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Comparative study on the oblique water-entry of high-speed projectile based on rigid-body and elastic-plastic body model 被引量:1
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作者 Xiangyan Liu Xiaowei Cai +3 位作者 Zhengui Huang Yu Hou Jian Qin Zhihua Chen 《Defence Technology(防务技术)》 2025年第4期133-155,共23页
To examine the similarities and differences in the evolution of cavity,wetting and dynamics of a highspeed,oblique water-entry projectile with different positive angles of attack,a comparative analysis has been conduc... To examine the similarities and differences in the evolution of cavity,wetting and dynamics of a highspeed,oblique water-entry projectile with different positive angles of attack,a comparative analysis has been conducted based on the numerical results of two mathematical models,the rigid-body model and fluid-structure interaction model.In addition,the applicable scope of the above two methods,and the structural response characteristics of the projectile have also been investigated.Our results demonstrate that:(1) The impact loads and angular motion of the projectile of the rigid-body method are more likely to exhibit periodic variations due to the periodic tail slap,its range of positive angles of attack is about α<2°.(2) When the projectile undergone significant wetting,a strong coupling effect is observed among wetting,structural deformation,and projectile motion.With the applied projectile shape,it is observed that,when the projectile bends,the final wetting position is that of Part B(cylinder of body).With the occu rrence of this phenomenon,the projectile ballistics beco me completely unstable.(3) The force exerted on the lower surface of the projectile induced by wetting is the primary reason of the destabilization of the projectile traj ectory and structu ral deformation failure.Bending deformation is most likely to appear at the junction of Part C(cone of body) and Part D(tail).The safe angles of attack of the projectile stability are found to be about α≤2°. 展开更多
关键词 Fluid-structure interaction Rigid-body model Elastic-plastic model Structural deformation Impact loads Structural safety of projectile
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Deformation mechanism of a novel pipe-roof composite slab:An experimental and theoretical investigation
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作者 LU Bo JIA Peng-jiao +3 位作者 ZHAO Wen NI Peng-peng BAI Qian CHENG Cheng 《Journal of Central South University》 2025年第3期1044-1059,共16页
Steel tube slab (STS) structure, a novel pipe-roof structure, of which steel tubes are connected with flange plates, bolts and concrete, is an increasingly popular supporting structure for underground space developmen... Steel tube slab (STS) structure, a novel pipe-roof structure, of which steel tubes are connected with flange plates, bolts and concrete, is an increasingly popular supporting structure for underground space development. Whilst the load-bearing of pipe-roof structures has been the subject of much research, uncertainties of deformation mechanism and the derivation of reliable calculation methods remain a challenge. For efficient design and wider deployment, this paper presents a bidirectional bending test to investigate the bending stiffnesses, load capacities and deformation mechanisms. The results show that the STS specimens exhibit good ductility and experience bending failure, and their deformation curves follow a half-sine wave upon loading. On this basis, the development of an STS composite slab deformation prediction model is proposed, along with the estimation for its bending stiffness. Theoretical predictions are shown to be in good agreement with the experimental measurements, with a maximum error of less than 15%. The outcomes of this investigation can provide references for the design and application of STS structures. 展开更多
关键词 steel tube slab deformation characteristics bending stiffness theoretical model
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Dislocation density model and microstructure of 7A85 aluminum alloy during thermal deformation 被引量:10
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作者 HU Jian-liang WU Xiu-jiang +3 位作者 BO Hong JIAO Zi-teng HUANG Shi-quan JIN Miao 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第10期2999-3007,共9页
The microstructure evolution of 7A85 aluminum alloy at the conditions of strain rate(0.001−1 s^(−1))and deformation temperature(250−450°C)was studied by optical microscopy(OM)and electron back scattering diffract... The microstructure evolution of 7A85 aluminum alloy at the conditions of strain rate(0.001−1 s^(−1))and deformation temperature(250−450°C)was studied by optical microscopy(OM)and electron back scattering diffraction(EBSD).Based on the K-M dislocation density model,a two-stage K-M dislocation density model of 7A85 aluminum alloy was established.The results reveal that dynamic recovery(DRV)and dynamic recrystallization(DRX)are the main mechanisms of microstructure evolution during thermal deformation of 7A85 aluminum alloy.350−400°C is the transformation zone from dynamic recovery to dynamic recrystallization.At low temperature(≤350°C),DRV is the main mechanism,while DRX mostly occurs at high temperature(≥400°C).At this point,the sensitivity of microstructure evolution to temperature is relatively high.As the temperature increased,the average misorientation angle(θˉ_(c))increased significantly,ranging from 0.93°to 7.13°.Meanwhile,the f_(LAGBs) decreased with the highest decrease of 24%. 展开更多
关键词 hot deformation microstructure evolution dynamic recrystallization dislocation density model
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A model of deformation of thin-wall surface parts during milling machining process 被引量:11
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作者 王凌云 黄红辉 +2 位作者 Rae W.WEST 李厚佳 杜继涛 《Journal of Central South University》 SCIE EI CAS CSCD 2018年第5期1107-1115,共9页
A three-dimensional finite element model was established for the milling of thin-walled parts. The physical model of the milling of the part was established using the AdvantEdge FEM software as the platform. The alumi... A three-dimensional finite element model was established for the milling of thin-walled parts. The physical model of the milling of the part was established using the AdvantEdge FEM software as the platform. The aluminum alloy impeller was designated as the object to be processed and the boundary conditions which met the actual machining were set. Through the solution, the physical quantities such as the three-way cutting force, the tool temperature, and the tool stress were obtained, and the calculation of the elastic deformation of the thin-walled blade of the free-form surface at the contact points between the tool and the workpiece was realized. The elastic deformation law of the thin-walled blade was then predicted. The results show that the maximum deviation between the predicted value and the actual measured machining value of the elastic deformation was 26.055 μm; the minimum deviation was 2.011 μm, with the average deviation being 10.154 μm. This shows that the prediction is in close agreement with the actual result. 展开更多
关键词 thin-walled surface parts milling force elastic deformation finite element model
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Hot deformation behavior and constitutive modeling of Q345E alloy steel under hot compression 被引量:6
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作者 钱东升 彭亚亚 邓加东 《Journal of Central South University》 SCIE EI CAS CSCD 2017年第2期284-295,共12页
Q345E as one of typical low alloy steels is widely used in manufacturing basic components in many fields because of its eminent formability under elevated temperature. In this work, the deformation behavior of Q345E s... Q345E as one of typical low alloy steels is widely used in manufacturing basic components in many fields because of its eminent formability under elevated temperature. In this work, the deformation behavior of Q345E steel was investigated by hot compression experiments on Gleeble-3500 thermo-mechanical simulator with the temperature ranging from 850 ℃ to 1150 ℃ and strain rate ranging from 0.01 s-1 to 10 s-1. The experimental results indicate that dynamic softening of Q345E benefits from increasing deformation temperature and decreasing strain rate. The mathematical relationship between dynamic softening degree and deformation conditions is established to predict the dynamic softening degree quantitatively, which is further proved by some optical microstructures of Q345E. In addition, the experimental results also reveal that the stress level decreases with increasing deformation temperature and decreasing strain rate. The constitutive equation for flow stress of Q345E is formulated by Arrihenius equation and the modified Zener-Hollomon parameter considering the compensation of both strain and strain rate. The flow stress values predicted by the constitutive equation agree well with the experimental values, realizing the accurate prediction of the flow stress of Q345E steel under hot deformation. 展开更多
关键词 hot deformation behavior dynamic softening flow stress constitutive model
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Permanent deformation and prediction model of construction and demolition waste under repeated loading 被引量:7
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作者 HUANG Chao ZHANG Jun-hui +2 位作者 ZHANG An-shun LI Jue WANG Xin-yu 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第4期1363-1375,共13页
This study aims to reveal the macroscopic permanent deformation(PD)behavior and the internal structural evolution of construction and demolition waste(CDW)under loading.Firstly,the initial matric suction of CDW was me... This study aims to reveal the macroscopic permanent deformation(PD)behavior and the internal structural evolution of construction and demolition waste(CDW)under loading.Firstly,the initial matric suction of CDW was measured by the filter paper method.Secondly,the PD of CDW with different humidity and stress states was investigated by repeated load triaxial tests,and a comprehensive prediction model was established.Finally,the discrete element method was performed to analyze the internal structural evolution of CDW during deformation.These results showed that the VAN-GENUCHTEN model could describe the soil-water characteristic curve of CDW well.The PD increases with the increase of the deviator stress and the number of cyclic loading,but the opposite trend was observed when the initial matric suction and confining pressure increased.The proposed model in this study provides a satisfactory prediction of PD.The discrete element method could accurately simulate the macroscopic PD of CDW,and the shear force,interlock force and sliding content increase with the increase of deviator stress during the deformation.The research could provide useful reference for the deformation stability analysis of CDW under cyclic loading. 展开更多
关键词 construction and demolition waste subgrade filler permanent deformation discrete element method prediction model
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Modeling of metadynamic recrystallization kinetics after hot deformation of low-alloy steel Q345B 被引量:3
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作者 马博 彭艳 +1 位作者 刘云飞 贾斌 《Journal of Central South University》 SCIE EI CAS 2010年第5期911-917,共7页
Based on the steady-state strain measured by single-pass hot compression tests,the method by a double-pass hot compression testing was developed to measure the metadynamic-recrystallization kinetics.The metadynamic re... Based on the steady-state strain measured by single-pass hot compression tests,the method by a double-pass hot compression testing was developed to measure the metadynamic-recrystallization kinetics.The metadynamic recrystallization behavior of low-alloy steel Q345B during hot compression deformation was investigated in the temperature range of 1 000-1 100℃,the strain rate range of 0.01-0.10 s -1 and the interpass time range of 0.5-50 s on a Gleeble-3500 thermo-simulation machine.The results show that metadynamic recrystallization during the interpass time can be observed.As the deformation temperature and strain rate increase,softening caused by metadynamic recrystallization is obvious.According to the data of thermo-simulation,the metadynamic recrystallization activation energy is obtained to be Qmd=100.674 kJ/mol and metadynamic recrystallization kinetics model is set up.Finally,the error analysis of metadynamic recrystallization kinetics model proves that the model has high accuracy(correlation coefficient R=0.988 6). 展开更多
关键词 low-alloy steel kinetics model hot deformation metadynamic recrystallization activation energy
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Elastoplastic model for discontinuous shear deformation of deep rock mass 被引量:3
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作者 王明洋 范鹏贤 +1 位作者 钱七虎 邓宏见 《Journal of Central South University》 SCIE EI CAS 2011年第3期866-873,共8页
Deep rock mass possesses some unusual properties due to high earth stress,which further result in new problems that have not been well understood and explained up to date.In order to investigate the deformation mechan... Deep rock mass possesses some unusual properties due to high earth stress,which further result in new problems that have not been well understood and explained up to date.In order to investigate the deformation mechanism,the complete deformation process of deep rock mass,with a great emphasis on local shear deformation stage,was analyzed in detail.The quasi continuous shear deformation of the deep rock mass is described by a combination of smooth functions:the averaged distribution of the original deformation field,and the local discontinuities along the slip lines.Hence,an elasto-plastic model is established for the shear deformation process,in which the rotational displacement is taken into account as well as the translational component.Numerical analysis method was developed for case study.Deformation process of a tunnel under high earth stress was investigated for verification. 展开更多
关键词 deep rock mass discontinuous deformation elasto-plastic model
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Several Typical Geomechanical Models of Deformation Fracture of Mountain in High Earthquake Intensity Area
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作者 Xiangning Xu,Lansheng Wang 1.Chengdu University of Technology,Chengdu,610059,China. 2.Chengdu Center of Hydrogeology and Engineering Geology of Sichuan Provincial GMR Bureau,Chengdu,610081,China 《地学前缘》 EI CAS CSCD 北大核心 2009年第S1期72-72,共1页
The deformation fracture and stability of mountain under the earthquake action is an important issue that arouses concern of researchers in the field of engineering geology.The authors,from 2000 to 2006, selected the ... The deformation fracture and stability of mountain under the earthquake action is an important issue that arouses concern of researchers in the field of engineering geology.The authors,from 2000 to 2006, selected the 1933 earthquake in Diexi zone as a typical study site to carry out the genetic mechanism research of mountain deformation-fracture caused by earthquake; in order to have comparability,the breadth 展开更多
关键词 HIGH earthquake intensity area deformATION FRACTURE mechanism Geo-mechanical model bedded LANDSLIDE model COLLAPSING model LANDSLIDE model
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Mathematical model of deformation resistance of 30 MnSi V steel
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作者 戴铁军 刘战英 +1 位作者 刘相华 王国栋 《中国有色金属学报》 EI CAS CSCD 北大核心 2001年第z1期210-212,共3页
Based on 30MnSiV steel, the deformation resistance was studied by using Gleeble 1500 thermomechanical simulator. The mathematical model of the deformation resistance is established by analyzing the relationship of the... Based on 30MnSiV steel, the deformation resistance was studied by using Gleeble 1500 thermomechanical simulator. The mathematical model of the deformation resistance is established by analyzing the relationship of the deformation temperature, deformation rate and deformation resistance. The regression equation is highly noticeable by means of regression analysis. The mathematical model corresponds to test data by means of the contrast. 展开更多
关键词 thermomechanical simulator mathematical model regression deformation resistance
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Case study on the mechanics of NPR anchor cable compensation for large deformation tunnel in soft rock in the Transverse Mountain area,China 被引量:1
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作者 LI Yong ZHENG Jing +3 位作者 HUO Shu-sen WANG Feng-nian HE Man-chao TAO Zhi-gang 《Journal of Central South University》 SCIE EI CAS CSCD 2024年第6期2054-2069,共16页
A study was conducted to analyze the deformation mechanism of strongly weathered quartz schist in the Daliangshan Tunnel,located in the western Transverse Mountain area.A large deformation problem was experienced duri... A study was conducted to analyze the deformation mechanism of strongly weathered quartz schist in the Daliangshan Tunnel,located in the western Transverse Mountain area.A large deformation problem was experienced during the tunnel construction.To mitigate this problem,a support system was designed incorporating negative Poisson ratio(NPR)anchor cables with negative Poisson ratio effect.Physical model experiments,field experiments,and numerical simulation experiments were conducted to investigate the compensation mechanical behavior of NPR anchor cables.The large deformations of soft rocks in the Daliangshan Tunnel are caused by a high ground stress,a high degree of joint fracture development,and a high degree of surrounding rock fragmentation.A compensation mechanics support system combining long and short NPR anchor cables was suggested to provide sufficient counter-support force(approximately 350 kN)for the surrounding rock inside the tunnel.Comparing the NPR anchor cable support system with the original support system used in the Daliangshan tunnel showed that an NPR anchor cable support system,combining cables of 6.3 m and 10.3 m in length,effectively prevented convergence of surrounding rock deformation,and the integrated settlement convergence value remained below 300 mm.This study provides an effective scientific basis for resolving large deformation problems in deeply buried soft rocks in western transverse mountain areas. 展开更多
关键词 soft rock large deformation NPR anchor cable physical model numerical simulation compensation mechanics
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Short-term deformation behavior model of endangered earthen heritage slope after conservation in Jiaohe Ruins
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作者 张景科 谌文武 和法国 《Journal of Central South University》 SCIE EI CAS 2012年第7期2029-2036,共8页
Cliff deformation behavior after conservation is of great significance for evaluating the conservation effect and discovering the dynamical law of soil. Modeling on deformation behavior is beneficial to the quantitati... Cliff deformation behavior after conservation is of great significance for evaluating the conservation effect and discovering the dynamical law of soil. Modeling on deformation behavior is beneficial to the quantitative evaluation of interactions between soil mass and structures as well as the forecast. Based on cliff conservation engineering of Jiaohe Ruins (the largest raw soil heritage site in the world), data of horizontal deformation of the upper cliff were obtained by using Nanrui-made NDW-50 displacement device (precision: 0.01 mm, frequency: 15 min^-l). Regression analysis indicates that deformation behavior models include exponential growth, linear growth and parabolic growth types, while daily deformation presents more intense periodicity (24 h). The deformation is less than 1.5 mm during monitoring period, which has no impact on the stability of cliff. Deformation behavior provides the mutual duress and interaction between soil and engineering intervention. In addition, deformation mode attaches tensely to the damage pattern of the cliff. The conclusions are of importance to the stability evaluation of the carrier along Silk Road. 展开更多
关键词 endangered cliff CONSERVATION deformation behavior regression analysis modelling
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Computational analysis of linear friction welding process and micromechanical modeling of deformation behavior for medium carbon steel
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作者 杨夏炜 李文亚 马铁军 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第9期3275-3281,共7页
Finite element simulation of linear friction welding(LFW) medium carbon steel was carried out using the ABAQUS software. A two-dimensional(2D) coupled thermo-mechanical model was established. First, the temperature fi... Finite element simulation of linear friction welding(LFW) medium carbon steel was carried out using the ABAQUS software. A two-dimensional(2D) coupled thermo-mechanical model was established. First, the temperature fields of medium carbon steel during LFW process were investigated. And then, the Mises stress and the 1st, 2nd and 3rd principal stresses fields' evolution of the steel during LFW process were studied. The deformation behavior of LFW carbon steel was analyzed by using micromechanics model based on ABAQUS with Python code. The Lode parameter was expressed using the Mohr stress circle and it was investigated in detail. 展开更多
关键词 linear friction welding finite element method deformation behavior micromechanics model
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Mechanical stress and deformation analyses of pressurized cylindrical shells based on a higher-order modeling
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作者 S.Mannani L.Collini M.Arefi 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2023年第2期24-33,共10页
In this research,mechanical stress,static strain and deformation analyses of a cylindrical pressure vessel subjected to mechanical loads are presented.The kinematic relations are developed based on higherorder sinusoi... In this research,mechanical stress,static strain and deformation analyses of a cylindrical pressure vessel subjected to mechanical loads are presented.The kinematic relations are developed based on higherorder sinusoidal shear deformation theory.Thickness stretching formulation is accounted for more accurate analysis.The total transverse deflection is divided into bending,shear and thickness stretching parts in which the third term is responsible for change of deflection along the thickness direction.The axisymmetric formulations are derived through principle of virtual work.A parametric study is presented to investigate variation of stress and strain components along the thickness and longitudinal directions.To explore effect of thickness stretching model on the static results,a comparison between the present results with the available results of literature is presented.As an important output,effect of micro-scale parameter is studied on the static stress and strain distribution. 展开更多
关键词 Principle of virtual work Thickness-stretched and shear deformable model Stress and strain analyses Cylindrical pressure vessel
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On Numerical Modelling of Industrial Powder Compaction Processes for Large Deformation of Endochronic Plasticity at Finite Strains
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作者 A R Khoei A Bakhshiani M Mofid 《厦门大学学报(自然科学版)》 CAS CSCD 北大核心 2002年第S1期95-96,共2页
Compaction processes are one the most important par ts of powder forming technology. The main applications are focused on pieces for a utomotive, aeronautic, electric and electronic industries. The main goals of the c... Compaction processes are one the most important par ts of powder forming technology. The main applications are focused on pieces for a utomotive, aeronautic, electric and electronic industries. The main goals of the compaction processes are to obtain a compact with the geometrical requirements, without cracks, and with a uniform distribution of density. Design of such proc esses consist, essentially, in determine the sequence and relative displacements of die and punches in order to achieve such goals. A.B. Khoei presented a gener al framework for the finite element simulation of powder forming processes based on the following aspects; a large displacement formulation, centred on a total and updated Lagrangian formulation; an adaptive finite element strategy based on error estimates and automatic remeshing techniques; a cap model based on a hard ening rule in modelling of the highly non-linear behaviour of material; and the use of an efficient contact algorithm in the context of an interface element fo rmulation. In these references, the non-linear behaviour of powder was adequately desc ribed by the cap plasticity model. However, it suffers from a serious deficiency when the stress-point reaches a yield surface. In the flow theory of plasticit y, the transition from an elastic state to an elasto-plastic state appears more or less abruptly. For powder material it is very difficult to define the locati on of yield surface, because there is no distinct transition from elastic to ela stic-plastic behaviour. Results of experimental test on some hard met al powder show that the plastic effects were begun immediately upon loading. In such mater ials the domain of the yield surface would collapse to a point, so making the di rection of plastic increment indeterminate, because all directions are normal to a point. Thus, the classical plasticity theory cannot deal with such materials and an advanced constitutive theory is necessary. In the present paper, the constitutive equations of powder materials will be discussed via an endochronic theory of plasticity. This theory provides a unifi ed point of view to describe the elastic-plastic behaviour of material since it places no requirement for a yield surface and a ’loading function’ to disting uish between loading an unloading. Endochronic theory of plasticity has been app lied to a number of metallic materials, concrete and sand, but to the knowledge of authors, no numerical scheme of the model has been applied to powder material . In the present paper, a new approach is developed based on an endochronic rate independent, density-dependent plasticity model for describing the isothermal deformation behavior of metal powder at low homologous temperature. Although the concept of yield surface has not been explicitly assumed in endochronic theory, it is shown that the cone-cap plasticity yield surface (Fig.1), which is the m ost commonly used plasticity models for describing the behavior of powder materi al can be easily derived as a special case of the proposed endochronic theory. Fig.1 Trace of cone-cap yield function on the meridian pl ane for different relative density As large deformation is observed in powder compaction process, a hypoelastic-pl astic formulation is developed in the context of finite deformation plasticity. Constitutive equations are stated in unrotated frame of reference that greatly s implifies endochronic constitutive relation in finite plasticity. Constitutive e quations of the endochronic theory and their numerical integration are establish ed and procedures for determining material parameters of the model are demonstra ted. Finally, the numerical schemes are examined for efficiency in the model ling of a tip shaped component, as shown in Fig.2. Fig.2 A shaped tip component. a) Geometry, boundary conditio n and finite element mesh; b) density distribution at final stage of 展开更多
关键词 In On Numerical modelling of Industrial Powder Compaction Processes for Large deformation of Endochronic Plasticity at Finite Strains
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Investigation of the electrical performance of high-speed aircraft radomes using a thermo-mechanical-electrical coupling model
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作者 JI Jianmin WANG Wei +2 位作者 YU Huilong LIU Juan CHEN Bo 《Journal of Systems Engineering and Electronics》 CSCD 2024年第6期1397-1410,共14页
During high-speed flight,both thermal and mechani-cal loads can degrade the electrical performance of the antenna-radome system,which can subsequently affect the performance of the guidance system.This paper presents ... During high-speed flight,both thermal and mechani-cal loads can degrade the electrical performance of the antenna-radome system,which can subsequently affect the performance of the guidance system.This paper presents a method for evalu-ating the electrical performance of the radome when subjected to thermo-mechanical-electrical(TME)coupling.The method involves establishing a TME coupling model(TME-CM)based on the TME sharing mesh model(TME-SMM)generated by the tetrahedral mesh partitioning of the radome structure.The effects of dielectric temperature drift and structural deformation on the radome’s electrical performance are also considered.Firstly,the temperature field of the radome is obtained by tran-sient thermal analysis while the deformation field of the radome is obtained by static analysis.Subsequently,the dielectric varia-tion and structural deformation of the radome are accurately incorporated into the electrical simulation model based on the TME-SMM.The three-dimensional(3D)ray tracing method with the aperture integration technique is used to calculate the radome’s electrical performance.A representative example is provided to illustrate the superiority and necessity of the pro-posed method.This is achieved by calculating and analyzing the changes in the radome’s electrical performance over time dur-ing high-speed flight. 展开更多
关键词 high-speed flight thermo-mechanical-electrical(TME) TME coupling model(TME-CM) dielectric temperature drift structural deformation electrical performance
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井口简易防喷器密封胶芯形变及其密封特性分析 被引量:1
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作者 郑刚 刘新福 +3 位作者 刘广胜 魏韦 邓泽鲲 刘春花 《机床与液压》 北大核心 2025年第1期140-145,共6页
分析油液压力小于15 MPa的井口简易防喷器密封胶芯形变规律及其密封特性,对降低防喷器压力等级、防止井口失控以及尽可能减少井口非可控时间具有重要意义。依据Lindly模型,提出密封胶芯发生大、小变形时的形变改进计算方法。综合考虑油... 分析油液压力小于15 MPa的井口简易防喷器密封胶芯形变规律及其密封特性,对降低防喷器压力等级、防止井口失控以及尽可能减少井口非可控时间具有重要意义。依据Lindly模型,提出密封胶芯发生大、小变形时的形变改进计算方法。综合考虑油液压力变化、受压力与变形关系、不同阶段橡胶压缩量等因素以及壳体和闸板等结构参数,建立密封胶芯形变以及橡胶体主要面应力和抱紧力的数学模型。根据修正的Arruda-Boyce模型,揭示密封胶芯橡胶体本构模型的应力应变关系。结果表明:井口简易防喷器中部密封胶芯橡胶体环状部分的最大应力位于圆弧区域,且该区域内应力分布极不均匀;井口无压力时,中部密封胶芯橡胶体环状部分的Mises应力集中于中间位置,压力为3、10 MPa时,Mises应力集中在上下两个边缘区域,且橡胶体平面部分的中部区域应力随压力增大呈下降趋势;上部密封胶芯上部橡胶体的应力分布呈边缘大中间小的特征,上部密封胶芯较大应力分布区域的面积在闸板总成关闭时明显减小,且集中区域由开启时靠近壳体边缘和2个边角处转变为关闭时的4个边角处,且最大应力由开启状态下的2.95 MPa增加至关闭状态下的3.37 MPa。 展开更多
关键词 简易防喷器 密封胶芯 形变 密封特性 本构模型
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中更新世黄土的湿陷特性及其湿陷预测模型 被引量:2
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作者 付昱凯 李广林 +2 位作者 李同录 张子然 刘贺 《水文地质工程地质》 北大核心 2025年第1期159-166,共8页
间歇性的地表灌溉或工程运营引起的长期地表渗漏,会导致深层中更新世(Q_(2))黄土的增湿变形,进而影响构建筑物安全。为了预测Q_(2)黄土的湿陷变形特性,对陕西泾阳原状Q_(2)黄土进行了多个含水率下的高压固结试验,得到不同含水率及压力... 间歇性的地表灌溉或工程运营引起的长期地表渗漏,会导致深层中更新世(Q_(2))黄土的增湿变形,进而影响构建筑物安全。为了预测Q_(2)黄土的湿陷变形特性,对陕西泾阳原状Q_(2)黄土进行了多个含水率下的高压固结试验,得到不同含水率及压力下的湿陷系数,并基于试验结果,在δ_(s)-lgp半对数坐标系中,利用线性及Lorentz型函数构建Q_(2)黄土湿陷系数的压力相关模型,然后基于模型参数与含水率相关性,建立湿陷系数与压力和含水率的二元函数三维模型。试验结果表明:随着荷载的增大,黄土的湿陷系数在δ_(s)-lgp半对数坐标系中均呈现出线性缓增-骤增-峰值-减小的变化趋势,且各含水率下缓增-骤增阶段的分界压力不随含水率的变化而改变,均为饱和状态压缩曲线的结构屈服压力;各含水率下峰值湿陷系数和对应的压力均随含水率的增大逐渐减小。建立的湿陷系数模型能较好地描述Q_(2)黄土高压力范围内各含水率下湿陷系数随压力的变化,可用来预测Q_(2)黄土在不同含水率和荷载下的湿陷系数,对深厚层Q_(2)黄土的浸水、增湿湿陷评价具有实际意义。 展开更多
关键词 中更新世黄土 湿陷变形 湿陷系数 压力 含水率 湿陷模型
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2025年1月7日西藏定日6.8级地震震源破裂机理及邻区应力变化 被引量:3
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作者 杨建文 金明培 +2 位作者 叶泵 黎朕灵 李庆 《地震地质》 北大核心 2025年第1期36-48,共13页
2025年1月7日西藏自治区定日县发生M_(S)6.8地震。文中基于升、降轨Sentinel-1A卫星影像数据,采用D-InSAR技术获取了此次地震的同震形变场。以升、降轨同震形变数据为约束,联合反演了该地震的震源滑动模型,并进一步计算了同震位错引起... 2025年1月7日西藏自治区定日县发生M_(S)6.8地震。文中基于升、降轨Sentinel-1A卫星影像数据,采用D-InSAR技术获取了此次地震的同震形变场。以升、降轨同震形变数据为约束,联合反演了该地震的震源滑动模型,并进一步计算了同震位错引起的周边地区的库仑应力变化,对定日地震的形变特征、震源破裂机理及其对邻区应力调整作用开展了研究。结果表明:1)InSAR升、降轨同震形变场长轴均呈近SN向展布,同震形变均表现为拥有东、西2个明显形变区域且呈现蝴蝶状的条纹样式,升、降轨LOS向形变量分别在-0.58~0.33m和-0.80~0.66m之间。2)联合升、降轨同震形变数据反演得到的定日地震的矩震级为MW7.06,地震破裂过程呈现出从初始破裂点开始沿断层面向N拓展的单侧破裂特征,断层错动为兼具少许走滑分量的正断机制。发震断层主要破裂区长约55km,滑动分布集中在地下0~15km深度范围内,最大滑动量为4.25m,出现在地下8.6km深度处。此次地震的主要破裂区已经到达地表,位于震中以北沿走向约35~53km处,潜在地表破裂长约18km。3)定日地震导致发震断层东、西两侧的同震库仑应力降低;断层破裂段南、北两端及其周围区域的库仑应力显著增加,加载量远大于地震触发阈值0.01MPa,这些区域未来有进一步发生有感余震的可能。 展开更多
关键词 定日M_(S)6.8地震 同震形变场 震源滑动模型 同震库仑应力
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桩承式土工袋垫层加筋地基二维模型试验 被引量:1
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作者 刘斯宏 韩雪蕾 +1 位作者 李博文 鲁洋 《东南大学学报(自然科学版)》 北大核心 2025年第1期117-123,共7页
在地基加固中,土工袋与桩基础均可起到提高地基承载力,减小不均匀沉降的作用,但将两者联合用于地基处理缺乏深入研究。设计了可模拟桩承式地基差异性沉降的试验装置,开展了一系列二维模型试验。通过数字图像相关技术(DIC)获取了模型地... 在地基加固中,土工袋与桩基础均可起到提高地基承载力,减小不均匀沉降的作用,但将两者联合用于地基处理缺乏深入研究。设计了可模拟桩承式地基差异性沉降的试验装置,开展了一系列二维模型试验。通过数字图像相关技术(DIC)获取了模型地基位移场,利用称重传感器精确地测量了地基荷载变化,分析了土工袋垫层厚度、桩顶埋深、桩间距和地基表面荷载对地基变形模式及荷载传递规律的影响。结果表明:桩顶土工袋可扩大桩体作用范围,土工袋长度与桩宽的较优比例为2∶1;相较于桩承式地基,土工袋垫层可起到协调地基内部变形的作用;土工袋垫层厚度及桩顶埋深的增加对减小地基表面不均匀沉降有利;在地基表面施加荷载的过程中,土工袋垫层可使更多荷载传递至桩顶。 展开更多
关键词 土工袋垫层 模型试验 变形模式 荷载传递
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