• 钙质破碎粒状材料

    Calcareous sand is a kind of easily crushed granular materials.

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  • 最后分析了钙质砂循环活动性机理

    Finally, the mechanism of cyclic mobility is analysed.

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  • 实践证明颗粒破碎影响钙质力学性质主要因素

    It is demonstrated that the particle crushing is a main factor affecting the property of calcareous sand.

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  • 结果表明,应力方向连续旋转导致钙质孔隙压力增长

    It was showed that the continuous rotation of principal stress induced the development of pore water pressure in carbonate sand.

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  • 钙质一种海洋生物成因特殊岩土介质钙质砂地基中的桩基工程常见。

    Calcareous sand is a cause of special Marine geotechnical medium, pile foundation works are not uncommon in the calcareous sand.

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  • 根据重塑原状钙质压缩特性不同提出颗粒破碎引起原状钙质砂附加孔隙增量。

    Based on the different compression behaviors of natural and reconstituted calcareous sand, it is presented that the additional void ratio can cause particle breakage of natural calcareous sand.

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  • 根据试验目的要求,设计研制了颗粒强度测试装置,并不同粒径钙质颗粒强度进行了测试。

    The testing device of individual particle strength was designed and individual calcareous sand particles with various sizes were tested.

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  • 利用人工钙质三轴剪切试验手段,就颗粒破碎及其钙质砂变形强度特性影响进行分析研究。

    The influence of particle breakage on deformation and strength properties of calcareous sands was investigated using artificial calcareous sands and triaxial testing.

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  • 基于此,本文对钙质砂颗粒及其孔隙做了一系列试验研究,主要工作包括1、确定内孔隙试验方法

    The main work can be concluded as follows:1, Experimental method of the inner pore is found.

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  • 针对应力水平钙质颗粒破碎现象具有特殊性,分析了钙质土颗粒破碎的影响,揭示变形过程的力学机制

    Granule failure of calcareous sand is very special at low stress level. The effect of confining pressure on granule farlure is analyzed and its deformation mechanism discussed.

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  • 结果表明颗粒破碎程度与输入的塑性密切相关;颗粒破碎的发生使钙质性减小,体积收缩应变增大,峰值强度降低

    The results indicate that particle breakage depends on the sample′s plastic work received during testing, and reduces the volume expansion and peak strength of the sands.

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  • 结果表明颗粒破碎程度与输入的塑性密切相关;颗粒破碎的发生使钙质性减小,体积收缩应变增大,峰值强度降低

    The results indicate that particle breakage depends on the sample′s plastic work received during testing, and reduces the volume expansion and peak strength of the sands.

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