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复合型裂纹张开位移和裂尖附近塑性区域的有限元分析
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作者 谈金祝 喻红梅 周骥 《南京化工大学学报》 1997年第4期38-42,共5页
用CAD技术和C语言知识,对受双向载荷含Ⅰ-Ⅱ复合型裂纹十字形板进行了计算机自动划分有限单元体网格并生成数据文件。采用四边形八节点等参元对含Ⅰ-Ⅱ复合型裂纹十字形板进行了弹塑性有限元分析,获得了裂尖附近塑性区形状。弹... 用CAD技术和C语言知识,对受双向载荷含Ⅰ-Ⅱ复合型裂纹十字形板进行了计算机自动划分有限单元体网格并生成数据文件。采用四边形八节点等参元对含Ⅰ-Ⅱ复合型裂纹十字形板进行了弹塑性有限元分析,获得了裂尖附近塑性区形状。弹塑性有限元法计算的裂纹面张开位移与试验结果相吻合。 展开更多
关键词 复合型裂纹 张开位移 有限元 裂纹 裂尖
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钢管混凝土柱不同构造单梁穿心节点的有限元分析 被引量:3
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作者 梅力彪 周云 阴毅 《钢结构》 2006年第1期57-61,共5页
钢管混凝土柱与梁的节点构造和受力分析是发展组合结构体系的关键技术。利用有限元分析软件AN-SYS,对采用不同构造的典型钢管混凝土柱与现浇钢筋混凝土梁的单梁穿心节点进行了空间非线性有限元分析。分析了垂直对称荷载作用下,采用不同... 钢管混凝土柱与梁的节点构造和受力分析是发展组合结构体系的关键技术。利用有限元分析软件AN-SYS,对采用不同构造的典型钢管混凝土柱与现浇钢筋混凝土梁的单梁穿心节点进行了空间非线性有限元分析。分析了垂直对称荷载作用下,采用不同构造的穿心节点内的应力分布情况和内力传递机理,根据分析结果提出了该类型节点的构造设计建议。 展开更多
关键词 钢管混凝土 单梁穿心节点 非践有限元应力分布 内力传递 构造设计
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输电塔线体系的风(雨)致振动响应与稳定性研究 被引量:30
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作者 李宏男 白海峰 《土木工程学报》 EI CSCD 北大核心 2008年第11期31-38,共8页
根据输电塔线体系在风(雨)激励下破坏的实际状况,建立了'三塔两跨'有限元分析模型,其中,输电塔采用三自由度梁单元,导(地)线采用索单元;提出雨荷载的计算方法以及与风湍流共同作用于输电塔线体系的荷载组合原则;分析输电塔、导(... 根据输电塔线体系在风(雨)激励下破坏的实际状况,建立了'三塔两跨'有限元分析模型,其中,输电塔采用三自由度梁单元,导(地)线采用索单元;提出雨荷载的计算方法以及与风湍流共同作用于输电塔线体系的荷载组合原则;分析输电塔、导(地)线和结构体系的结构动力特性及其相互关系;采用数值模拟方法,建立设计与灾害荷载的不同工况组合,分别在时域和频域内对输电塔的动力响应规律进行分析;采用结构主要组件(如主立柱杆件和输电线)强度分析的方法,分析结构强度的变化和灾害发生的可能性原因。研究表明:输电塔线体系的运动耦合性对结构动力特性有不容忽视的影响;降雨对输电塔线体系的响应具有明显影响,且有与风湍流同时作用的激励特征;结构体系发生连续倒塔破坏的原因是风雨共同作用,结构局部动态受压失稳造成的。 展开更多
关键词 输电塔线体系 风(雨)荷载作用 有限元 结构动力特 动力响应分析 强度与稳定
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土结构相互作用体系动力响应的敏感性分析 被引量:1
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作者 古泉 曾志弘 +1 位作者 邱志坚 郑翥鹏 《地下空间与工程学报》 CSCD 北大核心 2015年第S1期80-86 123,123,共8页
本文概述了基于直接微分法的非线性有限元动力响应对于模型材料参数、几何参数和地震不确定性参数的敏感性分析方法,介绍了基于力法、位移法和三场混合法等方法的有限单元直接微分法敏感性分析最新进展,并着重讲述了将直接微分法拓展到... 本文概述了基于直接微分法的非线性有限元动力响应对于模型材料参数、几何参数和地震不确定性参数的敏感性分析方法,介绍了基于力法、位移法和三场混合法等方法的有限单元直接微分法敏感性分析最新进展,并着重讲述了将直接微分法拓展到非线性结构和岩土等材料模型中,用于分析土-结相互作用体系的敏感性分析方法。本文将此敏感性方法应用到一个有实际工程背景的受双向地震荷载作用下的三维土-结相互作用体系中,通过有限差分法证明敏感性分析计算结果的高效性和正确性,验证了此方法应用到实际工程中的有效性和实用性。直接微分法由于计算得到的是半解析解,具有精确、高效、不受数值噪音干扰等优点,具有潜在重要的工程价值。 展开更多
关键词 有限元敏感分析 力法 直接微分法 钢筋混凝土框架结构 土和结构相互作用
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密肋壁板轻框结构模型模态及匹配性分析
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作者 袁泉 姚谦峰 贾英杰 《结构工程师》 2003年第z1期276-278,共3页
本文介绍了一种新型结构体系--密肋壁板轻框结构.针对该体系模态问题建立梁-板单元的空间有限元模型,参照振动台试验结果研究结构模型模态及其匹配性.并给出算例.
关键词 密肋壁板轻框结构 有限元模型 模态匹配
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Numerical Simulation of Multiple Collisions Between Ice Ridge and Polar Ship
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作者 JIA Bin JU Lei +2 位作者 SHI Li WANG Qing PANG Fu-zhen 《船舶力学》 EI CSCD 北大核心 2024年第12期1908-1924,共17页
Ships navigating in ice-covered regions will inevitably collide with ice ridges.Compared to other ice bodies,ice ridges exhibit more complicated mechanical behaviors due to the scale and structure characteristics.In t... Ships navigating in ice-covered regions will inevitably collide with ice ridges.Compared to other ice bodies,ice ridges exhibit more complicated mechanical behaviors due to the scale and structure characteristics.In this paper,nonlinear finite element method is used to investigate the interaction between a polar ship and an ice ridge.The ice ridge is modelled as elastic-plastic material based on Drucker-Prager yield function,with the consideration of the influence of cohesion,friction angle and material hardening.The material model is developed in LS-DYNA and solved using semi-implicit mapping algorithm.The stress distribution of ice ridge and ship,and the ice load history are evaluated through the simulation of multiple collisions.In addition,parametric analysis is performed to investigate the influence of ridge thickness and impact velocity on the ice load and energy absorption. 展开更多
关键词 ice ridge SHIP nonlinear FEM ice load INTERACTION STRENGTH
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Effect of wire diameter compression ratio on drawing deformation of micro copper wire
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作者 Tao HUANG Han-jiang WU +3 位作者 Ke-xing SONG Yan-min ZHANG Yan-jun ZHOU Shao-lin LI 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2024年第8期2605-2618,共14页
A crystal plasticity finite element model was developed for the drawing deformation of pure copper micro wire,based on rate-dependent crystal plasticity theory.The impact of wire diameter compression ratio on the micr... A crystal plasticity finite element model was developed for the drawing deformation of pure copper micro wire,based on rate-dependent crystal plasticity theory.The impact of wire diameter compression ratio on the micro-mechanical deformation behavior during the wire drawing process was investigated.Results indicate that the internal deformation and slip of the drawn wire are unevenly distributed,forming distinct slip and non-slip zones.Additionally,horizontal strain concentration bands develop within the drawn wire.As the wire diameter compression ratio increases,the strength of the slip systems and the extent of slip zones inside the deformation zone also increase.However,the fluctuating stress state,induced by contact pressure and frictional stress,results in a rough and uneven wire surface and diminishes the stability of the drawing process. 展开更多
关键词 micro copper wire drawing deformation crystal plasticity finite element slip mode
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Fabrication of lightweight 3D interpenetrated NiTi@Mg composite with superior bending properties
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作者 Yu-jing LIU Xiao-chun LIU +4 位作者 Kun-mao LI Xiang WU Sheng-feng ZHOU Wei LI Wen-cai ZHANG 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2024年第11期3569-3584,共16页
A NiTi@Mg interpenetrating phase composite with high strength and lightweight was prepared by additive manufacturing(AM)and infiltration technology,and the interface bonding,three-point bending properties and cyclic c... A NiTi@Mg interpenetrating phase composite with high strength and lightweight was prepared by additive manufacturing(AM)and infiltration technology,and the interface bonding,three-point bending properties and cyclic compressive properties of NiTi@Mg composites were investigated.The results show that the metallurgically bonded interface is formed at the NiTi/Mg interfaces.The bending strength and compressive strength of the NiTi@Mg composite are 2.5 and 1.7 times higher than those of the NiTi scaffold,respectively.During the bending deformation process,a large number of dislocations are observed to accumulate in the soft Mg area at the interface.Furthermore,the finite element model showed that the stress accumulation area,where the bending crack is initiated,is located at the interface of NiTi and Mg.The strengthening mechanism of NiTi@Mg composites is attributed to the twinning strengthening of Mg and heterogeneous structure strengthening. 展开更多
关键词 metal composites NiTi@Mg bending properties finite element simulation strengthening mechanism
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Influence of confined water on the limit support pressure of tunnel face in weakly water-rich strata
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作者 LI Yun-fa WU Guo-jun +2 位作者 CHEN Wei-zhong YUAN Jing-qiang HUO Meng-zhe 《Journal of Central South University》 SCIE EI CAS CSCD 2024年第8期2844-2859,共16页
In the process of shield tunneling through soft soil layers,the presence of confined water ahead poses a significant threat to the stability of the tunnel face.Therefore,it is crucial to consider the impact of confine... In the process of shield tunneling through soft soil layers,the presence of confined water ahead poses a significant threat to the stability of the tunnel face.Therefore,it is crucial to consider the impact of confined water on the limit support pressure of the tunnel face.This study employed the finite element method(FEM)to analyze the limit support pressure of shield tunnel face instability within a pressurized water-containing layer.Subsequently,a multiple linear regression approach was applied to derive a concise solution formula for the limit support pressure,incorporating various influencing factors.The analysis yields the following conclusions:1)The influence of confined water on the instability mode of the tunnel face in soft soil layers makes the displacement response of the strata not significant when the face is unstable;2)The limit support pressure increases approximately linearly with the pressure head,shield tunnel diameter,and tunnel burial depth.And inversely proportional to the thickness of the impermeable layer,soil cohesion and internal friction angle;3)Through an engineering case study analysis,the results align well with those obtained from traditional theoretical methods,thereby validating the rationality of the equations proposed in this paper.Furthermore,the proposed equations overcome the limitation of traditional theoretical approaches considering the influence of changes in impermeable layer thickness.It can accurately depict the dynamic variation in the required limit support pressure to maintain the stability of the tunnel face during shield tunneling,thus better reflecting engineering reality. 展开更多
关键词 weakly water-rich strata confined aquifer limit support pressure finite element method multiple linear regression
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Numerical Analysis for High⁃Throughput Elastic Modulus Measurement of Substrate⁃Supported Thin Films
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作者 HAN Meidong LI Yu +1 位作者 ZOU Jinluo HE Wei 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI CSCD 2024年第5期555-563,共9页
Micro/nano-thin films are widely used in the fields of micro/nano-electromechanical system(MEMS/NEMS)and flexible electronics,and their mechanical properties have an important impact on the stability and reliability o... Micro/nano-thin films are widely used in the fields of micro/nano-electromechanical system(MEMS/NEMS)and flexible electronics,and their mechanical properties have an important impact on the stability and reliability of components.However,accurate characterization of the mechanical properties of thin films still faces challenges due to the complexity of film-substrate structure,and the characterization efficiency of traditional techniques is insufficient.In this paper,a high-throughput determination method of the elastic modulus of thin films is proposed based on the strain variance method,the feasibility of which is analyzed by the finite element method(FEM),and the specific tensile configuration with array-distributed thin films is designed and optimized.Based on the strain difference between the film-substrate region and the uncoated region,the elastic modulus of multiple films is obtained simultaneously,and the influences of film width,spacing,thickness,and distribution on the measurement of elastic modulus are elucidated.The results show that the change in film width has a more obvious effect on the elastic modulus determination than film spacing and thickness,i.e.,the larger the film width is,the closer the calculation results are to the theoretical value,and the change in calculation results tends to be stabilized when the film width increases to a certain length.Specifically,the simultaneous measurement of the elastic modulus of eight metal films on a polyimide(PI)substrate with a length of 110 mm and a width of 30 mm can be realized,and the testing throughput can be further increased with the extension of the substrate length.This study provides an efficient and low-cost method for measuring the elastic modulus of thin films,which is expected to accelerate the development of new thin film materials. 展开更多
关键词 HIGH-THROUGHPUT thin films elastic modulus finite element method strain variance method
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Optimal design of modular dual-field modulated permanent magnet linear motors with thrust characteristics
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作者 MIAO Zhongcui ZHANG Lei +1 位作者 LI Yan ZHANG Hui 《Journal of Measurement Science and Instrumentation》 CAS CSCD 2024年第4期547-557,共11页
To reduce thrust ripple and cost and improve the average thrust of permanent magnet linear motors,a modular dual-field modulation permanent magnet linear motor was studied,and the parameters were optimized.First,sensi... To reduce thrust ripple and cost and improve the average thrust of permanent magnet linear motors,a modular dual-field modulation permanent magnet linear motor was studied,and the parameters were optimized.First,sensitive parameters were selected using the Taguchi method,and then the optimal variables were sampled using the optimal Latin hypercube experimental design method and an ensemble of surrogates model of optimization objectives,and its accuracy was verified.Next,a multi-objective particle swarm optimization algorithm was used to optimize the purpose of“maximum average thrust and minimum thrust ripple”,and the Pareto front of average thrust and thrust ripple was obtained.Finite element analysis showed that the optimized modular dual flux-modulation permanent magnet linear motor(MDFMPMLM)had a 29.5%reduction in thrust ripple and a 5%increase in average thrust compared to the original motor.This study provided an effective method for improving the performance of permanent magnet linear motors. 展开更多
关键词 field modulation thrust characteristics finite element analysis ensemble of surrogates model permanent magnet linear motor multi-objective optimization
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Design and Fabrication of Flexible Thermoelectric String-Based Fabrics
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作者 AHMAAD Hasib Ud Din DU Minzhi +8 位作者 HAN Xue JING Yuanyuan YANG Xiaona ZHANG Juan CHEN Xinyi SYED Rashedul Islam HUANG Fuli XU Jinchuan ZHANG Kun 《Journal of Donghua University(English Edition)》 CAS 2024年第5期474-481,共8页
Flexible thermoelectric(TE)materials that convert heat into electricity have been widely used in wearable electronics and other flexible devices.In this work,inorganic TE pillars were combined with thermoplastic polyu... Flexible thermoelectric(TE)materials that convert heat into electricity have been widely used in wearable electronics and other flexible devices.In this work,inorganic TE pillars were combined with thermoplastic polyurethane(TPU)to assemble a flexible string-shaped TE generator(TEG)for the fabrication of the thermoelectric fabric(TEF).Moreover,finite element analysis(FEA)was used to optimize the dimensions of the TE string and evaluate its performance.The FEA results showed that the inter-pillar spacing significantly affected the temperature difference,the output voltage and the internal resistance.A maximum power density of 3.43μW/cm^(2)(temperate gradientΔT=10.5 K)was achieved by the TE string with a diameter of 3.5 mm and an inter-pillar spacing of 2 mm.However,under the experimental condition,the achievable power density of the fabricated three-dimensional(3D)TEF was limited to 29%of the simulation result because of the inclination of the TE string within the fabric concerning heat plate contact and copper wire-TE pillar connections.The actual TE string also demonstrated high flexibility and stable mechanical properties after 450 bending cycles.Thus,the study would provide a foundation for future research in developing more efficient TEFs to offer a comfortable and conformable option for wearable energy harvesting applications. 展开更多
关键词 thermoelectric fabric(TEF) thermoelectric(TE)pillar thermoplastic polyurethane(TPU) finite element analysis(FEA)
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Modeling and characterization on electroplastic effect during dynamic deformation of 5182-O aluminum alloy
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作者 Hong-chun SHANG Song-chen WANG Yan-shan LOU 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2024年第8期2455-2475,共21页
The coupling effects of electrical pulse,temperature,strain rate,and strain on the flow behavior and plasticity of 5182-O aluminum alloy were investigated and characterized.The isothermal tensile test and electrically... The coupling effects of electrical pulse,temperature,strain rate,and strain on the flow behavior and plasticity of 5182-O aluminum alloy were investigated and characterized.The isothermal tensile test and electrically-assisted isothermal tensile test were performed at the same temperature,and three typical models were further embedded in ABAQUS/Explicit for numerical simulation to illustrate the electroplastic effect.The results show that electric pulse reduces the deformation resistance but enhances the elongation greatly.The calibration accuracy of the proposed modified Lim−Huh model for highly nonlinear and coupled dynamic hardening behavior is not much improved compared to the modified Kocks−Mecking model.Moreover,the artificial neural network model is very suitable to describe the macromechenical response of materials under the coupling effect of different variables. 展开更多
关键词 machine learning aluminium alloy electroplastic effect coupling effect finite element analysis
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3D laterolog array sonde design and response simulation 被引量:4
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作者 尹成芳 柯式镇 +3 位作者 许巍 姜明 张雷洁 陶婕 《Applied Geophysics》 SCIE CSCD 2014年第2期223-234,254,255,共14页
A new three-dimensional laterolog array sonde(3D-LS) is presented. The 3DLS is based on existing high-resolution laterolog array and azimuthal resistivity imaging sondes with radial, longitudinal, and circumferentia... A new three-dimensional laterolog array sonde(3D-LS) is presented. The 3DLS is based on existing high-resolution laterolog array and azimuthal resistivity imaging sondes with radial, longitudinal, and circumferential detection abilities. Six investigation modes are designed using the 3D finite-element method and different investigation depths are simulated based on the pseudo-geometrical factor of the six modes. The invasion profile is described using multi-array radial logs. From the analysis of the pseudo-geometrical factor, the investigation depth of the 3D-LS is about 1.5 m for conductive invasion, which is close to that of the dual laterolog tool but greater than that of the highly integrated azimuthal laterolog sonde. The vertical and azimuthal resolution is also analyzed with the same method. The 3DLS can detect low-resistivity anomalies of 0.5 m thickness and 15? around the borehole for infinitely thick formations. This study lays the foundation for more work on 3D laterolog array sonde for evaluating low-resistivity anomalies. 展开更多
关键词 Three-dimensional laterolog sonde numerical modeling FEM DETECTIVITY lowresistivity
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Numerical Algorithm for Polarity Reversal Electric Field and Its Application 被引量:1
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作者 吕晓德 高本庆 《Journal of Beijing Institute of Technology》 EI CAS 1999年第2期50-55,共6页
Aim To analyze the transient speciality of nonlinear, anisotropic, AC+DC coupling electric field, and to compare the withstand voltage strength of different insulation structures. Methods The transient process o... Aim To analyze the transient speciality of nonlinear, anisotropic, AC+DC coupling electric field, and to compare the withstand voltage strength of different insulation structures. Methods The transient process of polarity reversal is analyzed, considering the anisotropic property of oil immersed press board, a new finite element model based on Galerkin method is presented and verified. The model developed is applied to calculate the electric field distribution in four typical winding end structures of the converter transformer. Results\ The whole ring structure possesses the best insulation characteristics. Conclusion\ By introducing reasonable insulation components, insulation strength with the same surrounding sizes can be improved more than 30%. 展开更多
关键词 ANISOTROPY finite element method polarity reversal INSULATION
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Grain statistics effect on deformation behavior in asymmetric rolling of pure copper foil by crystal plasticity finite element model 被引量:4
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作者 陈守东 刘相华 刘立忠 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2015年第10期3370-3380,共11页
The grain statistics effect was investigated through asymmetric rolling of pure copper foil by a realistic polycrystalline aggregates model and crystal plasticity element finite model.A polycrystalline aggregate model... The grain statistics effect was investigated through asymmetric rolling of pure copper foil by a realistic polycrystalline aggregates model and crystal plasticity element finite model.A polycrystalline aggregate model was generated and a crystal plasticity-based finite element model was developed for each grain and the specimen as a whole.The crystal plasticity model itself is rate dependent and accounts for local dissipative hardening effects and the original orientation of each grain was generated based on the orientation distribution function(ODF).The deformation behaviors,including inhomogeneous material flow,decrease of contact press and roll force with the increase of grain size for the constant size of specimens,were studied.It is revealed that when the specimens are composed of only a few grains across thickness,the grains with different sizes,shapes and orientations are unevenly distributed in the specimen and each grain plays a significant role in micro-scale plastic deformation and leads to inhomogeneous deformation and the scatter of experimental and simulation results.The slip system activity was examined and the predicted results are consistent with the surface layer model.The slip band is strictly influenced by the misorientation of neighbor grain with consideration of slip system activity.Furthermore,it is found that the decrease of roll force and the most active of slip system in surface grains are caused by the increase of free surface grain effect when the grain size is increased.The results of the physical experiment and simulation provide a basic understanding of micro-scaled plastic deformation behavior in asymmetric foil rolling. 展开更多
关键词 foil rolling grain heterogeneity crystal plasticity finite element deformation behavior
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Finite element analysis of stress at implant-bone interface of dental implants with different structures 被引量:3
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作者 陈良建 何浩 +3 位作者 李益民 李挺 郭小平 汪瑞芳 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2011年第7期1602-1610,共9页
The effect of structure,elastic modulus and thickness of lower modulus layer in porous titanium implants on the stress distribution at the implant-bone interface was investigated.Three-dimensional finite element model... The effect of structure,elastic modulus and thickness of lower modulus layer in porous titanium implants on the stress distribution at the implant-bone interface was investigated.Three-dimensional finite element models of different titanium implants were constructed.The structures of the implants included the whole lower modulus style (No.1),bio-mimetic style (No.2),the whole lower modulus style in cancellous bone (No.3) and the whole dense style No.4.The stress distributions at bone-implant interface under static loading were analyzed using Ansys Workbench 10.0 software.The results indicated that the distribution of interface stress is strongly depended on the structure of the implants.The maximum stresses in cancellous bone and root region of implant No.2 are lower than those in the other three implants.A decrease in the modulus of the low modulus layer facilitates the interface stress transferring.Increasing the thickness of the low modulus layer can reduce the stress and induce a more uniform stress distribution at the interface.Among the four implants,biomimetic style implant No.2 is superior in transferring implant-bone interface stress to surrounding bones. 展开更多
关键词 titanium implant elastic modulus finite element analysis porous structure
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NONLINEAR BUCKLING ANALYSIS OF TUBING IN DEVIATED WELLS BY FINITE ELEMENT METHOD 被引量:9
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作者 刘峰 王鑫伟 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI 2004年第1期36-42,共7页
The equilibrium equations and the functional for tubing buckling in arbitrary straight wells are derived. The entire buckling process of tubing in deviated wells is analyzed for the first time by utilizing the finite ... The equilibrium equations and the functional for tubing buckling in arbitrary straight wells are derived. The entire buckling process of tubing in deviated wells is analyzed for the first time by utilizing the finite element method. The effects of gravity and torques on the buckling are included in the analyses and the calculated results are well compared with existing solutions. It is shown that the buckling only occurs at the lower portion of the tubing where the axial load is the largest, and the contact force of the well, the bending moment of the tubing and the buckling displacement of this portion vary periodically. The buckling spreads upwards from the bit with the increase of axial load. There is no buckling at the upper portion of the tubing where the bending moment is zero. And the contact force of this section increases only slightly with the increase of the axial load. With the increase of the deviation angle, the length of buckling portion and buckling displacement amplitude decrease, the contact force increases with the increase of load at the upper portion and its amplitude decreases at the lower buckling section, the bending moment remains zero at the upper portion and its amplitude decreases at the lower buckling portion. The buckling displacement increases with the increase of the torque, but the increment is very small. 展开更多
关键词 deviated wells drill-tubing BUCKLING non-linearity finite element method
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Experimental and numerical study on flexural behaviors of steel reinforced engineered cementitious composite beams 被引量:8
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作者 蔡景明 潘金龙 袁方 《Journal of Southeast University(English Edition)》 EI CAS 2014年第3期330-335,共6页
To investigate the flexural behaviors of steel reinforced engineered cementitious composite (ECC) beams, the behaviors of the steel reinforced ECC beam and the conventional steel reinforced concrete beam subjected t... To investigate the flexural behaviors of steel reinforced engineered cementitious composite (ECC) beams, the behaviors of the steel reinforced ECC beam and the conventional steel reinforced concrete beam subjected to flexural load are experimentally compared. The experimental results show that the flexural strength and ductility of the steel reinforced ECC beam are 24.8% and 187.67% times larger than those of the steel reinforced concrete beam, and the substitution of concrete with ECC can significantly delay the propagation of cracks. Additionally, a simplified constitutive model of the ECC material is used to simulate the flexural behaviors of beams by the finite element analysis (FEA). The results show a good agreement between the simulation and test results. The crack width of the steel reinforced ECC beam can be limited to 0.4 mm under the service load conditions. The application of ductile ECC can significantly increase the flexural performance in terms of flexural strength, deformation capacity and ductility of the beams. 展开更多
关键词 engineered cementitious composites (ECC) DUCTILITY flexural behavior finite element
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拉弯过程中预拉力对角型材零件回弹的影响规律 被引量:3
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作者 王俊彪 于成龙 +1 位作者 王永军 张贤杰 《航空制造技术》 2006年第1期98-100,共3页
采用弹塑性有限元方法对不同预拉力下角型材的转台式拉弯成形过程进行了模拟。首先建立转台式拉弯成形过程的有限元模型,然后通过分析由模拟计算所得到的不同预拉力下拉弯零件的应力应变场和回弹角,得出预拉力对角型材拉弯零件回弹的影... 采用弹塑性有限元方法对不同预拉力下角型材的转台式拉弯成形过程进行了模拟。首先建立转台式拉弯成形过程的有限元模型,然后通过分析由模拟计算所得到的不同预拉力下拉弯零件的应力应变场和回弹角,得出预拉力对角型材拉弯零件回弹的影响规律。所得结果可作为设计拉弯成形模具和确定拉弯工艺参数的参考。 展开更多
关键词 转台式拉弯 预拉力 回弹角 弹塑 有限元
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