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Active Control Method for Frequency Domain Error of Aerostatic Spindle Based on Acoustic Levitation
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作者 Guoda Chen Zhaoshou Chen Yifan Ge 《Chinese Journal of Mechanical Engineering》 2025年第1期119-139,共21页
In the machining of high-end optical components,the aerostatic spindle error of an ultra-precision machine tool has a significant impact on the surface quality of the machined surfaces.The surfaces of many high-end op... In the machining of high-end optical components,the aerostatic spindle error of an ultra-precision machine tool has a significant impact on the surface quality of the machined surfaces.The surfaces of many high-end optical components need to meet the extremely stringent requirements of the full-frequency band error,which poses significant challenge to the control of the aerostatic spindle error.In this research,we put forward an active control method for the frequency domain error of the aerostatic spindle based on acoustic levitation,in which the acousticmagnetism-fluid-solid multi-field coupling rotor dynamics modeling method of the aerostatic spindle was proposed and the corresponding multi-field coupling model was established.Through the numerical simulation and preliminary experiments,the influence law of acoustic levitation on the frequency domain error of the aerostatic spindle is obtained.The results showed that acoustic levitation can be used to control the frequency domain error of the aerostatic spindle to some extent,which verified the effectiveness of the proposed method. 展开更多
关键词 Acoustic levitation aerostatic spindle Multi-field coupling Numerical model Frequency domain error
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Effects of horizontal splitter plates on the vortex-induced vibration and aerostatic characteristics of twin separated parallel decks for a rail-cum-road bridge
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作者 HE Xu-hui YANG Jia-feng +2 位作者 LIU Lu-lu ZOU Yun-feng HE Jing 《Journal of Central South University》 2025年第3期1024-1043,共20页
Installing the splitter plates is a passive aerodynamic solution for eliminating vortex-induced vibration (VIV). However, the influences of splitter plates on the VIV and aerostatic performances are more complicated d... Installing the splitter plates is a passive aerodynamic solution for eliminating vortex-induced vibration (VIV). However, the influences of splitter plates on the VIV and aerostatic performances are more complicated due to aerodynamic interference between highway and railway decks. To study the effects of splitter plates, wind tunnel experiments for measuring VIV and aerostatic forces of twin decks under two opposite flow directions were conducted, while the surrounding flow and wind pressure of static twin decks with and without splitter plates are numerically simulated. The results showed that the incoming flow direction affects the VIV response and aerostatic coefficients. The highway deck has poor vertical and torsional VIV, and the VIV region and amplitude are different under different directions. While the railway deck only has vertical VIV when located upstream. The splitter plates can impede the process of vortex generation, shedding and impinging at the gap between twin deck, and significantly reducing the surface fluctuating pressure coefficient, thus effectively suppressing the VIV of twin decks. While, the splitter plates hurt the upstream deck regarding static wind stability and have little effect on the downstream deck. The splitter plates of appropriate width are recommended to improve VIV performances in twin parallel bridges. 展开更多
关键词 splitter plates vortex-induced vibration(VIV) aerostatic characteristic wind tunnel test twin parallel decks the rail-cum-road bridges computational fluid dynamics
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Improved finite difference method for pressure distribution of aerostatic bearing 被引量:4
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作者 郑书飞 蒋书运 《Journal of Southeast University(English Edition)》 EI CAS 2009年第4期501-505,共5页
An improved finite difference method (FDM)is described to solve existing problems such as low efficiency and poor convergence performance in the traditional method adopted to derive the pressure distribution of aero... An improved finite difference method (FDM)is described to solve existing problems such as low efficiency and poor convergence performance in the traditional method adopted to derive the pressure distribution of aerostatic bearings. A detailed theoretical analysis of the pressure distribution of the orifice-compensated aerostatic journal bearing is presented. The nonlinear dimensionless Reynolds equation of the aerostatic journal bearing is solved by the finite difference method. Based on the principle of flow equilibrium, a new iterative algorithm named the variable step size successive approximation method is presented to adjust the pressure at the orifice in the iterative process and enhance the efficiency and convergence performance of the algorithm. A general program is developed to analyze the pressure distribution of the aerostatic journal bearing by Matlab tool. The results show that the improved finite difference method is highly effective, reliable, stable, and convergent. Even when very thin gas film thicknesses (less than 2 Win)are considered, the improved calculation method still yields a result and converges fast. 展开更多
关键词 aerostatic bearing: pressure distribution: Reynolds equation: finite difference method: variable step size
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Entrance Effect on Load Capacity of Orifice Compensated Aerostatic Bearing with Feeding Pocket 被引量:11
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作者 LONG Wei BAO Gang 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2010年第4期451-459,共9页
The current research of the aerostatic thrust bearing mainly focuses on the porous material bearing and inherent compensated air bearing, which aims at obtaining small physical dimension and large load capacity. Altho... The current research of the aerostatic thrust bearing mainly focuses on the porous material bearing and inherent compensated air bearing, which aims at obtaining small physical dimension and large load capacity. Although porous material bearing appears larger load capacity, materials anisotropy itself and void content distortion caused in heat-treating, and machining processes add greater complexity to internal flow transfer process. Inherent compensated air bearing has the advantages of simple structure and good stability, but its load capacity and static stiffness is not worth somewhat. In this paper, based on hydrostatic lubrication theory, finite volume method is presented for taking entrance effects into account in computing pressure distribution, load capacity and mass flow rates of circular aerostatic thrust bearings. Technical analysis, numerical simulations and laboratory demonstration tests of influence of pocket diameter and pocket depth on loading capacity of aerostatic thrust bearing are carried out on simple orifice compensated air bearings with feeding pockets. The static parameters, such as air consumption and pressure distributions, are measured as a function of supply pressure and air gap height for several different orifices and pockets size. Entrance effects are described in term of typical throttling types, and the effect of pocket diameter and pocket depth on load capacity is systematically described respectively. The proposed research results uncover the causation of throttling action of the orifice compensated air bearing with feed pocket and further develop and improve the design theory of air bearing. 展开更多
关键词 aerostatic thrust bearing feeding pocket entrance effects
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Numerical Simulation and Experimental Verification of the Stiffness and Stability of Thrust Pad Aerostatic Bearings 被引量:8
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作者 Hai-Long Cui Yang Wang +2 位作者 Bao-Rui Wang Hong Yang Huan Xia 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2018年第2期186-197,共12页
Many researchers concentrate on improving the stiffness and stability of aerostatic bearings, however the contradiction between stiffness and stability is still existed. Therefore, orifice, multiple, and porous restri... Many researchers concentrate on improving the stiffness and stability of aerostatic bearings, however the contradiction between stiffness and stability is still existed. Therefore, orifice, multiple, and porous restrictors are designed to illustrate the influence of restrictor characteristics on the stability and stiffness of the aerostatic circular pad bearings. Because both the stiffness and stability of aerostatic bearings are determined by the internal pressure distribution, the full Navier?Stokes(N?S) equations are applied to solve internal pressure distribution in bearing film by using computational fluid dynamics(CFD) method. Simulation results present that the stiffness and stability of aerostatic circular pad bearings are influenced significantly by geometrical and material parameters, such as film thickness, orifice diameters, and viscous resistance coe cient. Verified by the experimental data, the micro vibration of orifice restrictor is almost the same as multiple restrictors with amplitude of 0.02 m/s~2, but it is much stronger than the porous restrictors with acceleration of 0.006 m/s~2. The optimal stiffness of multiple restrictors increased by 46%, compared to only 30.2 N/μm of orifice restrictor, and the porous restrictors had obvious advantage in the small film thickness less than 6 μm where the optimal stiffness increased to 38.3 N/μm. The numerical and experimental results provide guidance for improving the stiffness and stability of aerostatic bearings. 展开更多
关键词 aerostatic bearings CFD Restrictor characteristics Stability and stiffness
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Design of Microstructure Parameters on a Small Multi-Throttle Aerostatic Guideway in Photolithography 被引量:5
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作者 Zhongpu Wen Jianwei Wu +3 位作者 Kunpeng Xing Yin Zhang Jiean Li Jiubin Tan 《Engineering》 SCIE EI 2021年第2期226-237,共12页
A compact multi-throttle aerostatic guideway is the preferred structure for high precision and acceleration motion in the variable-slit system(VS)of photolithography.The presence of microstructure,such as recesses and... A compact multi-throttle aerostatic guideway is the preferred structure for high precision and acceleration motion in the variable-slit system(VS)of photolithography.The presence of microstructure,such as recesses and grooves,on the guideway working surface has been found to improve the loading performance.Nevertheless,the effects on the guideway performance of changing the microstructure on the micron level are not yet clear.The mesh adaptation method,which was proposed by the authors,is employed in this paper to quantitatively study the influences of four microstructure parameters.The effect of tuning these parameters on the loading performance is revealed.The level of impact determines the proposed design process of the parameters.The characteristic feature of the proposed design process is that the working points of carrying capacity,stiffness,and rotational stiffness are unified under twoway adjusting by means of recess parameters.According to the proposed design process and tuning method,the restriction of supply pressure is lifted to a certain extent and the mutual tradeoff among the loading performances is relieved.The experimental results show that the rotational stiffness of the designed guideway,based on the tuned parameters,reached 2.14×10^(4) Nmrad1 and increased by 69.8%.In a scanning test of the applied VS on argon fluoride laser(ArF)photolithography,the average scanning acceleration reached 67.5 m·s^(-2),meeting the design specification. 展开更多
关键词 PHOTOLITHOGRAPHY Multi-throttle aerostatic guideway MICROSTRUCTURE Working point Rotational stiffness
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Numerical analysis of the static performance of an annular aerostatic gas thrust bearing applied in the cryogenic turbo-expander of the EAST subsystem 被引量:1
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作者 Tianwei LAI Bao FU +2 位作者 Shuangtao CHEN Qiyong ZHANG Yu HOU 《Plasma Science and Technology》 SCIE EI CAS CSCD 2017年第2期115-122,共8页
The EAST superconducting tokamak, an advanced steady-state plasma physics experimental device, has been built at the Institute of Plasma Physics, Chinese Academy of Sciences. All the toroidal field magnets and poloida... The EAST superconducting tokamak, an advanced steady-state plasma physics experimental device, has been built at the Institute of Plasma Physics, Chinese Academy of Sciences. All the toroidal field magnets and poloidal field magnets, made of NbTi/Cu cable-in-conduit conductor, are cooled with forced flow supercritical helium at 3.8 K. The cryogenic system of EAST consists of a 2 kW/4 K helium refrigerator and a helium distribution system for the cooling of coils, structures, thermal shields, bus-lines, etc. The high-speed turbo-expander is an important refrigerating component of the EAST cryogenic system. In the turbo-expander, the axial supporting technology is critical for the smooth operation of the rotor bearing system. In this paper, hydrostatic thrust bearings are designed based on the axial load of the turbo-expander. Thereafter, a computational fluid dynamics-based numerical model of the aerostatic thrust bearing is set up to evaluate the bearing performance. Tilting effect on the pressure distribution and bearing load is analyzed for the thrust beating. Bearing load and stiffness are compared with different static supply pressures. The net force from the thrust bearings can be calculated for different combinations of bearing clearance and supply pressure. 展开更多
关键词 EAST helium cryogenic system aerostatic thrust beating INCLINATION bearing load
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Modeling of disturbance torque in an aerostatic bearings-based nano-satellite simulator 被引量:1
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作者 LIU Yanfang HUO Mingying QI Naiming 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2018年第3期618-624,共7页
The disturbance torque of aerostatic bearings is in the same order of the reaction wheel, which causes difficulty in evaluation of the designed attitude control strategy of a nano-satellite based on the aerostatic bea... The disturbance torque of aerostatic bearings is in the same order of the reaction wheel, which causes difficulty in evaluation of the designed attitude control strategy of a nano-satellite based on the aerostatic bearing. Two approaches are proposed to model the disturbance torque. Firstly, the gravity induced moment,the vortex torque, and the damping moment are modeled separately. However, the vortex torque and the damping moment are coupled with each other as both of them are caused by the viscosity. In the second approach, the coupling effect is considered. A nano-satellite is constructed based on aerostatic bearing. The time history of the free rotation rate from an initial speed is measured by the gyro, which is further used to calculate the rotation angle and acceleration. The static vortex torque is measured via the removable micro-torque measurement system. Based on these data, the model parameters are identified and modeling errors are presented. Results show that the second model is more precise.The root mean squire error is less than 0.5×10^(-4) N·m and the relative error of the static vortex torque is 0.16%. 展开更多
关键词 aerostatic bearing disturbance torque vortex torque spacecraft simulator modeling and identification
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Study of the aerostatic and aerodynamic stability of super long-span cable-stayed bridges 被引量:2
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作者 Zhang Xinjun Sun Hailing 《Engineering Sciences》 EI 2014年第2期82-92,共11页
With the increase of span length, the bridge tends to be more flexible, and the wind stability be- comes an important problem for the design and construction of super long-span cable-stayed bridges. By taking a super ... With the increase of span length, the bridge tends to be more flexible, and the wind stability be- comes an important problem for the design and construction of super long-span cable-stayed bridges. By taking a super long-span cable-stayed bridge with a main span of 1 400 m as example, the aerostatic and aerodynamic stability of the bridge are investigated by three-dimensional nonlinear aerostatic and aerodynamic stability analy- sis, and the results are compared with those of a suspension bridge with a main span of 1 385 m, and from the aspect of wind stability, the feasibility of using cable-stayed bridge in super long-span bridge with a main span above l 000 m is discussed. In addition, the influences of design parameters including the depth and width of the girder, the tower structure, the tower height-to-span ratio, the side-to-main span ratio, the auxiliary piers in the side span and the anchorage system of stay cables, etc on the aerostatic and aerodynamic stability of su- per long-span cable-stayed bridges are investigated numerically; the key design parameters are pointed out, and also their reasonable values are proposed. 展开更多
关键词 super long-span cable-stayed bridge aerostatic stability aerodynamic stability design parameters
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Dynamics modeling and simulation of a saucer-shaped stratospheric aerostat with an under-slung nacelle
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作者 ZHAO Ming XIAO Chang +1 位作者 ZHOU Ping-fang DUAN Deng-ping 《Journal of Central South University》 SCIE EI CAS CSCD 2017年第6期1288-1298,共11页
A new concept stratospheric aerostat is investigated which consists of a saucer-shaped hull, multi-vectored thrusters, and an under-slung nacelle. The design of this aerostat involves tradeoffs between conventional ai... A new concept stratospheric aerostat is investigated which consists of a saucer-shaped hull, multi-vectored thrusters, and an under-slung nacelle. The design of this aerostat involves tradeoffs between conventional airship and high altitude balloon. The sling connection simplifies structure design significantly, but brings challenges for dynamics analysis. Dynamics modeling for this aerostat is a kind of double-body problem with geometric constraint. Nonlinear dynamics model is established by considering the effects of under-slung nacelle. Oscillation behavior of this double-body system is superposed by a long-period oscillation of the hull and a short-period oscillation of the nacelle. The length of sling only influences the short-period oscillation but the mass ratio of nacelle to main body determines the stability of system. Finally, an envelope about mass ratio and maximal open loop forward thrust as well as speed is presented, where the system is stable. 展开更多
关键词 saucer-shaped aerostat double-body under-slung DYNAMICS modeling
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Gas film performance of double-row orifices of aerostatic guideways
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作者 陈东菊 范晋伟 张飞虎 《Journal of Harbin Institute of Technology(New Series)》 EI CAS 2012年第1期50-54,共5页
In order to analyze the performance of aerostatic guidways,the stiffness calculation equation of the aerostatic guideway with two-row orifice has been derived by gas lubrication theory. For the complex structure of th... In order to analyze the performance of aerostatic guidways,the stiffness calculation equation of the aerostatic guideway with two-row orifice has been derived by gas lubrication theory. For the complex structure of the motion guideway and unloading guideway,the frequency of the whole slides in machining direction with gas thickness has been derived. Wavelet transform as a means to process the measured signal of workpiece surface, the frequency characteristics of gas fluctuation of aerostatic guideways has been extracted out from the measured signal,and the errors of the guideway system have been identified according to the power spectral density (PSD) ,and this provide a basis for the identification of machine tool error. 展开更多
关键词 aerostatic guidways gas fluctuations wavelet transform PSD error identification
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Application of non-probabilistic reliability on aerostat capsule
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作者 Zhu Zengqing Liu Guoliang 《High Technology Letters》 EI CAS 2018年第4期417-421,共5页
Aerostat capsule is small sample data,so designing reliability is very difficult to be obtained accurately by conventional probabilistic reliability method. Based on the interval non-probabilistic reliability theory,a... Aerostat capsule is small sample data,so designing reliability is very difficult to be obtained accurately by conventional probabilistic reliability method. Based on the interval non-probabilistic reliability theory,an instability mathematics model of envelope structure is studied,and the calculation formula of interval reliability index is put forward. Through the mechanical experiments of three capsule structures,the experimental results of the interval reliability are obtained. By comparing the theoretical and measured values,it is found that the theoretical reliability index is more conservative. Non-probabilistic reliability method can reflect the reliability degree of the capsule body under different loading conditions,which can provide some guidance for engineering application. 展开更多
关键词 NON-PROBABILISTIC aerostat reliability INDEX CAPSULE
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Advanced aerostatic analysis of long-span suspension bridges
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作者 张新军 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2006年第3期424-429,共6页
As the span length of suspension bridges increases, the diameter of cables and thus the wind load acting on them, the nonlinear wind-structure interaction and the wind speed spatial non-uniformity all increase consequ... As the span length of suspension bridges increases, the diameter of cables and thus the wind load acting on them, the nonlinear wind-structure interaction and the wind speed spatial non-uniformity all increase consequently, which may have unnegligible influence on the aerostatic behavior of long-span suspension bridges. In this work, a method of advanced aerostatic analysis is presented firstly by considering the geometric nonlinearity, the nonlinear wind-structures and wind speed spatial non-uniformity. By taking the Runyang Bridge over the Yangtze River as example, effects of the nonlinear wind-structttre interaction, wind speed spatial non-uniformity, and the cable's wind load on the aerostatic behavior of the bridge are investigated analytically. The results showed that these factors all have important influence on the aerostatic behavior, and should be considered in the aerostatic analysis of long and particularly super long-span suspension bridges. 展开更多
关键词 Long-span suspension bridge aerostatic analysis Nonlinear wind-structure interaction Wind speed spatial non-uniformity Cable's wind load
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An Analysis of Restricting Patterns of Aerostatic Guideways
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作者 张荣山 薄化川 王杨 《Journal of Harbin Institute of Technology(New Series)》 EI CAS 1995年第3期66-70,共5页
The effects of restricting petterns of rectangular aerostatic guideway, restricitng orifce, spread of restricting orifices, size of air cavity and making tiny groove on the air foating surface etc, on the function of ... The effects of restricting petterns of rectangular aerostatic guideway, restricitng orifce, spread of restricting orifices, size of air cavity and making tiny groove on the air foating surface etc, on the function of aerostatic guideway are analyzed by applying the method of finite element. This also provides a theoretical evidence for the design of rectangular guideways. The non-linear pressure equation set of finite element are sovled by using Newton metehod which guarantees quick and satisfactory convergence, high precision computation and wide range of applications. 展开更多
关键词 ss:aerostatic GUIDEWAY load capacity STIFFNESS
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Spectral properties and identification of aerostatic bearings
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作者 Jan Kozánek Ladislav Pust 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2011年第1期63-67,共5页
Modified rotor kit Bently Nevada was used for dynamic characteristics measurements of new developed aerostatic bearings.Mathematical model of these bearings is considered as linear.Model was identified with the help o... Modified rotor kit Bently Nevada was used for dynamic characteristics measurements of new developed aerostatic bearings.Mathematical model of these bearings is considered as linear.Model was identified with the help of harmonic force excitation independently from the speed of journal rotation.The stiffness and damping matrices were identified for different air inlet pressures.The calculated spectral properties allow to determine the stability boundary for suitable variation of model parameters. 展开更多
关键词 aerostatic bearing · Identification · Stiffness · Damping coefficients
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Design, Development and Geometric Error Analysis of an Aerostatic Rotary Table
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作者 Verilton Nunes da Silva Luiz Henrique Melo Silva Nobrega +1 位作者 Fabio de Andrade Barroso Rafael Franklin Alves 《Journal of Mechanics Engineering and Automation》 2016年第3期133-147,共15页
Rotary tables are equipments in precision machinery applied in five-axis Machine Tools and CMM (Coordinate Measuring Machines), offering rotational (C-axis) and tilting motion (A-axis), allowing the obtaining of... Rotary tables are equipments in precision machinery applied in five-axis Machine Tools and CMM (Coordinate Measuring Machines), offering rotational (C-axis) and tilting motion (A-axis), allowing the obtaining of several configurations for manufacturing or inspection of parts with complex geometries. The demand for high accuracy, high efficiency and fewer errors in the positioning of the part in precision machines increases every day, thus ensuring their high confidence and the use of aerostatic bearings enable constructive innovations to the equipment. In this context, this work presents the mechanical design, the development and error analysis of a prototype of an aerostatic rotary table. This study emphasizes the analysis of a prototype that uses the air as a working principle for reducing friction between moving parts, increasing the mechanical efficiency, and its influence of motion error is also discussed based on the experimental results. For the geometrical errors analysis, experimental tests were realized in laboratory using a DBB (Double Ballbar). The tests are performed with only one axis moving, observing the behavior of the system for different feedrate at the C-axis. 展开更多
关键词 Rotary tables aerostatic bearings double ballbar geometric errors coordinate measuring machines.
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Static Characteristic Analysis of Aerostatic Porous Bearing with a Restricted Layer
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作者 YU Zhe YAN Ruzhong +1 位作者 MA Xiaojian ZHANG Haojie 《Journal of Donghua University(English Edition)》 2025年第5期543-549,共7页
To enhance the gas-damping effect and improve the bearing performance,a restricted layer is applied on the surface of aerostatic porous bearings.Based on the gas lubrication theory,a mathematical model of an aerostati... To enhance the gas-damping effect and improve the bearing performance,a restricted layer is applied on the surface of aerostatic porous bearings.Based on the gas lubrication theory,a mathematical model of an aerostatic porous bearing with a restricted layer is established,and two proportional coefficients,a permeability ratio δ and a thickness ratioγ,are proposed.Critical values of δ and γ are determined through sensitivity analyses of complex restriction-layer parameters.The static characteristics of aerostatic porous bearings with a restricted layer or an unrestricted layer are comparatively analyzed by using Fluent simulation.The results show that when δ≈0.005 and γ≈0.010,the load capacity and static stiffness of the restricted-layer aerostatic porous bearing are high;compared with the unrestricted-layer aerostatic porous bearing,the restricted-layer aerostatic porous bearing has a lower sensitivity to changes in the air supply area.The existence of the restricted layer not only enhances the throttling effect and reduces the mass flow rate,but also effectively improves the static stiffness of the bearing. 展开更多
关键词 aerostatic porous bearing restricted layer static characteristic critical coefficient
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斜风下三塔斜拉桥抗风稳定性研究 被引量:1
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作者 张新军 冷宇涵 李寒妍 《浙江工业大学学报》 北大核心 2025年第2期229-236,共8页
采用斜风下大跨度桥梁三维空气静力和动力稳定性分析程序,以主跨1400 m的三塔斜拉桥设计方案为研究对象,分析其动力特性和斜风下的结构稳定性(包括空气静力和动力稳定性),揭示斜风下三塔斜拉桥空气静力和动力失稳的特点及其主要影响因... 采用斜风下大跨度桥梁三维空气静力和动力稳定性分析程序,以主跨1400 m的三塔斜拉桥设计方案为研究对象,分析其动力特性和斜风下的结构稳定性(包括空气静力和动力稳定性),揭示斜风下三塔斜拉桥空气静力和动力失稳的特点及其主要影响因素。研究结果表明:三塔斜拉桥结构柔性显著,竖向刚度和横向刚度均很小,对横桥向风作用敏感;三塔斜拉桥呈现出竖向弯曲和扭转耦合的空气静力失稳形态,斜风分解法会高估三塔斜拉桥的空气静力稳定性,斜风效应对三塔斜拉桥的空气静力稳定性的影响随着风偏角的增大逐渐增大,故对三塔斜拉桥的空气静力稳定性的准确评估必须采用斜风下大跨度桥梁三维空气静力分析方法;斜风分解法会高估或低估三塔斜拉桥的空气动力稳定性,斜风效应和静风效应均会降低三塔斜拉桥的空气动力稳定性,而斜风和静风效应的综合作用将进一步降低三塔斜拉桥的空气动力稳定性。因此,分析三塔斜拉桥空气动力稳定性时必须考虑斜风和静风效应的综合影响。 展开更多
关键词 斜风 三塔斜拉桥 动力特性 空气静力稳定性 空气动力稳定性
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多种制造误差对静压气体静平衡装置的涡流力矩影响
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作者 刘占生 杨宜顺 +1 位作者 于树博 孙原理 《润滑与密封》 北大核心 2025年第3期1-11,共11页
以气浮式转子静平衡装置为研究对象,开展多种制造误差对静平衡装置静态特性以及涡流力矩的影响规律的研究。研究发现:静平衡装置的涡流力矩随节流孔偏转角度误差增大呈线性增大,但承载力变化较小;节流孔直径误差增大时,涡流力矩值与承... 以气浮式转子静平衡装置为研究对象,开展多种制造误差对静平衡装置静态特性以及涡流力矩的影响规律的研究。研究发现:静平衡装置的涡流力矩随节流孔偏转角度误差增大呈线性增大,但承载力变化较小;节流孔直径误差增大时,涡流力矩值与承载力值均同比线性增大;随着表面圆度偏差值的增大,涡流力矩的增大速率逐渐变大,当表面圆度为正偏差时能增大承载效果,负偏差时则相反;当静平衡装置采用环面节流形式时,考虑表面圆度误差、节流孔偏转角度误差、节流孔直径误差,最大涡流力矩值分别可至5.99×10^(-3)、1.65×10^(-4)、6.42×10^(-5) N·m,因此在实际加工过程中应依次保证静平衡装置的表面圆度误差、节流孔偏转角度误差、节流孔直径误差均满足加工要求;相同误差下锥腔节流结构下的力矩值和变化速率均大于环面节流,因此静平衡装置应避免使用锥腔结构。针对存在表面圆度误差的静平衡装置,采用节流孔独立供气方式,进行力矩补偿,补偿比例可达52.33%,力矩补偿效果显著。 展开更多
关键词 静压气体静平衡装置 静态特性 涡流力矩 制造误差 表面圆度误差
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三塔斜拉-悬吊协作体系桥颤振稳定性研究
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作者 张新军 陈冰泽 周楠 《浙江工业大学学报》 北大核心 2025年第3期244-250,共7页
采用斜风下大跨度桥梁三维全模态颤振分析程序,分析1 400 m主跨的三塔斜拉-悬吊协作体桥设计方案的动力特性和斜风下的颤振稳定性,并与相同主跨的双塔斜拉-悬吊协作体系桥和三塔悬索桥进行对比分析,揭示其颤振性能及主要影响因素。研究... 采用斜风下大跨度桥梁三维全模态颤振分析程序,分析1 400 m主跨的三塔斜拉-悬吊协作体桥设计方案的动力特性和斜风下的颤振稳定性,并与相同主跨的双塔斜拉-悬吊协作体系桥和三塔悬索桥进行对比分析,揭示其颤振性能及主要影响因素。研究结果表明:三塔斜拉-悬吊协作体系桥结构柔性大,竖向刚度和横向刚度均很小,对斜风作用敏感;各风攻角下,颤振临界风速随着风偏角的增大均没有呈现如斜风分解法所述的余弦变化特征,其颤振稳定性可能在斜风下更差;斜风效应对颤振稳定性影响较小,静风效应则显著降低斜风下的颤振稳定性,总体平均降幅达到11.59%,在考虑斜风和静风作用的综合影响后,降幅更加显著,达到11.85%;虽然相较于双塔斜拉-悬吊协作体系桥,三塔斜拉-悬吊协作体系桥的结构刚度和斜风下的颤振稳定性均有所下降,但是比相同主跨的三塔悬索桥有明显提高,是一种大跨度多塔缆索承重桥梁适宜的结构型式。 展开更多
关键词 斜风 三塔斜拉-悬吊协作体系桥 颤振稳定性 动力特性 静风效应
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