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Deformation Mechanism of AZ31B Magnesium Alloy Under Different Loading Paths 被引量:2
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作者 Shuai-Feng Chen Li Zheng +2 位作者 Shi-Hong Zhang Hong-Wu Song Ming Cheng 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 2015年第12期1426-1434,共9页
Deformation and texture evolution of AZ31 B magnesium(Mg) alloy sheet under uniaxial tension, compression, and reverse loading after different pre-strain(compression and tension) were investigated experimentally. ... Deformation and texture evolution of AZ31 B magnesium(Mg) alloy sheet under uniaxial tension, compression, and reverse loading after different pre-strain(compression and tension) were investigated experimentally. The results indicate that the pre-compressive strain remarkably affects the reverse tensile yield stress and the width of the detwinning-dominant stage during inverse tension process. Similar to stress–strain curve of the uniaxial compression, the curve of reverse tensile yield value also has ‘S' shape, and its minimum value is only 38 MPa. The relationship between pre-compressive strain and the width of detwinning-dominant stage presents a linear growth, and the greater the precompressive strain is, the smaller the strain hardening rate of the detwinning-slip-dominant stage is. Compared with the reverse tension under pre-compression, the influence of the pre-tension deformation on the deformation mechanism of subsequent compression is relatively simple. With the increase in pre-tension strain, the yield stress of the reverse loading is rising. 展开更多
关键词 AZ31B magnesium alloy loading path Detwinning Texture Yield stress
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Examining the influence of the loading path on the cracking characteristics of a pre-fractured rock specimen with discrete element method simulation 被引量:1
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作者 Kang DUAN Ri-hua JIANG +2 位作者 Xue-jian LI Lu-chao WANG Ze-ying YANG 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2023年第4期332-349,共18页
Damage in a rock mass is heavily dependent on the existence and growth of joints,which are also influenced by the complex stress states induced by human activities(e.g.,tunneling and excavation).A proper representatio... Damage in a rock mass is heavily dependent on the existence and growth of joints,which are also influenced by the complex stress states induced by human activities(e.g.,tunneling and excavation).A proper representation of the loading path is essential for understanding the mechanical behaviors of rock masses.Based on the discrete element method(DEM),the influence of the loading path on the cracking process of a rock specimen containing an open flaw is examined.The effectiveness of the model is confirmed by comparing the simulation results under a uniaxial compression test to existing research findings,where wing crack initiates first and secondary cracks contribute to the failure of the specimen.Simulation results confirm that the cracking process is dependent upon both the confining pressure and the loading path.Under the axial loading test,a higher confining pressure suppresses the development of tensile wing cracks and forces the formation of secondary cracks in the form of shear bands perpendicular to the flaw.Increase of confining pressure also decreases the influence of the loading path on the cracking process.Reduction of confining pressure during an unloading test amplifies the concentration of tensile stress and ultimately promotes the appearance of a tensile splitting fracture at meso-scale.Confining pressure at the failure stage is well predicted by the Hoek-Brown failure criterion under quasi-static conditions. 展开更多
关键词 Cracking process loading path Fractured rock mass Discrete element method(DEM) Local stress concentration
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Optimizing loading path and die linetype of large length-to-diameter ratio metal stator screw lining hydroforming 被引量:2
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作者 祝效华 石昌帅 童华 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第1期224-231,共8页
In order to meet the high temperature environment requirement of deep and superdeep well exploitation, a technology of large length-to-diameter ratio metal stator screw lining meshing with rotor is presented. Based on... In order to meet the high temperature environment requirement of deep and superdeep well exploitation, a technology of large length-to-diameter ratio metal stator screw lining meshing with rotor is presented. Based on the elastic-plasticity theory, and under the consideration of the effect of tube size, material mechanical parameters, friction coefficient and loading paths, the external pressure plastic forming mechanical model of metal stator screw lining is established, to study the optimal loading path of metal stator lining tube hydroforming process. The results show that wall thickness reduction of the external pressure tube hydroforming(THF) is about 4%, and three evaluation criteria of metal stator screw lining forming quality are presented: fillet stick mold coefficient, thickness relative error and forming quality coefficient. The smaller the three criteria are, the better the forming quality is.Each indicator has a trend of increase with the loading rate reducing, and the adjustment laws of die arc transition zone equidistance profile curve are acquired for improving tube forming quality. Hence, the research results prove the feasibility of external pressure THF used for processing high-accuracy large length-to-diameter ratio metal stator screw lining, and provide theoretical basis for designing new kind of stator structure which has better performance and longer service life. 展开更多
关键词 tube hydroforming loading path large length-to-diameter ratio metal stator lining simulation
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Modeling of the loading path dependent magnetomechanical behavior of Galfenol alloy
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作者 江慧 朱洁 《Chinese Physics B》 SCIE EI CAS CSCD 2017年第3期527-534,共8页
The magnetomechanical behavior of single-crystal Galfenol alloy was found to be strongly dependent on the loading paths. An energy-based anisotropic domain rotation model, assuming that the interaction between domains... The magnetomechanical behavior of single-crystal Galfenol alloy was found to be strongly dependent on the loading paths. An energy-based anisotropic domain rotation model, assuming that the interaction between domains can be ignored and the probability of the magnetic moment pointing along a particular direction is related to the free energy along this direction, is used to simulate the magnetostriction versus magnetic field and stress curve and to track the magnetic domain motion trail. The main reason for loading path dependent effect is the rotation/flipping of the magnetic domains under different loading paths. The effect of loading and unloading paths on 90° magnetic domain motion was studied by choosing different loading and unloading state and paths. The results show that prior loading magnetic field can make the 90° magnetic domains flip to the directions of 45°domains because the magnetic field is the driving force to make the domains rotate, and the final loading state and the loading path both have great influence on the motion of 90° magnetic domains. 展开更多
关键词 magnetomechanical behavior loading path dependent 90° magnetic domain flipping
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Effect of Loading Paths on Hydroforming Tubular Square Components
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作者 Hongyang LI Shijian YUAN +3 位作者 Kun DAI Lihui LANG Xiaosong WANG Zhubin HE and Zhongren WANG School of Materials Science and Engineering, Harbin institute of Technology, Harbin 150001, China 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2001年第1期158-,共1页
The influence of loading path on tube hydroforming process is discussed in this paper with finiteelement simulation. Four different loading paths are utilized in simulating the forming process of square tubular compo... The influence of loading path on tube hydroforming process is discussed in this paper with finiteelement simulation. Four different loading paths are utilized in simulating the forming process of square tubular component with hydroforming and the result of different loading path is presented. Among the result. the thickness distribution of bilinear loading path is the most uniform one. It shows that the increase of punch displacement in the stage of high pressure is beneficial to the forming of component for optimized Stress condition. 展开更多
关键词 Effect of loading paths on Hydroforming Tubular Square Components
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Effective Virtual Reality Based Building Navigation Using Dynamic Loading and Path Optimization 被引量:1
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作者 Qing-Jin Peng Xiu-Mei Kang Ting-Ting Zhao 《International Journal of Automation and computing》 EI 2009年第4期335-343,共9页
Although computer capabilities have been improved significantly, a large-scale virtual reality (VR) system demands much more in terms of memory and computation than the current computer systems can offer. This paper... Although computer capabilities have been improved significantly, a large-scale virtual reality (VR) system demands much more in terms of memory and computation than the current computer systems can offer. This paper discusses two important issues related to VR performance and applications in building navigation. These are dynamic loading of models based on cell segmentation for the optimal VR operation, and the route optimization based on path planning for easy navigation. The VR model of engineering and information technology complex (EITC) building at the University of Manitoba is built as an example to show the feasibility of the proposed methods. The reality, enhanced by three-dimensional (3D) real-time interactivity and visualization, leads navigators into a state of the virtual building immersion. 展开更多
关键词 Virtual reality (VR) virtual environments (VEs) building navigation dynamic loading cell segmentation path planning
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A STUDY OF THE POSTBUCKLING PATH OF CYLINDRICALLY CURVED PANELS OF LAMINATED COMPOSITE MATERIALS DURING LOADING AND UNLOADING 被引量:1
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作者 董万林 黄小清 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI 1990年第7期651-657,共7页
In this paper, Dynamic Relaxation Method is applied to study the postbuckling path of cylindrically curved panels of laminated composite materials during loading and unloading. The phenomenon that loading paths do not... In this paper, Dynamic Relaxation Method is applied to study the postbuckling path of cylindrically curved panels of laminated composite materials during loading and unloading. The phenomenon that loading paths do not coincide with unloading paths has been found. Numerical results are given for cylindrically curved cross-ply panels subjected to uniform uniaxial compression under two types of boundary conditions. The influence of the number of layers, the panels curvature and the initial imperfection on the postbuckling paths is discussed. 展开更多
关键词 A STUDY OF THE POSTBUCKLING path OF CYLINDRICALLY CURVED PANELS OF LAMINATED COMPOSITE MATERIALS DURING loadING AND UNloadING
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Influence of stress path change on the resistance to plastic deformation of cold rolled sheets 被引量:1
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作者 Pavel Huml 《Journal of University of Science and Technology Beijing》 CSCD 2005年第6期521-526,共6页
Flat workpieces have been tested in order to investigate the influence of stress path change (loading mode) while keeping strain path unchanged. These investigations are pertinent to the testing of cold rolled strip... Flat workpieces have been tested in order to investigate the influence of stress path change (loading mode) while keeping strain path unchanged. These investigations are pertinent to the testing of cold rolled strips and to subsequent forming. The workpieces which first compressed by plane strain compression in thickness direction were then tested in perpendicular direction in order to measure the influence of strain and stress path. The tension workpieces came from flat die compression test at different deformation histories. Two different materials were investigated: 18/8 Ti stainless steel and AW-1050 aluminium. The results show that the plastic flow by tension in lengthwise direction after pre-strain by compression in thickness direction will begin at an appreciably lower stress than that of the workpieces unloaded after pre-compression. Comparing with two materials, it can be seen that both 18/8 Ti stainless steel and AW-1050 aluminium behave similarly. The drop in yield stress is lower for AW-1050 aluminium than that for 18/8 Ti stainless steel. However, reloading in different directions than in the precious step results in significantly higher strain hardening. 展开更多
关键词 cold working plastic deformation strain path stress path loading mode flow stress yield stress strain hardening
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PATH INTEGRAL SOLUTION OF NONLINEAR DYNAMIC BEHAVIOR OF STRUCTURE UNDER WIND EXCITATION 被引量:1
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作者 王仲刚 程华 邓洪洲 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI 2005年第10期1303-1311,共9页
A numerical scheme for the nonlinear behavior of structure under wind excitation is investigated. With the white noise filter of turbulent-wind fluctuations, the nonlinear motion equation of structures subjected to wi... A numerical scheme for the nonlinear behavior of structure under wind excitation is investigated. With the white noise filter of turbulent-wind fluctuations, the nonlinear motion equation of structures subjected to wind load was modeled as the Ito' s stochastic differential equation. The state vector associated with such a model is a diffusion process. A continuous linearization strategy in the time-domain was adopted. Based on the solution series of its stochastic linearization equations, the formal probabilistic density of the structure response was developed by the path integral technique. It is shown by the numerical example of a guyed mast that compared with the frequency-domain method and the time-domain nonlinear analysis, the proposed approach is highlighted by high accuracy and effectiveness. The influence of the structure non-linearity on the dynamic reliability assessment is also analyzed in the example. 展开更多
关键词 NONLINEAR dynamic response wind load path integral solution white noise joint statistical distribution
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MTSS: multi-path traffic scheduling mechanism based on SDN 被引量:2
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作者 XU Xiaolong CHEN Yun +1 位作者 HU Liuyun KUMAR Anup 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2019年第5期974-984,共11页
Large-scale and diverse businesses based on the cloud computing platform bring the heavy network traffic to cloud data centers.However,the unbalanced workload of cloud data center network easily leads to the network c... Large-scale and diverse businesses based on the cloud computing platform bring the heavy network traffic to cloud data centers.However,the unbalanced workload of cloud data center network easily leads to the network congestion,the low resource utilization rate,the long delay,the low reliability,and the low throughput.In order to improve the utilization efficiency and the quality of services(QoS)of cloud system,especially to solve the problem of network congestion,we propose MTSS,a multi-path traffic scheduling mechanism based on software defined networking(SDN).MTSS utilizes the data flow scheduling flexibility of SDN and the multi-path feature of the fat-tree structure to improve the traffic balance of the cloud data center network.A heuristic traffic balancing algorithm is presented for MTSS,which periodically monitors the network link and dynamically adjusts the traffic on the heavy link to achieve programmable data forwarding and load balancing.The experimental results show that MTSS outperforms equal-cost multi-path protocol(ECMP),by effectively reducing the packet loss rate and delay.In addition,MTSS improves the utilization efficiency,the reliability and the throughput rate of the cloud data center network. 展开更多
关键词 CLOUD data CENTER software defined networking(SDN) load balancing MULTI-path transmission OpenFlow
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HSM strategy study for hardened die and mold steels manufacturing based on the mechanical and thermal load reduction strategy
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作者 Ying Tang Hongsheng Guo 《Journal of University of Science and Technology Beijing》 CSCD 2008年第6期723-728,共6页
The paper discussed cutter-work engagement situation hidden behind the mechanical and thermal load effect on cutting edges during high speed hard machining process. The engagement situation was investigated in great d... The paper discussed cutter-work engagement situation hidden behind the mechanical and thermal load effect on cutting edges during high speed hard machining process. The engagement situation was investigated in great detail using experimental and geometrical analytic measures. Experiments were conducted using A1TiN-coated micro-grain carbide end mill cutters to cut hardened die steel. On the basis, a general high speed hard machining strategy, which aimed at eliminating excessive engagement situation during high-speed machining (HSM) hard machining, was proposed. The strategy includes the procedures to identify prone-to-overload areas where excessive engagement situation occurs and then to create a reliable tool path, which has the effect of cutting load reduction to remove the prone-to-overload areas. 展开更多
关键词 high-speed machining (HSM) hard machining die/mold manufacturing tool path generation load reduction
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On the Advantages of the Theories of Plasticity with Singular Loading Surface
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作者 Andrew Rusinko Daniel Fenyvesi 《Journal of Materials Science and Chemical Engineering》 2014年第11期14-19,共6页
This paper analyzes the peculiarities of plastic flow of metals for the case of non-proportional loading when the loading path consists of two portions—uniaxial tension and subsequent infinitesimal pure shear (torsio... This paper analyzes the peculiarities of plastic flow of metals for the case of non-proportional loading when the loading path consists of two portions—uniaxial tension and subsequent infinitesimal pure shear (torsion). The issue is discussed from the point of view of the hardening rules governing the kinetics of loading surface. Three cases are considered, flow plasticity theory with isotropic and kinematic hardening rule, as well as the synthetic theory of plastic deformation. As a result, the synthetic theory leads to the results that correlate with experiments, whereas the former two theories associated with smooth loading surfaces give a principal discrepancy with experimental data. 展开更多
关键词 PLASTIC Deformation loadING path SYNTHETIC Theory
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不同应力路径和加卸速率下的红黏土力学响应
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作者 阮永芬 唐震杰 +2 位作者 槐以高 郑绍奇 周源海 《水文地质工程地质》 北大核心 2025年第6期96-104,共9页
基坑开挖过程中土体受多种影响因素而表现出独特的破坏特性,仅考虑单一影响因素已无法完全分析土体的力学特性。采用昆明地区的天然红黏土进行K_(0)固结条件下不排水三轴剪切试验,探究不同应力路径和加卸速率下的应力-应变曲线及孔隙水... 基坑开挖过程中土体受多种影响因素而表现出独特的破坏特性,仅考虑单一影响因素已无法完全分析土体的力学特性。采用昆明地区的天然红黏土进行K_(0)固结条件下不排水三轴剪切试验,探究不同应力路径和加卸速率下的应力-应变曲线及孔隙水压力曲线的变化规律,分析红黏土的初始切线模量和强度极限变化规律。试验结果表明:(1)红黏土在三种应力路径下的应力-应变曲线呈双曲线型,红黏土强度大小表现为轴向压缩试验>平均主应力为常数三轴压缩试验>侧向卸荷试验;(2)加卸速率对应力-应变曲线的影响分三个阶段,当轴向应变ε_(a)≤ε_(0)时,加卸速率对土体抗剪强度影响较小,当ε_(0)<ε_(a)≤ε_(1)时,加卸速率越快,其对应的剪应力增长也越快,当ε_(a)>ε_(1)时,不同加卸速率下的剪应力基本保持不变;(3)不同应力路径下的孔隙水压力变化规律存在明显差异,剪切初期阶段,加卸速率对孔隙水压力影响不明显,而随着剪切过程的进行,孔隙水压力值随加卸速率的增大而增加;(4)通过邓肯-张模型,建立K_(0)固结的红黏土在不同路径下的应力-应变双曲线预测方程,并将预测结果与试验值对比,应力-应变预测结果较为准确。研究成果可为红黏土在不同应力路径及加卸速率下的变形参数和本构关系研究提供参考。 展开更多
关键词 红黏土 应力路径 加卸速率 应力-应变 孔隙水压力 邓肯-张模型
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不同加载路径下外露式钢柱脚抗震性能数值模拟分析
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作者 杨晨潇 钟燕 +1 位作者 于新 崔瑶 《世界地震工程》 北大核心 2025年第1期145-153,共9页
通过精细化有限元模型模拟了工字形截面外露式钢柱脚在不同加载路径下的滞回性能。首先将试验数据与有限元计算结果进行对比分析,验证有限元结果的准确性。以加载角度0°、15°、30°、45°、60°、75°、90... 通过精细化有限元模型模拟了工字形截面外露式钢柱脚在不同加载路径下的滞回性能。首先将试验数据与有限元计算结果进行对比分析,验证有限元结果的准确性。以加载角度0°、15°、30°、45°、60°、75°、90°以及方形加载、菱形加载、圆形加载、蝶形加载为参数共进行了11组模拟。模拟结果表明:柱脚的破坏模式与加载路径相关,单向加载中,0°加载的滞回曲线主要呈现旗帜型,90°加载时由于弱轴侧钢柱翼缘底部出现损伤,滞回曲线主要呈梭型,随着加载角度的增加,滞回曲线逐渐由旗帜型转变为梭型;双向加载中,相比于蝶形加载,方形加载承载力降低7%,延性更差,等效黏滞阻尼系数相差不大,而菱形和圆形加载相对于蝶形加载,承载力一致,等效黏滞阻尼系数较小,但延性更好。 展开更多
关键词 外露式柱脚 加载路径 蝶形加载 抗震性能 数值模拟
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考虑灵活性资源调节能力的供电恢复策略
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作者 冯德金 赵毅 +1 位作者 钱小毅 孙文瑶 《电力科学与技术学报》 北大核心 2025年第3期85-95,共11页
新能源技术的飞速发展使其在未来会成为发电主体,但新能源发电的间歇性和波动性特点使其受环境影响极大。针对极端天气下城市配电网发电供不应求的情况,提出了一种考虑灵活性资源调节能力的供电恢复策略。首先,对城市配电网中存在的典... 新能源技术的飞速发展使其在未来会成为发电主体,但新能源发电的间歇性和波动性特点使其受环境影响极大。针对极端天气下城市配电网发电供不应求的情况,提出了一种考虑灵活性资源调节能力的供电恢复策略。首先,对城市配电网中存在的典型可调灵活性资源——空调和电动汽车进行负荷建模,再对其进行调节能力评估;其次,根据评估结果进行调节,求解最优供电恢复路径来优先保障配电网中重要负荷的供电;最后,通过IEEE 33节点系统验证此方法可以快速寻找到供电恢复最优路径并有效降低重要负荷的失电率,对城市配电网韧性的提升有着重要意义。 展开更多
关键词 灵活性资源 供电恢复 最优路径 重要负荷 新型配电网
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终端电气化驱动的城市电力消费演化路径研究
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作者 梁歆怡 尤作为 林凌雪 《电力系统及其自动化学报》 北大核心 2025年第10期1-12,共12页
“双碳”目标提出后,中国终端用能电气化发展政策导向愈发清晰,电气化进程稳步推进。在电气化发展背景下,为更好地推动能源及电力行业协调发展,提出城市电力消费演化路径研究方法。基于能源电力消费现状及电气化发展趋势分析,设置基准... “双碳”目标提出后,中国终端用能电气化发展政策导向愈发清晰,电气化进程稳步推进。在电气化发展背景下,为更好地推动能源及电力行业协调发展,提出城市电力消费演化路径研究方法。基于能源电力消费现状及电气化发展趋势分析,设置基准情景、政策情景、电气化加速情景,构建考虑发展潜能和碳约束的能源电力消费演化模型;采用基于行业用电特征演化的典型日负荷特性分析方法,分析电能替代重点行业的负荷曲线变化趋势,反映电气化发展对负荷特性的影响;最后,以南方某一线城市为例,综合考虑城市产业结构特点、产业发展情况及低碳发展政策等因素,从终端能源消费、电气化率、用电需求及负荷特性4个方面提出城市电力消费演化路径,为城市能源低碳转型方向提供依据和参考。 展开更多
关键词 终端电气化 电气化率 能源电力消费 演化路径 负荷特性
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一种路径-吞噬拓扑优化新方法
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作者 林家辉 李壮壮 +1 位作者 李学霖 李军 《中国机械工程》 北大核心 2025年第3期504-514,共11页
针对复杂工程结构优化过程中数学模型建立和求解困难的问题,建立了一种载荷传递路径理论与吞噬算法相结合的拓扑优化方法。利用载荷传递路径理论求解结构的主传递路径和次传递路径,并根据结构中应力相对高的区域多分配材料、应力相对低... 针对复杂工程结构优化过程中数学模型建立和求解困难的问题,建立了一种载荷传递路径理论与吞噬算法相结合的拓扑优化方法。利用载荷传递路径理论求解结构的主传递路径和次传递路径,并根据结构中应力相对高的区域多分配材料、应力相对低的区域少分配材料的原则,提出吞噬算法对材料进行最优分配。以悬臂梁和薄板结构为例,将所提路径-吞噬方法与变密度法进行仿真和试验对比,结果表明,所提方法提高了结构的刚度和强度,减小了结构质量,证明该方法对结构优化是准确有效的。该方法无需建立和求解复杂的数学模型,且考虑了光滑边界处理,优化后的结构可直接用于制造,尤其适合工程应用。 展开更多
关键词 拓扑优化 路径-吞噬方法 载荷传递路径理论 吞噬算法 变密度法
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基于最大主应变扫略面积的非比例度研究
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作者 董拉加 陈景杰 刘刚 《中国造船》 北大核心 2025年第4期224-236,共13页
基于在主应变空间中最大主应变的扫略面积,提出一种不依赖加载路径的新非比例度。研究了与不同应变路径对应的最大主应变轨迹以及非比例度,并与ITOH和MLP等模型比较,验证了本文定义的新非比例度简单有效。在此基础上,结合ASME等效应变... 基于在主应变空间中最大主应变的扫略面积,提出一种不依赖加载路径的新非比例度。研究了与不同应变路径对应的最大主应变轨迹以及非比例度,并与ITOH和MLP等模型比较,验证了本文定义的新非比例度简单有效。在此基础上,结合ASME等效应变参量提出新的多轴低周寿命预测模型,通过对船舶常用钢材304不锈钢和S460N钢的寿命预测分析,进一步证明了新非比例度的有效性,同时表明新的寿命预测模型是合理的。论文提出的方法在加载路径未知时可以预测工程结构疲劳位置的非比例度及寿命,具有一定的工程意义。 展开更多
关键词 加载路径 最大主应变 非比例度 寿命预测模型 多轴低周疲劳
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铁路车流理论研究综述
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作者 林柏梁 《大连交通大学学报》 2025年第3期1-18,78,共19页
铁路车流理论的核心工作是为运输组织决策提供支撑,即科学组织路网车流至不同去向和类型的列车中,兼顾货物的及时运达和机车车辆的高效周转。在过去的半个世纪,铁路车流理论得到长足发展,尤其是20世纪80年代以来,在理论体系构建和实践... 铁路车流理论的核心工作是为运输组织决策提供支撑,即科学组织路网车流至不同去向和类型的列车中,兼顾货物的及时运达和机车车辆的高效周转。在过去的半个世纪,铁路车流理论得到长足发展,尤其是20世纪80年代以来,在理论体系构建和实践应用方面均取得突破性进展。系统梳理了铁路车流理论的发展脉络,涵盖技术直达列车编组计划理论、装车地列车编组计划、车流径路、车流组织综合优化、空车调配、局域小车流组织优化及编组站内部车流接续优化、铁路车流理论的相关扩展、车流组织系统的相关应用现状等。在此基础上,进一步提出目前研究的不足与未来的发展方向,以期使铁路车流理论在提高运输效率、降低成本以及科学利用运输资源方面有更多的突破。 展开更多
关键词 铁路网 列车编组计划 车流径路 装车地直达列车 空车调配 编组站
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基于声发射技术的柴油机气缸盖火力面铸造缺陷检测技术
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作者 鲍君华 林嵩 《大连交通大学学报》 2025年第3期71-78,共8页
为了提高柴油机气缸盖水压试验的缺陷检测精度,引入声发射技术并进行声发射特性仿真。首先,应用ANSYS有限元软件对气缸盖火力面进行水压试验应力仿真,以确定声发射特性仿真中声源函数的幅值;其次,在COMSOL软件中建立声发射仿真模型,通... 为了提高柴油机气缸盖水压试验的缺陷检测精度,引入声发射技术并进行声发射特性仿真。首先,应用ANSYS有限元软件对气缸盖火力面进行水压试验应力仿真,以确定声发射特性仿真中声源函数的幅值;其次,在COMSOL软件中建立声发射仿真模型,通过设定声源函数、网格尺寸和仿真时步等条件,对气缸盖火力面进行声发射特性仿真,不仅揭示了弹性波的传播规律,还通过检测点的位移-时间曲线计算出弹性波的传播速度,侧面验证了COMSOL模拟声发射弹性波传播的可行性;最后,对测量点的位移信号进行短时傅里叶变换,结合灰铸铁板的频散曲线,确定弹性波传播过程中的主要频率及模态,从而为缺陷类型识别及尺寸评估提供理论依据。 展开更多
关键词 柴油机缸盖 声发射仿真 COMSOL 缺陷检测
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