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预应力混凝土连续箱梁桥静、动荷载试验研究 被引量:10
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作者 姜传绵 《铁道工程学报》 EI 北大核心 2009年第5期40-43,49,共5页
研究目的:通过对连续箱梁桥控制截面和典型位置的应力和变形观测,得到桥梁实际应力分布和变形情况,通过测试桥梁的实际受力情况,可以评估和鉴定桥梁的实际承载能力,为工程竣工验收提供实测依据。研究结论:通过对预应力混凝土连续箱梁桥... 研究目的:通过对连续箱梁桥控制截面和典型位置的应力和变形观测,得到桥梁实际应力分布和变形情况,通过测试桥梁的实际受力情况,可以评估和鉴定桥梁的实际承载能力,为工程竣工验收提供实测依据。研究结论:通过对预应力混凝土连续箱梁桥的静动荷载试验,得到了桥结构的实际应力、变形及频率等参数。试验结果表明,对该桥的理论分析和设计计算方法可行,能控制和保证施工质量,使桥梁刚度和承载能力满足设计和规范要求。 展开更多
关键词 连续箱梁桥 动荷载试验 挠度 频率
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基于动载试验荷载效率的简支梁桥冲击系数研究 被引量:20
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作者 周勇军 赵洋 +2 位作者 赵煜 曹群 李珍 《振动与冲击》 EI CSCD 北大核心 2021年第20期207-216,共10页
为对中小跨径简支梁桥冲击系数进行评价,建立轻荷载作用与等效设计荷载作用下冲击系数的关系。采用五自由度三轴平面车辆模型,以标准跨径的简支小箱梁桥为研究对象,建立车桥耦合振动方程,采用ANSYS软件二次开发语言APDL进行仿真求解。... 为对中小跨径简支梁桥冲击系数进行评价,建立轻荷载作用与等效设计荷载作用下冲击系数的关系。采用五自由度三轴平面车辆模型,以标准跨径的简支小箱梁桥为研究对象,建立车桥耦合振动方程,采用ANSYS软件二次开发语言APDL进行仿真求解。通过荷载等效原理,将设计荷载的车道荷载还原为等效的多辆重车荷载,进行准设计状态分析;基于动载试验荷载效率研究单辆车作用下各片主梁冲击系数的变化规律,对比分析不同因素对冲击系数的影响规律;最后提出基于动载试验荷载效率的轻荷载冲击系数修正方法。结果表明:现行规范取值的冲击系数偏不安全,但在桥面状况良好和低速行驶时安全性较高;冲击系数随动载试验荷载效率增大而减小,通过轻荷载所得的冲击系数直接与规范值对比没有实际意义;轻荷载的冲击系数经过修正后可还原为准设计状态下冲击系数。研究结论可为中小跨径桥梁设计提供参考,同时为桥梁动载试验的评价方法提供依据。 展开更多
关键词 桥梁工程 简支梁桥 冲击系数 试验荷载效率 准设计状态
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平台巴西圆盘试样岩石动态拉伸特性的试验研究 被引量:20
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作者 苏碧军 王启智 《长江科学院院报》 CSCD 北大核心 2004年第1期22-25,共4页
采用INSTRON电液伺服材料试验机对大理岩平台巴西圆盘试样实施了动荷载试验,获得了大理岩在动荷载下的拉伸强度与弹性模量,并与静态实验进行了比较分析。结果表明大理岩在动荷载下的拉伸强度与弹性模量比静荷载下均有提高。与完整平台... 采用INSTRON电液伺服材料试验机对大理岩平台巴西圆盘试样实施了动荷载试验,获得了大理岩在动荷载下的拉伸强度与弹性模量,并与静态实验进行了比较分析。结果表明大理岩在动荷载下的拉伸强度与弹性模量比静荷载下均有提高。与完整平台试样比较,平台有助于试样从中心起裂。总结了试样加工和测试方面的经验,探讨了岩石在动荷载下的破坏机理。 展开更多
关键词 大理岩 弹性模量 拉伸强度 平台巴西圆盘试样 动荷载试验
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吉林九站松花江特大桥模型与实桥车辆振动试验分析
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作者 王昕蕾 王立峰 李巍 《森林工程》 北大核心 2003年第1期59-60,共2页
介绍了吉林九站松花江特大桥的模型和实桥车辆振动试验情况。数据表明 ,该桥在正常使用荷载的作用下 ,箱梁处在正常的弹性范围内工作 ,安全储备较大 ,安全可靠。
关键词 吉林九站松花江特大桥 车辆振试验 动荷载试验 模型试验
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Experimental study of dynamic resilient modulus of subgrade soils under coupling of freeze–thaw cycles and dynamic load 被引量:11
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作者 ZHAO Yang LU Zheng +2 位作者 YAO Hai-lin GU Fan DUAN Ya-hui 《Journal of Central South University》 SCIE EI CAS CSCD 2020年第7期2043-2053,共11页
Although the dynamic properties of subgrade soils in seasonally frozen areas have already been studied, few researchers have considered the influence of shallow groundwater during the freeze–thaw(F–T) cycles. So a m... Although the dynamic properties of subgrade soils in seasonally frozen areas have already been studied, few researchers have considered the influence of shallow groundwater during the freeze–thaw(F–T) cycles. So a multifunctional F–T cycle system was developed to imitate the groundwater recharge in the subgrade during the freezing process and a large number of dynamic triaxial experiments were conducted after the F–T cycles. Some significant factors including the F–T cycle number, compaction degree, confining pressure, cyclic deviator stress, loading frequency, and water content were investigated for the resilient modulus of soils. The experimental results indicated that the dynamic resilient modulus of the subgrade was negatively correlated with the cyclic deviator stress, F–T cycle number, and initial water content, whereas the degree of compaction, confining pressure, and loading frequency could enhance the resilient modulus. Furthermore, a modified model considering the F–T cycle number and stress state was established to predict the dynamic resilient modulus. The calculated results of this modified model were very close to the experimental results. Consequently, calculation of the resilient modulus for F–T cycles considering the dynamic load was appropriate. This study provides reference for research focusing on F–T cycles with groundwater supply and the dynamic resilient moduli of subgrade soils in seasonally frozen areas. 展开更多
关键词 dynamic resilient modulus freeze–thaw cycles dynamic load dynamic triaxial test prediction model
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Finite element analysis of effect of soil displacement on bearing capacity of single friction pile 被引量:3
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作者 王丽 郑刚 欧若楠 《Journal of Central South University》 SCIE EI CAS 2014年第5期2051-2058,共8页
Effect of soil displacement on friction single pile in the cases of tunneling,surcharge load and uniform soil movement was discussed in details with finite element method.Lateral displacement of the pile caused by soi... Effect of soil displacement on friction single pile in the cases of tunneling,surcharge load and uniform soil movement was discussed in details with finite element method.Lateral displacement of the pile caused by soil displacement reached about 90% of the total displacement,which means that P-Δ effect of axial load can be neglected.The maximum moment of pile decreased from 159 kN·m to 133 kN·m in the case of surcharge load when the axial load increased from 0 to the ultimate load.When deformation of pile caused by soil displacement is large,axial load applied on pile-head plays the role of reducing the maximum bending moment in concrete pile to some extent.When pile is on one side of the tunnel,soil displacements around the pile are all alike,which means that the soil pressures around the pile do not decrease during tunneling.Therefore,Q-s curve of the pile affected by tunneling is very close to that of pile in static loading test.Bearing capacities of piles influenced by surcharge load and uniform soil movement are 2480 kN and 2630 kN,respectively,which are a little greater than that of the pile in static loading test(2400 kN).Soil pressures along pile increase due to surcharge load and uniform soil movement,and so do the shaft resistances along pile,as a result,when rebars in concrete piles are enough,bearing capacity of pile affected by soil displacement increases compared with that of pile in static loading test. 展开更多
关键词 TUNNELING surcharge load uniform soil movement friction pile bearing capacity
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