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Performance analysis of high-static-low-dynamic stiffness vibration isolator with time-delayed displacement feedback 被引量:1
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作者 CHENG Chun LI Shun-ming +1 位作者 WANG Yong JIANG Xing-xing 《Journal of Central South University》 SCIE EI CAS CSCD 2017年第10期2294-2305,共12页
The displacement feedback with time delay considered is introduced in order to enhance the vibration isolation performance of a high-static-low-dynamic stiffness(HSLDS) vibration isolator. Such feedback is detailedly ... The displacement feedback with time delay considered is introduced in order to enhance the vibration isolation performance of a high-static-low-dynamic stiffness(HSLDS) vibration isolator. Such feedback is detailedly analyzed from the viewpoint of equivalent damping. Firstly, the primary resonance of the controlled HSLDS vibration isolator subjected to a harmonic force excitation is obtained based on the multiple scales method and further verified by numerical integration. The stability of the primary resonance is subsequently investigated. Then, the equivalent damping is defined to study the effects of feedback gain and time delay on primary resonance. The condition of jump avoidance is obtained with the purpose of eliminating the adverse effects induced by jumps. Finally, the force transmissibility of the controlled HSLDS vibration isolator is defined to evaluate its isolation performance. It is shown that an appropriate choice of feedback parameters can effectively suppress the force transmissibility in resonant region and reduce the resonance frequency. Furthermore, a wider vibration isolation frequency bandwidth can be achieved compared to the passive HSLDS vibration isolator. 展开更多
关键词 vibration ISOLATOR high-static-low-dynamic stiffness PIECEWISE nonlinear time-delayed feedback multiple scales method
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Nonlinear Static and Dynamic Stiffness Characteristics of Support Hydraulic System of TBM 被引量:6
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作者 Jianfeng Tao Junbo Lei +1 位作者 Chengliang Liu Wei Yuan 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2019年第6期26-34,共9页
Full-face hard rock tunnel boring machines(TBM)are essential equipment in highway and railway tunnel engineering construction.During the tunneling process,TBM have serious vibrations,which can damage some of its key c... Full-face hard rock tunnel boring machines(TBM)are essential equipment in highway and railway tunnel engineering construction.During the tunneling process,TBM have serious vibrations,which can damage some of its key components.The support system,an important part of TBM,is one path through which vibrational energy from the cutter head is transmitted.To reduce the vibration of support systems of TBM during the excavation process,based on the structural features of the support hydraulic system,a nonlinear dynamical model of support hydraulic systems of TBM is established.The influences of the component structure parameters and operating conditions parameters on the stiffness characteristics of the support hydraulic system are analyzed.The analysis results indicate that the static stiffness of the support hydraulic system consists of an increase stage,stable stage and decrease stage.The static stiffness value increases with an increase in the clearances.The pre-compression length of the spring in the relief valve a ects the range of the stable stage of the static stiffness,and it does not a ect the static stiffness value.The dynamic stiffness of the support hydraulic system consists of a U-shape and reverse U-shape.The bottom value of the U-shape increases with the amplitude and frequency of the external force acting on the cylinder body,however,the top value of the reverse U-shape remains constant.This study instructs how to design the support hydraulic system of TBM. 展开更多
关键词 Tunnel boring machine Support hydraulic system Nonlinear model static stiffness characteristics dynamic stiffness characteristics
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Research on Dynamic and Static Test Methods for Evaluating the Poisson's Ratio of Orien ted Strand Board 被引量:1
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作者 Yuhao Zhou Yuhang He +1 位作者 Zhaoyu Shen Zheng Wang 《Journal of Renewable Materials》 SCIE EI 2022年第12期3459-3476,共18页
In this article,dynamic method and static method of testing Poisson's ratio of OSB(Oriented Strand Board)were proposed.Through modal and static numerical analyses,the position where the transverse stress is equal ... In this article,dynamic method and static method of testing Poisson's ratio of OSB(Oriented Strand Board)were proposed.Through modal and static numerical analyses,the position where the transverse stress is equal to zero was determined.The binary linear regression method was applied to express the gluing position of the strain gauge as a relational express ion that depended on the length-width ratio and width-thickness ratio of the canti-lever plate.Then the longitudinal and transverse Poisson's ratios of OSB were mea sured by the given dynamic and static methods.In addition,the test results of OSB Poisson's ratio were analyzed with the probability distribution of random variables.The results showed that using the proposed dynamic method and static method,the test results for longitudinal and transverse Poisson's ratios of OSB were quite consistent,despite the gluing position of the strain gauges being different.And these OSB Poisson's ratios were accorded with that obtained by the axial tensile method and the four-point bending method.OSB longitudinal and transverse Poisson's ratios followed Weibull distribution. 展开更多
关键词 OSB Poisson's ratio cantilever plate dynamic test static test
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Low frequency vibration control of railway vehicles based on ahigh static low dynamic stiffness dynamic vibration absorber 被引量:8
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作者 SUN Yu GONG Dao +2 位作者 ZHOU JinSong SUN WenJing XIA ZhangHui 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2019年第1期60-69,共10页
In order to control the low frequency vibration of railway vehicles, a vertical two degrees of freedom(2DOF) low frequency dynamic vibration absorber(DVA) based on acceleration is proposed. Parameters of the dynamic v... In order to control the low frequency vibration of railway vehicles, a vertical two degrees of freedom(2DOF) low frequency dynamic vibration absorber(DVA) based on acceleration is proposed. Parameters of the dynamic vibration absorber are put forth to control the low frequency vibration of car body bouncing and pitching. Next, the acceleration power spectrum density(PSD)and ride quality of the car body are calculated based on the pseudo excitation method(PEM) and covariance algorithm,respectively. According to the requirement of 2DOF low frequency DVA, the isolators with high static low dynamic stiffness(HSLDS) are designed. A high-speed train dynamic model containing HSLDS isolators is established to validate the effects on the car body vibration. The results reveal that the 2D low frequency DVA can significantly reduce the vibration of the car body bouncing and pitching. Thus, the ride quality of the vehicle is increased, and passenger comfort is improved. 展开更多
关键词 RAILWAY vehicle dynamics RIDE quality LOW frequency dynamic vibration ABSORBER high static LOW dynamic stiffness
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High-static-low-dynamic-stiffness vibration isolation enhanced by damping nonlinearity 被引量:14
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作者 LU ZeQi BRENNAN Michael +1 位作者 DING Hu CHEN LiQun 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2019年第7期1103-1110,共8页
High-static-low-dynamic-stiffness(HSLDS) nonlinear isolators have proven to have an advantage over linear isolators, because HSLDS nonlinear isolators allow low-frequency vibration isolation without compromising the s... High-static-low-dynamic-stiffness(HSLDS) nonlinear isolators have proven to have an advantage over linear isolators, because HSLDS nonlinear isolators allow low-frequency vibration isolation without compromising the static stiffness. Previously, these isolators have generally been assumed to have linear viscous damping, degrading the performance of the isolator at high frequencies. An alternative is to use nonlinear damping, where the nonlinear behavior is achieved by configuring linear dampers so they are orthogonally aligned to the excitation direction. This report compares the performances of single-stage and two-stage isolators with this type of damping with the corresponding isolators containing only linear viscous damping. The results show that both isolators with linear viscous damping and nonlinear damping reduce the transmissibility around the resonance frequencies, but the results show that the isolators with nonlinear damping perform better at high frequencies. 展开更多
关键词 nonlinear vibration isolation transmissibility high-static-low-dynamic-stiffness DAMPING NONLINEARITY
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Dynamic Analysis of a Single-Column Platform
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作者 Lian Gan , Ni Kan, Hu Kai and Guo Dawei Prof., Senior Engineer, Marine Design and Research Institute of China, Shanghai Senior Engineer, Marine Design and Research Institute of China, Shanghai Engineer, Marine Design and Research Institute of China, Shanghai 《China Ocean Engineering》 SCIE EI 1991年第4期385-394,共10页
In this paper, a single-column structure used as well-head platform is studied. The loads of wave and current exerted on the single-column will be greatly reduced, therefore the cost of the structure will be decreased... In this paper, a single-column structure used as well-head platform is studied. The loads of wave and current exerted on the single-column will be greatly reduced, therefore the cost of the structure will be decreased. The advantages of the single-column structure compared with ordinary jacket structure are explained. A dynamic analysis of this type of structure is made and some problems related to dynamic analysis are solved. In order to check the reliability of computation theory and programme, model tests have been carried out. However, as space is limited, the conclusion of tests will be introduced in another paper. Therefore, this type of structure is applicable for proctical engineering. 展开更多
关键词 single-column structure dynamic analysis diffraction wave theory natural period resonant dynamic strength damping ratio fictitious stiffness of pile top fatigue analysis
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Characterization of an Electromagnetic Vibration Isolator 被引量:2
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作者 Naibiao Zhou Kefu Liu 《Journal of Electromagnetic Analysis and Applications》 2011年第12期519-528,共10页
A novel vibration isolator is constructed by connecting a mechanical spring in parallel with a magnetic spring in order to achieve the property of high-static-low-dynamic stiffness (HSLDS). The HSLDS property of the i... A novel vibration isolator is constructed by connecting a mechanical spring in parallel with a magnetic spring in order to achieve the property of high-static-low-dynamic stiffness (HSLDS). The HSLDS property of the isolator can be tuned off-line or on-line. This study focuses on the characterization of the isolator using a finite element based package. Firstly using the single physics solver, the stiffness behaviours of the mechanical and magnetic springs are determined, respectively. Then using the weakly coupled multi-physics method, the stiffness behaviours of the passive isolator and the semi-active isolator are investigated, respectively. With the found stiffness models, a nonlinear differential equation governing the dynamics of the isolator is solved using the time-dependent solver. The displacement transmissibility ratios of the isolator are obtained. The study confirms that the isolation region of the isolator can be widened through off-line or on-line tuning. 展开更多
关键词 High-static-Low-dynamic stiffness SPRING SEMI-ACTIVE Vibration ISOLATOR Magnetic SPRING Coupling of Structural MECHANICS and MAGNETICS
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Design of flying vehicle control system by signal to noise ratio
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作者 孙龙大 《Journal of Harbin Institute of Technology(New Series)》 EI CAS 2001年第1期63-68,共6页
Presents the new concept of ″Desired to be small″ based on the basic function of vehicle flight control system for an optimal design of flying vehicle control system, and the definition of S/N ratio and calculation ... Presents the new concept of ″Desired to be small″ based on the basic function of vehicle flight control system for an optimal design of flying vehicle control system, and the definition of S/N ratio and calculation formula for ″Desired to be small″ dynamic characteristics, and the S/N ratio method established for design of velicle flight control systems, by which, an orthogrnal table is used to arrange test schemes, and error facters are used to simulate various interferences, and the use of S/N ratio as a design criterion to synthesise the design of dynamic and static characteristics for definition of an optimal scheme, the application of S/N ratio method to the design of a type of vehicle control system and the single run success abtained in design of control system, technical evaluation test and design finalization flight test. 展开更多
关键词 S/N ratio method control system dynamic characteristics static characteristics parameter design
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工业母机正向设计技术研究进展 被引量:2
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作者 陈传海 宋晋奇 +4 位作者 刘志峰 郭劲言 赵永胜 刘洪强 王军见 《机床与液压》 北大核心 2025年第13期1-10,共10页
工业母机作为现代制造业的核心装备,其发展水平直接决定国家制造业的整体竞争力。长期以来,我国高端机床装备的研发主要采用跟随仿制策略,导致所研制产品在功能和性能上不及仿制对象,因此同期国产机床装备远落后于国际先进产品。为满足... 工业母机作为现代制造业的核心装备,其发展水平直接决定国家制造业的整体竞争力。长期以来,我国高端机床装备的研发主要采用跟随仿制策略,导致所研制产品在功能和性能上不及仿制对象,因此同期国产机床装备远落后于国际先进产品。为满足机床装备向高端化、自主化发展的迫切需求,亟须开展机床正向设计技术研究,系统性地指导机床的结构优化与创新,突破传统设计方法中“试错迭代”的局限,实现机床性能设计的自主可控。从工业母机运动链设计、静动刚度设计、热平衡设计、机电耦合设计和几何精度设计等方面,综述有关工业母机正向设计技术的国内外研究现状,分析指出正向设计技术存在的不足,并展望工业母机正向设计技术的发展动态。 展开更多
关键词 工业母机 运动链设计 静动刚度设计 热平衡设计 机电耦合设计 几何精度设计
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一类双层高静低动刚度隔振系统试验研究 被引量:1
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作者 邵敏强 利云云 +2 位作者 周徐斌 陈卫东 刘兴天 《振动工程学报》 北大核心 2025年第1期47-53,共7页
对一种由欧拉屈曲梁负刚度调节器与双层线性隔振系统并联构成的双层高静低动刚度隔振系统进行了试验研究。描述了高静低动刚度的力学原理,对欧拉屈曲梁负刚度调节器样机进行了压缩试验,验证了其负刚度机理。根据负刚度调节器并联形式的... 对一种由欧拉屈曲梁负刚度调节器与双层线性隔振系统并联构成的双层高静低动刚度隔振系统进行了试验研究。描述了高静低动刚度的力学原理,对欧拉屈曲梁负刚度调节器样机进行了压缩试验,验证了其负刚度机理。根据负刚度调节器并联形式的不同,设计了约束型和无约束型两类隔振系统,求解系统的消极隔振模型动力学方程,分析了两类隔振系统在不同上、下层刚度组合下的隔振性能。搭建两种高静低动刚度的隔振试验系统,通过扫频和定频试验验证了其隔振性能,并对结果偏差进行了分析。 展开更多
关键词 双层隔振 欧拉屈曲梁 高静低动刚度 隔振试验 力传递率
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高速涡轮泵动静压混合式气体隔离密封扰动性能 被引量:3
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作者 李双喜 刘安 +2 位作者 刘志远 张江腾 李世聪 《化工学报》 北大核心 2025年第1期311-323,共13页
隔离密封对高速涡轮泵燃料密封极为重要,但其在工作时存在供气压力波动、外界振动强烈等问题,会严重影响密封性能。对动静压隔离密封气膜扰动工况,基于有限元数值分析方法建立了动态变化扰动分析模型,采用Fluent动网格技术和MATLAB求解... 隔离密封对高速涡轮泵燃料密封极为重要,但其在工作时存在供气压力波动、外界振动强烈等问题,会严重影响密封性能。对动静压隔离密封气膜扰动工况,基于有限元数值分析方法建立了动态变化扰动分析模型,采用Fluent动网格技术和MATLAB求解端面气膜扰动刚度及扰动阻尼,对比静压式与动静压混合式气体隔离密封的扰动性能,讨论气膜厚度、工作压力及扰动幅值等参数对扰动性能的影响,得到其变化规律,并试验验证了动静压密封的抗扰动性能。结果表明:扰动频率的增加使得扰动刚度整体呈现先减小后增大的趋势,扰动阻尼随扰动频率的增加迅速降低,在10~100 Hz时逐渐趋于平稳。供气压力与扰动刚度、扰动阻尼呈正相关。工作转速增大,扰动刚度在低频段增大、在中高频段减小,扰动阻尼全频减小。扰动幅值增大,扰动刚度在中低频段几乎不变、在高频段减小,扰动阻尼略有增大。工作膜厚与扰动刚度、扰动阻尼呈负相关。动静压式混合密封有效提升了密封装置中低频下的稳定性能,避免了密封处于低压、低转速时抗扰动能力不足的问题。 展开更多
关键词 隔离密封 气体 动静压 扰动刚度 扰动阻尼
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一种半主动式高静⁃低动刚度电磁隔振器研究
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作者 张明 李洪涛 +3 位作者 崔浩东 孙凤 孙兴伟 周冉 《振动工程学报》 北大核心 2025年第4期777-784,共8页
为了降低隔振器的起始隔振频率,增强对不同振动源的适应性,并获得比传统被动隔振器更出色的振动抑制效果,本文提出了一种采用电磁线圈嵌套永磁体的非对称刚度结构的高静⁃低动刚度(high static⁃low dynamic stiffness,HSLDS)隔振器。其... 为了降低隔振器的起始隔振频率,增强对不同振动源的适应性,并获得比传统被动隔振器更出色的振动抑制效果,本文提出了一种采用电磁线圈嵌套永磁体的非对称刚度结构的高静⁃低动刚度(high static⁃low dynamic stiffness,HSLDS)隔振器。其能够根据不同振源频率的变化调整系统刚度,实现半主动隔振效果。采用增量谐波平衡法,获得了系统在不同激励、电流下的位移传递率特性。基于隔振器的系统模型,提出了一种半主动控制策略,该策略可以根据振源频率的变化来调节系统的刚度。搭建了试验测试平台,进行试验研究。结果显示,所提出的高静⁃低动刚度隔振器可以使起始隔振频率降低19.25%。系统通过引入半主动控制策略,可以将最大加速度振幅衰减54.7%。 展开更多
关键词 半主动隔振 高静⁃低动刚度 频率 电流
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白炭黑/天然橡胶湿法混炼复合材料在轴箱弹簧中的应用研究
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作者 刘权 谭莲影 +2 位作者 赵一海 杨军 吴若鹏 《橡胶工业》 2025年第5期333-341,共9页
研究对比相同硬度下白炭黑/天然橡胶湿法混炼复合材料(简称湿法胶)与干法混炼复合材料(简称干法胶)的性能差异及其在轴箱弹簧中的应用。结果表明:与干法胶相比,湿法胶具有白炭黑分散度高、硫化速率快、拉伸强度大、蠕变量和滞后小等优势... 研究对比相同硬度下白炭黑/天然橡胶湿法混炼复合材料(简称湿法胶)与干法混炼复合材料(简称干法胶)的性能差异及其在轴箱弹簧中的应用。结果表明:与干法胶相比,湿法胶具有白炭黑分散度高、硫化速率快、拉伸强度大、蠕变量和滞后小等优势;与干法胶轴箱弹簧相比,湿法胶轴箱弹簧具有动静刚度比和蠕变量小、耐疲劳性能良好的特点,故湿法胶可替代干法胶应用于轴箱弹簧的生产,可有效延长轴箱弹簧的使用寿命。 展开更多
关键词 白炭黑 天然橡胶 湿法混炼复合材料 轴箱弹簧 动静刚度比 蠕变性能
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丁苯橡胶发泡材料的制备和性能研究 被引量:1
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作者 胡润林 张继阳 +1 位作者 邹华 李伟 《橡胶工业》 CAS 2025年第1期10-17,共8页
研究白炭黑用量、硫黄/过氧化物BIBP并用硫化体系的过氧化物BIBP和助交联剂TAIC用量、发泡倍率、预硫化温度和预硫化时间对丁苯橡胶(SBR)发泡材料性能的影响。结果表明:白炭黑用量增大,SBR发泡材料的100%定伸应力、拉伸强度、静刚度和... 研究白炭黑用量、硫黄/过氧化物BIBP并用硫化体系的过氧化物BIBP和助交联剂TAIC用量、发泡倍率、预硫化温度和预硫化时间对丁苯橡胶(SBR)发泡材料性能的影响。结果表明:白炭黑用量增大,SBR发泡材料的100%定伸应力、拉伸强度、静刚度和动静刚度比增大,拉断伸长率减小;随着过氧化物BIBP用量和助交联剂TAIC用量增大,SBR发泡材料的拉伸强度、拉断伸长率、压缩永久变形和动静刚度比减小,100%定伸应力和静刚度增大;随着发泡倍率增大,SBR发泡材料的静刚度减小,动静刚度比增大;预硫化温度为125℃和预硫化时间为16 min时,SBR发泡材料的减振性能最佳,此时泡孔直径较小及分布均匀。 展开更多
关键词 丁苯橡胶 发泡材料 静刚度 动静刚度比
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侏罗系陆相页岩各向异性动静态弹性参数建模 被引量:1
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作者 刘卫华 王洋 +4 位作者 陈祖庆 陈超 沈珲 张方南 仉涛 《地球物理学报》 北大核心 2025年第1期213-228,共16页
动、静态弹性参数转换关系对陆相页岩储层压裂改造、钻井方案设计、地应力预测等地质工程问题有重要意义.但页岩的本征各向异性及动、静态弹性参数的强压力依赖性对建立各向异性背景下的动、静弹性参数转换模型提出了新的挑战.本次实验... 动、静态弹性参数转换关系对陆相页岩储层压裂改造、钻井方案设计、地应力预测等地质工程问题有重要意义.但页岩的本征各向异性及动、静态弹性参数的强压力依赖性对建立各向异性背景下的动、静弹性参数转换模型提出了新的挑战.本次实验研究基于10组四川盆地侏罗系陆相页岩样品的各向异性动、静态弹性参数联合测试,建立了模拟原位有效应力条件下各向异性动、静态弹性参数建模工作流程.多级偏应力循环实验结果表明:无论是在垂直还是平行层理方向,动态杨氏模量和泊松比均系统性地大于对应的静态杨氏模量和泊松比,并且动、静态弹性参数都表现出明显的压力依赖性.根据围压为20 MPa时的实测数据,直接建立了垂直层理方向模拟原位应力的动、静杨氏模量和泊松比转换关系.在此基础上,假定动态、静态杨氏模量各向异性的关系不依赖于所施加应力大小,建立了动、静态杨氏模量各向异性强度之间的线性关系,进而间接获得了模拟原位应力条件下的平行层理方向静态杨氏模量.各向异性背景下的动、静态弹性参数转换模型可将测井或地震数据转换为原位有效应力条件下的静态弹性参数,并可为各向异性背景下页岩储层地应力预测提供指导. 展开更多
关键词 各向异性 杨氏模量 泊松比 动静态转换 多级偏应力循环
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空气弹簧静态性能与动态行为分析 被引量:1
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作者 杨晟 孙佳瑞 +3 位作者 王芷鸢 崔飞鸿 夏万 朱清波 《液压与气动》 北大核心 2025年第2期87-95,共9页
空气弹簧在准零刚度隔振系统中具有重要应用前景,其刚度特性是分析其性能的关键。以单曲囊式空气弹簧为研究对象,通过理论分析、数值模拟和试验研究相结合的方法,系统研究了其静态和动态特性。基于气体力学理论建立了单曲囊式空气弹簧... 空气弹簧在准零刚度隔振系统中具有重要应用前景,其刚度特性是分析其性能的关键。以单曲囊式空气弹簧为研究对象,通过理论分析、数值模拟和试验研究相结合的方法,系统研究了其静态和动态特性。基于气体力学理论建立了单曲囊式空气弹簧的刚度计算模型,推导出垂向刚度和固有频率表达式。利用ABAQUS软件构建了G40/60型空气弹簧有限元模型,分析了初始内压对刚度特性的影响。在WDW-100型试验机上进行静力学试验,获得了不同气压下的力-位移特性曲线,通过多项式拟合得到了承载力和静刚度表达式。在MTS 831型试验机上进行动力学试验,研究了气压、频率和振幅对刚度和阻尼特性的影响规律。为空气弹簧在准零刚度隔振系统中的应用提供了理论基础和设计依据。 展开更多
关键词 空气弹簧 刚度特性 静态特性 动态特性 阻尼特性
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隔振垫浮置板结构动力参数试验研究
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作者 李沛成 曾志平 +4 位作者 郭无极 李桩 李秋义 吴达 曾强 《中南大学学报(自然科学版)》 北大核心 2025年第4期1648-1657,共10页
隔振垫浮置板轨道动力参数是评价隔振垫浮置板轨道减振效果的重要指标,也是浮置板轨道动力仿真的关键参数。为了对隔振垫浮置板轨道的动刚度和阻尼比进行系统测定,对组装和零置状态下的隔振垫进行循环加载,基于滞回曲线法探究考虑轨道... 隔振垫浮置板轨道动力参数是评价隔振垫浮置板轨道减振效果的重要指标,也是浮置板轨道动力仿真的关键参数。为了对隔振垫浮置板轨道的动刚度和阻尼比进行系统测定,对组装和零置状态下的隔振垫进行循环加载,基于滞回曲线法探究考虑轨道结构的不同层间结构的轨道动力参数差异性。研究结果表明:在钢轨、浮置板和隔振垫上分别施加简谐荷载,整体浮置板、无钢轨浮置板和隔振垫的平均动刚度分别为230.6、224.6、1.99 kN/mm,转化为隔振垫动力地基模量分别为0.021 3、0.020 7、0.022 1 N/mm^(3);对各位移测点的位移-加载力滞回曲线环进行面积积分,在钢轨、浮置板和隔振垫上分别施加简谐荷载时,3种状态下隔振垫的平均等效阻尼比分别为0.110、0.096、0.122;直接对隔振垫施加循环荷载所测得的隔振垫动力地基模量和阻尼比最大,在钢轨上施加循环荷载的情况次之,在浮置板上施加循环荷载的隔振垫动力地基模量和阻尼比最小,说明在隔振垫、钢轨和浮置板上施加循环荷载时,隔振垫参与压缩变形程度依次减小,直接对隔振垫施加循环荷载所测得的隔振垫动力地基模量和阻尼比能准确描述隔振垫的实际力学性能。 展开更多
关键词 隔振垫浮置板轨道 滞回曲线 动刚度 阻尼比 动力地基模量
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不同填料对NBR动态力学性能的影响
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作者 周昱昂 冯伟 +4 位作者 卜金迪 贺昂 邹一鸣 刘英俊 杜爱华 《特种橡胶制品》 2025年第4期1-5,20,共6页
研究了不同填料用量对NBR力学性能和动态力学性能的影响,并通过RPA测试分析了填料在NBR硫化胶中的分散性。结果表明:随着白炭黑用量的增加,NBR混炼胶的焦烧时间(t10)和正硫化时间(t90)均延长,硫化速率减慢,门尼粘度逐渐增大。NBR硫化胶... 研究了不同填料用量对NBR力学性能和动态力学性能的影响,并通过RPA测试分析了填料在NBR硫化胶中的分散性。结果表明:随着白炭黑用量的增加,NBR混炼胶的焦烧时间(t10)和正硫化时间(t90)均延长,硫化速率减慢,门尼粘度逐渐增大。NBR硫化胶的拉伸强度、撕裂强度和动静刚度比增大,拉断伸长率下降,隔振频率带变窄,动态压缩变形和疲劳生热量增加,损耗因子峰值及高弹态下的损耗因子(tanδ)增大。在相同填料用量下,白炭黑填充NBR硫化胶的拉伸性能最差,撕裂强度略高于N774填充的NBR硫化胶,动态永久变形最低,疲劳生热量与隔振效率介于两种炭黑填充的NBR硫化胶之间。高弹态下,N330填充的NBR硫化胶的损耗因子最大,N774填充的最小。 展开更多
关键词 NBR 动态力学性能 疲劳生热量 隔振效率 动静刚度比
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硫化体系对丁腈橡胶压缩性能的影响
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作者 卜金迪 孙广聚 +2 位作者 沈妤 刘英俊 杜爱华 《特种橡胶制品》 2025年第6期18-22,共5页
系统探讨了硫黄与促进剂配比对丁腈橡胶(NBR)压缩性能的影响,并通过设计5种硫化体系(1#~5#),系统分析了交联密度对NBR硫化胶压缩永久变形、动静刚度比及蠕变特性的调控机制。结果表明:1#硫化体系力学性能优异,但硫化效率低且压缩永久变... 系统探讨了硫黄与促进剂配比对丁腈橡胶(NBR)压缩性能的影响,并通过设计5种硫化体系(1#~5#),系统分析了交联密度对NBR硫化胶压缩永久变形、动静刚度比及蠕变特性的调控机制。结果表明:1#硫化体系力学性能优异,但硫化效率低且压缩永久变形高;3#硫化体系交联密度适中,压缩永久变形较1#硫化体系低,同时动静刚度比最小,兼具适中的静刚度与低蠕变特性。5#硫化体系在100℃×72 h老化后的压缩永久变形最低,但存在静刚度小且蠕变增量较大的缺点。 展开更多
关键词 硫化体系 丁腈橡胶 压缩永久变形 动静刚度比 交联密度
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考虑结合面刚度的卧式加工中心整机结构分析
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作者 李珂 黄祖广 +4 位作者 周雪鹏 张大卫 任国喜 陈红昌 程竑力 《制造技术与机床》 北大核心 2025年第7期132-140,共9页
为准确分析精密卧式加工中心的静动态特性并找出薄弱环节,提出了一种结合面刚度和阻尼的计算方法,并建立了考虑结合面刚度的有限元仿真模型。在静刚度分析中,X、Y、Z三向静刚度分别为93.85、117.45、182.54 N/μm。其中,X向刚度最弱。... 为准确分析精密卧式加工中心的静动态特性并找出薄弱环节,提出了一种结合面刚度和阻尼的计算方法,并建立了考虑结合面刚度的有限元仿真模型。在静刚度分析中,X、Y、Z三向静刚度分别为93.85、117.45、182.54 N/μm。其中,X向刚度最弱。动态特性分析显示,机床前四阶固有频率分别为44.22、74.40、87.19、105.68 Hz,且其中三阶模态由立柱引起,表明立柱是动态特性的薄弱环节。刚柔耦合仿真分析进一步表明,影响整机刚度的重要性依次为立柱、主轴箱、床身、工作台。综上分析可得,立柱是该卧式加工中心静动态特性的薄弱环节,改进立柱结构可有效提升整机的静动态性能。 展开更多
关键词 卧式加工中心 结合面刚度 静态分析 动态分析 刚柔耦合
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