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A vector sum analysis method for stability evolution of expansive soil slope considering shear zone damage softening
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作者 Junbiao Yan Lingwei Kong +1 位作者 Cheng Chen Mingwei Guo 《Journal of Rock Mechanics and Geotechnical Engineering》 SCIE CSCD 2024年第9期3746-3759,共14页
Slope stability analysis is a classical mechanical problem in geotechnical engineering and engineering geology.It is of great significance to study the stability evolution of expansive soil slopes for engineering cons... Slope stability analysis is a classical mechanical problem in geotechnical engineering and engineering geology.It is of great significance to study the stability evolution of expansive soil slopes for engineering construction in expansive soil areas.Most of the existing studies evaluate the slope stability by analyzing the limit equilibrium state of the slope,and the analysis method for the stability evolution considering the damage softening of the shear zone is lacking.In this study,the large deformation shear mechanical behavior of expansive soil was investigated by ring shear test.The damage softening characteristic of expansive soil in the shear zone was analyzed,and a shear damage model reflecting the damage softening behavior of expansive soil was derived based on the damage theory.Finally,by skillfully combining the vector sum method and the shear damage model,an analysis method for the stability evolution of the expansive soil slope considering the shear zone damage softening was proposed.The results show that the shear zone subjected to large displacement shear deformation exhibits an obvious damage softening phenomenon.The damage variable equation based on the logistic function can be well used to describe the shear damage characteristics of expansive soil,and the proposed shear damage model is in good agreement with the ring shear test results.The vector sum method considering the damage softening behavior of the shear zone can be well applied to analyze the stability evolution characteristics of the expansive soil slope.The stability factor of the expansive soil slope decreases with the increase of shear displacement,showing an obvious progressive failure behavior. 展开更多
关键词 Expansive soil slope Stability analysis Ring shear test Vector sum method Damage model strain softening
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Effect of strain rate and deformation temperature on strain hardening and softening behavior of pure copper 被引量:4
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作者 黄树海 舒大禹 +1 位作者 胡传凯 朱世凤 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2016年第4期1044-1054,共11页
The effects of the deformation temperature and the strain rate on the hot deformation behavior of pure copper were investigated based on compression tests. The expressions of strain hardening rate, dynamic recrystalli... The effects of the deformation temperature and the strain rate on the hot deformation behavior of pure copper were investigated based on compression tests. The expressions of strain hardening rate, dynamic recrystallization critical stress, saturated stress, dynamic recovery volume fraction and dynamic recrystallization volume fraction were determined. According to the processing map, the instability regions occur in regions of 400?450 °C, 0.001?0.05 s?1 and 450?750 °C, 0.05?1 s?1. The deformation mechanism in the stability region is dynamic recrystallization. The flow stress was predicted. The results also show that the true stress–true strain curves predicted by the extracted model are in good agreement with the experimental results. 展开更多
关键词 COPPER hot compression deformation strain hardening strain softening
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ELASTO-PLASTIC CONSTITUTIVE MODEL OF SOIL-STRUCTURE INTERFACE IN CONSIDERATION OF STRAIN SOFTENING AND DILATION 被引量:12
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作者 Aizhao Zhou Tinghao Lu 《Acta Mechanica Solida Sinica》 SCIE EI 2009年第2期171-179,共9页
The behavior of soil-structure interface plays a major role in the definition of soil-structure interaction. In this paper a bi-potential surface elasto-plastic model for soil-structure interface is proposed in order ... The behavior of soil-structure interface plays a major role in the definition of soil-structure interaction. In this paper a bi-potential surface elasto-plastic model for soil-structure interface is proposed in order to describe the interface deformation behavior,including strain softening and normal dilatancy. The model is formulated in the framework of generalized potential theory,in which the soil-structure interface problem is regard as a two-dimensional mathematical problem in stress field,and plastic state equations are used to replace the traditional field surface. The relation curves of shear stress and tangential strain are fitted by a piecewise function composed by hyperbolic functions and hyperbolic secant functions,while the relation curves of normal strain and tangential strain are fitted by another piecewise function composed by quadratic functions and hyperbolic secant functions. The approach proposed has the advantage of deriving an elastoplastic constitutive matrix without postulating the plastic potential functions and yield surface. Moreover,the mathematical principle is clear,and the entire model parameters can be identified by experimental tests. Finally,the predictions of the model have been compared with experimental results obtained from simple shear tests under normal stresses,and results show the model is reasonable and practical. 展开更多
关键词 generalized potential theory strain softening shear dilatancy INTERFACE constitutive model
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Strain Softening and Hardening Behavior in AZ61 Magnesium Alloy 被引量:8
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作者 Haitao ZHOU, Liufa LIU, Qudong WANG, Da LU, Xiaoqin ZENG and Wenjiang DINGNational Engineering Research Center of Light Alloys Net Forming, School of Materials Science and Engineering, Shanghai Jiao Tong University, Shanghai 200030, China 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2004年第6期691-693,共3页
The deformation behavior of AZ61 Mg alloy during hot deformation has been investigated in wide temperature and strain rate range by a Gleeble simulator. Specimens are deformed in compression in the temperature range o... The deformation behavior of AZ61 Mg alloy during hot deformation has been investigated in wide temperature and strain rate range by a Gleeble simulator. Specimens are deformed in compression in the temperature range of 523-673 K and at strain rates of 0.001-1 s-1. It is found that the flow curves exhibit a peak and then decrease towards steady-state of classical DRX, which decrease with rising temperature and decreasing strain rate. The deformation behavior of the specimens can be attributed to the occurrence of strain hardening and softening. As stress decreases, the strain hardening rate declines at a fast rate when temperature rises or strain rate decreases. The shapes of θ-σ curves indicate some important features such as subgrain formation, the criticai stress, the peak stress and steady stress. The onset of DRX can be determined by the point of inflection on θ-σ or Inθ-σ curves. 展开更多
关键词 AZ61 Mg alloy RECRYSTALLIZATION strain hardening and softening
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Estimation of compaction grouting pressure in strain softening soils 被引量:13
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作者 杨小礼 邹金锋 《Journal of Central South University》 SCIE EI CAS 2009年第4期653-657,共5页
A new method was proposed to predict the limited compaction grouting pressure for the soft soils. Theoretical basis of the method considered the conical shear failure above the grout bulb. Using the Mohr-Coulomb yield... A new method was proposed to predict the limited compaction grouting pressure for the soft soils. Theoretical basis of the method considered the conical shear failure above the grout bulb. Using the Mohr-Coulomb yield criterion as the initial yield function, the limited compaction grouting pressure was determined, according to the softening elastic-plastic model based on the conventional triaxial compression tests to simulate the strain softening soils. The small strain in the elastic zone and large stain in the plastic zone and the rational yield function for the strain softening phase stage, the analytical solutions to the compaction grouting pressure were presented. The results indicate reasonable agreement and show a good potential of the proposed method for rationally optimizing the design of compaction grouting operations. 展开更多
关键词 compaction grouting strain softening spherical cavity expansion ultimate pressure
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Damage constitutive model for strain-softening rock based on normal distribution and its parameter determination 被引量:14
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作者 曹文贵 李翔 赵衡 《Journal of Central South University of Technology》 EI 2007年第5期719-724,共6页
Firstly, using the damage model for rock based on Lemaitre hypothesis about strain equivalence, a new technique for measuring strength of rock micro-cells by adopting the Mohr-Coulomb criterion was developed, and a st... Firstly, using the damage model for rock based on Lemaitre hypothesis about strain equivalence, a new technique for measuring strength of rock micro-cells by adopting the Mohr-Coulomb criterion was developed, and a statistical damage evolution equation was established based on the property that strength of micro-cells is consistent with normal distribution function, through discussing the characteristics of random distributions for strength of micro-cells, then a statistical damage constitutive model that can simulate the full process of rock strain softening under specific confining pressure was set up. Secondly, a new method to determine the model parameters which can be applied to the situations under different confining pressures was proposed, by deeply studying the relations between the model parameters and characteristic parameters of the full stress-strain curve under different confining pressures. Therefore, a unified statistical damage constitutive model for rock softening which can reflect the effect of different confining pressures was set up. This model makes the physical property of model parameters explicit, contains only conventional mechanical parameters, and leads its application more convenient. Finally, the rationality of this model and its parameters-determining method were identified via comparative analyses between theoretical and experimental curves. 展开更多
关键词 constitutive model ROCK DAMAGE strain softening normal distribution
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Influences of strain softening and seepage on elastic and plastic solutions of circular openings in nonlinear rock masses 被引量:12
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作者 杨小礼 黄阜 《Journal of Central South University》 SCIE EI CAS 2010年第3期621-627,共7页
Considering the influence of strain softening, the solutions of stress, displacement, plastic softening region radius and plastic residual region radius were derived for circular openings in nonlinear rock masses subj... Considering the influence of strain softening, the solutions of stress, displacement, plastic softening region radius and plastic residual region radius were derived for circular openings in nonlinear rock masses subjected to seepage. The radial stress distribution curve, ground reaction curve, and relation curve between plastic softening region radius and supporting force in three different conditions were drawn respectively. From the comparisons among these results for different conditions, it is found that when the supporting force is the same, the displacement of tunnel wall considering both seepage and strain softening is 85.71% greater than that only considering seepage. The increase values of radial displacement at 0.95 m and plastic softening region radius at 6.6 m show that the seepage and strain softening have the most unfavorable effects on circular opening stability in strain softening rock masses. 展开更多
关键词 strain softening SEEPAGE nonlinear yield ground reaction curve rock masses
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Analytical solutions of stress and displacement in strain softening rock mass around a newly formed cavity 被引量:6
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作者 鲁燕儿 杨武 《Journal of Central South University》 SCIE EI CAS 2013年第5期1397-1404,共8页
The closed form solutions of the stress and displacement in strain softening rock mass around a newly formed cavity are derived with a three step-wise elasto-plastic model. Hoek-Brown criterion is adopted as the yield... The closed form solutions of the stress and displacement in strain softening rock mass around a newly formed cavity are derived with a three step-wise elasto-plastic model. Hoek-Brown criterion is adopted as the yielding criterion of rock mass. Damage factors are proposed to account for degradation of the material parameters to reflect the degree of strain softening. The surrounding rock mass around the cavity is divided into three regions: elastic region, strain softening region and residual state region. The analytical solutions of stress, strain, displacement and radius of each region are obtained. The effects of the strain softening and shear dilatancy behavior on the results are investigated with parametric studies. The results show that the radii of the residual state region and strain softening region in the surrounding rock mass with higher damage degree are larger. The radii of the residual state region and strain softening region are 1-2 times and 1.5-3 times of the cavity radius, respectively. The radial and tangential stresses decrease with the increase of the damage factor. The displacement of the cavity wall for the case with maximum plastic bulk strain is nearly twice than that with no dilation. Rock mass moves more toward the center for the case with larger damage factor and shear dilation. The area of the plastic region is larger when the damage factors are considered. The displacements in the surrounding rock mass increase with the increase of the damage factors and shear dilation factors. The solutions can be applied to the stability analysis and support design of the underground excavation. 展开更多
关键词 strain softening Hoek-Brown criterion step-wise elasto-plastic model damage factor shear dilation
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Effect of strain hardening and strain softening on welding distortion and residual stress of A7N01-T4 aluminum alloy by simulation analysis 被引量:8
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作者 闫德俊 刘雪松 +2 位作者 李军 杨建国 方洪渊 《Journal of Central South University》 SCIE EI CAS 2010年第4期666-673,共8页
The effect of strain hardening and strain softening behavior of flow stress changing with temperature on welding residual stress, plastic strain and welding distortion of ATN0 1-T4 aluminum alloy was studied by finite... The effect of strain hardening and strain softening behavior of flow stress changing with temperature on welding residual stress, plastic strain and welding distortion of ATN0 1-T4 aluminum alloy was studied by finite simulation method. The simulation results show that the weld seam undergoes strain hardening in the temperature range of 180-250 ℃, however, it exhibits strain softening at temperature above 250 ℃ during welding heating and cooling process. As a result, the strain hardening and strain softening effects counteract each other, introducing slightly influence on the welding residual stress, residual plastic strain and distortion. The welding longitudinal residual stress was determined by ultrasonic stress measurement method for the flat plates of A7N01-T4 aluminum alloy. The simulation results are well accordant with test ones. 展开更多
关键词 strain hardening strain softening plastic strain welding residual stress
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MICROMECHANICAL MODELLING OF STRAIN SOFTENING IN MICROCRACK-WEAKENED QUASI-BRITTLE MATERIALS 被引量:1
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作者 Feng Xiqiao Yu Shouwen(Dept.of Engineering Mechanics,Tsinghua University,Beijing 100084,P.R.China) 《Acta Mechanica Solida Sinica》 SCIE EI 1995年第2期121-132,共12页
By using the concept of domain of microcrack growth(DMG),the micromechanisms of damage in quasi-brittle materials subjected to triaxial either tensile or compressive loading are investigated and the complete strew-str... By using the concept of domain of microcrack growth(DMG),the micromechanisms of damage in quasi-brittle materials subjected to triaxial either tensile or compressive loading are investigated and the complete strew-strain relation including four stages is obtained from micromechanical analysis.The regime of pre-peak nonlinear hardening corresponds to the distributed damage,i.e.the stable propagation of microcracks.After the attainment of the ultimate strength of load-bearing capacity, some microcracks experience the second unstable growth and the distributed damage is transmitted to the localization of damage.These analyses improve our understanding of the hardening and softening behaviors of quasi-brittle materials. 展开更多
关键词 MICROCRACKS strain softening constitutive relation MICROMECHANICAL damage mechanics brittle material
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Instability criterion for the system composed of elastic beam and strain-softening pillar based on gradient-dependent plasticity 被引量:1
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作者 XuebinWang 《Journal of University of Science and Technology Beijing》 CSCD 2005年第1期1-5,共5页
A mechanical model is proposed for the system of elastic beam and strain-softening pillar where strain localization is initiated at peak shear stress. To obtain the plastic deformation of the pillar due to the shear s... A mechanical model is proposed for the system of elastic beam and strain-softening pillar where strain localization is initiated at peak shear stress. To obtain the plastic deformation of the pillar due to the shear slips of multiple shear bands, the pillar is divided into several narrow slices where compressive deformation is treated as uniformity. In the light of the compatibility condition of deformation, the total compressive displacement of the pillar is equal to the displacement of the beam in the middle span. An instability criterion is derived analytically based on the energy principle using a known size of localization band according to gradient dependent plasticity. The main advantage of the present model is that the effects of the constitutive parameters of rock and the geometrical size of structure are reflected in the criterion. The condition that the derivative of distributed load with respect to the deflection of the beam in the middle span is less than zero is not only equivalent to, but also even more concise in form than the instability criterion. To study the influences of constitutive parameters and geometrical size on stability, some examples are presented. 展开更多
关键词 instability criterion elastic beam strain-softening pillar strain localization shear band energy principle
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Ground reaction curves for circular excavations in non-homogeneous,axisymmetric strain-softening rock masses 被引量:7
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作者 J.González-Cao F.Varas +1 位作者 F.G.Bastante L.R.Alejano 《Journal of Rock Mechanics and Geotechnical Engineering》 SCIE CSCD 2013年第6期431-442,共12页
Fast methods to solve the unloading problem of a cylindrical cavity or tunnel excavated in elasto-perfectly plastic, elasto-brittle or strain-softening materials under a hydrostatic stress feld can be derived based on... Fast methods to solve the unloading problem of a cylindrical cavity or tunnel excavated in elasto-perfectly plastic, elasto-brittle or strain-softening materials under a hydrostatic stress feld can be derived based on the self-similarity of the solution. As a consequence, they only apply when the rock mass is homogeneous and so exclude many cases of practical interest. We describe a robust and fast numerical technique that solves the tunnel unloading problem and estimates the ground reaction curve for a cylindrical cavity excavated in a rock mass with properties depending on the radial coordinate, where the solution is no longer self-similar. The solution is based on a continuation-like approach(associated with the unloading and with the incremental formulation of the elasto-plastic behavior), fnite element spatial discretization and a combination of explicit sub-stepping schemes and implicit techniques to integrate the constitutive law, so as to tackle the diffculties associated with both strong strain-softening and elasto-brittle behaviors. The developed algorithm is used for two practical ground reaction curve computation applications. The frst application refers to a tunnel surrounded by an aureole of material damaged by blasting and the second to a tunnel surrounded by a ring-like zone of reinforced(rock-bolted) material. 展开更多
关键词 Tunnel convergence Ground reaction curves strain-softening rock masses Tunnel with an aureole of a different material
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THE ASYMPTOTIC SOLUTION TO THE ANTIPLANE SHEAR DYNAMICCRACK-TIP FIELD IN AN ELASTIC STRAIN-SOFTENING VISCOPLASTIC MATERIAL
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作者 李范春 齐辉 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI 1997年第2期173-179,共7页
The elastic strain softening-viscoplastic model is given in this paper. Using this model, the asymptotic stress and strain equations surrounding the tip of a propagating crock are given and numerical results ale obtai... The elastic strain softening-viscoplastic model is given in this paper. Using this model, the asymptotic stress and strain equations surrounding the tip of a propagating crock are given and numerical results ale obtained under antiplane shear. The analysis and calculation show that at the crack tip the strain possesses logarithmic singularity (ln(R/r))(1/(n+1)) while the stress is like (ln(R/r))(-n/(n+1)), therefore the asymptotic behaviour of the elastic strain-softening viscoplastic field is revealed under the antiplane shear. 展开更多
关键词 crack-tip field dynamic propagating strain softening
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Elevated temperature strain softening characteristics of 12Cr1MoV steel friction welding pipe joints
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作者 YANG Dexin ZHAO Xiujuan +1 位作者 LIU Zhiquan CHEN Chunhuan and LUO Yu (Welding Department of Dalian Railway Institute. Dalian. 116028.) 《China Welding》 EI CAS 1996年第1期66-70,共5页
The strain softening characteristics analysis of 12Cr1MoV streel friction welding pipe joints.which were removed from heating apparatus pipes ager over 9 and is yearly of service, was undertaken. It is concluded that ... The strain softening characteristics analysis of 12Cr1MoV streel friction welding pipe joints.which were removed from heating apparatus pipes ager over 9 and is yearly of service, was undertaken. It is concluded that the evident softening did not occur in the weld metal and HAZ during serice. whereas it did in the base metal 2mm apart from the center of the weld metal. The difference is due to the restriction of the pipe hoop, which is formed on the joint during friction welding. The bainite. microstructure in the weld metal and HA Z, which is harder than the pearlite, pecrostpucture in the base metal, makes contpibution too. ThIS phenomenon is peculiar to the friction weldings pipes. 展开更多
关键词 strain softening boiler pipes CREEP friction welding
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A work-hardening and softening constitutive model for sand:modified plastic strain energy approach
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作者 FanglePeng M.S.A.Siddiquee ShaomingLiao 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2005年第1期76-86,共11页
The paper describes an energy-based constitutive model for sand, which is modified based on the modified plastic strain energy approach, represented by a unique relationship between the modified plastic strain energy ... The paper describes an energy-based constitutive model for sand, which is modified based on the modified plastic strain energy approach, represented by a unique relationship between the modified plastic strain energy and a stress parameter, independent of stress history. The modified plastic strain energy approach was developed based on results from a series of drained plastic strain compression tests along various stress paths on saturated dense Toyoura sand with accurate stress and strain measurements. The proposed model is coupled with an isotropically work-hardening and softening, non-associtated, elasto-plastic material description. The constitutive model concerns the inherent and stress system-induced cross-anisotropic elastic deformation properties of sand. It is capable of simulating the deformation characteristics of stress history and stress path, the effects of pressure level, anisotropic strength and void ratio, and the strain localization. 展开更多
关键词 SAND Energy-based Hardening and softening Elasto-plastic model Stress-strain relation
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A COMBINED PARAMETRIC QUADRATIC PROGRAMMING AND PRECISE INTEGRATION METHOD BASED DYNAMIC ANALYSIS OF ELASTIC-PLASTIC HARDENING/SOFTENING PROBLEMS 被引量:3
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作者 张洪武 张新伟 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2002年第6期638-648,共11页
The objective of the paper is to develop a new algorithm for numerical solution of dynamic elastic-plastic strain hardening/softening problems. The gradient dependent model is adopted in the numerical model to overcom... The objective of the paper is to develop a new algorithm for numerical solution of dynamic elastic-plastic strain hardening/softening problems. The gradient dependent model is adopted in the numerical model to overcome the result mesh-sensitivity problem in the dynamic strain softening or strain localization analysis. The equations for the dynamic elastic-plastic problems are derived in terms of the parametric variational principle, which is valid for associated, non-associated and strain softening plastic constitutive models in the finite element analysis. The precise integration method, which has been widely used for discretization in time domain of the linear problems, is introduced for the solution of dynamic nonlinear equations. The new algorithm proposed is based on the combination of the parametric quadratic programming method and the precise integration method and has all the advantages in both of the algorithms. Results of numerical examples demonstrate not only the validity, but also the advantages of the algorithm proposed for the numerical solution of nonlinear dynamic problems. 展开更多
关键词 precise integration method parametric quadratic programming method strain localization strain softening dynamic response
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A WORK SOFTENING JOINT ELEMENT USED IN DYNAMIC ANALYSIS OF SOIL-STRUCTURE
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作者 Kenzo Toki 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 1989年第4期353-360,共8页
This paper introduces an elasto-plastic joint element characterised by strain hardening and softening in the analysis of dynamic soil-structure interaction, the phenomena of sep- aration and sliding on the contact sur... This paper introduces an elasto-plastic joint element characterised by strain hardening and softening in the analysis of dynamic soil-structure interaction, the phenomena of sep- aration and sliding on the contact surface between soil and structure can be better simulated and the process can also be described. The interaction problems in a typical soil-structure system are analyzed in terms of elasto-plastic joint element as well as elastic ones. The results show that the elasto-plastic joint element is much better than the elastic one in modelling, especially in that the relative displace- ments accross the joint element can be much greater than that of the elastic case. Separation and slid- ing are not only related to the coefficient of friction and cohesion but also to their changes with plastic volumetric strain. 展开更多
关键词 strain softening separation sliding
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热变形参数对TB15钛合金动态再结晶行为的影响
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作者 董显娟 张殿 +5 位作者 王宇航 吴轩轩 涂泽立 魏科 黄龙 徐勇 《塑性工程学报》 CAS CSCD 北大核心 2024年第1期50-59,共10页
采用热模拟压缩试验机对TB15钛合金进行变形温度为810~930℃、应变速率为0.001~10 s^(-1)、压下量为60%的等温热压缩试验,研究了热变形参数对TB15钛合金动态再结晶行为的影响。结果表明:TB15钛合金不同应变速率下的应力-应变曲线呈现出... 采用热模拟压缩试验机对TB15钛合金进行变形温度为810~930℃、应变速率为0.001~10 s^(-1)、压下量为60%的等温热压缩试验,研究了热变形参数对TB15钛合金动态再结晶行为的影响。结果表明:TB15钛合金不同应变速率下的应力-应变曲线呈现出不同特征。随应变速率增大,流动软化曲线呈现“V”型特征。当应变速率在0.001~0.1 s^(-1)范围时,随变形温度升高和应变速率减小,动态再结晶(DRX)体积分数和DRX晶粒尺寸增大,且DRX晶粒尺寸增幅较DRX体积分数更加显著。在低应变速率变形时,原始β晶粒被小角度晶界分成形状规整的多边形亚晶粒,小角度晶界通过连续吸收位错和渐进晶格旋转的方式向大角度晶界转变从而实现连续动态再结晶。随着应变速率增大,再结晶晶粒形核位置从原始β晶粒内部逐渐向晶界附近转移,在原始β晶界形成均匀细小的“项链状”再结晶晶粒,此时易于由晶界弓弯机制引发不连续动态再结晶。 展开更多
关键词 TB15钛合金 变形温度 应变速率 流动软化 DRX
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不同含水率细砂岩软化效应及裂纹演化规律
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作者 史文豹 许庆钊 +3 位作者 常聚才 苗壮 李传明 齐潮 《中国安全生产科学技术》 CAS CSCD 北大核心 2024年第3期118-125,共8页
为研究深部坚硬顶板浸水后其力学特性及裂纹演化规律,以潘三矿区-810 m细砂岩为研究对象,开展不同含水率单轴压缩力学特性实验研究,分析其软化效应敏感程度及脆性系数,揭示不同含水率细砂岩裂纹演化规律。研究结果表明:细砂岩含水率与... 为研究深部坚硬顶板浸水后其力学特性及裂纹演化规律,以潘三矿区-810 m细砂岩为研究对象,开展不同含水率单轴压缩力学特性实验研究,分析其软化效应敏感程度及脆性系数,揭示不同含水率细砂岩裂纹演化规律。研究结果表明:细砂岩含水率与其脆性系数呈负相关,含水率的增加降低了其峰值应力、峰值应变和弹性模量,减弱了岩石的宏观破坏程度;在外部载荷持续作用下,含水率的增加是诱导孔隙水反力提前出现的关键因素,同时会促进细砂岩表面水平应变增长;细砂岩表面最大水平应变与其裂纹发育存在潜在联系,其表面宏观裂纹在最大水平应变区域出现。研究结果可为坚硬顶板注水软化机理研究提供一定参考。 展开更多
关键词 含水率 软化效应 单轴压缩 脆性系数 水平应变
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橡胶复合材料的Mullins效应
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作者 宋义虎 李承宇 《工程塑料应用》 CAS CSCD 北大核心 2024年第6期70-81,共12页
橡胶复合材料在大应变加载-卸载循环作用下总是发生应变软化和滞后性回复行为,即Mullins效应。该效应显著影响材料在循环载荷作用下的使役行为及其结构稳定性,但120年以来Mullins效应机理争议极大,其理论模型难以有效指导橡胶材料加工和... 橡胶复合材料在大应变加载-卸载循环作用下总是发生应变软化和滞后性回复行为,即Mullins效应。该效应显著影响材料在循环载荷作用下的使役行为及其结构稳定性,但120年以来Mullins效应机理争议极大,其理论模型难以有效指导橡胶材料加工和Mullins效应调控。通过分析已提出的“填料结构”、填料-橡胶界面、橡胶相“破坏”等主要Mullins效应机理及其缺陷,结合Mullins效应所伴随的微观结构变化扼要介绍“破坏模型”及其理论的主要学术思想、应用和局限性,阐明理论研究分歧的主要原因。结合作者课题组的工作提出Mullins效应的黏弹性机制,展示若干Mullins效应调控策略,进一步展望理论研究和调控技术的发展方向。 展开更多
关键词 橡胶 复合材料 Mullins效应 应变软化 交联网络
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