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不排水剪切条件下天然沉积黏土结构性演化规律
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作者 诸葛爱军 朱楠 朱耀庭 《中国港湾建设》 2023年第5期72-77,共6页
针对不排水剪切过程中天然沉积黏土的结构特性,对原状土与重塑土进行不排水三轴试验,结合多种结构性定量分析方法和原状土宏微观分析,揭示土体在不排水剪切过程中的结构性演化规律及机制,主要结论为:结构性提高了原状土的抗剪强度,并使... 针对不排水剪切过程中天然沉积黏土的结构特性,对原状土与重塑土进行不排水三轴试验,结合多种结构性定量分析方法和原状土宏微观分析,揭示土体在不排水剪切过程中的结构性演化规律及机制,主要结论为:结构性提高了原状土的抗剪强度,并使土体表现出应变软化特性。剪切前的固结阶段会削弱原状土的结构性。围压越大土体初始结构破损越严重,结构性影响越小。不排水剪切过程中土体结构屈服破坏,结构性对强度的影响快速下降,表现出一定的脆性性质。天然沉积黏土结构性提供的额外强度主要由胶结连接和土体骨架贡献。在土体结构屈服破坏后胶结连接和土体骨架破坏,并形成新的结构形式,改变了土体的力学性状。 展开更多
关键词 天然沉积黏土 不排水三轴试验 土的结构 结构屈服破坏 微观结构
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Realization of the global yield mechanism of RC frame structures by redesigning the columns using column tree method 被引量:2
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作者 BAI JiuLin OU JinPing 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2015年第10期1627-1637,共11页
Global failure mechanism, i.e., the strong-column weak-beam mechanism, can provide higher total energy dissipation capacity with less ductility demand on components than other failure modes, and results in a more unif... Global failure mechanism, i.e., the strong-column weak-beam mechanism, can provide higher total energy dissipation capacity with less ductility demand on components than other failure modes, and results in a more uniform story drift distribution and higher resistance to earthquake loads at the system level. However, the current code-based elastic design method cannot guarantee the global failure mechanism of frame structures under severe earthquakes. In this paper, a simple, but practical design procedure is proposed to ensure the global failure mechanism of reinforced concrete(RC) frame structures by redesigning the columns using the column tree method(CTM). CTM considers the yield limit state of all beams and column bases. The code-based design is firstly carried out to determine the section information of all beams and base columns. Then, the internal force demands applied on the column tree can be derived. Lastly, the column moments, shear forces and axial forces are determined according to the free-body diagram of CTM to finish the column redesign. Two RC frame structures with 6 and 12 stories are illustrated to verify the design procedure. The analytical results demonstrate the proposed approach can realize the global failure mechanism. 展开更多
关键词 global failure mechanism column tree method (CTM) reinforced concrete frame structures failure mode plastic hinges
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