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车辆滑柱式减振器活塞杆侧向受力分析及应力测量 被引量:8
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作者 刘延庆 程晓鸣 张建武 《上海交通大学学报》 EI CAS CSCD 北大核心 2002年第9期1240-1244,共5页
通过对轿车后悬架系统力学建模 ,推导了双筒减振器在车轮平面和车轴平面内的受力计算公式 ,并结合试验数据和实际参数对后悬架进行受力分析 .从试验和系统动力学角度分析了减振器出现偏摩现象的原因有 :车辆装配后 ,减振器活塞杆不严格... 通过对轿车后悬架系统力学建模 ,推导了双筒减振器在车轮平面和车轴平面内的受力计算公式 ,并结合试验数据和实际参数对后悬架进行受力分析 .从试验和系统动力学角度分析了减振器出现偏摩现象的原因有 :车辆装配后 ,减振器活塞杆不严格垂直而产生附加动载荷 ;道路不平和车速较高时 ,冲击过大而使减振器活塞杆产生突加弯曲实验 .实验结果表明 。 展开更多
关键词 车辆 活塞杆 侧向分析 侧向摩擦 滑柱式减振器 测量 系统动 悬架系统
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塔河油田“S”型定向井工艺及复杂分析 被引量:3
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作者 阎德保 万教育 +1 位作者 王新 谷豪斌 《钻采工艺》 CAS 北大核心 2010年第6期120-123,共4页
塔河油田早在2001年由于地质油藏的需求尝试应用"S"型定向井技术,该井型突出表现在钻具事故频繁,钻井周期长。2003年至今塔河油田由于地面条件限制和地质油藏需求应用"S"型定向井工艺技术完成近百口井的钻探,钻井... 塔河油田早在2001年由于地质油藏的需求尝试应用"S"型定向井技术,该井型突出表现在钻具事故频繁,钻井周期长。2003年至今塔河油田由于地面条件限制和地质油藏需求应用"S"型定向井工艺技术完成近百口井的钻探,钻井施工中,均体现出井下作业复杂相对较严重,降斜和后续的井段的钻进中,时效低,钻井周期长。文章以TK430CX、TK448CX和TK471X等三口"S"型定向井为例,从优化设计、套管段铣开窗、井眼轨迹控制、钻井液等方面,介绍了塔河油田套管开窗侧钻"S"型定向井钻井工艺技术,并通过应用有限元法对三口井的摩阻变化和增、降斜拐点处的侧向力分析,与直井、水平井摩阻变化的对比分析,阐述了可能造成井下复杂,特别是产生"键槽"的关键因素,并经过计算分析,对"S"型定向井剖面如何优化,能够降低摩阻和减少产生"键槽"进行了探讨,提出了改进和优化措施。 展开更多
关键词 塔河油田 开窗侧钻 段铣 “S”轨迹 侧向力分析 键槽
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Side force formation mechanism and change law of TBM center cutter 被引量:7
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作者 夏毅敏 田彦朝 +1 位作者 谭青 侯禹蒙 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第5期1115-1122,共8页
The center cutter of a hard rock tunnel boring machine(TBM) is installed on the cutterhead at a small radius and thus bears complex side force.Given this fact,the formation mechanism and change law of the side force s... The center cutter of a hard rock tunnel boring machine(TBM) is installed on the cutterhead at a small radius and thus bears complex side force.Given this fact,the formation mechanism and change law of the side force suffered by the center cutter were studied.Based on the rock shear failure criterion in combination with the lateral rolling width,a model for predicting the average side force was set up.Besides,a numerical analysis model of the rock fragmentation of the center cutter was established,and the instantaneous load changing features were investigated.Results shows that the inner side of the center cutter can form lateral rolling annulus in rock during the rotary cutting process.The smaller the installation radius is,the greater the cutter side force will be.In a working condition,the side force of the innermost center cutter is 11.66 k N,while it decreases sharply when installation radius increases.Variation tends to be gentle when installation radius is larger than 500 mm,and the side force of the outermost center cutter is reduced to 0.74 k N. 展开更多
关键词 tunnel boring machine center cutter rotary cutting installation radius side force
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Time-dependent lateral response of pile embedded in elasto-plastic soil 被引量:2
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作者 J.M.ABBAS Z.H.CHIK +1 位作者 M.R.TAHA Q.S.M.SHAFIQU 《Journal of Central South University》 SCIE EI CAS 2010年第2期372-380,共9页
A two-dimensional (2D) finite element analysis was carried out to assess the time-dependent behavior of single vertical pile embedded in elasto-plastic soil. The finite element analyses were carried out using the li... A two-dimensional (2D) finite element analysis was carried out to assess the time-dependent behavior of single vertical pile embedded in elasto-plastic soil. The finite element analyses were carried out using the linear elastic model for the structure of the pile, while the Mohr-Coulomb model was used for representing the soil behavior surrounding the pile. The study includes cohesionless and cohesive soil to assess the lateral response of pile in the two types of soil. The whole geoteehnical model is suitable for problem of piles to determine the design quantities such as lateral deformation, lateral soil stress and its variation with time. The model is verified based on the results of published cases and there is good comparison between the results of published ease and the present simulation model. It is found that, the pile in cohesionless soil has more resistance in the rapid loading and less one in the long term loading. On the other hand, the pile in cohesive soil shows opposite behavior. 展开更多
关键词 single pile consolidation effect lateral response soil pressure 2D finite element method
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