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循环荷载作用下砂土-结构物仿生界面剪切特性研究
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作者 曹苏南 李春红 +1 位作者 陈远兵 费康 《岩土力学》 北大核心 2025年第3期821-832,共12页
海上抗拔基础等工程可以利用蛇皮仿生界面正反摩擦异性提升承载性能,此类界面实际可能承受波浪、地震等循环荷载。为了解循环荷载作用下土-结构物仿生界面的正反摩擦异性特征,基于界面循环剪切仪,开展系列砂土-结构物仿生界面循环直剪试... 海上抗拔基础等工程可以利用蛇皮仿生界面正反摩擦异性提升承载性能,此类界面实际可能承受波浪、地震等循环荷载。为了解循环荷载作用下土-结构物仿生界面的正反摩擦异性特征,基于界面循环剪切仪,开展系列砂土-结构物仿生界面循环直剪试验,研究循环初始位置、法向应力、仿生界面表观形态、砂土相对密实度对循环剪切各向异性的影响规律,初步探讨循环后的抗剪强度演化特性。研究结果表明,循环初始位置和法向应力增大均导致界面颅向→尾向循环路径下剪切各向异性增大,尾向→颅向路径下剪切各向异性减小;界面鳞片长度与高度的比值对中等密实下的仿生界面剪切各向异性影响不明显;但是砂土相对密实度增大,此比值对颅向→尾向循环剪切路径下的剪切各向异性影响显著增大,对尾向→颅向循环路径下剪切各向异性影响略微增加。恒定应力条件下,经过两种循环路径后的仿生界面单向剪切峰值强度均大于未经历循环的单向剪切峰值强度,界面峰值摩擦角也明显增加。研究成果将为相关工程的优化应用提供重要参考。 展开更多
关键词 砂土 仿生界面 循环荷载 剪切各向异性 抗剪强度
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材料特性数据对成形仿真精度的影响(下)——实验方法的完善 被引量:3
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作者 韩非 连昌伟 胡卫龙 《塑性工程学报》 CAS CSCD 北大核心 2020年第12期9-17,共9页
仿真模型的预测能力与精度很大程度上取决于材料模型中所使用的实验数据的力学特性。不同的实验数据描述了材料不同的强化与塑性变形特性,也由此决定了仿真模型不同的预测特性。由于冲压件几何形状不同,产生的成形缺陷与成形极限判据也... 仿真模型的预测能力与精度很大程度上取决于材料模型中所使用的实验数据的力学特性。不同的实验数据描述了材料不同的强化与塑性变形特性,也由此决定了仿真模型不同的预测特性。由于冲压件几何形状不同,产生的成形缺陷与成形极限判据也会有所不同,因此,需要针对成形件的受力特点选择最适合的仿真模型实验数据。但是,目前的实验方法不够完善,不能准确获得所需要的实验数据,或者所得的实验数据并不适用于仿真模型,也就是说,实验数据的匮乏制约了仿真模型的预测精度。根据冲压件的应力分布特点,讨论了可应用于仿真模型并能综合反映材料塑性变形特性的实验方法,在此基础上,进一步探讨了常用的简单加载实验方法的现状以及亟待解决与完善的问题,包括如何更好地获得完整的实验数据,进而通过仿真模型能够充分反映出材料在实验应力状态下与塑性变形相关的力学特性。 展开更多
关键词 本构模型 仿真 单拉实验 双拉实验 剪切实验 剪切各向异性
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Cracking process of rock mass models under uniaxial compression 被引量:9
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作者 陈新 廖志红 彭曦 《Journal of Central South University》 SCIE EI CAS 2013年第6期1661-1678,共18页
Anisotropic strength and deformability of the rock mass with non-persistent joints are governed by cracking process of the rock bridges. The dependence of cracking process of jointed rock masses on the two important g... Anisotropic strength and deformability of the rock mass with non-persistent joints are governed by cracking process of the rock bridges. The dependence of cracking process of jointed rock masses on the two important geometrical parameters, joint orientation and joint persistence, was studied systematically by carrying out a series of uniaxial compression tests on gypsum specimens with regularly arranged multiple parallel pre-existing joints. According to crack position, mechanism and temporal sequence, seven types of crack initiations and sixteen types of crack coalescences, were identified. It was observed that both tensile cracks and shear cracks can emanate from the pre-existing joints as well as the matrix. Vertical joints were included and coplanar tensile cracks initiation and coalescence were observed accordingly. For specimen with joint inclination angle ,8=75~, it was found that collinear joints can be linked not only by coplanar shear cracks but also by mixed tensile-shear cracks, and that a pair of them can form a small rotation block. Seven failure modes, including axial cleavage, crushing, crushing and rotation of new blocks, stepped failure, stepped failure and rotation of new blocks, shear failure along a single plane and shear failure along multiple planes, were observed. These modes shift gradually in accordance with the combined variation of joint orientation and joint persistence. It is concluded that cracking process and failure modes are more strongly affected by joint orientation than by joint persistence, especially when joint inclination angle is larger than 45~. Finally, variations of macroscopic mechanical behaviors with the two geometrical parameters, such as patterns of the complete axial stress-axial strain curves, peak strength and elastic modulus, are summarized and their mechanisms are successfully explained according to their different cracking process. 展开更多
关键词 rock mass joint orientation joint persistence uniaxial compression fracture process
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