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格构腹板增强复合材料泡沫夹芯板侧压性能试验与分析 被引量:11
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作者 李晓龙 刘伟庆 +1 位作者 方海 史慧媛 《南京工业大学学报(自然科学版)》 CAS 北大核心 2017年第2期64-69,共6页
提出一种以聚氨酯泡沫为芯材、玻璃纤维增强复合材料为面层和格构腹板的新型复合材料夹层结构板材。采用真空导入工艺制备8个参数不同的夹芯板试件,并对其进行侧压性能试验,探讨格构腹板和聚氨酯泡沫等参数对构件压缩破坏形态和承载性... 提出一种以聚氨酯泡沫为芯材、玻璃纤维增强复合材料为面层和格构腹板的新型复合材料夹层结构板材。采用真空导入工艺制备8个参数不同的夹芯板试件,并对其进行侧压性能试验,探讨格构腹板和聚氨酯泡沫等参数对构件压缩破坏形态和承载性能的影响,并根据复合材料力学理论进行理论分析。结果表明:格构腹板可提高夹芯板的截面刚度,并能有效提升芯材与面层的界面粘结强度,抑制夹芯板面层剥离;聚氨酯泡沫芯材能有效抑制板材在加载初期的局部屈曲;理论分析与试验结果相吻合。 展开更多
关键词 夹层板 格构腹板 泡沫夹芯 侧压试验
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筒仓动态卸料过程侧压力模拟与验证 被引量:23
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作者 张大英 许启铿 +1 位作者 王树明 梁醒培 《农业工程学报》 EI CAS CSCD 北大核心 2017年第5期272-278,F0004,共8页
为了研究立筒仓卸料过程中的侧压力及数值模拟技术,设计了有机玻璃筒仓模型进行试验研究,运用ABAQUS有限元软件中的自适应网格划分技术模拟了筒仓的动态卸料过程。结果表明,筒仓动态侧压力试验值大于静态侧压力,但各测点超压系数不同,... 为了研究立筒仓卸料过程中的侧压力及数值模拟技术,设计了有机玻璃筒仓模型进行试验研究,运用ABAQUS有限元软件中的自适应网格划分技术模拟了筒仓的动态卸料过程。结果表明,筒仓动态侧压力试验值大于静态侧压力,但各测点超压系数不同,在邻近漏斗附近超压系数最大为1.78,其次为仓壁中上部2个测点超压系数达到了1.73和1.61,其他位置超压系数在1.45以内;侧压力模拟值与计算值吻合度较好,静态侧压力两者相对误差绝对值在0.43%~9.92%之间,动态侧压力两者相对误差绝对值在1.14%~9.65%之间,验证了数值模拟技术的可行性;静态和动态侧压力的数值模拟曲线、公式计算曲线、试验曲线或试验拟合曲线都表明,随着测点距筒仓底部高度的增加,侧压力呈下降趋势,即侧压力下大上小,而且静态侧压力模拟曲线与试验曲线变化规律一致,相对误差绝对值在1.83%~9.97%之间;由于试验时压力传感器精度、标定试验误差和试验次数等随机因素的影响,动态侧压力试验曲线不很规则,数值模拟曲线相对平滑,但动态侧压力试验值的拟合曲线与数值模拟曲线变化趋势基本相同,相对误差绝对值在0.28%~9.93%之间。通过观察漏斗附近Mises应力分布图发现,物料卸出前,应力较大点发生在紧邻漏斗附近的仓壁处,卸料开始后,应力较大点即转向漏斗壁中部某范围,而且随着卸料时间的延长,此应力较大点的范围有所增大。 展开更多
关键词 筒仓 模型 有限元分析 侧压试验 动态卸料模拟
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超深振捣条件下混凝土墙体模板侧压力的简化计算方法 被引量:3
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作者 宋普河 《铁道建筑》 北大核心 2020年第5期55-58,共4页
超深振捣对混凝土成品质量有害无益,研究超深振捣引起模板侧压力增大的规律,可为规避其害提供依据。为此设计4个混凝土墙体试件,实测在浇筑过程中模板侧压力的变化情况。基于振捣液化和液体压力平衡理论,建立了超深振捣情况下混凝土模... 超深振捣对混凝土成品质量有害无益,研究超深振捣引起模板侧压力增大的规律,可为规避其害提供依据。为此设计4个混凝土墙体试件,实测在浇筑过程中模板侧压力的变化情况。基于振捣液化和液体压力平衡理论,建立了超深振捣情况下混凝土模板侧压力计算模型,推导了计算公式,并与实验数据进行对比验证。研究结果表明,振捣深度是影响混凝土墙体模板侧压力的重要因素,本文提出的计算模型能很好地预测墙体结构超深振捣位置的模板侧压力。 展开更多
关键词 混凝土 模板 现场试验:侧压 有效压头高度 振捣深度 超深振捣
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Undrained mechanical behavior of unsaturated completely weathered granite:Experimental investigation and constitutive modeling
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作者 DU Shao-hua MA Jin-yin +2 位作者 RUAN Bo WU Gen-shui ZHANG Rui-chao 《Journal of Central South University》 2025年第6期2307-2327,共21页
The undrained mechanical behavior of unsaturated completely weathered granite(CWG)is highly susceptible to alterations in the hydraulic environment,particularly under uniaxial loading conditions,due to the unique natu... The undrained mechanical behavior of unsaturated completely weathered granite(CWG)is highly susceptible to alterations in the hydraulic environment,particularly under uniaxial loading conditions,due to the unique nature of this soil type.In this study,a series of unconfined compression tests were carried out on unsaturated CWG soil in an underground engineering site,and the effects of varying the environmental variables on the main undrained mechanical properties were analyzed.Based on the experimental results,a novel constitutive model was then established using the damage mechanics theory and the undetermined coefficient method.The results demonstrate that the curves of remolded CWG specimens with different moisture contents and dry densities exhibited diverse characteristics,including brittleness,significant softening,and ductility.As a typical indicator,the unconfined compression strength of soil specimens initially increased with an increase in moisture content and then decreased.Meanwhile,an optimal moisture content of approximately 10.5%could be observed,while a critical moisture content value of 13.0%was identified,beyond which the strength of the specimen decreases sharply.Moreover,the deformation and fracture of CWG specimens were predominantly caused by shear failure,and the ultimate failure modes were primarily influenced by moisture content rather than dry density.Furthermore,by comparing several similar models and the experimental data,the proposed model could accurately replicate the undrained mechanical characteristics of unsaturated CWG soil,and quantitatively describe the key mechanical indexes.These findings offer a valuable reference point for understanding the underlying mechanisms,anticipating potential risks,and implementing effective control measures in similar underground engineering projects. 展开更多
关键词 completely weathered granite undrained mechanical behavior environmental variable unconfined compression test constitutive model
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武汉鹦鹉洲长江大桥中塔墩防船撞装置研究 被引量:15
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作者 方海 王健 +1 位作者 祝露 刘伟庆 《桥梁建设》 EI CSCD 北大核心 2020年第1期20-25,共6页
武汉鹦鹉洲长江大桥主桥为(200+2×850+200)m三塔四跨钢-混结合梁悬索桥,中塔墩提出采用自浮式筒形复合材料防撞装置,以减小桥墩的船撞风险。为研究该防撞装置的破坏模式及防撞效果,制作了4个缩尺比为1∶8的防撞装置试件进行准静态... 武汉鹦鹉洲长江大桥主桥为(200+2×850+200)m三塔四跨钢-混结合梁悬索桥,中塔墩提出采用自浮式筒形复合材料防撞装置,以减小桥墩的船撞风险。为研究该防撞装置的破坏模式及防撞效果,制作了4个缩尺比为1∶8的防撞装置试件进行准静态侧压试验,并采用ANSYS/LS-DYNA有限元软件对船桥的碰撞过程进行数值模拟。结果表明:在准静态侧压下,防撞装置的内面层层间剥离、外面层与泡沫剥离,内、外面层纤维均断裂;纵向格构层间剥离并屈曲破坏,降低格构间距可提高结构的弹性极限承载力和初始刚度;防撞装置可以降低船舶撞击力,延长撞击时间;船艏结构撞击后变形明显减少,应力降低。该防撞装置具有良好的防撞保护效果,能有效地降低船桥碰撞过程中桥梁和船舶的损伤。 展开更多
关键词 悬索桥 筒形复合材料防撞装置 船舶撞击 准静态侧压试验 有限元法
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格构增强泡沫夹芯复合材料管侧向压缩 被引量:2
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作者 陈航 方海 +1 位作者 李晓龙 樊子砚 《材料科学与工程学报》 CAS CSCD 北大核心 2023年第1期23-29,共7页
以聚氨酯泡沫为夹芯层、玻璃纤维增强树脂复合材料(GFRP)为面层和格构腹板,运用真空导入工艺制备了4个参数不同的复合材料圆管,对其进行了侧向压缩试验,分析格构数量等参数对结构承载性能的影响。基于能量法,运用等效十字模型将格构腹... 以聚氨酯泡沫为夹芯层、玻璃纤维增强树脂复合材料(GFRP)为面层和格构腹板,运用真空导入工艺制备了4个参数不同的复合材料圆管,对其进行了侧向压缩试验,分析格构数量等参数对结构承载性能的影响。基于能量法,运用等效十字模型将格构腹板和泡沫芯材等效为均质材料,得到其面内等效弹性模量。运用层合理论推导了复合材料管在侧向压缩下的荷载和位移关系,并与试验值进行了对比,研究表明:随着格构腹板数量增加,构件的极限承载力逐渐增大;对比试验结果与理论分析,格构腹板增强构件较无格构腹板构件误差较小;层合理论适用于界面协同能力较好、面层与芯材不易剥离的结构。 展开更多
关键词 格构增强 复合材料 能量法 层合理论 侧压试验
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逐层交错对瓦楞纸板静态缓冲性能的影响 被引量:1
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作者 孙德强 李靖靖 +5 位作者 李国志 郝静 金强维 史英惠 李耿 胡昕 《包装工程》 CAS 北大核心 2018年第21期42-47,共6页
目的研究在逐层交错的方式下,交错角度对瓦楞纸板静态缓冲性能的影响。方法将单瓦楞纸板以逐层交错的方式粘合,制得0°,30°,45°,60°,90°等5种角度的试样,通过平压试验和侧压试验,研究交错角度对瓦楞纸板承载性... 目的研究在逐层交错的方式下,交错角度对瓦楞纸板静态缓冲性能的影响。方法将单瓦楞纸板以逐层交错的方式粘合,制得0°,30°,45°,60°,90°等5种角度的试样,通过平压试验和侧压试验,研究交错角度对瓦楞纸板承载性能和吸能性能的影响。结果交错角度对试样的密实化应变影响较小;在侧压试验中,交错角度在0°~45°之间时,试样的侧压强度和比吸能随着角度的增大而减小;交错角度在45°~90°之间时,随着角度的增大,试样的侧压强度和比吸能先增大后减小;在平压试验中,交错角度对试样的平均抗压强度和比吸能影响较小。结论交错角度对瓦楞纸板侧压缓冲性能影响较大,对平压缓冲性能影响较小。 展开更多
关键词 瓦楞纸板 逐层交错 侧压试验 平压试验 缓冲性能
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Stabilization of saline silty sand using lime and micro silica 被引量:17
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作者 R.Z.Moayed E.Izadi S.Heidari 《Journal of Central South University》 SCIE EI CAS 2012年第10期3006-3011,共6页
Many construction and post-construction problems have been reported in the literature when saline soils have been used without understanding of their abnormal behavior,especially their inferior bearing capacity in the... Many construction and post-construction problems have been reported in the literature when saline soils have been used without understanding of their abnormal behavior,especially their inferior bearing capacity in the natural condition.The strength of these soils further decreases on soaking.Saline soil deposits cover extensive areas in central Iran and are associated with geotechnical problems such as excessive differential settlement,susceptibility to strength loss and collapse upon wetting.Because of these characteristics,some of the roads constructed on saline soils in Taleghan area have exhibited deterioration in the form of raveling,cracking and landslides.The main objective of this work is to improve the load-bearing capacity of pavements constructed on Taleghan saline soils using lime and micro silica.Soil samples from Hashtgerd-Taleghan road were collected and tested for improving their properties using lime and micro silica at different dosages ranging from 0 to 6%.The load-bearing capacity of stabilized soil mixtures was evaluated using California Bearing Ratio(CBR) and unconfined compressive strength tests.The test results indicate that the lime improves the performance of soil significantly.The addition of 2% lime with 3% micro silica has satisfied the strength-deformation requirements.Therefore,improved soil can be used as a good subbase in flexible pavements. 展开更多
关键词 lime stabilization saline soil micro silica bearing capacity compressive strength flexible pavements
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Horizontal trap-door investigation on face failure zone of shield tunneling in sands 被引量:3
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作者 LIU Xue-yan FANG Hong-yuan +1 位作者 WANG Fu-ming YUAN Da-jun 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第3期866-881,共16页
A novel horizontal trap-door test system was devised in this study to analyze the face stability of shield tunnels in sands.The test system can be used to investigate both the longitudinal and cross sections of the fa... A novel horizontal trap-door test system was devised in this study to analyze the face stability of shield tunnels in sands.The test system can be used to investigate both the longitudinal and cross sections of the face failure simultaneously at one single apparatus and was employed to perform face stability tests on small-scaled tunnel models at single gravity.The lateral support pressures and failure zones were studied with varying sand materials and earth covers.The results demonstrate that the tunnel face moves back,the lateral active earth pressure on the tunnel face decreases rapidly to a residual value,and the lateral pressure distribution can be categorized into three stages during the failure process:1)initial state;2)pressure dissipation stage;and 3)pressure zone diminution stage.Furthermore,face failure firstly develops from a stable condition to the local failure state,and then continues to develop to the global failure state that can be divided into two sub-zones with different failure mechanisms:rotational failure zone(lower zone)and gravitational failure zone(upper zone).Further discussion shows that under the effects of soil arching,the shape of the gravitational failure zone can adopt arch shaped(most frequent)and column shaped(in shallow tunnels).Limit support pressure for face stability usually appears atδ/D=0.2%−0.5%(ratio of face displacement to tunnel diameter). 展开更多
关键词 face stability trap-door test lateral earth pressure failure zone soil arching SAND
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Influence of specimen uniformity on mechanical behaviour of unsaturated soil 被引量:1
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作者 杨钢 杨庆 张金利 《Journal of Central South University》 SCIE EI CAS 2014年第3期1197-1205,共9页
Pressure plate instrument is employed during drying, and unconfined compressive strength test is performed on the unsaturated specimen. Curves of shear force versus shear displacement, and curves of saturation degree ... Pressure plate instrument is employed during drying, and unconfined compressive strength test is performed on the unsaturated specimen. Curves of shear force versus shear displacement, and curves of saturation degree versus time are investigated. The results show that the specimens with similar curves of saturation degree versus time have nearly identical mechanical behavior. In particular, the uniform specimens should be chosen within the lower equilibrium saturation degree because steady test results are presented. Further, the conclusion is verified by the repeated test. Thus, the method for distinguishing the uniform unsaturated specimen is obtained. In the light of the method, an improved test process is proposed. The uniform specimens should be chosen by this method under the specific matric suction, and then shear tests are carried out on the chosen unsaturated specimen. Namely, initial value of unsaturated soil is not zero matric suction but a specific suction. 展开更多
关键词 unsaturated soil remolded specimen UNIFORMITY pore structure saturation degree
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