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Static and Dynamic Precipitation Behavior of the Al-20wt.% Zn Alloy
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作者 刘崇宇 江鸿杰 +4 位作者 王春霞 亓海全 李义兵 马明臻 刘日平 《Chinese Physics Letters》 SCIE CAS CSCD 2016年第5期63-66,共4页
The static and dynamic precipitation behavior of solution-treated binary Al-20 wt.% Zn alloy is investigated via artificial aging, cold rolling and artificial aging combined with cold rolling. The solution-treated Al-... The static and dynamic precipitation behavior of solution-treated binary Al-20 wt.% Zn alloy is investigated via artificial aging, cold rolling and artificial aging combined with cold rolling. The solution-treated Al-Zn alloy exhibits high thermal stability during aging, and low densities of nano-sized Zn particles are precipitated along with AI grain boundaries after aging at 200℃ for 13 h. Compared with static precipitation, dynamic precipitation occurs more easily in the Al-Zn alloy. Zn clusters are obtained after cold rolling at an equivalent plastic strain of 0.6, and the size of the Zn phase reaches hundreds of nanometers when the strain is increased to 12.1. The results show that the speed of static precipitation can be significantly enhanced after the application of 2.9 rolling strain. Grain refinement and defects induced by cold rolling are considered to promote Zn precipitation. The hardness of Al-Zn alloy is also affected by static and dynamic precipitations. 展开更多
关键词 Zn Alloy in on AS AL static and Dynamic Precipitation behavior of the Al-20wt of
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Experimental study on the seismic behavior of high strength concrete fi lled double-tube columns 被引量:12
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作者 Qian Jiaru Li Ningbo +1 位作者 Ji Xiaodong Zhao Zuozhou 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2014年第1期47-57,共11页
To study the seismic behavior of high strength concrete fi lled double-tube(CFDT) columns,each consisting of an external square steel tube and an internal circular steel tube,quasi-static tests on eight CFDT column sp... To study the seismic behavior of high strength concrete fi lled double-tube(CFDT) columns,each consisting of an external square steel tube and an internal circular steel tube,quasi-static tests on eight CFDT column specimens were conducted.The test variables included the width-to-thickness ratio(β1) and the area ratio(β2) of the square steel tube,the wall thickness of the circular steel tube,and the axial force(or the axial force ratio) applied to the CFDT columns.The test results indicate that for CFDT columns with a square steel tube with β1 of 50.1 and 24.5,local buckling of the specimen was found at a drift ratio of 1/150 and 1/50,respectively.The lateral force-displacement hysteretic loops of all specimens were plump and stable.Reducing the width-to-thickness ratio of the square steel tube,increasing its area ratio,or increasing the wall thickness of the internal circular steel tube,led to an increased fl exural strength and deformation capacity of the specimens.Increasing the design value of the axial force ratio from 0.8 to 1.0 may increase the fl exural strength of the specimens,while it may also decrease the ultimate deformation capacity of the specimen with β1 of 50.1. 展开更多
关键词 high strength concrete fi lled double-tube(CFDT)column seismic behavior area ratio of the square steel tube width-to-thickness ratio of the square steel tube axial force ratio quasi-static test
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Rock damage and fracturing induced by high static stress and slightly dynamic disturbance with acoustic emission and digital image correlation techniques 被引量:3
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作者 Shuting Miao Peng-Zhi Pan +2 位作者 Petr Konicek Peiyang Yu Kunlun Liu 《Journal of Rock Mechanics and Geotechnical Engineering》 SCIE CSCD 2021年第5期1002-1019,共18页
A series of coupled static-dynamic loading tests is carried out in this study to understand the effect of slightly dynamic disturbance on the rocks under high static stress.The acoustic emission(AE)and digital image c... A series of coupled static-dynamic loading tests is carried out in this study to understand the effect of slightly dynamic disturbance on the rocks under high static stress.The acoustic emission(AE)and digital image correlation(DIC)techniques are combined to quantitatively characterize the damage and fracturing behaviors of rocks.The effects of three influencing factors,i.e.initial static stress,disturbance amplitude,and disturbance frequency,on the damage and fracturing evolution are analyzed.The experimental results reveal the great differences in AE characteristics and fracturing behaviors of rocks under static loads and coupled static-dynamic loads.Both the Kaiser effect and Felicity effect are observed during the disturbance loading process.The crack initiation,stable and unstable propagation in the highly-stressed rocks can be triggered by cyclic disturbance loads,and more local tensile splitting cracks are found in the rocks subjected to coupled static-dynamic loads.The damage and fracturing evolution of rocks during cyclic disturbances can be divided into two stages,i.e.steady and accelerated stages,and the increase rate and proportion of each stage are greatly affected by these influencing factors.High initial static stress,low disturbance frequency,and high disturbance amplitude are considered to be adverse factors to the stability of the rocks,which would induce a high increase rate of the steady stage and a high proportion of the accelerated stage within the whole disturbance period.Based on the two-stage damage evolution trend,a linear-exponential damage model is employed to predict the instability of the rocks under coupled static-dynamic loads. 展开更多
关键词 Damage evolution Fracture behaviors High static stress Dynamic disturbance Damage model
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Failure behavior of highly stressed rocks under quasi-static and intensive unloading conditions 被引量:3
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作者 Jie Li Pengxian Fan Mingyang Wang 《Journal of Rock Mechanics and Geotechnical Engineering》 SCIE CSCD 2013年第4期287-293,共7页
Unloading failure of rocks,especially highly stressed rocks,is one of the key issues in construction of underground structures.Based on this,analytical models for rocks under quasi-static and intensive unloading condi... Unloading failure of rocks,especially highly stressed rocks,is one of the key issues in construction of underground structures.Based on this,analytical models for rocks under quasi-static and intensive unloading conditions are established to study the failure behavior of highly stressed rocks.In case of rock failure under quasi-static unloading,the rock mass ahead of working face is regarded as an elasto-brittle material,and the stress-displacement curves are used to characterize the tensile fracture of peak-stress area.It is observed that,when intensive unloading happens,there is an elastic unloading wave(perturbation wave) propagating in the rock mass.If the initial stress exceeds the critical stress,there will be a fracture wave,following the elastic unloading wave.To study the propagation feature of fracture wave,the conservation laws of mass,momentum and energy are employed.Results show that the post-peak deformation,strength and energy dissipation are essential to the failure process of highly stressed rocks. 展开更多
关键词 Deep rock mass Unloading failure behavior Quasi-static unloading Intensive unloading
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Static behavior of semi-rigid thin-walled steel-concrete composite beam-to-column joints with bolted partial-depth flush end plate:experimental study
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作者 郜京峰 张耀春 +2 位作者 王海明 姚淇誉 金路 《Journal of Harbin Institute of Technology(New Series)》 EI CAS 2011年第5期91-102,共12页
A new type of semi-rigid thin-walled steel-concrete composite beam-to-column joint has been proposed in this paper.Five semi-rigid composite beam-to-column joint specimens subjected to hogging moments under monotonic ... A new type of semi-rigid thin-walled steel-concrete composite beam-to-column joint has been proposed in this paper.Five semi-rigid composite beam-to-column joint specimens subjected to hogging moments under monotonic loading were tested to study the static behavior of this new type of joint.The main variable parameters for the five joint specimens were the longitudinal reinforcement ratio and the joint type.The experimental results designated that the magnitude of extension of the longitudinal reinforcement is the most important factor that influenced the moment-rotation characteristic of the new type of joint.The concrete slabs could resist 3.8%-19.1% of the total shear load applied to the cross-sections near the beam-to-column connection.The edge stiffened elements,such as the flange of the lipped I-section thin-walled steel beam,were capable of having considerable inelastic deformation capacity although they had comparatively large width-to-thickness ratios.The shear failure of the concrete cantilever edge strip must be taken into account in practical design because it has significant influence on the anchorage of the longitudinal reinforcement in the new type of external joints. 展开更多
关键词 SEMI-RIGID thin-walled steel-concrete composite structures beam-to-column joints static behavior experimental study
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Subcritical Crack-Growth and Lifetime Behavior of Glass and SiC under Static Load
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作者 Yiwang BAO, Qisheng FAN and Shengbiao SU China Building Materials Academy, Beijing 100024, China 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2001年第6期620-624,共5页
Crack initiation and subcritical crack growth in glass sheet and SIC bar specimen under static loading were investigated to study the failure process. It has been demonstrated that the lifetime ... Crack initiation and subcritical crack growth in glass sheet and SIC bar specimen under static loading were investigated to study the failure process. It has been demonstrated that the lifetime process of brittle materials involves three possible forms of crack growth: subcritical crack growth, partly subcritical crack growth and instantaneous fracture without subcritical crack growth. Curves of ν-K obtained in step-by-step static fatigue tests and in constant loading rate tests showed different trends for borosilicate glass sheet. α-SiC that is generally considered immune to mechanical fatigue effect and environmental attack was also tested under static loading and the lifetime was measured. The results showed that the threshold load to damage effect was over 80% of the initial strength for the SiC. 展开更多
关键词 TIME SIC Subcritical Crack-Growth and Lifetime behavior of Glass and SiC under static Load
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Microstructure and Quasi-Static Mechanical Behavior of Cryoforged AA2519 Alloy 被引量:1
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作者 Amin Azimi Gbadebo Moses Owolabi +2 位作者 Hamid Fallahdoost Nikhil Kumar Horace Whitworth 《Materials Sciences and Applications》 2019年第2期137-149,共13页
In this study, AA2519 alloy was initially processed by multi axial forging (MAF) at room and cryogenic temperatures. Subsequently, the microstructure and the mechanical behavior of the processed samples under quasi-st... In this study, AA2519 alloy was initially processed by multi axial forging (MAF) at room and cryogenic temperatures. Subsequently, the microstructure and the mechanical behavior of the processed samples under quasi-static loading were investigated to determine the influence of cryogenic forging on alloys’ subgrains dimensions, grain boundaries interactions, strength, ductility and toughness. In addition, the failure mechanisms at the tensile rupture surfaces were characterized using scanning electron micro-scope (SEM). The results show significant improvements in the strength, ductility and toughness of the alloy as a result of the cryogenic MAF process. The formation of nanoscale crystallite microstructure, heavily deformed grains with high density of grain boundaries and second phase breakage to finer particles were characterized as the main reasons for the increase in the mechanical properties of the cryogenic forged samples. The cryogenic processing of the alloy resulted in the formation of an ultrafine grained material with tensile strength and toughness that are ~41% and ~80% higher respectively after 2 cycles MAF when compared with the materials processed at ambient temperature. The fractography analysis on the tested materials shows a substantial ductility improvement in the cryoforged (CF) samples when compared to the room temperature forged (RTF) samples which is in alignment with their stress-strain profiles. However, extended forging at higher cycles than 2 cycles led only to increase in strength at the expense of ductility for both the CF and RTF samples. 展开更多
关键词 AA2519 Aluminum ALLOY CRYOGENIC FORGING QUASI-static Mechanical behavior MICROSTRUCTURE Investigation FRACTOGRAPHY Analysis
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Static and Dynamic Study of a Wind Turbine Blade with Horizontal Axis
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作者 H. Hamdi C. Mrad +1 位作者 R. Nasri A. Hamdi 《Journal of Environmental Science and Engineering》 2011年第9期1167-1174,共8页
关键词 风力涡轮 涡轮叶片 水平轴 静态 动力输出 计算过程 有限元法 陀螺效应
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Quasi-Static and Dynanmic Deformation Behaviors of Medium-Carbon Steels in a Wide Temperature Range
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作者 Byoungchul Hwang 《Materials Sciences and Applications》 2011年第6期572-577,共6页
This paper presents a study of the quasistatic and dynamic deformation behaviors of conventional and microalloyed medium-carbon steels in a wide temperature range. As strain rate increased, the flow stress increased a... This paper presents a study of the quasistatic and dynamic deformation behaviors of conventional and microalloyed medium-carbon steels in a wide temperature range. As strain rate increased, the flow stress increased at room temperature, but occasionally did not at elevated temperatures. The flow stress of the microalloyed steel containing precipitates was less sensitive to strain rate at room temperature than that of the conventional steel due to a relatively larger activation length. Microstructural observation of the steels deformed after compression test indicated that inhomogeneous deformation became more serious with increasing strain rate and temperature without fracturing in the highly localized region. 展开更多
关键词 QUASI-static Dynamic Deformation behavior MEDIUM-CARBON Steel PRECIPITATE
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联肢弯剪型钢板剪力墙抗震性能试验研究
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作者 郝际平 兰芮 +6 位作者 田炜烽 薛强 李生辉 樊春雷 徐坤 朱邵辉 王洪臣 《建筑钢结构进展》 CSCD 北大核心 2024年第4期10-19,共10页
联肢钢板剪力墙结构是将2片钢板剪力墙通过钢连梁连接形成的抗侧力结构。通过对1榀1/3缩尺的4层联肢弯剪型钢板剪力墙试件进行低周往复加载试验,从滞回曲线、骨架曲线、延性、承载力及刚度退化、耗能能力等方面研究了该结构体系的抗震性... 联肢钢板剪力墙结构是将2片钢板剪力墙通过钢连梁连接形成的抗侧力结构。通过对1榀1/3缩尺的4层联肢弯剪型钢板剪力墙试件进行低周往复加载试验,从滞回曲线、骨架曲线、延性、承载力及刚度退化、耗能能力等方面研究了该结构体系的抗震性能,并且对试件的屈服顺序和变形模式进行了分析。结果表明:联肢钢板剪力墙试件的延性系数达到5.03,承载力退化系数均大于0.96,承载力和刚度退化稳定,等效黏滞阻尼系数达到0.25以上,表明联肢弯剪型钢板剪力墙具有优越的抗震性能。加载过程中,连梁先于墙板发生屈服,墙板先屈曲后屈服,此后柱脚和横梁相继屈服。连梁的引入改变了结构的屈服机制,提高了整体的延性和耗能能力,能够组成多道抗震防线,且试件整体最终也体现出合理的破坏机制。整体侧移曲线呈弯剪变形模式。该试验研究更加贴合实际工程中联肢钢板剪力墙结构的应用情况,为联肢钢板剪力墙结构的进一步研究和应用提供了试验基础。 展开更多
关键词 联肢钢板剪力墙 低周往复加载试验 抗震性能 屈服机制 变形模式
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非对称集中荷载下无腹筋RC梁受剪性能试验研究
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作者 袁健 刘家栋 段绍伟 《湖南大学学报(自然科学版)》 EI CAS CSCD 北大核心 2024年第3期141-148,共8页
非对称集中荷载作用下钢筋混凝土无腹筋简支梁具有两个不同的剪跨比,而两剪跨段受剪承载力与剪力作用之间的相对大小存在不确定性.通过开展6根非对称和4根对称集中荷载作用下钢筋混凝土无腹筋简支梁受剪性能试验研究,获取了破坏形态、荷... 非对称集中荷载作用下钢筋混凝土无腹筋简支梁具有两个不同的剪跨比,而两剪跨段受剪承载力与剪力作用之间的相对大小存在不确定性.通过开展6根非对称和4根对称集中荷载作用下钢筋混凝土无腹筋简支梁受剪性能试验研究,获取了破坏形态、荷载-跨中位移曲线和纵向受拉钢筋应变,并分析了《混凝土结构设计规范》(GB 50010—2010)公式、修正压力场理论、基于截面应变分析的抗剪模型和Zsutty统计公式的适用性.结果表明,对于小剪跨比恒为1.0的无腹筋简支梁,大剪跨比为2.0~4.0的梁均在大剪跨段发生剪切破坏;当大剪跨比由3.0增大至3.5时,梁的极限承载力出现由大剪跨段控制转变为小剪跨段控制的现象《.混凝土结构设计规范》(GB50010—2010)预测非对称集中荷载作用下钢筋混凝土无腹筋简支梁发生剪切破坏的位置与试验结果相反,而Zsutty统计公式的预测效果最好. 展开更多
关键词 非对称荷载 钢筋混凝土 无腹筋梁 受剪性能 静力试验
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Effect of static bed height in the upper fluidized bed on flow behavior in the lower riser section of a coupled reactor 被引量:9
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作者 Dewu Wang Chunxi Lu Chaoyu Yan 《Particuology》 SCIE EI CAS CSCD 2009年第1期19-25,共7页
To study olefin reduction by using an auxiliary reactor for FCC naphtha upgrading, a large-scale cold model of a riser-bed coupled to an upper fluidized bed was established. The effect of static bed height in the uppe... To study olefin reduction by using an auxiliary reactor for FCC naphtha upgrading, a large-scale cold model of a riser-bed coupled to an upper fluidized bed was established. The effect of static bed height in the upper fluidized bed on narticle flow behavior in the lower riser was investigated experimentally. A restriction index of solids holdup was used to evaluate quantitatively the restrictive effect of the upper fluidized bed. Experimental results show that, under the restrictive effect of the upper fluidized bed, the riser could be divided into three regions in the longitudinal direction: accelerating, fully developed and restriction. The axial distribution of solids holdup in the riser is characterized by large solids holdup in the top and bottom sections and small solids holdup in the middle section. Overall solids holdup increased with increasing static bed height in the upper fluidized bed, while particle velocity decreased. Such restrictive effect of the upper fluidized bed could extend from the middle and top sections to the whole riser volume when riser outlet resistance is increased, which increases with increasing static bed height in the upper fluidized bed. The upper bed exerts the strongest restriction on the area close to the riser outlet. 展开更多
关键词 Coupled reactor RisER Fluidized bed static bed height Flow behavior RESTRICTION
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黑龙江省成年人身体活动和静态行为状况分析
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作者 闫世春 王亦南 +4 位作者 靳林 李阳春 崔晓明 周勇 周雪 《中国初级卫生保健》 2024年第3期34-36,41,共4页
目的:了解黑龙江省成年人身体活动和静态行为状况并进行分析,为改善居民不良生活习惯提供参考。方法:2018年6—12月,采用多阶段随机整群抽样法,选取黑龙江省10个县(市、区)作为国家级慢性病与营养监测点,对监测点18岁及以上居民进行身... 目的:了解黑龙江省成年人身体活动和静态行为状况并进行分析,为改善居民不良生活习惯提供参考。方法:2018年6—12月,采用多阶段随机整群抽样法,选取黑龙江省10个县(市、区)作为国家级慢性病与营养监测点,对监测点18岁及以上居民进行身体活动和静态行为问卷调查。结果:调查对象经常锻炼率为15.70%,从不锻炼率为77.70%,日平均总静态行为时间为(4.60±2.69) h,日平均看电视、使用电脑、玩电子游戏、使用手机的屏幕时间为(2.82±2.02) h,日平均睡眠时间为(7.14±1.63) h。结论:黑龙江省成年人经常锻炼率较低,身体活动不足普遍存在,业余静态行为时间较长。相关部门应关注居民身体锻炼情况,由体育指导员引领居民开展适合的体育活动;应通过提高人群的经常锻炼率和缩短屏幕时间防控慢性病;应加强健康宣传与促进,使居民意识到身体活动的益处,从而提高居民的健康水平。 展开更多
关键词 身体活动 静态行为 屏幕时间 分析
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铰接方钢管组合异形柱框架抗震性能研究
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作者 周婷 肖潇 +1 位作者 陈志华 王子刚 《建筑钢结构进展》 CSCD 北大核心 2024年第2期64-75,共12页
为解决村镇住宅体系存在的装配式程度及标准化程度较低、现场焊接工作繁多、室内建筑面积浪费等问题,提出了一种铰接方钢管组合异形柱框架体系。该体系中异形柱采用3根空钢管通过钢板与加劲肋组合而成的L形柱,梁柱节点为腹板螺栓连接的... 为解决村镇住宅体系存在的装配式程度及标准化程度较低、现场焊接工作繁多、室内建筑面积浪费等问题,提出了一种铰接方钢管组合异形柱框架体系。该体系中异形柱采用3根空钢管通过钢板与加劲肋组合而成的L形柱,梁柱节点为腹板螺栓连接的铰接节点。通过拟静力试验对该体系的抗震性能进行研究。研究结果表明:相比于铰接钢管混凝土组合异形柱,铰接空钢管组合异形柱框架体系先于梁端出现转角,最后破坏模式为柱脚破坏,具有更优良的抗震耗能和更缓慢的强度与刚度退化,并通过对比刚接节点和铰接节点的骨架曲线,发现节点刚接程度对结构整体的抗侧刚度影响较大。 展开更多
关键词 铰接节点 异形柱框架结构 拟静力试验 村镇住宅 抗震性能
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窄幅钢箱-UHPC组合梁负弯矩下抗弯性能试验研究
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作者 郑艳 刘晓贝 +2 位作者 羊海林 莫时旭 黄荆 《建筑科学与工程学报》 CAS 北大核心 2024年第4期42-50,共9页
为改善钢-混凝土组合梁负弯矩下的受力性能,提出一种新型窄幅钢箱-超高性能混凝土(UHPC)组合梁。通过6根试验梁的反向静力加载试验,得到试验梁受力全过程跨中荷载-挠度、荷载-应变、荷载-最大裂缝宽度关系曲线、裂缝发生发展及破坏形态... 为改善钢-混凝土组合梁负弯矩下的受力性能,提出一种新型窄幅钢箱-超高性能混凝土(UHPC)组合梁。通过6根试验梁的反向静力加载试验,得到试验梁受力全过程跨中荷载-挠度、荷载-应变、荷载-最大裂缝宽度关系曲线、裂缝发生发展及破坏形态等,基于简化塑性理论推导出了组合梁极限抗弯承载力计算公式。结果表明:窄幅钢箱-UHPC组合梁在负弯矩下具有良好的受力性能;提高配筋率、钢纤维掺量和UHPC相对板厚都可在一定程度上改善组合梁延性,提高其极限抗弯承载力;翼板配筋率对承载力影响较大,配筋率由1%增加至2%时,其极限抗弯承载力提高了15%;钢纤维掺量和UHPC相对板厚对初始开裂荷载影响较大,钢纤维掺量从1%增加到2%时,初始开裂荷载提高32%,UHPC相对板厚由0增加到0.5时,初始开裂荷载提高56%;增加钢纤维掺量和UHPC相对板厚可有效控制裂缝宽度,减少结构主裂缝数量,改善组合梁耐久性;组合梁极限抗弯承载力计算公式计算值与试验值吻合较好,表明塑性理论适用于窄幅钢箱-UHPC组合梁的承载力计算。 展开更多
关键词 窄幅钢箱-UHPC组合梁 抗弯性能 负弯矩区 静载试验 极限抗弯承载力
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疏浚吹填泥沙静态间歇沉降行为及其稳态宏观评价标准 被引量:1
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作者 鲍树峰 董志良 +2 位作者 莫海鸿 周睿博 张劲文 《岩土工程学报》 EI CAS CSCD 北大核心 2024年第3期549-557,共9页
关于疏浚吹填泥沙的静态间歇沉降行为与机理及其稳态宏观评价标准,目前暂未深入研究。这是当今疏浚吹填泥沙地基采用真空过滤排水固结技术进行处理时无法科学判断最佳启动时间的主要原因之一。鉴于此,先对疏浚吹填泥沙的静态间歇沉降行... 关于疏浚吹填泥沙的静态间歇沉降行为与机理及其稳态宏观评价标准,目前暂未深入研究。这是当今疏浚吹填泥沙地基采用真空过滤排水固结技术进行处理时无法科学判断最佳启动时间的主要原因之一。鉴于此,先对疏浚吹填泥沙的静态间歇沉降行为进行理论研究,建立了颗粒悬浮液的沉降速度与平均孔隙比的理论关系式。然后,获取典型工程现场的疏浚吹填泥沙,配制典型浓度试样,开展静态间歇沉降模型试验研究。研究结果表明:(1)黏粒(d<0.005mm)含量是影响疏浚吹填泥沙静态间歇沉降行为与机理的关键因素之一;(2)颗粒通量最大值Gmax往往出现在试验难以测出的非常低的浓度条件下,且黏粒含量越高,越难通过试验方式测得;(3)对于黏粒含量为40%~60%的疏浚吹填泥沙,建议将“平均孔隙比累计变化率为60%~75%”作为静态间歇沉降稳定状态的宏观评价标准。 展开更多
关键词 疏浚吹填泥沙 静态间歇沉降行为 稳态评价标准
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集中配筋连接预制剪力墙抗震性能试验研究 被引量:1
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作者 肖扬 卢谦 +3 位作者 罗小勇 陈林松 程俊峰 张璧玮 《中南大学学报(自然科学版)》 EI CAS CSCD 北大核心 2024年第1期201-218,共18页
针对现有预制混凝土剪力墙接缝施工容错率低、混凝土现场浇筑作业量大和钢筋锚固过长等不足,提出一种使用超高性能混凝土(UHPC)的集中配筋连接预制剪力墙。通过对比1片现浇剪力墙试件、3片不同接缝形式的集中配筋连接预制剪力墙试件的... 针对现有预制混凝土剪力墙接缝施工容错率低、混凝土现场浇筑作业量大和钢筋锚固过长等不足,提出一种使用超高性能混凝土(UHPC)的集中配筋连接预制剪力墙。通过对比1片现浇剪力墙试件、3片不同接缝形式的集中配筋连接预制剪力墙试件的拟静力试验结果,揭示该类预制剪力墙的破坏规律和抗震性能、竖缝对墙体抗震性能的影响和连接钢筋的受力特点。采用ABAQUS软件对试件进行有限元模拟,分析轴压比和集中配筋率对试件抗震性能的影响。研究结果表明:预制试件与现浇试件具有相同的破坏规律,均为弯剪破坏;这2类试件的滞回曲线均较饱满,骨架曲线走势基本一致,耗能能力接近,且预制试件的最小承载力仅比现浇试件低5.6%,表明预制试件的抗震性能与现浇试件的抗震性能基本相同;竖缝对剪力墙承载力的影响较小,使剪力墙的延性和耗能能力有一定的削弱;不同竖缝形式预制墙的抗震性能相近但各有特点,竖缝形式预制墙采用UHPC出筋搭接具有更好的整体性,采用U形键槽的预制墙具有更大的刚度和更强的耗能能力;连接钢筋的应力分布具有典型受弯构件的特征;随着轴压比增加,模型的刚度和承载力不断增加,在轴压比从0.05增加到0.30时,最大的峰值荷载增幅发生在轴压比从0.05到0.10时,从承载力的提高、刚度、耗能和墙角抬高等方面考虑,试件的集中配筋率保持在90%~110%为宜。 展开更多
关键词 预制剪力墙 集中配筋 拟静力试验 UHPC(ultra-high performance concrete) 抗震性能
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挤压态Mg-Al-Mn-(0.2Sr)镁合金的准静态压缩变形行为
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作者 肖罡 郭鹏程 +2 位作者 王文韫 项忠珂 杨钦文 《塑性工程学报》 CAS CSCD 北大核心 2024年第4期160-168,共9页
采用准静态压缩实验研究了挤压态Mg-Al-Mn-(0.2Sr)镁合金在0.0001~0.33 s^(-1)应变速率范围内的变形行为。结果表明:挤压态Mg-Al-Mn-(0.2Sr)镁合金的流变应力响应行为具有一定的应变速率相关性,具体表现为流变应力随加载应变速率的增加... 采用准静态压缩实验研究了挤压态Mg-Al-Mn-(0.2Sr)镁合金在0.0001~0.33 s^(-1)应变速率范围内的变形行为。结果表明:挤压态Mg-Al-Mn-(0.2Sr)镁合金的流变应力响应行为具有一定的应变速率相关性,具体表现为流变应力随加载应变速率的增加呈现先降低,后增加,再降低的演变趋势。在压缩变形过程中,两种镁合金试样均产生了较为明显的动态应变时效(DSA)。产生DSA所需的临界应变随加载应变速率的增加而增加,且应力-应变曲线的锯齿类型具有强的应变速率相关性。添加Sr元素降低了镁合金沿径向压缩的流变应力,但对DSA行为具有一定的促进作用。相同应变速率下,挤压态Mg-Al-Mn-0.2Sr镁合金产生DSA的临界应变明显较小,且锯齿幅值略大。此外,Sr元素对孪生也具有一定的抑制作用,导致挤压态Mg-Al-Mn-0.2Sr镁合金的孪晶界出现不同程度的扭曲。 展开更多
关键词 镁合金 应变速率 准静态压缩 变形行为 动态应变时效
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可修复钢制屈曲约束支撑力学性能试验与数值模拟研究
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作者 熊琛 吴迪晟 +2 位作者 管民生 刘尤森 杜宏彪 《工程力学》 EI CSCD 北大核心 2024年第6期145-153,共9页
提出了一种可修复钢制屈曲约束支撑(RBRB),该支撑可通过核心板的局部替换实现支撑修复。RBRB各部件采用螺栓连接,无须拆除屈曲约束盖板即可实现核心板修复替换,修复过程简单。设计了两种不同核心板宽度的RBRB试件,并开展低周往复加载试... 提出了一种可修复钢制屈曲约束支撑(RBRB),该支撑可通过核心板的局部替换实现支撑修复。RBRB各部件采用螺栓连接,无须拆除屈曲约束盖板即可实现核心板修复替换,修复过程简单。设计了两种不同核心板宽度的RBRB试件,并开展低周往复加载试验,讨论了其滞回性能、失效模式以及累计塑性变形能力。试验结果表明RBRB滞回曲线较为饱满,具有稳定的滞回性能与良好的累计塑性变形能力。RBRB试件在核心板修复后滞回性能与修复替换前保持一致,表明其可修复性较好。对试件开展了数值模拟研究,并与试验结果进行对比,结果显示数值模拟的破坏形式及滞回曲线与试验结果吻合良好。 展开更多
关键词 屈曲约束支撑 可修复 拟静力试验 滞回性能 有限元分析
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不同道次应变分配下TA15钛合金双道次热压缩静态软化行为
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作者 赵丽娟 魏科 +3 位作者 黄骏 董显娟 黄龙 涂泽立 《材料热处理学报》 CAS CSCD 北大核心 2024年第7期194-200,共7页
在变形温度为910~970℃、应变速率为0.01 s^(-1)、道次保温时间为1000 s、总应变为0.9条件下,对TA15钛合金进行了双道次热压缩实验,研究了第一道次应变为0.25、0.45、0.65时对合金热变形过程中静态软化行为的影响。结果表明:在不同第一... 在变形温度为910~970℃、应变速率为0.01 s^(-1)、道次保温时间为1000 s、总应变为0.9条件下,对TA15钛合金进行了双道次热压缩实验,研究了第一道次应变为0.25、0.45、0.65时对合金热变形过程中静态软化行为的影响。结果表明:在不同第一道次应变分配下,除变形温度为910℃且应变为0.25时,合金在道次保温间隔后均出现了静态软化现象,即第二道次流动应力峰值均低于第一道次卸载应力;第一道次应变分配较高时,由于累积畸变能较多,软化程度更为明显;变形温度越接近相变点,第一道次应变对静态软化影响程度越大;微观组织分析表明,道次保温间隔后比保温前的初生α相体积分数明显减少,减小程度与静态软化程度呈正相关性。 展开更多
关键词 TA15钛合金 双道次热变形 第一道次应变分配 静态软化行为 组织演变
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