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Investigation on dynamic response of liquid-filled cylindrical shellstructures under the action of combined blast and fragments loading
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作者 Zhujie Zhao Hailiang Hou +4 位作者 Dian Li Xiaowei Wu Yongqing Li Zhenghan Chen Linzhi Wu 《Defence Technology(防务技术)》 2025年第7期334-354,共21页
This study designs four types of liquid-filled cylindrical shell structures to investigate their protection characteristics against explosive shock waves and high-speed fragments.Bare charge and charge-driven prefabri... This study designs four types of liquid-filled cylindrical shell structures to investigate their protection characteristics against explosive shock waves and high-speed fragments.Bare charge and charge-driven prefabricated fragments are employed to examine the damage under blast shock waves and combined blast and fragments loading on various liquid-filled cylindrical shell structures.The test results are compared to numerical calculations and theoretical analysis for the structure's deformation,the liquid medium's movement,and the pressure waves'propagation characteristics under different liquid-filling methods.The results showed that the filling method influences the blast protection and the struc-ture's energy absorption performance.The external filling method reduces the structural deformation,and the internal filling method increases the damage effect.The gapped internal filling method improves the structure's energy absorption efficiency.The pressure wave loading on the liquid-filled cylindrical shell structure differs depending on filling methods.Explosive shock waves and high-speed fragments show a damage enhancement effect on the liquid-filled cylindrical shell structure,depending on the thickness of the internal liquid container layer.The specific impulse on the inner surface of the cylindrical shell positively correlates to the radial deformation of the cylindrical shell structure,and the external liquid layer limits the radial structural deformation. 展开更多
关键词 Blast wave combined blast and fragments loading Filling method Liquid-filled structure Dynamic response
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Dynamic response and failure behavior of rock under static-dynamic loading 被引量:7
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作者 陈枫 马春德 徐纪成 《Journal of Central South University of Technology》 2005年第3期354-358,共5页
Dynamic response and failure behavior of rock under static-dynamic loading were studied. The effects of initial static load on the total energy dissipated during the failure process of specimen were analyzed. To simul... Dynamic response and failure behavior of rock under static-dynamic loading were studied. The effects of initial static load on the total energy dissipated during the failure process of specimen were analyzed. To simulate the engineering situation that in-situ rock experienced and obtain the dynamic loading with an intermediate strain rate, a low cycle fatigue load with the frequency from 0.5 to 5 Hz was adopted by servo-controlled Instron material testing system. The results show that the obtained strain rate increase with the increase of load frequency. The initial static load has great influence on both the energy and dynamic response of rock. Both the energy and the maximum failure load P_f decreases with the increase of initial static load. P_f under the static-dynamic loading is larger than that under only the static loading but less than that under only the dynamic loading. The load-displacement curves become nonlinear as the pre-added static load reaches the transition point which is about one third of static strength. With the increase of initial static load, Young’s modulus decreases and poisson ratio increases. It shows that rock has a lower strength and a tendency to soften under a higher initial static load. Rock may be broken more easily static-dynamic loading than under only the dynamic loading. The proposed method is useful in the investigation of constitutive relationship and failure behavior of rock under quasi-dynamic loading. 展开更多
关键词 dynamic response ROCK static-dynamic loading strain rate
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Crack propagation mechanism of compression-shear rock under static-dynamic loading and seepage water pressure 被引量:12
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作者 周志华 曹平 叶洲元 《Journal of Central South University》 SCIE EI CAS 2014年第4期1565-1570,共6页
To reveal the water inrush mechanics of underground deep rock mass subjected to dynamic disturbance such as blasting, compression-shear rock crack initiation rule and the evolution of crack tip stress intensity factor... To reveal the water inrush mechanics of underground deep rock mass subjected to dynamic disturbance such as blasting, compression-shear rock crack initiation rule and the evolution of crack tip stress intensity factor are analyzed under static-dynamic loading and seepage water pressure on the basis of theoretical deduction and experimental research. It is shown that the major influence factors of the crack tip stress intensity factor are seepage pressure, dynamic load, static stress and crack angle. The existence of seepage water pressure aggravates propagation of branch cracks. With the seepage pressure increasing, the branch crack experiences unstable extension from stable propagation. The dynamic load in the direction of maximum main stress increases type I crack tip stress intensity factor and its influence on type II crack intensity factor is related with crack angle and material property. Crack initiation angle changes with the dynamic load. The initial crack initiation angle of type I dynamic crack fracture is 70.5°. The compression-shear crack initial strength is related to seepage pressure, confining pressure, and dynamic load. Experimental results verify that the initial crack strength increases with the confining pressure increasing, and decreases with the seepage pressure increasing. 展开更多
关键词 static-dynamic loading seepage pressure stress intensity factor initiation of crack
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Buckling analysis of shear deformable composite conical shells reinforced by CNTs subjected to combined loading on the two-parameter elastic foundation 被引量:3
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作者 A.H.Sofiyev N.Kuruoglu 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2022年第2期205-218,共14页
The main objective of this study is to investigate the buckling analysis of CCSs reinforced by CNTs subjected to combined loading of hydrostatic pressure and axial compression resting on the twoparameter elastic found... The main objective of this study is to investigate the buckling analysis of CCSs reinforced by CNTs subjected to combined loading of hydrostatic pressure and axial compression resting on the twoparameter elastic foundation(T-P-EF).It is one of the first attempts to derive the governing equations of the CCSs reinforced with CNTs,based on a generalized first-order shear deformation shell theory(FSDST)which includes shell-foundation interaction.By adopting the extended mixing rule,the effective material properties of CCSs reinforced by CNTs with linear distributions are approximated by introducing some efficiency parameters.Three carbon nanotube distribution in the matrix,i.e.uniform distribution(U)and V and X-types linear distribution are taken into account.The stability equations are solved by using the Galerkin procedure to determine the combined buckling loads(CBLs)of the structure selected here.The numerical illustrations cover CBLs characteristics of CCSs reinforced by CNTs in the presence of the T-P-EF.Finally,a parametric study is carried out to study the influences of the foundation parameters,the volume fraction of carbon nanotubes and the types of reinforcement on the CBLs. 展开更多
关键词 NANOCOMPOSITES CNTS Composite conical shells Two-parameter elastic foundations combined buckling loads Shear deformation shell theories
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Dynamic response of UHMWPE plates under combined shock and fragment loading 被引量:1
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作者 Chun-Zheng Zhao Lu-Sheng Qiang +4 位作者 Rui Zhang Qian-Cheng Zhang Jun-Yang Zhong Zhen-Yu Zhao Tian Jian Lu 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2023年第9期9-23,共15页
Ultra-high molecular weight polyethylene(UHMWPE)fiber composite has been extensively used to construct lightweight protective structures against ballistic impacts,yet little is known about its performance when subject... Ultra-high molecular weight polyethylene(UHMWPE)fiber composite has been extensively used to construct lightweight protective structures against ballistic impacts,yet little is known about its performance when subjected to combined blast and fragment impacts.Built upon a recently developed laboratory-scale experimental technique to generate simulated combined loading through the impact of a fragment-foam composite projectile launched from a light gas gun,the dynamic responses of fullyclamped UHMWPE plates subjected to combined loading were characterized experimentally,with corresponding deformation and failure modes compared with those measured with simulated blast loading alone.Subsequently,to explore the underlying physical mechanisms,three-dimensional(3D)numerical simulations with the method of finite elements(FE)were systematically carried out.Numerical predictions compared favorably well with experimental measurements,thus validating the feasibility of the established FE model.Relative to the case of blast loading alone,combined blast and fragment loading led to larger maximum deflections of clamped UHMWPE plates.The position of the FSP in the foam sabot affected significantly the performance of a UHMWPE target,either enhancing or decreasing its ballistic resistance.When the blast loading and fragment impact arrived simultaneously at the target,its ballistic resistance was superior to that achieved when subjected to fragment impact alone,and benefited from the accelerated movement of the target due to simultaneous blast loading. 展开更多
关键词 UHMWPE composite Ballistic performance combined blast and fragment loading Impact test Finite element simulation
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Effects of water intrusion and loading rate on mechanical properties of and crack propagation in coal–rock combinations 被引量:12
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作者 陈田 姚强岭 +4 位作者 卫斐 种照辉 周健 王常彬 李静 《Journal of Central South University》 SCIE EI CAS CSCD 2017年第2期423-431,共9页
Tackling the problems of underground water storage in collieries in arid regions requires knowledge of the effect of water intrusion and loading rate on the mechanical properties of and crack development in coal–rock... Tackling the problems of underground water storage in collieries in arid regions requires knowledge of the effect of water intrusion and loading rate on the mechanical properties of and crack development in coal–rock combinations. Fifty-four coal–rock combinations were prepared and split equally into groups containing different moisture contents(dry, natural moisture and saturated) to conduct acoustic emission testing under uniaxial compression with loading rates ranging from 0.1 mm/min to 0.6 mm/min. The results show that the peak stress and strength-softening modulus, elastic modulus, strain-softening modulus, and post-peak modulus partly decrease with increasing moisture content and loading rate. In contrast, peak strain increases with increasing moisture content and fluctuates with rising loading rate. More significantly, the relationship between stiffness and stress, combined with accumulated counts of acoustic emission, can be used to precisely predict all phases of crack propagation. This is helpful in studying the impact of moisture content and loading rate on crack propagation and accurately calculating mechanical properties. We also determined that the stress thresholds of crack closure, crack initiation, and crack damage do not vary with changes of moisture content and loading rate, constituting 15.22%, 32.20%, and 80.98% of peak stress, respectively. These outcomes assist in developing approaches to water storage in coal mines, determining the necessary width of waterproof coal–rock pillars, and methods of supporting water-enriched roadways, while also advances understanding the mechanical properties of coal–rock combinations and laws of crack propagation. 展开更多
关键词 water intrusion loading rate mechanical properties coal-rock combination crack propagation stress threshold
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Elastoplastic solutions for single piles under combined vertical and lateral loads 被引量:17
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作者 ZHANG Lei GONG Xiao-nan +1 位作者 YANG Zhong-xuan YU Jian-lin 《Journal of Central South University》 SCIE EI CAS 2011年第1期216-222,共7页
In order to improve the reliability of the design and calculation of single piles under the combined vertical and lateral loads, the solutions were presented based on the subgrade reaction method, in which the ultimat... In order to improve the reliability of the design and calculation of single piles under the combined vertical and lateral loads, the solutions were presented based on the subgrade reaction method, in which the ultimate soil resistance was considered and the coefficient of subgrade reaction was assumed to be a constant. The corresponding computational program was developed using FORTRAN language. A comparison between the obtained solutions and the model test results was made to show the validity of the obtained solutions. The calculation results indicate that both the maximum lateral displacement and bending moment increase with the increase of the vertical and lateral loads and the pile length above ground, while decrease as the pile stiffness, the coefficient of subgrade reaction and the yielding displacement of soil increase. It is also shown that the pile head condition controls the pile responses and the vertical load may cause the instability problem to the pile. In general, the proposed method can be employed to calculate the pile responses independent of the magnitude of the pile deflection. 展开更多
关键词 pile-soil interaction combined vertical and lateral loads ultimate resistance subgrade reaction method bendingmoment
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Similarity Criterion and Scale Effect for Ship Distortion Model Under Combined Loads
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作者 ZHANG Yi-long WEI Peng-yu +3 位作者 DAI Ze-yu WANG Lian ZENG Qing-bo TANG Qin 《船舶力学》 EI CSCD 北大核心 2024年第12期1880-1890,共11页
For the ultimate strength model test evaluation of large ship structures, the distortion model with non-uniform ratio between the main size and the plate thickness size is usually adopted. It is the key to carry out s... For the ultimate strength model test evaluation of large ship structures, the distortion model with non-uniform ratio between the main size and the plate thickness size is usually adopted. It is the key to carry out scale model test to establish a distortion model similar to the real ship structure under combined load. A similarity criterion for ship distortion model under the combined action of bending moment and surface pressure was proposed, and the scale effect for the criterion was verified by a se ries of numerical analysis and model tests. The results show that the similarity criterion for ship distor tion model under combined loads has a certain scale effect. For the model tests of ship cabin struc tures, it is suggested that the scale range between the plate thickness scale and the main dimension scale should be controlled within 2:1, which can be used as a reference for distortion model design and ultimate strength test of large-scale ship structures. 展开更多
关键词 distortion model combined load similarity criteria scale effect ultimate strength test
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Catastrophe model and its experimental verification ofstatic loading rock system under impact load 被引量:2
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作者 左宇军 李夕兵 +3 位作者 王卫华 张义平 马春德 闫长斌 《Journal of Central South University of Technology》 EI 2006年第3期281-285,共5页
According to the catastrophe model for impact buckling of static loading structures, a new catastrophe model for impact loading failure of a static loading rock system was established, and one dimension (1D) catastrop... According to the catastrophe model for impact buckling of static loading structures, a new catastrophe model for impact loading failure of a static loading rock system was established, and one dimension (1D) catastrophe model was analyzed. The analysis results indicate that the furcation collection where catastrophe may take place is not only decided by mechanical system itself but also relates to exterior loading, which is different from the results obtained under mono-static loading where the bifurcation collection is only determined by mechanics of the system itself and has nothing to do with exterior loading. In addition, the corresponding 1D coupled static-dynamic loading experiment is designed to verify the analysis results of catastrophe model. The test is done with Instron 1342 electro-servo controlled testing system, in which medium strain rate is caused by monotony rising dynamic load. The parameters are obtained combining theoretical model with experiment. The experimental and theoretical curves of critical dynamic load vs static load are rather coincided, thus the new model is proved to be correct. 展开更多
关键词 static loading rock system impact load INSTABILITY catastrophic model coupled static-dynamic loading
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基于源荷协同的热电联产机组负荷优化分配 被引量:2
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作者 李杰 胡勇 +4 位作者 张语珊 邓丹 梁璐 曾德良 刘吉臻 《热力发电》 北大核心 2025年第1期46-55,共10页
热电厂传统供热方式能源利用效率低,为深度挖掘热电联产机组节能潜力,提出一种综合考虑热负荷侧和热源侧的热电联产机组源荷协同负荷优化分配模型。在负荷侧考虑气象扰动建立了修正的室外温度-热负荷预测模型,热源侧建立了热电联产机组... 热电厂传统供热方式能源利用效率低,为深度挖掘热电联产机组节能潜力,提出一种综合考虑热负荷侧和热源侧的热电联产机组源荷协同负荷优化分配模型。在负荷侧考虑气象扰动建立了修正的室外温度-热负荷预测模型,热源侧建立了热电联产机组能效变工况模型;以全部供热机组发电煤耗率最低为目标构建源-荷协同的多机组优化调度模型;最后在由6台热电联产机组和2组加热器组成的热网供热场景开展仿真验证。仿真结果表明,基于热负荷预测值的源荷协同热电联产机组负荷优化分配方法可以有效降低供热期内机组总煤耗量,相比传统分配方法,典型尖峰供暖期1天内热电厂煤耗量可以减少214.56 t。所提负荷优化分配方法有助于提高热电厂运行经济性,具有一定实际应用价值。 展开更多
关键词 热电联产 热负荷预测 源荷协同 黏菌算法 负荷优化分配
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考虑特征重组和BiGRU-Attention-XGBoost模型的超短期负荷功率预测 被引量:3
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作者 李练兵 高国强 +3 位作者 陈伟光 付文杰 张超 赵莎莎 《现代电力》 北大核心 2025年第3期571-581,共11页
超短期电力负荷预测作为电力系统的基本组成,能为生产调度计划的制定提供重要依据。然而,电力负荷具有非线性、时变性和不确定性,充分挖掘其潜在特征并分别预测,是提升预测准确性的关键。提出一种基于自适应局部迭代滤波(adaptive local... 超短期电力负荷预测作为电力系统的基本组成,能为生产调度计划的制定提供重要依据。然而,电力负荷具有非线性、时变性和不确定性,充分挖掘其潜在特征并分别预测,是提升预测准确性的关键。提出一种基于自适应局部迭代滤波(adaptive local iterative filtering,ALIF)的BiGRU-Attention-XGBoost电力负荷组合预测模型。该模型基于ALIF-SE实现将历史负荷序列分解重组为周期序列、波动序列和趋势序列;通过Attention机制对BiGRU模型进行改进,并结合XGBoost模型构建基于时变权重组合的电力负荷预测模型。实验分析表明,输入模型数据经过ALIF-SE处理后预测精度有明显提升;所提组合模型在工作日和节假日均具有较好的预测效果,预测误差大部分在5%以下;通过在不同负荷数据集下进行实验对比,验证了所提预测方法的可迁移性。实验结果证明,所提模型具有有效性、准确性和可行性。 展开更多
关键词 自适应局部迭代滤波 样本熵 深度学习 组合模型 超短期负荷预测
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基于Pasternak地基模型的H(t)-T受荷桩受力变形分析
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作者 江杰 陈丽君 +3 位作者 柴文成 艾永林 欧孝夺 龚健 《上海交通大学学报》 北大核心 2025年第1期60-69,共10页
水平动荷载H(t)与扭矩T联合作用下的桩基受力变形较为复杂.为了更加准确地分析H(t)-T联合受荷桩的内力与位移,基于Pasternak地基模型考虑桩侧土体剪切效应;引入H(t)-T耦合因子,揭示多向荷载对桩身响应的影响机理;继而利用虚功原理推导... 水平动荷载H(t)与扭矩T联合作用下的桩基受力变形较为复杂.为了更加准确地分析H(t)-T联合受荷桩的内力与位移,基于Pasternak地基模型考虑桩侧土体剪切效应;引入H(t)-T耦合因子,揭示多向荷载对桩身响应的影响机理;继而利用虚功原理推导桩身单元综合刚度矩阵;最后采用改进的有限杆单元法获得H(t)-T联合受荷桩内力与位移数值解;并与已有理论解和有限元模拟结果进行对比验证.参数分析表明:土体剪切效应可约束桩身水平位移,但对扭转变形影响较小;水平动荷载增强了桩身抗扭承载力,水平动荷载幅值从0.2Q_(u)增大到1.0Q_(u)时,桩顶扭转角减小了22.6%;增大动荷载无量纲频率会减小桩顶位移和桩身最大弯矩,外荷载动力效应随桩埋深增加而减弱;杆单元模型减少了单元划分数量和计算时间,可有效提高计算效率. 展开更多
关键词 Pasternak地基模型 联合受荷桩 有限单元法 水平动荷载 扭矩
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组合载荷作用下加筋板极限强度相互关系公式
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作者 万琪 宋召军 +2 位作者 钱伟 杨鑫 李晓彬 《船舶力学》 北大核心 2025年第2期277-287,共11页
船舶航行时整体船体梁受到货物装载载荷、船底吃水静水弯矩与波浪弯矩等组合载荷联合作用,而其局部船体加筋板结构则承受面内纵向、横向与面外压力载荷等三向载荷联合作用。侧向载荷的大小不同程度地影响加筋板面内的纵向与横向承载能力... 船舶航行时整体船体梁受到货物装载载荷、船底吃水静水弯矩与波浪弯矩等组合载荷联合作用,而其局部船体加筋板结构则承受面内纵向、横向与面外压力载荷等三向载荷联合作用。侧向载荷的大小不同程度地影响加筋板面内的纵向与横向承载能力,故需建立组合载荷共同加载条件下的加筋板极限强度相互关系式。本文以散货轮船底结构为研究对象,采用对称循环边界的双跨双弯几何范围加筋板模型,应用非线性有限元法分析实船连续船体结构遭受横向、纵向与侧向等组合载荷联合作用时的极限强度相互影响规律。通过研究发现,通常侧向载荷降低加筋板结构纵向与横向极限承载力,且板柔度越小则降低越大,同时建议分别通过增大型材尺寸与板材厚度提高侧压作用下的纵向与横向极限承载力,并提出组合载荷联合作用下的加筋板极限强度相互关系表达式。该方法可评估纵向、横向与侧向载荷联合作用下的极限强度相互关系,以开展复合载荷状态下的船舶加筋板结构强度设计的快速评估。 展开更多
关键词 组合载荷 加筋板 极限强度 数值仿真 相互公式
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基于转矩法安装的预应力锚杆受力特征及承载性能研究
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作者 杨凯 刘锦超 +2 位作者 汪波 宁其冉 王勇 《铁道科学与工程学报》 北大核心 2025年第11期5052-5063,共12页
为揭示转矩法下锚杆在安装过程及服役初期的拉力-扭矩联合的受力特征,探明锚杆安装后的拉伸承载强度,采用理论分析和室内试验手段,研究3、8和12.7 mm螺距参数下预应力锚杆在转矩法下的受力演变规律,揭示了不同螺距下锚杆轴力、扭矩与外... 为揭示转矩法下锚杆在安装过程及服役初期的拉力-扭矩联合的受力特征,探明锚杆安装后的拉伸承载强度,采用理论分析和室内试验手段,研究3、8和12.7 mm螺距参数下预应力锚杆在转矩法下的受力演变规律,揭示了不同螺距下锚杆轴力、扭矩与外扭矩的对应关系。结合试验结果与Mises强度准则推导了锚杆在服役期的强度预测公式。主要的结果如下:1)转矩法施加预应力时,杆体轴力和扭矩均与施加外扭矩之间存在线性关系,相同外扭矩下,锚杆螺距越小,所受的轴力越大,扭矩越小;2)锚杆安装完成后,杆体扭矩随外扭矩卸载下降,但仍残存部分扭矩影响其服役期承载围岩荷载的能力。安装完成后残余扭矩与外扭矩之间存在线性关系,3、8和12.7 mm螺距下锚杆对应的线性系数分别为0.58、0.455和0.316;3)锚杆在拉力-扭矩组合受力下的屈服拉力远低于轴拉状态下时的拉力(轴拉下屈服强度150 kN),3、8和12.7 mm螺距下试验锚杆屈服强度下降量分别达到40%、54%、72%。4)预应力锚杆安装后残余扭矩会影响其抗拉强度,结合Mises准则与试验结果建立了剩余锚杆抗拉强度与设计预应力间对应关系。研究结果可为转矩法下预应力锚杆的选用及强度设计提供指导。 展开更多
关键词 隧道支护 预应力锚杆 拉-扭组合受力 拉伸强度 Mises准则
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多元荷载联合作用下软基深水超长桩承载特性及破坏模式研究
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作者 贺林林 谢院仕 +2 位作者 刘洋 梁越 刘明维 《海洋工程》 北大核心 2025年第4期174-185,共12页
为探明多元荷载联合作用下软基深水超长桩承载特性及破坏模式,基于ABAQUS有限元软件,采用Green-Lagrange应变理论,建立考虑Ρ-Δ效应的软基深水超长桩有限元计算模型。在此基础上,首先开展超长桩承载特性研究,深入分析考虑与不考虑Ρ-... 为探明多元荷载联合作用下软基深水超长桩承载特性及破坏模式,基于ABAQUS有限元软件,采用Green-Lagrange应变理论,建立考虑Ρ-Δ效应的软基深水超长桩有限元计算模型。在此基础上,首先开展超长桩承载特性研究,深入分析考虑与不考虑Ρ-Δ效应时桩基础承载力变化规律,桩侧摩阻力及土抗力变化规律。然后通过超长桩基础的等效塑性应变云图,进一步揭示超长桩破坏模式。结果表明:考虑Ρ-Δ效应后的桩基础竖向承载力明显减小,最大减小了91.16%,因此,在进行多元荷载联合作用下软基深水超长桩设计计算时,必须考虑Ρ-Δ效应的影响;在V-H荷载联合作用下,桩身发生挠曲变形,桩侧摩阻力和土抗力发生重分布,桩基础水平受荷一侧的桩-土发生脱开分离,靠近该侧泥面附近的桩侧摩阻力和土抗力变为0,而另一侧土体发生挤压,靠近该侧泥面附近的桩侧摩阻力和土抗力均有增大。此外,当水平荷载H较小时,超长桩基础因桩侧摩阻力不足而引起沉降破坏;而当水平荷载H较大时,超长桩发生较大塑性变形而形成“塑性铰”,最终呈现弯曲破坏模式。 展开更多
关键词 多元荷载联合作用 超长桩 Ρ-Δ效应 承载特性 破坏模式
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某飞机串联多支柱起落架着陆撞击载荷飞行验证
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作者 杨全伟 谢帅 +1 位作者 张海涛 陈健 《应用力学学报》 北大核心 2025年第4期773-782,共10页
飞行试验是飞机设计验证和鉴定最真实有效的终极手段。某大型飞机主起落架采用了新颖的串联多支柱形式,起落架结构传力和所受着陆撞击载荷复杂,飞行验证的技术难度很大。分析了该起落架串联多支柱的结构特点和各支柱间相互协同承载情况... 飞行试验是飞机设计验证和鉴定最真实有效的终极手段。某大型飞机主起落架采用了新颖的串联多支柱形式,起落架结构传力和所受着陆撞击载荷复杂,飞行验证的技术难度很大。分析了该起落架串联多支柱的结构特点和各支柱间相互协同承载情况,设计了测载应变电桥,针对性设计了包含模拟支柱间协同承载关系校准工况的“一体化”载荷校准方案。针对应变电桥载荷响应特性分析中变量多、数据量大的问题,开发了通过偏相关系数对应变电桥载荷响应的线性度进行评价的新方法。提出了计及校准误差对测量结果影响的载荷测量模型鲁棒性概念并推导了其数学评价指标。构建了基于对应变电桥的响应系数及偏相关系数加权平均并排序,可兼顾鲁棒性和拟合优度的载荷测量建模新方法。给出了应用该模型实测的某飞机典型着陆撞击载荷,定性分析了其变化规律,定量评估了其幅值。结果表明,起落架载荷校准与建模方法正确,可供相关工程技术人员参考借鉴;实测着陆撞击载荷变化规律清晰、合理,量值正确,为设计鉴定和改进提供了重要依据。 展开更多
关键词 飞行试验 着陆撞击 载荷校准 串联多支柱起落架 应变电桥
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复合荷载作用下斜桩群桩响应简化计算方法
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作者 孔令刚 刘维 +2 位作者 夏海波 郑振华 陈云敏 《中南大学学报(自然科学版)》 北大核心 2025年第5期1900-1910,共11页
基于半无限弹性地基假设建立适于快速计算推、压、弯、扭等荷载联合作用大型斜桩群桩响应的简化分析模型,分析三维空间中任意倾斜方向和角度的两相邻斜桩间不同种类桩-土-桩相互作用影响。首先,将两斜桩中多种类型的桩头变形间相互作用... 基于半无限弹性地基假设建立适于快速计算推、压、弯、扭等荷载联合作用大型斜桩群桩响应的简化分析模型,分析三维空间中任意倾斜方向和角度的两相邻斜桩间不同种类桩-土-桩相互作用影响。首先,将两斜桩中多种类型的桩头变形间相互作用简化为桩头轴向、侧向位移和扭转角,分析其对邻桩三类桩头变形量的影响;然后,引入自由场地位移衰减系数,量化分析土面上竖向、水平和扭转3种位移随水平距离的变化规律;最后,基于虚拟桩假设和坐标变换,推导出计算三维空间中任意倾斜方向和角度的两桩间相互作用的矩阵表达式,基于该分析模型开发了群桩分析程序PIGEAN。研究结果表明:斜桩桩头的轴向、侧向和扭转响应可近似采用相应荷载下的直桩解析解或近似解计算。3组不同荷载组合的多组斜桩群桩模型试验结果证明了斜桩的桩-土-桩相互作用三维分析方法能有效计算斜桩间相互作用的影响,提高计算准确性;证明了本模型在计算复合荷载下大规模群桩的高效性。 展开更多
关键词 斜桩 桩-土-桩相互作用 群桩 荷载组合 三维空间
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高精度轴承联合载荷下力学应用分析研究
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作者 刘文婧 朱孟良 +1 位作者 王少锋 王建国 《机械设计与制造》 北大核心 2025年第8期6-10,共5页
以型号为7210C的角接触球轴承为研究对象,结合Hertz接触理论,分析了轴承滚珠和内外圈的受力状况,综合的考虑了轴承在承受联合载荷的条件下,建立了受力平衡的方程,在安全接触角的范围内,轴承的承载能力随滚珠的数量增加而增强成正比关系... 以型号为7210C的角接触球轴承为研究对象,结合Hertz接触理论,分析了轴承滚珠和内外圈的受力状况,综合的考虑了轴承在承受联合载荷的条件下,建立了受力平衡的方程,在安全接触角的范围内,轴承的承载能力随滚珠的数量增加而增强成正比关系,并且滚珠数量不变时轴承承载能力随实际工作接触角的增加而增大也成正比的关系。通过接触椭圆可得最大应力,并结合有限元分析方法验证滚珠与滚道接触最大应力产生的位置。通过构建的联合载荷方程得到轴承在不同的联合载荷下轴向承载能力,结果表明,轴向承载能力随着力矩的增大明显降低成反比,轴向承载能力随着径向力增大而增强成正比。 展开更多
关键词 角接触球轴承 联合载荷 接触角 滚珠 最大应力位置 轴向承载能力
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不同加卸载路径下冲击倾向性煤岩组合试件破坏特征研究
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作者 崔峰 罗钟 +5 位作者 何仕凤 来兴平 李浩荡 马立强 赵志鹏 杨旭 《煤炭科学技术》 北大核心 2025年第9期258-274,共17页
冲击地压矿井采掘扰动下煤岩体破坏特征复杂,严重影响了冲击地压的监测预警与防控,开展冲击倾向性煤岩组合体在不同加卸载应力路径下的破坏及声发射特征研究,对促进冲击地压的精准监测与防控具有重大意义。以冲击危险性煤岩组合体试件... 冲击地压矿井采掘扰动下煤岩体破坏特征复杂,严重影响了冲击地压的监测预警与防控,开展冲击倾向性煤岩组合体在不同加卸载应力路径下的破坏及声发射特征研究,对促进冲击地压的精准监测与防控具有重大意义。以冲击危险性煤岩组合体试件为研究对象,采用岩石力学单轴试验机和声发射监测系统进行了常规单轴加载和不同循环加卸载试验,分析了煤岩组合体在不同应力路径下的力学性质及能量演化规律,研究了煤岩组合体声发射试件数与应力路径特征关系,并以此计算研究了b值和熵值的演化趋势,讨论了经历不同应力路径下煤岩体对应到工程现场的冲击地压研究。研究结果表明:煤岩组合体在常规加载下峰值强度最大,变下限加卸载次之,恒下限加卸载峰值强度最小;试件中煤体为X状共轭斜面剪切破坏,岩石为拉伸破坏;恒下限加卸载下试件损伤程度较高,低能量的状态输入能量后失稳破坏,变下限加卸载下试件处于高能状态输入更多的能量后失稳破坏。获得了声发射事件数、b值及熵值的演化规律及其与破坏行为之间的关系,声发射事件数随加载强度的增加逐步上升,循环加卸载声发射事件数分布随应力路径的变化表现出波动特性,累计声发射曲线呈阶梯式增长;恒下限循环加卸载下b值和熵随加卸载表现出的波动性循环特征更明显,而变下限循环加卸载在应力较高的循环中表现出波动性特征,不同应力路径下试件临近失稳破坏的共同特征为b值处于低值波动,熵值在较高水平波动。较高的采掘强度会导致煤岩体在较短时间内经历不充足的自我卸压,因而裂隙扩展释放的能量较大;较低的采掘强度使煤岩体有充足的时间进行自我卸压,裂隙扩展释放的地音能量较小。根据不同加卸载作用下煤岩体破坏特征及声发射事件数、b值、熵值的演化规律,可有效的预测煤岩体破坏行为。较低的采掘强度使煤岩体有充足的时间进行自我卸压,裂隙扩展较为频繁,地音能量释放较小。研究结果为不同采动强度的采掘方式合理选取提供了依据,在实际工程应用中可为冲击地压矿井的实现精准监测与防控提供支撑。 展开更多
关键词 煤岩组合体 冲击地压 循环载荷 矿井监测预警 采掘强度
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基于因子分析与熵权法的山区双车道公路驾驶视觉负荷研究
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作者 孟云伟 王磊 +3 位作者 李智鹏 李斌斌 青光焱 刘中帅 《交通运输系统工程与信息》 北大核心 2025年第4期361-372,共12页
为探究山区双车道公路的平纵线形对驾驶视觉负荷的影响规律,选取28名被试驾驶人,开展自然流状态下的山区双车道公路实车试验。利用Dikablis眼镜式眼动仪和CTM-8A非接触式多功能测速仪,采集被试驾驶人的视觉响应值和车速值,并对数据进行... 为探究山区双车道公路的平纵线形对驾驶视觉负荷的影响规律,选取28名被试驾驶人,开展自然流状态下的山区双车道公路实车试验。利用Dikablis眼镜式眼动仪和CTM-8A非接触式多功能测速仪,采集被试驾驶人的视觉响应值和车速值,并对数据进行有效性检验。针对不同纵坡值、平曲线半径及弯坡组合路段,以被试驾驶人的瞳孔面积变化率、注视持续时间和眨眼频率作为驾驶视觉负荷的指标,定量分析线形条件对驾驶视觉负荷的影响,采用因子分析法与熵权法构建驾驶视觉负荷模型,并基于聚类算法确定驾驶视觉负荷阈值,划分驾驶视觉负荷等级。研究表明:在纵坡1.50%~6.00%的路段,瞳孔面积变化率、注视持续时间和眨眼频率与纵坡坡度呈正相关和负相关关系;相同纵坡下,下坡路段的瞳孔面积变化率高于上坡路段;驾驶人视觉负荷与平曲线半径呈负相关,小半径路段主要受视野限制影响,随着平曲线半径的增大,驾驶人瞳孔面积变化率和注视持续时间呈减小趋势,眨眼频率逐渐增大;驾驶视觉负荷可分为低、中和高这3个等级;当弯坡组合指数小于23.4%·km~(-1)时,驾驶视觉负荷可保持在中等等级以上。研究结果将为山区公路的安全状况改善及提升舒适性提供理论依据。 展开更多
关键词 交通工程 驾驶视觉负荷 实车试验 山区双车道公路 因子分析与熵权法 弯坡组合
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