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Nonlinear shear behavior of rock joints using a linearized implementation of the Barton-Bandis model 被引量:12
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作者 Simon Heru Prassetyo Marte Gutierrez Nick Barton 《Journal of Rock Mechanics and Geotechnical Engineering》 SCIE CSCD 2017年第4期671-682,共12页
Experiments on rock joint behaviors have shown that joint surface roughness is mobilized under shearing,inducing dilation and resulting in nonlinear joint shear strength and shear stress vs.shear displacement behavior... Experiments on rock joint behaviors have shown that joint surface roughness is mobilized under shearing,inducing dilation and resulting in nonlinear joint shear strength and shear stress vs.shear displacement behaviors.The Barton-Bandis(B-B) joint model provides the most realistic prediction for the nonlinear shear behavior of rock joints.The B-B model accounts for asperity roughness and strength through the joint roughness coefficient(JRC) and joint wall compressive strength(JCS) parameters.Nevertheless,many computer codes for rock engineering analysis still use the constant shear strength parameters from the linear Mohr-Coulomb(M-C) model,which is only appropriate for smooth and non-dilatant joints.This limitation prevents fractured rock models from capturing the nonlinearity of joint shear behavior.To bridge the B-B and the M C models,this paper aims to provide a linearized implementation of the B-B model using a tangential technique to obtain the equivalent M-C parameters that can satisfy the nonlinear shear behavior of rock joints.These equivalent parameters,namely the equivalent peak cohesion,friction angle,and dilation angle,are then converted into their mobilized forms to account for the mobilization and degradation of JRC under shearing.The conversion is done by expressing JRC in the equivalent peak parameters as functions of joint shear displacement using proposed hyperbolic and logarithmic functions at the pre-and post-peak regions of shear displacement,respectively.Likewise,the pre-and post-peak joint shear stiffnesses are derived so that a complete shear stress-shear displacement relationship can be established.Verifications of the linearized implementation of the B-B model show that the shear stress-shear displacement curves,the dilation behavior,and the shear strength envelopes of rock joints are consistent with available experimental and numerical results. 展开更多
关键词 Rock joints joint shear behavior Friction and dilation Barton-Bandis(B-B) model Equivalent Mohr-Coulomb(M-C) parameters
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Closure behavior of rock joint under dynamic loading 被引量:6
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作者 王卫华 李夕兵 +1 位作者 张义平 左宇军 《Journal of Central South University of Technology》 EI 2007年第3期408-412,共5页
The normal compression tests on intact samples and artificial joints with different saw-tooth shape under cyclic loading and half-sine waves of different frequencies were performed by using Instron1342 servo-controlle... The normal compression tests on intact samples and artificial joints with different saw-tooth shape under cyclic loading and half-sine waves of different frequencies were performed by using Instron1342 servo-controlled material testing machine. The specimens were made artificially with mortar. The loading frequency ranged from 0.005 Hz to 0.1 Hz. The experimental results show that joint closure curves are non-linear and concave up. The stress-deformation curves under cyclic loading exhibit hysteresis and permanent set that diminish rapidly and keep constant finally on successive cycles. Normal displacement successively decreases from the joint J1 to J2, to J3 under the same normal loads regardless of frequency. Considering the loading frequency effect, normal displacement of joint J1 decreases with increasing the loading frequency except that the loading frequency is 0.05 Hz. Normal displacement of joint J2 increases with increasing the loading frequency. Normal displacement of joint J3 increases with increasing the loading frequency when the frequency ranges from 0.005 Hz to 0.05 Hz. Its normal displacement, however, becomes least when the loading frequency is 0.1 Hz. 展开更多
关键词 joint closure behavior cyclic load surface geometry load frequency
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Seismic behavior and mechanism analysis of innovative precast shear wall involving vertical joints 被引量:3
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作者 孙建 邱洪兴 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第4期1536-1547,共12页
To study the seismic performance and load-transferring mechanism of an innovative precast shear wall(IPSW) involving vertical joints, an experimental investigation and theoretical analysis were successively conducted ... To study the seismic performance and load-transferring mechanism of an innovative precast shear wall(IPSW) involving vertical joints, an experimental investigation and theoretical analysis were successively conducted on two test walls. The test results confirm the feasibility of the novel joints as well as the favorable seismic performance of the walls, even though certain optimization measures should be taken to improve the ductility. The load-transferring mechanism subsequently is theoretically investigated based on the experimental study. The theoretical results show the load-transferring route of the novel joints is concise and definite. During the elastic stage, the vertical shear stress in the connecting steel frame(CSF) distributes uniformly; and each high-strength bolt(HSB)primarily delivers vertical shear force. However, the stress in the CSF redistributes when the walls develop into the elastic-plastic stage. At the ultimate state, the vertical shear stress and horizontal normal stress in the CSF distribute linearly; and the HSBs at both ends of the CSF transfer the maximum shear forces. 展开更多
关键词 precast shear wall vertical joint seismic behavior high-strength bolt connecting steel frame
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Numerical simulations of failure behavior around a circular opening in a non-persistently jointed rock mass under biaxial compression 被引量:8
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作者 Yang Xuxu Jing Hongwen Chen Kunfu 《International Journal of Mining Science and Technology》 SCIE EI CSCD 2016年第4期729-738,共10页
Pre-existing discontinuities change the mechanical properties of rock masses,and further influence failure behavior around an underground opening.In present study,the failure behavior in both Inner and Outer zones aro... Pre-existing discontinuities change the mechanical properties of rock masses,and further influence failure behavior around an underground opening.In present study,the failure behavior in both Inner and Outer zones around a circular opening in a non-persistently jointed rock mass under biaxial compression was investigated through numerical simulations.First,the micro parameters of the PFC^(3D) model were carefully calibrated using the macro mechanical properties determined in physical experiments implemented on jointed rock models.Then,a parametrical study was undertaken of the effect of stress condition,joint dip angle and joint persistency.Under low initial stress,the confining stress improves the mechanical behavior of the surrounding rock masses;while under high initial stress,the surrounding rock mass failed immediately following excavation.At small dip angles the cracks around the circular opening developed generally outwards in a step-path failure pattern;whereas,at high dip angles the surrounding rock mass failed in an instantaneous intact rock failure pattern.Moreover,the stability of the rock mass around the circular opening deteriorated significantly with increasing joint persistency. 展开更多
关键词 Underground opening Failure behavior Non-persistent joints Rock mass PFC^3D
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Experimental and numerical investigations on fatigue behavior of aluminum alloy 7050-T7451 single lap four-bolted joints 被引量:3
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作者 Xiaomei Liu Hao Cui +3 位作者 Shangzhou Zhang Haipo Liu Gaofeng Liu Shujun Li 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2018年第7期1205-1213,共9页
The fatigue behavior of aluminum alloy 7050-T7451 single lap four-bolted joints was studied by high- frequency fatigue test and finite element (FE) methods. The fatigue test results showed that a better enhancement ... The fatigue behavior of aluminum alloy 7050-T7451 single lap four-bolted joints was studied by high- frequency fatigue test and finite element (FE) methods. The fatigue test results showed that a better enhancement of fatigue life was achieved for the joints with highlocked bolts by employing the combinations of cold expansion, interference fit, and clamping force. The fractography revealed that fatigue cracks propagated tortuously; more fatigue micro-cliffs, tearing ridges, lamellar structure were observed, and fatigue striation spacing was simultaneously reduced. The evaluation of residual stress conducted by FE methods confirmed the experimental results and locations of fatigue crack initiation. The extension of fatigue lives can be attributed to the evolution of fatigue damage and effect of beneficial compressive residual stresses around the hole, resulting in the delay of crack initiation, crack deflection, and plasticityinduced crack closure.2017 Published by Elsevier Ltd on behalf of The editorial office of Journal of Materials Science & Technology. 展开更多
关键词 7050 aluminum alloy Bolted joint Fatigue behavior Finite element analysis Residual stress
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Influence of Bi Addition on Pure Sn Solder Joints: Interfacial Reaction, Growth Behavior and Thermal Behavior 被引量:2
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作者 LAI Yanqing HU Xiaowu 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2019年第3期668-675,共8页
The effects of different Bi contents on the properties of Sn solders were studied. The interfacial reaction and growth behavior of intermetallic compounds(IMCs) layer(η-Cu6 Sn5 + e-Cu3 Sn) for various soldering t... The effects of different Bi contents on the properties of Sn solders were studied. The interfacial reaction and growth behavior of intermetallic compounds(IMCs) layer(η-Cu6 Sn5 + e-Cu3 Sn) for various soldering time and the influence of Bi addition on the thermal behavior of Sn-x Bi solder alloys were investigated. The Cu6 Sn5 IMC could be observed as long as the molten solder contacted with the Cu substrate. However, with the longer welding time such as 60 and 300 s, the Cu3 Sn IMC was formed at the interface between Cu6 Sn5 and Cu substrate. With the increase of soldering time, the thickness of total IMCs increased, meanwhile, the grain size of Cu6 Sn5 also increased. An appropriate amount of Bi element was beneficial for the growth of total IMCs,but excessive Bi(≥ 5 wt%) inhibited the growth of Cu6 Sn5 and Cu3 Sn IMC in Sn-x Bi/Cu microelectronic interconnects. Furthermore, with the Bi contents increasing(Sn-10 Bi solder in this present investigation), some Bi particles accumulated at the interface between Cu6 Sn5 layer and the solder. 展开更多
关键词 INTERMETALLIC compound Sn-xBi SOLDER joints INTERFACIAL reaction thermal behavior
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Effect of Hygrothermal Cycle Aging on the Mechanical Behavior of Single-lap Adhesive Bonded Joints 被引量:1
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作者 范以撒 那景新 +2 位作者 MU Wenlong QIN Guofeng TAN Wei 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2019年第2期337-344,共8页
The aging behavior of single lap joints(SLJ) in hygrothermal cycles was investigated and compared by using a shearing strength test, Fourier transform infrared spectroscopy(FTIR), thermogravimetric analysis(TG/DTG), e... The aging behavior of single lap joints(SLJ) in hygrothermal cycles was investigated and compared by using a shearing strength test, Fourier transform infrared spectroscopy(FTIR), thermogravimetric analysis(TG/DTG), energy dispersive spectrometry(EDS) and scanning electronic microscopy(SEM). The temperature/relative humidity was set at 80 ℃/95% and –40 ℃/30% for 20 cycles, 40 cycles, and 60 cycles(one cycle was 12 hours), respectively. The experimental results show that hygrothermal aging significantly decreases the failure strength of adhesive joints. However, the failure displacement increases as the number of aging cycles increases. In addition, hygrothermal aging changes the failure mode of the adhesive joints from a cohesive fracture in un-aged adhesive layers to an interfacial failure of aged adhesive joints. 展开更多
关键词 SINGLE LAP jointS hygrothermal AGING mechanical behavior FTIR TG/DTG EDS
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Modeling of Mechanical Behavior of Fractal Rock Joint 被引量:3
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作者 Jinan bang Marek A. Kwasniewski( Resources Engineering School. University of Science and Technology Beijing, Bejing 100083, China)( Rock Mechanics Laboratory, Faculty of Mining and Geology, Technical University of Silesia, Gliwice , Poland) 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 1999年第3期157-164,共8页
The present study shows that naturally developed fracture surfaces in rocks display the properties of self-affine fractals. Surface roughness can be quantitatively characterized by fractal dimension D and the intercep... The present study shows that naturally developed fracture surfaces in rocks display the properties of self-affine fractals. Surface roughness can be quantitatively characterized by fractal dimension D and the intercept A on the log-log plot of variance: the former describes the irregularity and the later is statistically analogues to the slopes of asperities. In order to confirm the effects of these fractalparameters on the properties and mechanical behavior of rock joints, which have been observed in experiments under both normal andshear loadings, a theoretic model of rock joint is proposed on the basis of contact mechanics. The shape of asperity at contact is assumed to have a sinusoidal form in its representative scale r, with fractal dimension D and the intercept A. The model considers different local contact mechanisms, such as elastic deformation, frictional sliding and tensile fracture of the asperity. The empirical evolution law of surface damage developed in experiment is implemented into the model to up-date geometry of asperity in loading history. The effects of surface roughness characterized by D, A and re on normal and shear deformation of rock joint have been elaborated. 展开更多
关键词 fractal roughness mechanical behavior rock joints fractal dimension the intercept contact mechanics normal stiffness shear stiffness surface damage
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Improved Fatigue Behavior of Pipeline Steel Welded Joint by Surface Mechanical Attrition Treatment(SMAT) 被引量:1
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作者 Yu Wang Min Huang +2 位作者 Lei Zhou Zhixin Cong Huilin Gao 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2009年第4期513-515,共3页
A pipeline steel X80 with welded joint was subjected to surface mechanical attrition treatment (SMAT). After SMAT, a nanostructure surface layer with an average grain size of about 10 nm was formed in the treated sa... A pipeline steel X80 with welded joint was subjected to surface mechanical attrition treatment (SMAT). After SMAT, a nanostructure surface layer with an average grain size of about 10 nm was formed in the treated sample, and the fatigue limit of the welded joint was elevated by about 13% relative to the untreated joints. In the low and the high amplitude stress regimes, both fatigue strength and fatigue life were enhanced. Formation of the nanostructured surface layer played more important role in the enhanced fatigue behavior than that of residual stress induced by the SMAT. 展开更多
关键词 Surface mechanical attrition treatment (SMAT) Pipeline steel X80 Welded joint Surface nanocrystallization Fatigue behavior
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Effect of rock joint roughness on its cyclic shear behavior 被引量:21
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作者 S.M.Mahdi Niktabar K.Seshagiri Rao Amit Kumar Shrivastava 《Journal of Rock Mechanics and Geotechnical Engineering》 SCIE CSCD 2017年第6期1071-1084,共14页
Rock joints are often subjected to dynamic loads induced by earthquake and blasting during mining and rock cutting. Hence, cyclic shear load can be induced along the joints and it is important to evaluate the shear be... Rock joints are often subjected to dynamic loads induced by earthquake and blasting during mining and rock cutting. Hence, cyclic shear load can be induced along the joints and it is important to evaluate the shear behavior of rock joint under this condition. In the present study, synthetic rock joints were prepared with plaster of Paris(Po P). Regular joints were simulated by keeping regular asperity with asperity angles of 15°-15° and 30°-30°, and irregular rock joints which are closer to natural joints were replicated by keeping the asperity angles of 15°-30° and 15°-45°. The sample size and amplitude of roughness were kept the same for both regular and irregular joints which were 298 mm×298 mm×125 mm and 5 mm, respectively. Shear test was performed on these joints using a large-scale direct shear testing machine by keeping the frequency and amplitude of shear load under constant cyclic condition with different normal stress values. As expected, the shear strength of rock joints increased with the increases in the asperity angle and normal load during the first cycle of shearing or static load. With the increase of the number of shear cycles, the shear strength decreased for all the asperity angles but the rate of reduction was more in case of high asperity angles. Test results indicated that shear strength of irregular joints was higher than that of regular joints at different cycles of shearing at low normal stress. Shearing and degradation of joint asperities on regular joints were the same between loading and unloading, but different for irregular joints. Shear strength and joint degradation were more significant on the slope of asperity with higher angles on the irregular joint until two angles of asperities became equal during the cycle of shearing and it started behaving like regular joints for subsequent cycles. 展开更多
关键词 Cyclic shear test Shear behavior Shear strength Regular joint Irregular joint joint dilation Asperity degradation
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Failure behavior around a circular opening in a rock mass with non-persistent joints:A parallel-bond stress corrosion approach 被引量:3
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作者 YANG Xu-xu JING Hong-wen +1 位作者 CHEN Kun-fu YANG Sheng-qi 《Journal of Central South University》 SCIE EI CAS CSCD 2017年第10期2406-2420,共15页
The stability of underground excavations is influenced by discontinuities interspaced in surrounding rock masses as well as the stress condition. In this work, a numerical study was undertaken on the failure behavior ... The stability of underground excavations is influenced by discontinuities interspaced in surrounding rock masses as well as the stress condition. In this work, a numerical study was undertaken on the failure behavior around a circular opening in a rock mass having non-persistent open joints using PFC software package. A parallel-bond stress corrosion(PSC) approach was incorporated to drive the failure of rock mass around the circular opening, such that the whole progressive failure process after excavation was reproduced. Based on the determined micro parameters for intact material and joint segments, the failure process around the circular opening agrees very well with that obtained through laboratory experiment. A subsequent parametric study was then carried out to look into the influence of lateral pressure coefficient, joint dip angle and joint persistency on the failure pattern and crack evolution of the rock mass around the circular opening. Three failure patterns identified are step path failure, planar failure and rotation failure depending on the lateral pressure coefficient. Moreover, the increment of joint dip angle and joint persistency aggravates the rock mass failure around the opening. This study offers guideline on stability estimation of underground excavations. 展开更多
关键词 failure behavior circular OPENING non-persistent joint PFC software PACKAGE stress corrosion
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Study on the Basic Mechanical Behaviors of High Density Polyethylene Electrofusion Welded Joints at Different Temperature 被引量:2
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作者 Lixing HUO, Fangjuan QI, Yufeng ZHANG, Hongyang JING and Xinqi YANGSchool of Materials Science and Engineering, Tianjin University, Tianjin 300072, China 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2003年第6期603-606,共4页
The basic mechanical behaviors of high density polyethylene electrofusion welded joint at different temperatures were studied by using differently designed specimens in this paper. The results show that the strength o... The basic mechanical behaviors of high density polyethylene electrofusion welded joint at different temperatures were studied by using differently designed specimens in this paper. The results show that the strength of weld bonding plane is higher than that of the pipe and socket materials at room temperature. In order to get the shear strength of electrofusion welded joint, the effective bond lengths were reduced by cutting artificial groove through the socket. The effective bonding length of welded joint to get the shear strength is decreased with decreasing testing temperature. The shear strength and the sensibility to sharp notch of HDPE material increased with decreasing temperature. 展开更多
关键词 Basic mechanical behaviors High density polyethylene Electrofusion welded joint
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The Numerical Analysis of Strain Behavior at Solder Joint and Interface of Flip Chip Package
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作者 S C Chen Y C Lin 《厦门大学学报(自然科学版)》 CAS CSCD 北大核心 2002年第S1期186-188,共3页
The flip chip package is a kind of advanced electri ca l packages. Due to the requirement of miniaturization, lower weight, higher dens ity and higher performance in the advanced electric package, it is expected that ... The flip chip package is a kind of advanced electri ca l packages. Due to the requirement of miniaturization, lower weight, higher dens ity and higher performance in the advanced electric package, it is expected that flip chip package will soon be a mainstream technology. The silicon chip is dir ectly connected to printing circuit substrate by SnPb solder joints. Also, the u nderfill, a composite of polymer and silica particles, is filled in the gap betw een the chip and substrate around the solder joints to improve the reliabili ty of solder joints. When flip chip package specimen is tested with thermal cycl ing, the cyclic stress/strain response that exists at the underfill interfaces and solder joints may result in interfacial crack initiation and propagation. Therefore, the chip cracking and the interfacial delamination between underfill and chip corner have been investigated in many studies. Also, most researches h ave focused on the effect of fatigue and creep properties of solder joint induce d by the plastic strain alternation and accumulation. The nuderfill must have lo w viscosity in the liquid state and good adhesion to the interface after solidif ying. Also, the mechanical behavior of such epoxy material has much dependen ce on temperature in its glass transition temperature range that is usually cove red by the temperature range of thermal cycling test. Therefore, the materia l behavior of underfill exists a significant non-linearity and the assumption o f linear elastic can lack for accuracy in numerical analysis. Through numerical analysis, this study had some comparisons about the effect of linear and non -linear properties of underfill on strain behaviors around the interface of fli p chip assembly. Especially, the deformation tendency inside solder bumps could be predicted. Also, it is worthily mentioned that we have pointed out which comp onent of plastic strain, thus, either normal or shear, has dominant influence to the fatigue and creep of solder bump, which have not brought up before. About the numerical analysis to the thermal plastic strain occurs in flip chip i nterconnection during thermal cycling test, a commercial finite element software , namely, ANSYS, was employed to simulate the thermal cycling test obeyed by MIL-STD-883C. The temperatures of thermal cycling ranged from -55 ℃ to 125 ℃ with ramp rate of 36 ℃/min and a dwell time of 25 min at peak temperature. T he schematic drawing of diagonal cross-section of flip chip package composed of FR-4 substrate, silicon chip, underfill and solder bump was shown as Fig.1. Th e numerical model was two-dimensional (2-D) with plane strain assumption and o nly one half of the cross-section was modeled due to geometry symmetry. The dim ensions and boundary conditions of numerical model were shown in Fig.2. The symm etric boundary conditions were applied along the left edge of the model, and the left bottom corner was additional constrained in vertical direction to prevent body motion. The finite element meshes of overall and local numerical model was shown as Fig.3. In this study, two cases of material model were used to describe the material behavior of the underfill: the case1 was linear elastic model that assumed Young’s Modulus (E) and thermal expansion coefficient (CTE) were consta nt during thermal cycling; the case2 was MKIN model (in ANSYS) that had nonlinea r temperature-dependent stress-strain relationship and temperature-dependent CTE. The material model applied to the solder bump was ANAND model (in ANSYS) th at described time-dependent plasticity phenomenon of viscoplastic material. Bot h the FR-4 substrate and silicon chip were assumed as temperature-independent elastic material; moreover, FR-4 substrate is orthotropic while silicon chip is isotropic. From the comparison between numerical results of linear and nonlinear material a ssumption of underfill, (i.e. case1 and case2), the quantities of plastic strain around the interconnection from case1 are higher than that in case2. Thus, the linear 展开更多
关键词 The Numerical Analysis of Strain behavior at Solder joint and Interface of Flip Chip Package
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Thermal effect on shear and compressive behaviors of rock fractures:Cases of sandstone and granite
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作者 Abdel Kareem Alzo'ubi Mahmoud Alneasan 《Journal of Rock Mechanics and Geotechnical Engineering》 2025年第11期7007-7022,共16页
The growing demand for geothermal energy exploration and deep engineering projects necessitates a deeper understanding of rock behavior under extreme thermal conditions.This study investigates the effect of thermal tr... The growing demand for geothermal energy exploration and deep engineering projects necessitates a deeper understanding of rock behavior under extreme thermal conditions.This study investigates the effect of thermal treatment on the shear behavior of sedimentary sandstone and igneous granite,which are abundant in the Earth's crust.Direct shear tests were conducted on rock joints at room temperature(RT),250℃,and 500℃.The results show that the joints in sandstone and granite exhibit improved compressive and shear strength up to a temperature threshold of 200℃–350℃,followed by significant weakening beyond this range.This study investigated key parameters,including normal and shear stiffness,maximum joint closure,peak and residual shear strengths,internal friction angle,dilation angle,and cohesion.The compressive behavior of both rock types followed a modifiedBandis's equation.The peak shear strength followed Patton's bilinear and Jaeger's nonlinear failure criteria more accurately than the Mohr–Coulomb criterion.The results of this study provide valuable insights into the temperature-dependent behavior of sandstone and granite joints under compressive and shear loads,and their interoperation was strongly dependent on the mineralogical and structural components of the two rock types.These results have advanced our understanding of the temperature-dependent behavior of rock fractures,improving the safety of underground structures under thermal effects. 展开更多
关键词 Sedimentary sandstone Igneous granite Thermal treatment joint shear behavior joint compressive behavior Direct shear test
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钢结构模块间梁-梁型节点抗拉与抗剪性能研究
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作者 王彦博 闫云鹏 +3 位作者 毛磊 曹轲 王开强 李国强 《建筑钢结构进展》 北大核心 2026年第3期37-47,共11页
模块化钢结构建筑具有集成化程度高、现场施工时间短、可循环利用等特点。作为结构受力与安装的关键结构,模块间连接节点的构造形式需兼顾施工便利性与传力可靠性。为此,文中提出一种适用于多高层模块化建筑的梁-梁型节点构造。该节点... 模块化钢结构建筑具有集成化程度高、现场施工时间短、可循环利用等特点。作为结构受力与安装的关键结构,模块间连接节点的构造形式需兼顾施工便利性与传力可靠性。为此,文中提出一种适用于多高层模块化建筑的梁-梁型节点构造。该节点通过盖板与螺栓连接相邻模块梁,对施工空间需求小、操作便捷且传力路径清晰,为模块化钢结构在高层建筑中的高效连接提供了解决方案。文中首先通过试验研究了节点在拉力、剪力作用下的承载性能与破坏模式;其次,通过理论分析分别提出了节点抗拉、抗剪设计承载力的计算方法;最后,对比理论计算结果与试验结果,验证了所提理论计算方法的准确性。研究结果可为该类节点的设计分析与工程应用提供参考。 展开更多
关键词 模块化钢结构 模块间梁-梁型节点 抗拉性能 抗剪性能 试验研究 计算方法
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节理岩体剪切力学特性及裂纹扩展行为模拟研究
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作者 蒋宇静 魏加乐 +4 位作者 陈小飞 栾恒杰 王长盛 李鑫鹏 张孙豪 《山东科技大学学报(自然科学版)》 北大核心 2026年第1期1-11,共11页
节理参数对节理剪切力学行为和破坏模式具有显著影响,是评估工程岩体强度和稳定性的重要因素。为探究不同节理参数下断续节理岩体的剪切力学特性及裂纹扩展贯通机理,基于零厚度黏聚力单元构建了断续节理岩体直剪模型,开展了不同节理开... 节理参数对节理剪切力学行为和破坏模式具有显著影响,是评估工程岩体强度和稳定性的重要因素。为探究不同节理参数下断续节理岩体的剪切力学特性及裂纹扩展贯通机理,基于零厚度黏聚力单元构建了断续节理岩体直剪模型,开展了不同节理开度、节理连通率及法向应力下断续节理剪切数值模拟,系统探讨了节理开度、节理连通率对其剪切行为的影响。研究表明:剪切应力-剪切位移曲线呈双峰值特征,峰值剪切应力随节理连通率的增加逐渐降低,随法向应力的增加逐渐升高;模型两侧岩桥是裂纹萌生的集中区域,节理开度较大的模型通常更早萌生裂纹,节理连通率较小的模型其裂纹趋向于形成多个孤立的裂纹段,不同法向应力下裂纹萌生时间、位置和扩展过程大致相同;裂纹增长与剪切应力存在良好的对应关系,累计裂纹数量随节理开度和法向应力的增加而增多、随节理连通率的增加而降低,拉伸裂纹广泛分布于岩桥及其附近区域,剪切裂纹主要集中在断续节理面附近。 展开更多
关键词 断续节理岩体 节理开度 剪切行为 数值模拟 黏聚力单元
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镁铝异种金属搅拌摩擦焊接头微观组织和力学性能分析
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作者 张亮 陈冠冰 +3 位作者 张雅轩 李谦宁 付凯 杨潇 《河北科技大学学报》 北大核心 2026年第1期12-20,共9页
为了抑制镁铝异种金属焊接接头中脆性镁铝金属间化合物(intermetallic compounds,IMCs)生成并改善接头性能,设计并采用铜箔作为中间层金属的搅拌摩擦焊(friction stir welding,FSW)方法对7075-T6铝合金与AZ31B镁合金异种金属进行焊接。... 为了抑制镁铝异种金属焊接接头中脆性镁铝金属间化合物(intermetallic compounds,IMCs)生成并改善接头性能,设计并采用铜箔作为中间层金属的搅拌摩擦焊(friction stir welding,FSW)方法对7075-T6铝合金与AZ31B镁合金异种金属进行焊接。分别采用显微组织观察、能谱(energy dispersive spectrometer,EDS)分析、X射线衍射(X-ray diffractometer,XRD)检测、硬度测试、剪切试验测试等试验方法,对是否具有中间层金属铜的镁铝异种金属接头的组织及性能进行试验分析。结果表明:在接头焊核区,中间层金属铜的加入与镁铝金属共同形成镁铝铜三元扩散体系,抑制了焊核区镁铝之间的互扩散行为,焊核区扩散层厚度由150μm降至50μm,同时,含铜接头的钩状缺陷两侧形成新扩散层,有效阻止镁铝IMCs中脆性镁铝IMCs生成形成,并分别生成新的铜镁、铜铝IMCs;此外,中间层金属铜的加入使接头界面处钩状缺陷面积显著减小,有效缓解界面应力集中;与常规接头相比,含铜接头的断裂路径从IMCs层迁移至焊核区,接头平均剪切力由3407 N提高至4615 N,剪切性能提升35.5%。探明了通过FSW提高特定镁铝异种金属接头的力学性能的原因,为其他异种材料的焊接提供了参考。 展开更多
关键词 材料表面与界面 镁铝异种金属 搅拌摩擦焊 中间层金属铜 接头扩散行为
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不锈钢环槽铆钉及其连接节点的应用技术研究
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作者 王元清 吴明泽 +6 位作者 王中兴 王葆祯 张颖 支新航 贾云龙 张天雄 欧阳元文 《工程力学》 北大核心 2026年第4期1-13,共13页
不锈钢环槽铆钉兼具不锈钢的优异性能(高耐蚀性、高可靠性)和环槽铆钉结构可靠性高的优势,在铝合金、不锈钢等防腐结构连接及大跨空间、建筑表皮、科学装置等领域应用前景广阔。该文在梳理知名工程应用案例基础上,系统综述了针对不锈钢... 不锈钢环槽铆钉兼具不锈钢的优异性能(高耐蚀性、高可靠性)和环槽铆钉结构可靠性高的优势,在铝合金、不锈钢等防腐结构连接及大跨空间、建筑表皮、科学装置等领域应用前景广阔。该文在梳理知名工程应用案例基础上,系统综述了针对不锈钢环槽铆钉及其节点、结构体系的关键研究:包括力学性能的试验研究、数值模拟与理论分析,并总结了形成的成熟技术和设计方法。研究表明:该铆钉与铝合金、不锈钢等基材适配性高,在结构工程中应用技术已较为成熟。未来研究可着重拓展其在高温力学性能、单面型环槽铆钉开发等方面的研究,以进一步拓宽其应用场景并构建更为完善的产品体系。 展开更多
关键词 不锈钢 环槽铆钉 力学性能 连接节点 框架体系
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锈蚀RC框架节点核心区剪切恢复力模型
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作者 郑山锁 刘立国 +3 位作者 董立国 杨松 李健 丛峻 《建筑科学与工程学报》 北大核心 2026年第1期162-172,共11页
为满足一般大气条件下在役RC框架结构抗震分析的需求,对12榀RC框架节点进行了人工加速腐蚀和拟静力加载试验,探究了锈蚀水平、轴压比变化对节点破坏模式、滞回性能以及核心区抗剪性能的影响;基于试验结果的多参数回归分析,建立了锈蚀RC... 为满足一般大气条件下在役RC框架结构抗震分析的需求,对12榀RC框架节点进行了人工加速腐蚀和拟静力加载试验,探究了锈蚀水平、轴压比变化对节点破坏模式、滞回性能以及核心区抗剪性能的影响;基于试验结果的多参数回归分析,建立了锈蚀RC节点核心区的剪切恢复力模型,并在OpenSEES软件中利用Joint2D和纤维梁柱单元建立了锈蚀RC节点的组合体数值模型。结果表明:锈蚀RC节点的破坏模式均为节点核心区的剪切破坏,锈蚀程度与轴压比的增大会削弱RC节点及其核心区的承载能力与变形能力,导致抗震性能发生劣化;提出的剪切恢复力模型能够较全面反映不同锈蚀程度和不同轴压比RC节点核心区的剪切滞回特性;建立的锈蚀RC节点组合体数值模型的荷载模拟相对误差基本不超过10%,变形模拟相对误差基本不超过20%,最终破坏时的累积耗能相对误差也基本控制在30%以内;基于锈蚀RC节点核心区剪切恢复力模型所建立的节点组合体数值模型能够较准确模拟往复加载作用下锈蚀RC节点的滞回性能,可用于一般大气环境下RC节点及框架的抗震分析评估。 展开更多
关键词 锈蚀RC框架节点 剪切恢复力模型 抗震性能 OPENSEES
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全螺栓拼接H型截面柱静力承载和滞回性能试验研究
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作者 郭盛 刘桥 +2 位作者 彭俊 高飞 陈俊波 《中南大学学报(自然科学版)》 北大核心 2026年第1期259-272,共14页
为设计一种满足装配式受力性能和工厂标准化生产要求的柱拼接节点,获得更高的承载力、更稳定的柱拼接形式,推动钢结构建筑进一步发展,助力实现建筑领域节能降碳,本文设计制作了3类全螺栓拼接H型截面拼接钢柱,通过静力试验和滞回试验得到... 为设计一种满足装配式受力性能和工厂标准化生产要求的柱拼接节点,获得更高的承载力、更稳定的柱拼接形式,推动钢结构建筑进一步发展,助力实现建筑领域节能降碳,本文设计制作了3类全螺栓拼接H型截面拼接钢柱,通过静力试验和滞回试验得到这3类拼接节点钢柱的破坏模式、静力承载力、滞回曲线、骨架曲线以及延性等,进而评价这3类拼接柱试件的静力承载与滞回性能。研究结果表明:静力试验中3类拼接试件的破坏模式类似,一字型拼接试件极限承载力和极限位移比其他试件的低,U型拼接试件的极限承载力最大,Z型拼接试件极限位移最大;滞回试验中3类拼接试件的极限荷载和极限位移均相近,一字型和Z型拼接试件的延性接近,相比之下,U型拼接试件延性有所提升,一字型拼接试件的耗能能力略低于其他拼接试件的耗能能力,Z型和U型拼接试件的耗能能力相近。U型拼接和Z型拼接各有优点,U型拼接装配简单、整体性更好,而Z型拼接由于拼接面存在高差,承载更稳定,可结合施工要求合理选择拼接形式。 展开更多
关键词 H型钢柱 全螺栓拼接节点 静力承载 滞回性能 延性
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