物质构成、物理力学指标阐述了泥岩特性,从而分析了泥岩的膨胀特性,提出了工程措施和建议。
关键词 兰武铁路 白垩系 膨胀特性 泥岩工程特性 物理力学指标
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Mechanical behavior and microstructural mechanism of improved disintegrated carbonaceous mudstone 被引量:9
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作者 ZENG Ling YU Hui-cong +1 位作者 GAO Qian-feng BIAN Han-bing 《Journal of Central South University》 SCIE EI CAS CSCD 2020年第7期1992-2002,共11页
This study aims to improve the mechanical behavior of disintegrated carbonaceous mudstone, which is used as road embankment filler in southwestern China. Triaxial tests were performed on disintegrated carbonaceous mud... This study aims to improve the mechanical behavior of disintegrated carbonaceous mudstone, which is used as road embankment filler in southwestern China. Triaxial tests were performed on disintegrated carbonaceous mudstone modified by fly ash, cement, and red clay. Then the stress-strain relationships and shear strength parameters were analyzed. The microstructure and mineral composition of the materials were identified via scanning electron microscopy and X-ray diffraction. The results show that the stress-strain relationships changed from strain-hardening to strain-softening when disintegrated carbonaceous mudstone was modified with cement. By contrast, the addition of fly ash and red clay did not change the type of stress-strain relationships. The order of these three additives is cement, red clay and fly ash according to their influences on the cohesion. Disintegrated carbonaceous mudstone without cement all showed bulging failures, and that modified with cement exhibited shear failures or bulging-shear failures. The soil particles of the improved soil were well bonded by cementitious substances, so the microstructure was denser and more stable, which highly enhanced the mechanical behavior of disintegrated carbonaceous mudstone. The findings could offer references for the use of carbonaceous mudstone in embankment engineering. 展开更多
关键词 embankment engineering carbonaceous mudstone ADDITIVE mechanical properties MICROSTRUCTURE
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