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Finite Element Analysis of the Influence of Artificial Cementation on the Strength Parameters and Bearing Capacity of Sandy Soil under a Strip Footing
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作者 Mohammad T. Alkhamis Abdulla AL-Rashidi 《Open Journal of Civil Engineering》 2023年第2期221-236,共16页
Artificial cementation is a method commonly used to enhance and improve soil properties. This paper investigates the effect of using different amounts of cement on soil strength parameters and soil bearing capacity, u... Artificial cementation is a method commonly used to enhance and improve soil properties. This paper investigates the effect of using different amounts of cement on soil strength parameters and soil bearing capacity, using the finite element method. Experimental tests are conducted on soil samples with different amounts of Portland cement. A 2-D numerical model is created and validated using the numerical modelling software, COMSOL Multiphysics 5.6 software. The study finds that the cohesion, and the angle of the internal friction of the soil samples increase significantly as a result of adding 1%, 2%, and 4% of Portland cement. The results demonstrate that the stresses and strain under the strip footing proposed decrease by 3.24% and 7.42%. Moreover, the maximum displacement also decreases by 1.47% and 2.97%, as a result of adding cements of 2% and 4%. The bearing capacity values obtained are therefore excellent, especially when using the 2% and 4% cement. The increase identified is due to the increased values of the bearing capacity factors. It is concluded that from an economic viewpoint, using 2% cement is the best option. 展开更多
关键词 Artificial Cementation strength parameters Bearing Capacity Finite Element Method Strip Footing
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Rigorous back analysis of shear strength parameters of landslide slip 被引量:6
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作者 张科 曹平 保瑞 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2013年第5期1459-1464,共6页
A rigorous back analysis of shear strength parameters of landslide slip was presented. Kinematical element method was adopted to determine factor of safety and critical failure surface, which overcomes the disadvantag... A rigorous back analysis of shear strength parameters of landslide slip was presented. Kinematical element method was adopted to determine factor of safety and critical failure surface, which overcomes the disadvantage of limit equilibrium method. The theoretical relationship between the combination of shear strength parameters and stability state was studied. The results show that the location of critical slip surface, F/tan f and F/c depend only on the value of c/tan f. The failure surface moves towards the inside of slope as c/tan f increases. According to the information involving factor of safety and critical failure surface in a specific cross-section, strength parameters can be back calculated based on the above findings. Three examples were given for demonstrating the validity of the present method. The shear strength parameters obtained by back analysis are almost consistent with their correct solutions or test results. 展开更多
关键词 slope stability back analysis kinematical element method shear strength parameter critical failure surface
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Field tests on mechanical characteristics and strength parameters of red-sandstone 被引量:3
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作者 蒋建清 杨果林 《Journal of Central South University》 SCIE EI CAS 2010年第2期381-387,共7页
Large-scale field shear tests on ten specimens of the red-sandstone embankment at a highway in Hunan,China,were performed to examine mechanical characteristics and parameters of red-sandstone.The curves of thrust-disp... Large-scale field shear tests on ten specimens of the red-sandstone embankment at a highway in Hunan,China,were performed to examine mechanical characteristics and parameters of red-sandstone.The curves of thrust-displacement,failure mode,and shear strength parameters for red-sandstone with different water contents,different compactions,and different grain size distributions were obtained from the tests.A practical procedure of in-situ test for red-sandstone embankment was proposed to normalize the test equipment and test steps.Based on three-dimensional thrust-sliding limit equilibrium method,the formulas for calculating strength parameters of red-sandstone considering three-dimensional sliding surface were inferred.The results show that red-sandstone has typical complete curves of stress-strain,strain softening,which are caused by the special structure of red-sandstone;water content and compaction are important factors for strength and failure mode of red-sandstone;The average value of cohesion and internal friction angle of the specimens calculated by three-dimensional technique are 21.56 kPa and 29.29°,respectively,and those by traditional two-dimensional method are 25.52 kPa and 33.76°,respectively. 展开更多
关键词 red-sandstone large-scale field test mechanical characteristic strength parameter
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Determination Method for Shear Strength Parameters of Rock-Soil Mixtures Using Close-Range Photogrammetry and 3-D Limit Equilibrium Theory 被引量:3
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作者 ZHOU Jia-wen YANG Xing-guo YANG Zhao-hui 《Journal of Mountain Science》 SCIE CSCD 2015年第5期1068-1083,共16页
Using a combination of close-range photogrammetry and three-dimensional(3-D) limit equilibrium theory, a determination method for the shear strength parameters of rock-soil mixture is presented. A close-range photogra... Using a combination of close-range photogrammetry and three-dimensional(3-D) limit equilibrium theory, a determination method for the shear strength parameters of rock-soil mixture is presented. A close-range photogrammetry method is used for measurement of the 3-D terrain of the experimental target. Auto CAD Lisp and EXCEL VBA are used to perform 3-D limit equilibrium analysis of the stability of sliding mass and perform backanalysis of shear strength parameters. The presented method was used to determine the shear strength parameters of rock-soil mixtures at the Liyuan Hydropower Station. The 3-D terrain of sliding surface could be measured notably well using of closerange photogrammetry. The computed results reveal that the cohesion and friction angle of rock-soil mixtures were 3.15 k Pa and 29.88o for test A, respectively, and 4.43 k Pa and 28.30o for test B, respectively, within the range of shear strength parameters, as determined by field and laboratory tests. The computation of shear strength parameters is influenced by the mesh grid number, especially the cohesion of the rock-soil mixture. The application of close-range photogrammetry can reduce the siteworks and improve the computational efficiency and accuracy. 展开更多
关键词 Rock-soil mixtures In-situ horizontalpush-shear test PHOTOGRAMMETRY Limit equilibrium Shear strength parameters
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Effect of loading rate on shear strength parameters of mechanically and biologically treated waste
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作者 Guoyang Fan Zhenying Zhang +5 位作者 Jiahe Zhang Jiayue Zhang Qiaona Wang Min Wang Bang Wang Chengyu Nie 《Frontiers of Environmental Science & Engineering》 SCIE EI CSCD 2022年第12期121-132,共12页
Mechanical biological treatment(MBT)technology has attracted increasing attention because it can reduce the volume of waste produced.To deal with the current trend of increasing waste,MBT practices are being adopted t... Mechanical biological treatment(MBT)technology has attracted increasing attention because it can reduce the volume of waste produced.To deal with the current trend of increasing waste,MBT practices are being adopted to address waste generated in developing urban societies.In this study,a total of 20 specimens of consolidated undrained triaxial tests were conducted on waste obtained from the Hangzhou Tianziling landfill,China,to evaluate the effect of loading rate on the shear strength parameters of MBT waste.The MBT waste samples exhibited an evident strain-hardening behavior,and no peak was observed even when the axial strain exceeded 25%.Further,the shear strength increased with an increase in the loading rate;the effect of loading rate on shear strength under a low confining pressure was greater than that under a high confining pressure.Furthermore,the shear strength parameters of MBT waste were related to the loading rate.The relationship between the cohesion,internal friction angle,and logarithm of the loading rate could be fitted to a linear relationship,which was established in this study.Finally,the ranges of shear strength parameters cohesion c and effective cohesion c′were determined as 1.0–8.2 kPa and 2.1–14.9 kPa,respectively;the ranges of the internal friction angleφand effective internal friction angleφ’were determined as 16.2°–29°and 19.8°–43.9°,respectively.These results could be used as a valuable reference for conducting stability analyses of MBT landfills. 展开更多
关键词 Mechanically and biologically treated waste LANDFILL Triaxial test Loading rate Axial strain Shear strength parameter
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The Study of the Grit-blasting Parameters and Their Effects on the Adhesive Strength of the Plasma Sprayed Coatings
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作者 M Heydarzadeh Sohi M Frooghieh Sh Khameneh Asl 《厦门大学学报(自然科学版)》 CAS CSCD 北大核心 2002年第S1期108-109,共2页
Surface Preparation is very important in adhesive b on ding of spray coatings to the surface of a work piece. The common practice is gr it-blasting of the surface before subjecting it to the spray coating process. In ... Surface Preparation is very important in adhesive b on ding of spray coatings to the surface of a work piece. The common practice is gr it-blasting of the surface before subjecting it to the spray coating process. In this study, grit-blasting of an AISI 4130 steel (of different heat treatmen ts) with Al 2O 3 particles was studied. Various grit-blasting parameters such as blasting particle size, the distance between blasting nozzle and the work pi ece (25, 30 and 40 cm.), blasting pressure (3,4,5,6 and 7 bars), blasting time ( 3, 6 and 10 seconds), and the blasting angle (45° and 90°) were examined in or der to find the optimum roughness. The mean roughness (Ra) of the grit-blasted surfaces were measured and the vari ations of the roughness with respect to the above mentioned variables were studi ed. The results show that by increasing blasting time, surface roughness increas es up to a maximum and then slightly decreases it with further duration of t he process. On the other hand a lengthy blasting causes some undesirable results such as an increase in residual particles between surface irregularities. There fore an optimum blasting time is of great importance. Increasing the blasting pr essure also provides a rougher surface, but in grit blasting of harder specimens the surface roughness decreases when the pressure reaches a certain limit. About the blasting angle, it was noticed that an angle of 45° results in less r esidual particles between the surface irregularities, in comparison to the angle of 90°. After grit-blasting, the specimens were plasma spray coated with 80% ZrO 2-20 % Y 2O 3 powder. The adhesive strength of the coating to the substrate was the n measured according to the DIN 50160 standard. The results show that for a certain base metal, the adhesive strength is directl y related to the surface roughness of the base material. Residual particles afte r grit-blasting the surface of the specimens can also have a strong deteriorati ng effect on adhesive strength. Finally, it was shown that the hardness of the b ase material had a direct effect on the adhesive strength of the sprayed coating s. 展开更多
关键词 The Study of the Grit-blasting parameters and Their Effects on the Adhesive strength of the Plasma Sprayed Coatings
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LNG低温复合软管疲劳特性及参数化分析研究 被引量:1
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作者 张玉 熊红祥 +3 位作者 程子云 崔腾飞 张飞凡 方加瑜 《海洋工程》 CSCD 北大核心 2024年第3期95-106,共12页
LNG低温复合软管具有强度高、重量轻、柔韧性好等优点,可以满足恶劣海况下LNG的输送需求,但其结构复杂,且面临多种耦合载荷作用下的疲劳失效问题。首先建立了LNG低温复合软管的有限元模型,研究了复合软管在弯曲和内压载荷下的力学响应... LNG低温复合软管具有强度高、重量轻、柔韧性好等优点,可以满足恶劣海况下LNG的输送需求,但其结构复杂,且面临多种耦合载荷作用下的疲劳失效问题。首先建立了LNG低温复合软管的有限元模型,研究了复合软管在弯曲和内压载荷下的力学响应和弯曲疲劳寿命特性;然后改变螺旋钢丝直径、预紧间距、导程和纤维层数及摩擦系数等参数,对软管的弯曲疲劳寿命进行了参数化分析。结果表明预紧间距、导程和纤维层数对复合软管的疲劳损伤影响显著:预紧间距增大时,复合软管疲劳损伤先增大后减小;导程减小或者层数增加时,复合软管的疲劳损伤会明显减小。摩擦系数对疲劳损伤几乎没有影响。研究成果可为低温复合软管的结构设计提供理论参考。 展开更多
关键词 LNG低温复合软管 强度分析 参数化分析 疲劳分析
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Limit equilibrium analysis for rock slope stability using basic Hoek–Brown strength criterion 被引量:5
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作者 邓东平 赵炼恒 李亮 《Journal of Central South University》 SCIE EI CAS CSCD 2017年第9期2154-2163,共10页
Hoek–Brown(HB)strength criterion can reflect rock’s inherent failure nature,so it is more suitable for analyzing the stability of rock slopes.However,the traditional limit equilibrium methods are at present only sui... Hoek–Brown(HB)strength criterion can reflect rock’s inherent failure nature,so it is more suitable for analyzing the stability of rock slopes.However,the traditional limit equilibrium methods are at present only suitable for analyzing the rock slope stability using the linear equivalent Mohr–Coulomb(EMC)strength parameters instead of the nonlinear HB strength criterion.Therefore,a new method derived to analyze directly the rock slope stability using the nonlinear HB strength criterion for arbitrary curve slip surface was described in the limit equilibrium framework.The current method was established based on certain assumptions concerning the stresses on the slip surface through amending the initial normal stressσ0 obtained without considering the effect of inter-slice forces,and it can satisfy all static equilibrium conditions of the sliding body,so the current method can obtain the reasonable and strict factor of safety(FOS)solutions.Compared with the results of other methods in some examples,the feasibility of the current method was verified.Meanwhile,the parametric analysis shows that the slope angleβhas an important influence on the difference of the results obtained using the nonlinear HB strength criterion and its linear EMC strength parameters.Forβ≤45°,both of the results are similar,showing the traditional limit equilibrium methods using the linear EMC strength parameters and the current method are all suitable to analyze rock slope stability,but forβ>60°,the differences of both the results are obvious,showing the actual slope stability state can not be reflected in the traditional limit equilibrium methods,and then the current method should be used. 展开更多
关键词 Hoek-Brown strength criterion linear equivalent Mohr-Coulomb strength parameters slope stability limit equilibrium slip surface factor of safety
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RESEARCH ON EQUIVALENT PROCESSES OF ROCK MASS PARAMETERS WITH ANCHOR PILES 被引量:1
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作者 陈洪凯 唐红梅 +3 位作者 王蓉 唐芬 王凯 袁建议 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI 2001年第8期965-971,共7页
Using normal and shear rigid coefficients of intact rock and fracture plane, rigidly normal, shear equivalent rigid coefficients of fissure rock mass are conducted. On the basis of hypotheses of small displacement of ... Using normal and shear rigid coefficients of intact rock and fracture plane, rigidly normal, shear equivalent rigid coefficients of fissure rock mass are conducted. On the basis of hypotheses of small displacement of rock mass, principle of superposition, irrelevance of strength parameters C and T and Coulomb theory, formulas to calculate equivalent strength parameters C and phi of equivalent continuous mass from fissured rock mass with anchor piles are given. The achievement is extremely valuable in integral stability analysis of the rock mass slope and important in promoting the research of the rock mass's constitutive relation. 展开更多
关键词 rock mass ANCHOR equivalent continuous mass rigid coefficient strength parameter
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Investigation into engineering parameters of marls from Seydoon dam in Iran
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作者 Sohrab Salehin 《Journal of Rock Mechanics and Geotechnical Engineering》 SCIE CSCD 2017年第5期912-923,共12页
The quality of designed structures embedded in rocks is strongly related to rock strength parameters of intact rock.Measuring different parameters from tests could be very expensive in designing phase of projects.Esti... The quality of designed structures embedded in rocks is strongly related to rock strength parameters of intact rock.Measuring different parameters from tests could be very expensive in designing phase of projects.Estimating some parameters from other ones can reduce costs and time of project procedure.In this paper,the relationships between static and dynamic parameters of marls are studied by using the single and multiple linear regressions.For this purpose,several marl core samples from Seydoon region,Khoozestan Province in Iran are collected and tested.Some equations with sufficient correlation have been obtained to predict the engineering parameters of marls,especially the uniaxial compressive strength(UCS). 展开更多
关键词 MARLS strength parameters Uniaxial compressive strength(UCS) Sonic wave velocity Brazilian tensile strength Triaxial test Point load test Index properties
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Analysis on the joint tensile strength and fractography of TiNi shape memory alloy precise pulse resistance butt welding 被引量:5
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作者 赵熹华 韩立军 赵蕾 《China Welding》 EI CAS 2002年第1期84-88,共5页
This paper studies mechanical property and fractography of the welded joints obtained in different welding parameters such as welding heat and welding press with/without gas shield in TiNi shape memory alloy precise p... This paper studies mechanical property and fractography of the welded joints obtained in different welding parameters such as welding heat and welding press with/without gas shield in TiNi shape memory alloy precise pulse resistance butt welding using tensile strength test, XRD, SEM and TEM measures. The optimum welding parameters obtaining high tensile strength welded joint are got. On the condition of welding press magneting current 2 A and welding heat 75%, the joint strength is the highest. This is important for to study other properties of TiNi shape memory alloy further. The experimental results state that argon gas shield have different effects on different welding parameters, less on welding press, but great on welding heat. But excessive welding press and welding heat have great effects on joint tensile strength. Too high welding heat can produce the new intermetallic compound, this intermetallic compound lead to dislocation density to increase and form the potential crack initiation, which can easily make the joint fracture under stress effect and decrease the shape memory ratio of joint for high density dislocation groups existing in the twinned martensite. 展开更多
关键词 TiNi shape memory alloy tensile strength welding parameter fractograghy
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New criterion for rock joints based on three-dimensional roughness parameters 被引量:6
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作者 唐志成 刘泉声 黄继辉 《Journal of Central South University》 SCIE EI CAS 2014年第12期4653-4659,共7页
The shear behavior of rock joints is important in solving practical problems of rock mechanics. Three group rock joints with different morphologies are made by cement mortar material and a series of CNL(constant norma... The shear behavior of rock joints is important in solving practical problems of rock mechanics. Three group rock joints with different morphologies are made by cement mortar material and a series of CNL(constant normal loading) shear tests are performed. The influences of the applied normal stress and joint morphology to its shear strength are analyzed. According to the experimental results, the peak dilatancy angle of rock joint decreases with increasing normal stress, but increases with increasing roughness. The shear strength increases with the increasing normal stress and the roughness of rock joint. It is observed that the modes of failure of asperities are tensile, pure shear, or a combination of both. It is suggested that the three-dimensional roughness parameters and the tensile strength are the appropriate parameter for describing the shear strength criterion. A new peak shear criterion is proposed which can be used to predict peak shear strength of rock joints. All the used parameters can be easily obtained by performing tests. 展开更多
关键词 rock joint shear behavior peak shear strength three-dimensional roughness parameter
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Study on Shear Strength Characteristics of Basalt-Concrete Bonding Interface Based on in-situ Direct Shear Test
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作者 Peng Xia Xinli Hu +5 位作者 Chunye Ying Shuangshuang Wu Chu Xu Xuan Wang Hao Chen Hang Duan 《Journal of Earth Science》 SCIE CAS CSCD 2024年第2期553-567,共15页
In rock engineering,the shear strength of the basalt-concrete bonding interface is a key factor affecting the shear performance of hydroelectric dam foundations,embedded rock piles and rock bolts.In this study,30 sets... In rock engineering,the shear strength of the basalt-concrete bonding interface is a key factor affecting the shear performance of hydroelectric dam foundations,embedded rock piles and rock bolts.In this study,30 sets of in-situ direct shear tests were conducted on the basalt-concrete bond interface in the Baihetan dam area to investigate the shear strength characteristics of the basalt-concrete bonding interface.The bonding interface contains two states,i.e.,the bonding interface is not sheared,termed as se(symbolic meaning see Table 1);the bonding interface is sheared with rupture surface,termed as si.The effects of lithology,Joints structure,rock type grade and concrete compressive strength on the shear strength of the concrete-basalt contact surface were investigated.The test results show that the shear strength of the bonding interface(s_(e)&s_(i))of columnar jointed basalt with concrete is greater than that of the bonding interface(s_(e)&s_(i))of non-columnar jointed one with the same rock type grade.When the rock type grade isⅢ_(2),fcol is 1.22 times higher than fncol and ccol is 1.13 times greater than cncol.The shear strength parameters of the basalt-concrete bonding interface differ significantly for different lithologies.The cohesion of the bonding interface(s_(i))of cryptocrystalline basalt with concrete is 2.05 times higher than that of the bonding interface(s_(i))of breccia lava with concrete under the same rock type grade condition.Rock type grade has a large influence on the shear strength of the non-columnar jointed basalt-concrete bonding interface(s_(e)&s_(i)).cnol increases by 33%when the grade of rock type rises fromⅢ_(1)toⅡ_(1).the rock type grade has a greater effect on bonding interface(s_(i))cohesion than the coefficient of friction.When the rock type grade is reduced fromⅢ_(2)toⅢ_(1),f_(ncol)′increases by 2%and c_(ncol)′improves by 44%.The shear strength of the non-columnar jointed basalt-concrete bonding interface(s_(e)&s_(i))increases with the increase of the compressive strength of concrete.When concrete compressive strength rises from 22.2 to 27.6 MPa,the cohesion increases by 94%. 展开更多
关键词 direct shear test basalt-concrete bonding interface shear strength parameters engineering geogolgy
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海底油气管道剩余强度参数化建模方法研究 被引量:5
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作者 周红明 周闻青 +1 位作者 茅振华 吕超群 《机械强度》 CAS CSCD 北大核心 2018年第2期444-448,共5页
为了有效解决海底受损油气管道的安全性评估问题,先利用有限元方法分析管道剩余强度随缺陷长度、宽度、深度等几何量信息的变化规律,在此基础上构建了用于定量化描述管道剩余强度的参数化模型,并利用改进遗传算法的全局最优搜索能力求... 为了有效解决海底受损油气管道的安全性评估问题,先利用有限元方法分析管道剩余强度随缺陷长度、宽度、深度等几何量信息的变化规律,在此基础上构建了用于定量化描述管道剩余强度的参数化模型,并利用改进遗传算法的全局最优搜索能力求解模型未知系数,给出管道剩余强度与缺陷几何量之间的定量关系。经过实验验证,表明该模型比现有的管道评估标准具有更好的可靠性,可有效地用于海底油气受损管道的剩余强度分析,为管道的安全性评估提供理论依据。 展开更多
关键词 海底油气管道 缺陷几何量 剩余强度 参数化模型 遗传算法
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Effects of Material Composition and Water Content on the Mechanical Properties of Landslide Deposits Triggered by the Wenchuan Earthquake 被引量:10
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作者 ZHOU Jiawen CUI Peng YANG Xingguo 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2016年第1期242-257,共16页
Abundant landslide deposits were triggered by the Wenchuan earthquake, providing a rich source of material for subsequent debris flows or slope failures under rainfall conditions. A good understanding of the physical ... Abundant landslide deposits were triggered by the Wenchuan earthquake, providing a rich source of material for subsequent debris flows or slope failures under rainfall conditions. A good understanding of the physical and mechanical properties of the landslide deposits is very important to the research on slope failure mechanisms and the initiation of debris flow. Laboratory biaxial compression tests are used to study the material compositions and water content impacts on the mechanical properties of landslide deposits, and a discrete element method (a bond-contact model) is used to study the particle stiffness, bond force, friction coefficient and confining stress impact on the mechanical behaviors and the relationships between the numerical and experimental parameters. The experimental results show that the failure stress of landslide deposits is decreased with increasing content of fine particles and also with increased water content, especially at the initial increasing stage. Cohesion of the saturated landslide deposits is increased, but the friction angle is decreased with the increase in the fine particle content. Shear strength parameters (the cohesion and friction angle) are decreased with the increasing water content at the initial increasing stage, and then, they slowly decrease. There is a critical value of the water content at 5%-7% (in weight) for the failure stress and shear strength parameters of the landslide deposits. Quadratic equations are presented to describe the relation between the bond force and cohesion, and the numerical friction coefficient and the experimental friction angle. 展开更多
关键词 landslide deposits particle size distribution water content shear strength parameters numerical modeling
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Experimental and numerical study on loading rate effects of rock-like material specimens containing two unparallel fissures 被引量:10
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作者 黄彦华 杨圣奇 曾卫 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第6期1474-1485,共12页
A series of laboratory experiments and PFC numerical simulations for rock-like material specimens containing two unparallel fissures were carried out.On the basis of experimental and numerical results,the stress-strai... A series of laboratory experiments and PFC numerical simulations for rock-like material specimens containing two unparallel fissures were carried out.On the basis of experimental and numerical results,the stress-strain curves,mechanical properties,AE events,cracking behavior and energy characteristics were analyzed to reveal the macro-mechanical behavior and meso-mechanism of pre-fissured specimens under different loading rates.Investigated results show that:1)When the loading rate is relatively low,the stress-strain curves show a brittle response.When the loading rate is relatively high,the curve shows a more ductile response.Both of the peak strength and elastic mudulus increase with the increase of loading rate,which can be expressed as power functions.2)Four crack types are identified,i.e.,tensile crack,shear crack,far-field crack and surface spalling.Moreover,the tensile crack,far-field crack and surface spalling are under tensile mechanism,while the shear crack is under shear mechanism.3)The drops of the stress-strain curves all correspond to the crack initiation or coalescence,which is also linked to a sudden increasing in the accumulated micro-crack curve.4)Both of the maximum bond force and energy have the similar trend with the increase of loading rate to peak strength,which indicates that the trend of peak strength can be explained by the meso-mechanics and energy. 展开更多
关键词 rock mechanics two pre-existing fissures strength parameters crack coalescence particle flow simulation
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基于参数化方法的船体分段吊装快速有限元分析技术 被引量:6
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作者 张帆 李瑞 +2 位作者 刘玉君 孙瑞雪 李政润 《大连理工大学学报》 EI CAS CSCD 北大核心 2020年第1期22-29,共8页
为了提高分段吊装工艺结构强度的计算效率,将参数化思想应用于分段吊装方案的有限元分析中.首先采用结构参数化方法快速建立各种分段结构的有限元模型, 然后对眼板、吊绳、工况等3类吊装工艺信息进行参数化处理并提出了针对不同吊装工... 为了提高分段吊装工艺结构强度的计算效率,将参数化思想应用于分段吊装方案的有限元分析中.首先采用结构参数化方法快速建立各种分段结构的有限元模型, 然后对眼板、吊绳、工况等3类吊装工艺信息进行参数化处理并提出了针对不同吊装工艺的快捷仿真方法. 最后实现了基于参数化分析方法的典型双层底分段的平吊和翻身的结构强度分析.经过实例验证该参数化方法避免了大量重复性工作,有效地提高了分段吊装有限元建模和强度计算的效率. 展开更多
关键词 船体分段吊装 结构强度计算 参数化方法 有限元分析
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基于有限元法的卧螺离心机转鼓优化设计 被引量:13
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作者 刘天丰 童水光 孙富一 《化工机械》 CAS 2005年第2期85-87,共3页
对卧螺离心机的转鼓进行参数化建模,以这些参数为设计变量,以几何、强度和刚度要求为约束条件,以转鼓的转动惯量为目标函数,基于有限元分析计算,对转鼓结构的几何尺寸进行优化设计,取得了良好的效果。
关键词 卧螺离心机转鼓 优化有限元 强度 参数化
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基于强度约束的叶片榫头参数化设计 被引量:5
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作者 姚利兵 莫蓉 +1 位作者 刘红军 常智勇 《航空制造技术》 2007年第8期93-95,共3页
针对榫头的设计要求,介绍了榫头的设计方法和过程。以榫头重量最轻和满足静强度约束为基点,确定榫头的控制参数,实现了人机交互的榫头参数化设计。
关键词 航空发动机 榫头 参数化设计 强度 约束
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基于AWE的大口径闸阀阀体强度分析与结构优化 被引量:8
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作者 安宗文 权帅峰 《兰州理工大学学报》 CAS 北大核心 2009年第2期62-66,共5页
在ANSYS Workbench集成开发平台环境下,建立大口径闸阀阀体的参数化模型,从安全、经济的角度,就如何改进阀体的结构以减少阀体的应力集中现象,合理优化加强筋结构尺寸和位置进行有限元分析和结构设计,得出阀体最优的结构尺寸,结合最大... 在ANSYS Workbench集成开发平台环境下,建立大口径闸阀阀体的参数化模型,从安全、经济的角度,就如何改进阀体的结构以减少阀体的应力集中现象,合理优化加强筋结构尺寸和位置进行有限元分析和结构设计,得出阀体最优的结构尺寸,结合最大应力强度敏感性分析,为该类阀体结构的设计提出指导性意见.结果表明,优化后的阀体最大等效应力明显减小、应力分布更加均匀,该研究方法具有较高的效率和精度. 展开更多
关键词 闸阀 参数化建模 加强筋 强度 优化
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