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变桨轴承连接螺栓有限元分析及试验验证 被引量:6
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作者 董惠敏 姚文龙 +1 位作者 王德伦 郭玉飞 《机械设计》 CSCD 北大核心 2019年第A01期21-25,共5页
变桨轴承是连接叶片和轮毂的转盘轴承,其寿命直接影响风机的可靠性。通常,变桨轴承的结构设计与优化采用有限元方法,其结果的准确性取决于连接螺栓等效模型的准确性。轴承与叶片和轮毂的连接通过两组百余个螺栓实现,若螺栓连接采用实体... 变桨轴承是连接叶片和轮毂的转盘轴承,其寿命直接影响风机的可靠性。通常,变桨轴承的结构设计与优化采用有限元方法,其结果的准确性取决于连接螺栓等效模型的准确性。轴承与叶片和轮毂的连接通过两组百余个螺栓实现,若螺栓连接采用实体模型,则计算量巨大。为此,对螺栓等效模型进行研究,以便在轴承整体模型计算中高效准确得到螺栓组的分布应力。文中分别对采用实体模型、实体无螺纹模型和梁-耦合模型3种螺栓模型的轴承整体有限元模型进行了分析。并设计了载荷工况试验台,将试验结果与有限元结果进行对比分析。结果表明,梁-耦合模型的误差小于7%,在误差允许范围内,且计算效率大大提高,节省了约90%的时间。因此,采用梁-耦合模型能真实等效螺栓连接,为轴承的设计优化提供支撑。 展开更多
关键词 变桨轴承 连接螺栓 有限元方法 梁-耦合模型 试验验证
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大跨斜拉桥上无缝线路纵向力的变化规律研究 被引量:12
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作者 李艳 《铁道工程学报》 EI 北大核心 2012年第10期42-46,共5页
研究目的:大跨度斜拉桥结构复杂,为"塔-索-梁"空间组合结构,铺设无缝线路后,在荷载作用下,会形成"塔-索-梁-轨"耦合作用体系,其无缝线路力学传递机理极为复杂。以安庆长江大桥为例,通过建立大跨度钢桁梁斜拉桥上无... 研究目的:大跨度斜拉桥结构复杂,为"塔-索-梁"空间组合结构,铺设无缝线路后,在荷载作用下,会形成"塔-索-梁-轨"耦合作用体系,其无缝线路力学传递机理极为复杂。以安庆长江大桥为例,通过建立大跨度钢桁梁斜拉桥上无缝线路"塔-索-梁-轨"空间耦合计算模型,分析不同体系温差、斜拉索修正弹性模量、纵向阻力模型及小阻力扣件的影响,为大跨度斜拉桥上无缝线路设计提供理论依据。研究结论:研究结果表明,随着斜拉桥体系温差变化幅度增大,钢轨伸缩附加力明显增加;斜拉索弹性模量修正与否对伸缩力和制动力影响较小,而对挠曲力影响较大;采用不同纵向阻力模型,伸缩力计算结果相差不大,挠曲力和制动力计算结果有较大差别;采用小阻力扣件可降低无缝线路纵向附加力,且应结合工程造价优先考虑在斜拉桥边跨和两侧引桥上铺设小阻力扣件方案。 展开更多
关键词 大跨度斜拉桥 桥上无缝线路 纵向附加力 “塔---轨”空间耦合模型
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Dynamic analysis of a high-speed train operating on a curved track with failed fasteners 被引量:19
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作者 Li ZHOU Zhi-yun SHEN 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2013年第6期447-458,共12页
A high-speed train-track coupling dynamic model is used to investigate the dynamic behavior of a high-speed train operating on a curved track with failed fasteners. The model considers a high-speed train consisting of... A high-speed train-track coupling dynamic model is used to investigate the dynamic behavior of a high-speed train operating on a curved track with failed fasteners. The model considers a high-speed train consisting of eight vehicles coupled with a ballasted track. The vehicle is modeled as a multi-body system, and the rail is modeled with a Timoshenko beam resting on the discrete sleepers. The vehicle model considers the effect of the end connections of the neighboring vehicles on the dynamic behavior. The track model takes into account the lateral, vertical, and torsional deformations of the rails and the effect of the discrete sleeper support on the coupling dynamics of the vehicles and the track. The sleepers are assumed to move backward at a constant speed to simulate the vehicle running along the track at the same speed. The train model couples with the track model by using a Hertzian contact model for the wheel/rail normal force calculation, and the nonlinear creep theory by Shen et al. (1984) is used for wheel/rail tangent force calculation. In the analysis, a curved track of 7000-m radius with failed fasteners is selected, and the effects of train operational speed and the number of failed fasteners on the dynamic behaviors of the train and the track are investigated in detail. Furthermore, the wheel/rail forces and derailment coefficient and the wheelset loading reduction are analyzed when the high-speed train passes over the curved track with the different number of continuously failed fasteners at different operational speeds. Through the detailed numerical analysis, it is found that the high-speed train can operate normally on the curved track of 7000-m radius at the speeds of 200 km/h to 350 km/h. 展开更多
关键词 High-speed train Ballast track Failed fastener Wheel/Rail force Derailment coefficient Wheelset loading reduction
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