期刊文献+
共找到903篇文章
< 1 2 46 >
每页显示 20 50 100
Multi-point Contact of the High-speed Vehicle-turnout System Dynamics 被引量:5
1
作者 REN Zunsong 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2013年第3期518-525,共8页
The wheel-rail contact problems, such as the number, location and the track of contact patches, are very important for optimizing the spatial structure of the rails and lowering the vehicle-turnout system dynamics. Ho... The wheel-rail contact problems, such as the number, location and the track of contact patches, are very important for optimizing the spatial structure of the rails and lowering the vehicle-turnout system dynamics. However, the above problems are not well solved currently because of having the difficulties in how to determine the multi-contact, to preciously present the changeable profiles of the rails and to establish an accurate spatial turnout system dynamics model. Based on a high-speed vehicle-turnout coupled model in which the track is modeled as flexible with rails and sleepers represented by beams, the line tracing extreme point method is introduced to investigate the wheel-rail multiple contact conditions and the key sections of the blade rail, longer nose rail, shorter rail in the switch and nose rail area are discretized to represent the varying profiles of rails in the turnout. The dynamic interaction between the vehicle and turnout is simulated for cases of the vehicle divergently passing the turnout and the multi-point contact is obtained. The tracks of the contact patches on the top of the rails are presented and the wheel-rail impact forces are offered in comparison with the contact patches transference on the rails. The numerical simulation results indicate that the length of two-point contact occurrence of a worn wheel profile and rails is longer than that of the new wheel profile and rails; The two-point contact definitely occurs in the switch and crossing area. Generally, three-point contact doesn’t occur for the new rail profile, which is testified by the wheel-rails interpolation distance and the first order derivative function of the tracing line extreme points. The presented research is not only helpful to optimize the structure of the turnout, but also useful to lower the dynamics of the high speed vehicle-turnout system. 展开更多
关键词 line tracing extreme point method multi-point contact high-speed vehicle-turnout system track of contact point on rails wheel-rail force transference
下载PDF
Parametric analysis of wheel wear in high-speed vehicles
2
作者 Na Wu Jing Zeng 《Journal of Modern Transportation》 2014年第2期76-83,共8页
In order to reduce the wheel profile wear of highspeed trains and extend the service life of wheels, a dynamic model for a high-speed vehicle was set up, in which the wheelset was regarded as flexible body, and the ac... In order to reduce the wheel profile wear of highspeed trains and extend the service life of wheels, a dynamic model for a high-speed vehicle was set up, in which the wheelset was regarded as flexible body, and the actual measured track irregularities and line conditions were considered. The wear depth of the wheel profile was calculated by the well-known Archard wear law. Through this model, the influence of the wheel profile, primary suspension stiffness, track gage, and rail cant on the wear of wheel profile were studied through multiple iterafive calculations. Numerical simulation results show that the type XP55 wheel profile has the smallest cumulative wear depth, and the type LM wheel profile has the largest wear depth. To reduce the wear of the wheel profile, the equivalent conicity of the wheel should not be too large or too small. On the other hand, a small primary vertical stiffness, a track gage around 1,435-1,438 mm, and a rail cant around 1:35-1:40 are beneficial for dynamic performance improvement and wheel wear alleviation. 展开更多
关键词 Parametric analysis Wheel profile wear Flexible wheelset high-speed railway vehicle dynamicmodel Finite element method
下载PDF
Influence of Vehicle Parameters on Critical Hunting Speed Based on Ruzicka Model 被引量:12
3
作者 CUI Dabin LI Li +2 位作者 JIN Xuesong XIAO Xinbiao DING Junjun 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2012年第3期536-542,共7页
While introducing foreign advanced technology and cooperating with Chinese famous research institutes,the high-speed vehicles are designed and take the major task of passenger transport in China.In high-speed vehicle,... While introducing foreign advanced technology and cooperating with Chinese famous research institutes,the high-speed vehicles are designed and take the major task of passenger transport in China.In high-speed vehicle,the characteristic of shock absorber is an important parameter which determines overall behavior of the vehicle.The most existing researches neglect the influence of the series stiffness of the shock absorber on the vehicle dynamic behavior and have one-sided views on the equivalent conicity of wheel tread.In this paper,a high speed passenger vehicle in China is modeled to investigate the effect of the parameters taking series hydraulic shock absorber stiffness into consideration on Ruzicka model.Using the vehicle dynamic model,the effect of main suspension parameters on critical speed is studied.In order to verify the reasonableness of shock absorber parameter settings,vibration isolation characteristics are calculated and the relationship between suspension parameters and the vehicle critical hunting speed is studied.To study the influence of equivalent conicity on vehicle dynamic behavior,a series of wheel treads with different conicities are set and the vehicle critical hunting speeds with different wheel treads are calculated.The discipline between the equivalent conicity of wheel tread and critical speed are obtained in vehicle nonlinear system.The research results show that the critical speed of vehicle much depends on wheelset positioning stiffness and anti-hunting motion damper,and the series stiffness produces notable effect on the vehicle dynamic behavior.The critical speed has a peak value with the equivalent conicity increasing,which is different from the traditional opinion in which the critical speed will decrease with the conicity increasing.The relationship between critical speed and conicity of wheel tread is effected by the suspension parameters of the vehicle.The study results obtained offer a method and useful data to designing the parameters of the high speed vehicle and simulation study. 展开更多
关键词 high-speed vehicle critical hunting speed suspension system equivalent conicity
下载PDF
A new robust fuzzy method for unmanned flying vehicle control 被引量:5
4
作者 Mojtaba Mirzaei Mohammad Eghtesad Mohammad Mahdi Alishahi 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第6期2166-2182,共17页
A new general robust fuzzy approach was presented to control the position and the attitude of unmanned flying vehicles(UFVs). Control of these vehicles was challenging due to their nonlinear underactuated behaviors. T... A new general robust fuzzy approach was presented to control the position and the attitude of unmanned flying vehicles(UFVs). Control of these vehicles was challenging due to their nonlinear underactuated behaviors. The proposed control system combined great advantages of generalized indirect adaptive sliding mode control(IASMC) and fuzzy control for the UFVs. An on-line adaptive tuning algorithm based on Lyapunov function and Barbalat lemma was designed, thus the stability of the system can be guaranteed. The chattering phenomenon in the sliding mode control was reduced and the steady error was also alleviated. The numerical results, for an underactuated quadcopter and a high speed underwater vehicle as case studies, indicate that the presented adaptive design of fuzzy sliding mode controller performs robustly in the presence of sensor noise and external disturbances. In addition, online unknown parameter estimation of the UFVs, such as ground effect and planing force especially in the cases with the Gaussian sensor noise with zero mean and standard deviation of 0.5 m and 0.1 rad and external disturbances with amplitude of 0.1 m/s2 and frequency of 0.2 Hz, is one of the advantages of this method. These estimated parameters are then used in the controller to improve the trajectory tracking performance. 展开更多
关键词 adaptive fuzzy sliding-mode control unmanned flying vehicle control underactuated system Lyapunov stability high speed underwater vehicle
下载PDF
Progress in high-speed train technology around the world 被引量:9
5
作者 Li ZHOU Zhiyun SHEN 《Journal of Modern Transportation》 2011年第1期1-6,共6页
This is a review of high-speed train development in the sense of technology advances all over the world. Three generations of high-speed trains are classified according to their technical characteristics and maximum o... This is a review of high-speed train development in the sense of technology advances all over the world. Three generations of high-speed trains are classified according to their technical characteristics and maximum operating speed. Emphasis is given to the newly developed high-speed train in China, CRH380. The theoretical foundations and future development of CRH380 are briefly discussed. 展开更多
关键词 high-speed railway high-speed train technology maximum operating speed vehicle system dynamics service reliability
下载PDF
Damage Tolerance Assessment of a Brake Unit Bracket for High-Speed Railway Welded Bogie Frames 被引量:5
6
作者 Bing Yang Hao Duan +1 位作者 Shengchuan Wu Guozheng Kang 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2019年第4期184-194,共11页
The brake unit bracket of a bogie frame is an important load-carrying component, particularly under emergency start/stop conditions. Conventional infinite/safe life approaches provide an over-conservative recommendati... The brake unit bracket of a bogie frame is an important load-carrying component, particularly under emergency start/stop conditions. Conventional infinite/safe life approaches provide an over-conservative recommendation for the allowable strength and lifetime, which hinders the lightweight design of modern railway vehicles. In this study, to ensure the reliability and durability of a brake unit bracket, an attempt was made to integrate the nominal stress method and an advanced damage tolerance method. First, a complex bogie frame was modelled using solid elements instead of plate and beam elements. A hot spot stress region on the bracket was found under an eight-stage load spectrum obtained from the Wuhan–Guangzhou high-speed railway line. Based on the probability of foreign damage, a semi-elliptical surface crack was then assumed for residual life assessment. The results obtained by the cumulative damage and damage tolerance methods show that the brake unit bracket can operate for over 30 years. Moreover, even if a 2-mm depth crack exists, the brake unit bracket can be safely operated for more than 2.27 years, with the hope that the crack can be detected in subsequent maintenance procedures. Finally, an appropriate safety margin was suggested which provides a basis for the life prediction and durability assessment of brake unit brackets of high-speed railways. 展开更多
关键词 Welded BOGIE frame Fatigue DAMAGE accumulation DAMAGE tolerance design Residual life ASSESSMENT high-speed railway vehicle
下载PDF
High Speed On/Off Valve Control Hydraulic Propeller 被引量:12
7
作者 ZHU Kangwu GU Linyi +1 位作者 CHEN Yuanjie LI Wei 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2012年第3期463-473,共11页
The work-class remotely-operated-underwater-vehicles(ROVs) are mainly driven by hydraulic propulsion system,and the effeciency of hydraulic propulsion system is an important performance index of ROVs.However,the eff... The work-class remotely-operated-underwater-vehicles(ROVs) are mainly driven by hydraulic propulsion system,and the effeciency of hydraulic propulsion system is an important performance index of ROVs.However,the efficiency of traditional hydraulic propulsion system controlled by throttle valves is too low.Therefore,in this paper,for small and medium ROVs,a novel propulsion system with higher efficiency based on high speed on/off valve control hydraulic propeller is proposed.To solve the conflict between large flow rate and high frequency response performance,a two-stage high speed on/off valve-motor unit with large flow rate and high response speed simultaneously is developed.Through theoretical analysis,an effective fluctuation control method and a novel pulse-width-pulse-frequency-modulation(PWPFM) are introduced to solve the conflict among inherently fluctuation,valve dynamic performance and system efficiency.A simulation model is established to evaluate the system performance.To prove the advantage of system in energy saving,and test the dynamic control performance of high speed on/off valve control propeller,a test setup is developed and a series of comparative experiments is completed.The smimulation and experiment results show that the two-stage high speed on/off valve has an excellent dynamic response performance,and can be used to realize high accuracy speed control.The experiment results prove that the new propulsion system has much more advantages than the traditional throttle speed regulation system in energy saving.The lowest efficiency is more than 40%.The application results on a ROV indicate that the high speed on/off valve control propeller system has good dynamic and steady-state control performances.Its transient time is only about 1 s-1.5 s,and steady-state error is less than 5%.Meanwhile,the speed fluctuation is small,and the smooth propeller speed control effect is obtained.On the premise of good propeller speed control performance,the proposed high speed on/off valve control propeller can improve the effeciency of ROV propulsion system significantly,and provides another attractive ROV propulsion system choice for engineers. 展开更多
关键词 high speed on/off valve fluctuation control pulse-width-pulse-frequency-modulation(PWPFM) hydraulic propulsion system remotely-operated-underwater-vehicle(ROV) energy saving system
下载PDF
高速履带车辆横摆运动响应特性分析与试验验证 被引量:1
8
作者 袁艺 盖江涛 +3 位作者 曾根 周广明 李训明 马长军 《兵工学报》 EI CAS CSCD 北大核心 2024年第4期1094-1107,共14页
为研究高速履带车辆操纵特性,奠定高速电驱动履带车辆的操纵稳定性评价及控制的基础,建立了高速履带车辆非线性转向动力学模型及2自由度线性转向动力学模型,并对模型进行试验验证。利用2自由度线性模型推导了高速履带车辆横摆运动传递函... 为研究高速履带车辆操纵特性,奠定高速电驱动履带车辆的操纵稳定性评价及控制的基础,建立了高速履带车辆非线性转向动力学模型及2自由度线性转向动力学模型,并对模型进行试验验证。利用2自由度线性模型推导了高速履带车辆横摆运动传递函数,基于此进行了高速履带车辆横摆运动时域和频域响应特性分析,提出履带车辆稳态横摆角速度增益及临界阻尼车速的定义。研究结果表明:履带车辆稳态横摆角速度增益均小于1,履带车辆具有不足转向特性;履带车辆系统阻尼比在1左右;当车速小于临界阻尼车速时,车辆系统为过阻尼系统,横摆角速度响应的上升时间在0.2 s内;当车速等于临界阻尼车速时,车辆系统为临界阻尼系统,横摆角速度响应的上升时间大于10 s;当车速大于临界阻尼车速时,车辆系统为欠阻尼系统,横摆角速度响应的上升时间迅速减小至2~3 s。 展开更多
关键词 高速履带车辆 操纵特性 横摆运动 瞬态响应 频率响应
下载PDF
高速铁路无砟轨道车辆荷载传递特性研究 被引量:1
9
作者 姚力 朱胜阳 +3 位作者 韦强文 王开云 王平 翟婉明 《铁道标准设计》 北大核心 2024年第10期69-74,82,共7页
为进一步探讨无砟轨道荷载设计参数取值,为我国时速400 km及以上高速铁路建设提供重要理论支撑,通过开展无砟轨道静力分析以及钢轨焊缝、车轮扁疤激励下车辆-轨道动力相互作用,揭示列车静、动力载荷特征及传递规律;同时根据轨道承载特... 为进一步探讨无砟轨道荷载设计参数取值,为我国时速400 km及以上高速铁路建设提供重要理论支撑,通过开展无砟轨道静力分析以及钢轨焊缝、车轮扁疤激励下车辆-轨道动力相互作用,揭示列车静、动力载荷特征及传递规律;同时根据轨道承载特点和无砟轨道设计原理,提出车辆竖向设计荷载取值建议。研究结果表明:(1)高速列车车轮扁疤和钢轨焊缝不平顺将造成显著的轮轨冲击,其轮载动载系数最大可达5.79,远高于现行规范取值;扣件系统对扁疤和焊缝不平顺引起的轮轨力高频成分衰减作用明显,扣件支反力的动载系数最大为2.64;(2)钢轨焊缝不平顺引起的轮轨冲击力随着车速提高以及焊缝不平顺幅值的增大而迅速增大,建议500 km/h及以下高速铁路的钢轨焊缝平直度标准取0.2 mm/m;(3)列车轮载通过扣件支反力作用于轨道板,从传递特性的角度来说,以扣件支反力作为轨道板竖向设计荷载更为合理,其动载系数可取3.0,且能满足400 km/h及以上高速铁路的行车需求。 展开更多
关键词 高速铁路 无砟轨道 车辆载荷传递特性 动载系数 扣件支反力
下载PDF
水下无人航行器高速航行下的运动特性及仿真控制研究
10
作者 王磊 任梦晨 +3 位作者 张占阳 李德军 张伟 杨青松 《舰船科学技术》 北大核心 2024年第6期86-89,共4页
水下无人航行器具有水下活动范围大、机动性好优点,主要用于大范围地形地貌勘探,水下高速长航程航行时,水下航行器运动特性和姿态控制是研究重点。本文建立水下航行器垂直面航行运动模型,分析高速航行下的运动特性。为保证高速航行高效... 水下无人航行器具有水下活动范围大、机动性好优点,主要用于大范围地形地貌勘探,水下高速长航程航行时,水下航行器运动特性和姿态控制是研究重点。本文建立水下航行器垂直面航行运动模型,分析高速航行下的运动特性。为保证高速航行高效稳定,提出PID方法控制纵倾和滑模方法控制深度的组合控制策略。通过仿真试验,开展高速航行运动仿真研究。研究结果表明,在高速航行下,水下航行器会产生一定纵倾,且随着航速增加,纵倾影响会越大,高速状态放大了水下航行器外形上下轻微不对称的特性,诱导产生的垂向水动力及力矩增大,进而引起纵倾;在高速航行条件下,水下航行器能稳定保持定深度长距离航行,控制策略具有很好的适用性。 展开更多
关键词 水下无人航行器 运动特性 高速航行 仿真 控制
下载PDF
超导钉扎高速磁浮车-轨耦合动力学建模与仿真
11
作者 邓自刚 王珊 +3 位作者 徐焱 李海涛 周徐呈 张卫华 《铁道学报》 EI CAS CSCD 北大核心 2024年第8期56-68,共13页
为探究超导钉扎磁浮车辆高速运行动态特性,建立车-轨耦合空间模型,开展不同车速下的动力学仿真。结合有限元方法获得磁轨关系数学模型;基于牛顿-欧拉法建立车辆模型,引入截短梁描述建立永磁轨道模型;以磁轨关系为纽带获得超导钉扎磁浮车... 为探究超导钉扎磁浮车辆高速运行动态特性,建立车-轨耦合空间模型,开展不同车速下的动力学仿真。结合有限元方法获得磁轨关系数学模型;基于牛顿-欧拉法建立车辆模型,引入截短梁描述建立永磁轨道模型;以磁轨关系为纽带获得超导钉扎磁浮车-轨空间耦合动力学模型;利用Matlab对模型进行仿真,分析轨道振动、电机法向力和轨道不平顺等对超导钉扎磁浮车辆-轨道系统动态响应的影响。结果表明:磁浮车辆系统的振动受轨道不平顺和车速的影响较大,受轨道振动的影响可忽略不计;在速度为620 km/h时,车体、悬浮架的最大振动加速度分别保持在0.5、8 m/s^(2)以下,具有较好的乘坐舒适性。建立的模型可为超导钉扎磁浮交通线路设计与参数优化等研究提供帮助。 展开更多
关键词 超导钉扎磁浮 高速磁浮 车-轨空间耦合动力学 建模与仿真
下载PDF
局部外形参数对高速飞行器的RCS影响
12
作者 刘俊 任杰 +3 位作者 赤丰华 罗世彬 郑盛贤 宋佳文 《系统工程与电子技术》 EI CSCD 北大核心 2024年第11期3690-3702,共13页
为了降低高速飞行器的雷达散射截面(radar cross section,RCS),采用多层快速多极子算法和物理光学法研究局部外形参数对飞行器雷达散射特性的影响。在此基础上,提出一种变半径弧形的边缘钝化形式,以提高飞行器仰视对抗能力。所提出的变... 为了降低高速飞行器的雷达散射截面(radar cross section,RCS),采用多层快速多极子算法和物理光学法研究局部外形参数对飞行器雷达散射特性的影响。在此基础上,提出一种变半径弧形的边缘钝化形式,以提高飞行器仰视对抗能力。所提出的变半径弧形钝化外形具有良好的RCS减缩能力,与传统圆弧钝化外形相比,在前向重点角域内,RCS对数均值降低了22.88%;随着仰角的增大,变半径弧形钝化形式还具备全向RCS减缩能力,在全向角域内RCS对数均值降低了13.37%。最后,研究所提出的变半径弧形钝化方式在不同雷达波频段下的RCS特性,结果表明这种钝化方式对于频率较高时仰视对抗能力更好。 展开更多
关键词 高速飞行器 机身型线 钝化半径 钝化形式 雷达散射截面 变半径弧形钝化
下载PDF
空泡演化对航行体高速入水运动特性的影响研究
13
作者 刘涛涛 杨林海 +2 位作者 孔德才 原凯 雷鸣宇 《北京理工大学学报》 EI CAS CSCD 北大核心 2024年第11期1165-1174,共10页
为了研究空泡演化与航行体运动特性之间的联系,并进一步探讨入水速度和入水角度对航行体运动特性的影响,文中基于STAR-CCM+,耦合SSTk-ω湍流模型、VOF界面捕捉方法和重叠网格技术,对航行体高速入水过程中空泡从生成到溃灭的整个发展演... 为了研究空泡演化与航行体运动特性之间的联系,并进一步探讨入水速度和入水角度对航行体运动特性的影响,文中基于STAR-CCM+,耦合SSTk-ω湍流模型、VOF界面捕捉方法和重叠网格技术,对航行体高速入水过程中空泡从生成到溃灭的整个发展演化过程进行了数值计算研究.结果表明,航行体高速入水过程中空泡的发展演化可以分为3个阶段:空泡稳定发展阶段、空泡断裂溃灭阶段、空泡脱落再生阶段.垂直入水条件下,提高入水速度能够延迟二次射流对航行体扰动时间,增强航行体维持初始入水弹道的能力;斜入水条件下,增大入水角度能够减缓航行体在入水前期的姿态变化,但会降低其在入水后期维持初始入水弹道的能力. 展开更多
关键词 航行体 高速入水 空泡闭合射流 运动特性 流体的体积(VOF)
下载PDF
超高速飞行器自适应模糊超螺旋控制律设计
14
作者 岳晓奎 郭容義 +1 位作者 丁一波 王玉浩 《上海航天(中英文)》 CSCD 2024年第3期17-24,36,共9页
针对超高速飞行器多源扰动下高精强鲁棒控制需求,提出了一种自适应模糊超螺旋控制律。首先,给出控制导向的超高速飞行器姿态模型;其次,采用广义超螺旋算法设计控制器,实现滑模变量与跟踪误差的高精收敛;同时,引入高阶齐次观测器估计飞... 针对超高速飞行器多源扰动下高精强鲁棒控制需求,提出了一种自适应模糊超螺旋控制律。首先,给出控制导向的超高速飞行器姿态模型;其次,采用广义超螺旋算法设计控制器,实现滑模变量与跟踪误差的高精收敛;同时,引入高阶齐次观测器估计飞行器复杂扰动,并在控制律中做前馈补偿以提高算法鲁棒性。针对控制增益选取问题,基于模糊算法,通过融合专家经验,建立控制增益与滑模变量直接关联。相较传统自适应方法,该自适应律可实现控制增益快速调节整定,同时兼顾系统响应速度、鲁棒性与抖振抑制需求。最后,以考虑复杂多源干扰的超高速飞行器为对象进行仿真,结果证明了自适应模糊超螺旋控制律的有效性。 展开更多
关键词 超高速飞行器 广义超螺旋算法 高阶齐次观测器 模糊算法 自适应控制
下载PDF
桥梁刚度变化对高速铁路独塔斜拉桥车⁃桥耦合振动的影响分析
15
作者 李波 《铁道技术标准(中英文)》 2024年第2期19-26,共8页
以高速铁路独塔斜拉桥为研究对象,建立车-轨-桥耦合系统的空间多体动力学分析模型,开展高速铁路斜拉桥的车-轨-桥耦合振动的仿真分析。通过改变材料弹性模量的方式调整桥塔和主梁刚度,研究桥梁刚度变化对桥梁车-桥-耦合振动的影响规律... 以高速铁路独塔斜拉桥为研究对象,建立车-轨-桥耦合系统的空间多体动力学分析模型,开展高速铁路斜拉桥的车-轨-桥耦合振动的仿真分析。通过改变材料弹性模量的方式调整桥塔和主梁刚度,研究桥梁刚度变化对桥梁车-桥-耦合振动的影响规律。研究结果表明,随着桥塔刚度的增大,主梁跨中竖向和塔顶纵向位移响应逐渐减小,其峰值减幅分别为7.57%和10%;随着主梁刚度的减小,主梁跨中竖向位移和塔顶纵向位移峰值呈逐渐递增趋势,主梁刚度变化对车体竖向加速度和Sperling竖向舒适度指标影响相对较大;相比于桥塔刚度的变化,主梁刚度变化对车-桥振动响应的影响更大;整体上,列车运行的安全性和平稳性指标满足规范要求。 展开更多
关键词 高速铁路 独塔斜拉桥 车-桥耦合振动 桥梁刚度 动力分析
下载PDF
不同厚度航行器高速入水冲击载荷及壳体变形特性
16
作者 赵海瑞 施瑶 +2 位作者 潘光 黄桥高 刘晓娅 《空气动力学学报》 CSCD 北大核心 2024年第2期111-125,I0002,共16页
航行器高速入水过程中,壳体受冲击载荷作用将产生大变形,而大变形又反过来影响航行体的受力状态。为了了解航行体结构受入水冲击的动态响应特性,基于结构化任意拉格朗日-欧拉(structured arbitrary Lagrange-Euler,S-ALE)算法研究了航... 航行器高速入水过程中,壳体受冲击载荷作用将产生大变形,而大变形又反过来影响航行体的受力状态。为了了解航行体结构受入水冲击的动态响应特性,基于结构化任意拉格朗日-欧拉(structured arbitrary Lagrange-Euler,S-ALE)算法研究了航行器撞水阶段壳体所受冲击载荷与变形的关联性,获取了壳体变形模式,并分析了壳体厚度对变形的影响规律。结果表明:壳体内凹大变形将增大航行器所受法向载荷,载荷峰值的脉宽虽为“毫秒级”,但对壳体变形具有较大影响。入水速度较低时,壳体变形模式以弹性变形为主,变形区域在上凹和下凸间不断转换,增大壳厚,结构主要通过减小脉宽来抑制变形;入水速度较高时,壳体变形模式以塑性变形为主,依次出现内凹区、拉伸区和卷曲压缩区,随形变量增大,拉伸区不断扩张,而卷曲压缩区不断后移,其中内凹变形受斜入水影响向y+方向偏斜,而卷曲压缩区在壳厚较小时出现S形卷曲对,增大壳厚,结构主要通过减小峰值来抑制变形。航行器斜入水内凹变形非对称性的内在机理为弹性应变与塑性应变的叠加效应,当冲击能量不变时,增大壳厚提升了内凹区壳体对冲击能量的吸收能力,减小了拉伸和卷曲压缩形变量,此为总形变量随壳厚增加而减小的内在机理。本文得到的航行器入水载荷及变形结果,可为相关领域的研究提供参考与支持。 展开更多
关键词 潜航器 高速入水 壳体厚度 冲击载荷 变形
下载PDF
轻量化高速履带车辆白车体有限元模型
17
作者 王俊刁 鲍珂 +3 位作者 柳月 赵承章 李孟伟 庞凤颖 《科学技术与工程》 北大核心 2024年第23期9858-9865,共8页
高速履带车辆作为一种复杂的承载系统,不仅要具备一定的防护能力,还要能承受各种激励源的作用。随着车体轻量化设计要求的产生,对该类高速履带车辆的设计研究逐渐深入。车体的模态分析关乎车体的可靠性设计。然而,目前关于轻量化高速履... 高速履带车辆作为一种复杂的承载系统,不仅要具备一定的防护能力,还要能承受各种激励源的作用。随着车体轻量化设计要求的产生,对该类高速履带车辆的设计研究逐渐深入。车体的模态分析关乎车体的可靠性设计。然而,目前关于轻量化高速履带车辆模态特性的研究主要基于试验方法,该方法无法针对不同应用工况条件下车体的动力学响应展开大量研究。基于有限元方法对某轻量化高速履带车辆白车体模型进行了模态计算及分析,结合试验模态测试结果对车体模型进行了修正,并针对车体的优化设计提出了建议。该白车体修正模型及模态特性有助于学者分析相关车辆结构设计的合理性,从而避免车辆行进过程中发生共振。同时,该研究成果有望应用于不同工况条件下车体的动力学特性分析,并对轻量化高速履带车辆的设计及改造提供参考和指导。 展开更多
关键词 轻量化 高速履带车辆 模态分析 有限元 振型
下载PDF
高速飞行器下压段自适应自抗扰姿态控制方法
18
作者 刘子博 刘晓东 +2 位作者 薛文超 张冉 李惠峰 《指挥与控制学报》 CSCD 北大核心 2024年第5期521-533,共13页
针对高速飞行器下压段飞行过程中姿态控制系统面临的强不确定性、强非线性、快时变动态等挑战,提出一种自适应自抗扰姿态控制方法。不同于传统自抗扰姿态控制方法,所提出的方法利用扩展卡尔曼滤波算法进行关键气动参数辨识,进而为扩张... 针对高速飞行器下压段飞行过程中姿态控制系统面临的强不确定性、强非线性、快时变动态等挑战,提出一种自适应自抗扰姿态控制方法。不同于传统自抗扰姿态控制方法,所提出的方法利用扩展卡尔曼滤波算法进行关键气动参数辨识,进而为扩张状态观测器设计及配平舵偏提供更为准确的模型信息,实现自适应前馈控制设计。基于关键气动参数辨识值设计了自适应增广控制及其增益调参方法,进而实现基于舵效在线估计的反馈控制设计。通过在典型高速飞行器下压段飞行任务场景中的仿真分析,验证该方法在气动参数等多种偏差下的强鲁棒性、高精度和自适应能力。 展开更多
关键词 高速飞行器 姿态控制 参数辨识 自抗扰控制 扩展卡尔曼滤波 自适应增广控制
下载PDF
针对高速车辆线性稳定性的等效锥度运用限值确定方法
19
作者 孙建锋 郝光 +1 位作者 池茂儒 施继忠 《中国铁道科学》 EI CAS CSCD 北大核心 2024年第5期168-178,共11页
为制定合理的轮轨匹配等效锥度运用范围,避免高速车辆出现蛇行失稳现象,提出一种基于模态分析的轮轨匹配等效锥度合理运用限值确定方法。首先,基于车辆系统动力学理论,建立包含21个自由度的高速车辆系统横向动力学模型;其次,采用模态分... 为制定合理的轮轨匹配等效锥度运用范围,避免高速车辆出现蛇行失稳现象,提出一种基于模态分析的轮轨匹配等效锥度合理运用限值确定方法。首先,基于车辆系统动力学理论,建立包含21个自由度的高速车辆系统横向动力学模型;其次,采用模态分析计算车辆系统模态参数(模态频率、阻尼比和振型),并提出基于最小模态距离的蛇行频率连续跟踪算法;然后,利用车辆系统模态最小阻尼比判断模态振型,对轮轨匹配等效锥度和速度进行协同变参计算,确定等效锥度运用限值;最后,从模态视角研究车体蛇行失稳的发生机制。结果表明:在广域轮轨匹配关系下,转向架蛇行失稳和车体蛇行失稳区域均具有清晰的边界,且二者不邻接;对于车体蛇行失稳而言,频率耦合不是唯一决定因素,频率耦合速度也是决定因素之一,当频率耦合发生在较高速度下时易发生车体蛇行失稳。采用该方法,确定所构建的高速车辆模型在350 km·h^(-1)车速下的等效锥度运用限值为0.07~0.41。 展开更多
关键词 蛇行稳定性 高速车辆 等效锥度运用限值 模态分析 机理分析
下载PDF
高速铁路铺设CRTS Ⅲ型板式无砟轨道地段的路基冻胀限值
20
作者 魏绍磊 肖宏 +2 位作者 王宏阁 王阳 钱忠霞 《中南大学学报(自然科学版)》 EI CAS CSCD 北大核心 2024年第7期2712-2726,共15页
我国冻土地区高速铁路分布广泛,路基冻胀对高速铁路无砟轨道结构损伤影响较为突出,危害行车安全。但是目前尚未建立针对铺设CRTS Ⅲ型板式无砟轨道地段的路基冻胀控制限值。本文基于车辆-轨道耦合动力学理论和混凝土塑性损伤理论,考虑... 我国冻土地区高速铁路分布广泛,路基冻胀对高速铁路无砟轨道结构损伤影响较为突出,危害行车安全。但是目前尚未建立针对铺设CRTS Ⅲ型板式无砟轨道地段的路基冻胀控制限值。本文基于车辆-轨道耦合动力学理论和混凝土塑性损伤理论,考虑混凝土结构损伤和车轨相互作用,建立车辆-无砟轨道-冻胀路基静动力分析模型,分析路基冻胀对CRTS Ⅲ型板式无砟轨道结构的损伤和车辆动力性能指标的影响。综合静、动力控制指标,提出一种针对冻胀变形的分级控制限值;分别考虑轨道结构层间离缝和结构损伤、钢轨垂向动位移、乘车舒适性和行车安全性等多项控制指标,将路基冻胀限值划分为5个区域。研究结果表明:路基冻胀作用于轨道板中部时损伤和离缝量出现极值;结构损伤和车辆动力学响应均随波长减小和波峰增大而呈增大趋势,且均对波长的影响更为敏感。可以根据不同分区的冻胀限值保障车辆运营安全,为冻土区无砟轨道养护维修提供参考。 展开更多
关键词 高速铁路 路基冻胀限值 CRTSⅢ型板式无砟轨道 车辆-轨道耦合动力学 混凝土塑性损伤
下载PDF
上一页 1 2 46 下一页 到第
使用帮助 返回顶部