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Research on fluid motion characteristics and structural evolution in reciprocating mixing tanks
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作者 Li Wang Shibo Wang +2 位作者 Huiqiang Yang Yuling Zhai Jianxin Xu 《Chinese Journal of Chemical Engineering》 2025年第3期120-134,共15页
A new stirring method,reciprocating stirring,is developed by incorporating a periodic axial reciprocating motion into conventional stirring.This study employs computational fluid dynamics methods,utilizing volume of f... A new stirring method,reciprocating stirring,is developed by incorporating a periodic axial reciprocating motion into conventional stirring.This study employs computational fluid dynamics methods,utilizing volume of fluid and user-defined functions to control and analyze the flow field characteristics in a reciprocating stirred tank.Compared to conventional stirring,reciprocating stirring increases the overall fluid velocity by approximately 7.9%,turbulent kinetic energy(TKE)by 35.9%to 45.6%,and the turbulent dissipation rate by 10.6%to 15.7%.The primary reason is the dynamic integration of multiple flow regions,which enhances fluid interface interactions.Additionally,the study investigates the dynamic evolution of the vortex structure,uncovering the correlation between the impeller's start-stop behavior and the vortex area.The optimal impeller plate designs,forward sine-4/12D and reverse sine-5/12D,were determined based on the effective area of TKE.Reciprocating stirring,in comparison to conventional stirring,enhances secondary flow intensity by 67.3%to 93.7%and shortens mixing time by 56.6%to 173.0%. 展开更多
关键词 reciprocating stirring Numerical simulation VORTEX Chaotic properties Mixing enhancement
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Deep Fusion of Intrinsic Vibration Information and Grassmann Manifold-based Similarity for Fault Identification of Reciprocating Compressor
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作者 Ying Zhang Jinchen Ji Xiaowang Chen 《Journal of Dynamics, Monitoring and Diagnostics》 2025年第1期1-10,共10页
This paper introduces a new method based on deep belief networks(DBNs)to integrate intrinsic vibration information and assess the similarity of subspaces established on the Grassmann manifold for intelligent fault dia... This paper introduces a new method based on deep belief networks(DBNs)to integrate intrinsic vibration information and assess the similarity of subspaces established on the Grassmann manifold for intelligent fault diagnosis of a reciprocating compressor(RC).Initially,raw vibration signals undergo empirical mode decomposition to break them down into multiple intrinsic mode functions(IMFs).This operation can reveal inherent vibration patterns of fault and other components hidden in the original signals.Subsequently,features are refined from all the IMFs and concatenated into a high-dimensional representative vector,offering localized and comprehensive insights into RC operation.Through DBN,the fault-sensitive information is further refined from the features to enhance their performance in fault identification.Finally,similarities among subspaces on the Grassmann manifold are computed to match fault types.The efficacy of the method is validated usingfield data.Comparative analysis with traditional approaches for feature dimension reduction,feature extraction,and Euclidean distance-based fault identification underscores the effectiveness and superiority of the proposed method in RC fault diagnosis. 展开更多
关键词 deep belief network empirical mode decomposition fault diagnosis Grassmann manifold intrinsic vibration reciprocating compressor
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Modelling and experimental investigation of micro-dimpled structures milling with spiral trajectory tool reciprocating motion
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作者 Guangzhou WANG Linjie ZHAO +3 位作者 Qi LIU Xiguang LI Yazhou SUN Mingjun CHEN 《Chinese Journal of Aeronautics》 2025年第2期577-596,共20页
To mill fine and well-defined micro-dimpled structures,a machining manner of spiral trajectory tool reciprocating motion,where the tool repeats the process of‘feed milling–retract–cutting feed–feed milling again’... To mill fine and well-defined micro-dimpled structures,a machining manner of spiral trajectory tool reciprocating motion,where the tool repeats the process of‘feed milling–retract–cutting feed–feed milling again’along the spiral trajectory,was proposed.From the kinematics analysis,it is found that the machining quality of micro-dimpled structures is highly dependent on the machining trajectory using spiral trajectory tool reciprocating motion.To reveal this causation,simulation modelling and experimental studies were carried out.A simulation model was developed to quantitatively and qualitatively investigate the influence of the trajectory discretization strategies(constant-angle and constant-arc length)and parameters(discrete angle,discrete arc length,and pitch)on surface texture and residual height of micro-dimpled structures.Subsequently,micro-dimpled structures were milled under different trajectory discretization strategies and parameters with spiral trajectory tool reciprocating motion.A comprehensive comparison between the milled results and simulation analysis was made based on geometry accuracy,surface morphology and surface roughness of milled dimples.Meanwhile,the errors and factors affecting the above three aspects were analyzed.The results demonstrate both the feasibility of the established simulation model and the machining capability of this machining way in milling high-quality micro-dimpled structures.Spiral trajectory tool reciprocating motion provides a new machining way for milling micro-dimpled structures and micro-dimpled functional surfaces.And an appropriate machining trajectory can be generated based on the optimized trajectory parameters,thus contributing to the improvement of machining quality and efficiency. 展开更多
关键词 Tool reciprocating motion Spiral trajectory Micro-dimpled structure MICROMACHINING Simulation modelling with diamond tool Surface texture
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Non-reciprocal Synchronization in Thermal Rydberg Ensembles
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作者 Yunlong Xue Zhengyang Bai 《Chinese Physics Letters》 2026年第1期26-30,共5页
Optical non-reciprocity is a fundamental phenomenon in photonics.It is crucial for developing devices that rely on directional signal control,such as optical isolators and circulators.However,most research in this fie... Optical non-reciprocity is a fundamental phenomenon in photonics.It is crucial for developing devices that rely on directional signal control,such as optical isolators and circulators.However,most research in this field has focused on systems in equilibrium or steady states.In this work,we demonstrate a room-temperature Rydberg atomic platform where the unidirectional propagation of light acts as a switch to mediate time-crystalline-like collective oscillations through atomic synchronization. 展开更多
关键词 atomic synchronization non reciprocal synchronization optical non reciprocity optical isolators thermal Rydberg ensembles directional signal controlsuch time crystalline oscillations unidirectional propagation light
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Low temperature quasi-superplasticity of ZK60 alloy prepared by reciprocating extrusion 被引量:5
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作者 杨文朋 郭学锋 杨凯军 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2012年第2期255-261,共7页
Fine-grained ZK60 alloy was prepared by 2-pass reciprocating extrusion, and the low temperature superplasticity was conducted in a temperature range from 443 to 523 K and an initial strain rate ranging from 3.3×1... Fine-grained ZK60 alloy was prepared by 2-pass reciprocating extrusion, and the low temperature superplasticity was conducted in a temperature range from 443 to 523 K and an initial strain rate ranging from 3.3×10^-4 to 3.3×10-2^s^-1. The results show that the alloy has an equiaxed grain structure with an average grain size of about 5.0μm, and the sizes of broken secondary particles and precipitates are no more than 175 and 50 nm, respectively. The alloy exhibits quasi-superplasticity with a maximum elongation of 270% at 523 K and an initial strain rate of 3.3×10^-4 s^-1. The strain rate sensitivity m is less than 0.2 at 443 and 473 K, and it is 0.42 at 523 K. The apparent activation energies at temperature below 473 K and at 523 K are less than 63.2 and 110.6 kJ/mol, respectively At temperature below 473 K, mainly intragranular sliding contributes to superplastic flow. At 523 K, grain boundary sliding is the dominant deformation mechanism, and dislocation creep controlled by grain boundary diffusion is considered to be the main accommodation mechanism. 展开更多
关键词 ZK60 Mg alloy reciprocating extrusion QUASI-SUPERPLASTICITY intragranular sliding grain boundary sliding
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Sensitivity Analysis for Safety Design Verification of General Aviation Reciprocating Aircraft Engine 被引量:8
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作者 CAO Jiaokun DING Shuiting 《Chinese Journal of Aeronautics》 SCIE EI CSCD 2012年第5期675-680,共6页
This paper presents an application of global sensitivity analysis for system safety analysis of reciprocating aircraft engine. Compared with local sensitivity analysis results, global sensitivity analysis could provid... This paper presents an application of global sensitivity analysis for system safety analysis of reciprocating aircraft engine. Compared with local sensitivity analysis results, global sensitivity analysis could provide more information on parameter inter- actions, which are significant in complex system safety analysis. First, a deterministic aviation reciprocating engine thermody- namics model is developed and parameters of interest are defined as random variables. Then, samples are generated by Monte Carlo method for the parameters used in engine model on the basis of definition of factor distribution. Eventually, results from engine model are generated and importance indices are calculated. Based on the analysis results, design is improved to satisfy the airworthiness requirements. The results reveal that by using global sensitivity analysis, the parameters could be ranked with respect to their importance, including first order indices and total sensitivity indices. By reducing the uncertainty of parameters and adjusting the range of inputs, safety criteria would be satisfied. 展开更多
关键词 sensitivity analysis safety analysis AIRWORTHINESS reciprocating aircraft engine design verification
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Fluid-solid Interaction Model for Hydraulic Reciprocating O-ring Seals 被引量:13
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作者 LIAO Chuanjun HUANG Weifeng +2 位作者 WANG Yuming SUO Shuangfu LIU Ying 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2013年第1期85-94,共10页
Elastohydrodynamic lubrication characteristics of hydraulic reciprocating seals have significant effects on sealing and tribology performances of hydraulic actuators, especially in high parameter hydraulic systems. On... Elastohydrodynamic lubrication characteristics of hydraulic reciprocating seals have significant effects on sealing and tribology performances of hydraulic actuators, especially in high parameter hydraulic systems. Only elastic deformations of hydraulic reciprocating seals were discussed, and hydrodynamic effects were neglected in many studies. The physical process of the fluid-solid interaction effect did not be clearly presented in the existing fluid-solid interaction models for hydraulic reciprocating O-ring seals, and few of these models had been simultaneously validated through experiments. By exploring the physical process of the fluid-solid interaction effect of the hydraulic reciprocating O-ring seal, a numerical fluid-solid interaction model consisting of fluid lubrication, contact mechanics, asperity contact and elastic deformation analyses is constructed with an iterative procedure. With the SRV friction and wear tester, the experiments are performed to investigate the elastohydrodynamic lubrication characteristics of the O-ring seal. The regularity of the friction coefficient varying with the speed of reciprocating motion is obtained in the mixed lubrication condition. The experimental result is used to validate the fluid-solid interaction model. Based on the model, The elastohydrodynamic lubrication characteristics of the hydraulic reciprocating O-ring seal are presented respectively in the dry friction, mixed lubrication and full film lubrication conditions, including of the contact pressure, film thickness, friction coefficient, liquid film pressure and viscous shear stress in the sealing zone. The proposed numerical fluid-solid interaction model can be effectively used to analyze the operation characteristics of the hydraulic reciprocating O-ring seal, and can also be widely used to study other hydraulic reciprocating seals. 展开更多
关键词 reciprocating O-ring seal elastohydrodynamic lubrication finite-element method fluid-solid interaction mixed lubrication SRV friction and wear tester
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A new diagnostic method for identifying working conditions of submersible reciprocating pumping systems 被引量:4
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作者 Yu Deliang Zhang Yongming +2 位作者 Bian Hongmei Wang Xinmin Qi Weigui 《Petroleum Science》 SCIE CAS CSCD 2013年第1期81-90,共10页
The submersible pumping unit is a new type of pumping system for lifting formation fluids from onshore oil wells, and the identification of its working condition has an important influence on oil production. In this p... The submersible pumping unit is a new type of pumping system for lifting formation fluids from onshore oil wells, and the identification of its working condition has an important influence on oil production. In this paper we proposed a diagnostic method for identifying the working condition of the submersible pumping system. Based on analyzing the working principle of the pumping unit and the pump structure, different characteristics in loading and unloading processes of the submersible linear motor were obtained at different working conditions. The characteristic quantities were extracted from operation data of the submersible linear motor. A diagnostic model based on the support vector machine (SVM) method was proposed for identifying the working condition of the submersible pumping unit, where the inputs of the SVM classifier were the characteristic quantities. The performance and the misjudgment rate of this method were analyzed and validated by the data acquired from an experimental simulation platform. The model proposed had an excellent performance in failure diagnosis of the submersible pumping system. The SVM classifier had higher diagnostic accuracy than the learning vector quantization (LVQ) classifier. 展开更多
关键词 Submersible reciprocating pump working condition failure diagnosis linear motor characteristic quantity support vector machine misjudgment rate
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Experimental Studies of Electrostatic Fluctuations and Turbulent Transport in the Boundary of J-TEXT Tokamak Using Reciprocating Probe 被引量:3
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作者 CHEN Zhipeng SUN Yue +4 位作者 WANG Zhijiang YANG Zhoujun DING Yonghua ZHUANG Ge J-TEXT team 《Plasma Science and Technology》 SCIE EI CAS CSCD 2012年第12期1041-1047,共7页
As the basic of a deeper investigation on the turbulent transport, the fluctuation property in the boundary of the newly-reconstructed Joint Texas Experimental Tokamak (J- TEXT) is studied experimentally using the r... As the basic of a deeper investigation on the turbulent transport, the fluctuation property in the boundary of the newly-reconstructed Joint Texas Experimental Tokamak (J- TEXT) is studied experimentally using the reciprocating Langmuir four-tip probe, which has been built and operated as the primary diagnostic tool in the boundary of J-TEXT tokamak. In this paper, spatial profiles of the plasma-edge parameters are obtained, such as electron temperature, plasma density, plasma potential, poloidal electric field and their fluctuations. The results indicate the existence of a Er ×BT shear layer at the vicinity of last closed flux surface (LCFS), with the fluctuations suppressed in varying degrees. The turbulence-induced particle and energy fluxes can be calculated by the local plasma parameters above. Convection dominates the cross-field turbulent transport in boundary plasma. Electrostatic fluctuations properties are also studied in detail with the help of numerical analysis. Statistical analysis on density fluctuation shows that, the intermittency can affect the turbulence in the scrape-off layer (SOL). 展开更多
关键词 electrostatic fluctuations anomalous transport J-TEXT reciprocating Lang- muir probe
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MICROSTRUCTURE OF Mg-6.4Zn-1.1Y ALLOY FABRICATED BY RAPID SOLIDIFICATION AND RECIPROCATING EXTRUSION 被引量:8
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作者 Z.M.Zhang C.J.Xu X.F.Guo 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 2008年第1期30-36,共7页
In order to explore the methods to prepare high-strength quasicrystal-reinforced magnesium alloys,the flakes of rapidly solidified Mg-6.4Zn-1.1 Y magnesium alloy with a thickness of 50-60μm were obtained by a melt sp... In order to explore the methods to prepare high-strength quasicrystal-reinforced magnesium alloys,the flakes of rapidly solidified Mg-6.4Zn-1.1 Y magnesium alloy with a thickness of 50-60μm were obtained by a melt spinning single-roller device,and the flakes were then processed into rods by reciprocating extrusion and direct extrusion.The microstructure of the alloy was analyzed by optical microscope and SEM,and the constituent phases were identified by XRD.Phase transformation and its onset temperature were determined by differential thermal analyzer(DTA).The analysis result shows that rapid solidification for Mg-6.4Zn-I.IY alloy can inhibit the eutectic reactions,broaden the solid solubility of Zn inα-Mg solute solution,and impede the formation of Mg3 Y2Zn3 and MgZn2 compounds,and thus help the icosahedral Mg3 YZn6 quasicrystal formed directly from the melt.The microstructure of the flakes consists of theα-Mg solid solution and icosahedral Mg3 YZn6 quasicrystal.Dense rods can be made from the flakes by two-pass reciprocating extrusion and direct extrusion.The interfaces between flakes in the rods can be welded and jointed perfectly.During the reciprocating extrusion and direct extrusion process,more Mg3 YZn6 compounds are precipitated and distributed uniformly,whereas the rods possess fine microstructures inherited from rapidly solidified flakes.The rods contain only two phases:α-magnesium solid solution as matrix and fine icosahedral Mg3 YZn6 quasicrystal which disperses uniformly in the matrix. 展开更多
关键词 Magnesium alloy Rapid solidification reciprocating extrusion QUASICRYSTAL
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STUDY ON RECIPROCATING SEALS FOR A LARGER DIAMETER AXIAL PISTON 被引量:2
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作者 YangJian YangHuayong XuBing 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2004年第1期152-155,共4页
Sealing performance of the reciprocating seals on a larger diameter (100 mmin diameter) axial piston is theoretically investigated. Based on the characteristics of theclearance flow between the seal and the piston, re... Sealing performance of the reciprocating seals on a larger diameter (100 mmin diameter) axial piston is theoretically investigated. Based on the characteristics of theclearance flow between the seal and the piston, reasonable boundary conditions for Navier-Stokesequations are determined and the equations are modified, so that the final equations can describethe real flow state of the clearance flow. Through combining the final equations with finite elementmethod, the pressure distributions within the clearance field during the reciprocating motion ofthe piston and the leakage rate with the pressure are studied. The deflections of the seal whichaffect sealing performance are calculated as well. Sealing performance of piston seals using oil asthe working liquid is compared with using water. It is concluded that the seal using water as theworking liquid is under dry friction, which cannot be dealt with the theory of fluid mechanics. Theseal structure is only acceptable using oil as the working liquid.. 展开更多
关键词 Larger diameter axial piston reciprocating seals Sealing performance
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Valve Dynamic and Thermal Cycle Model in Stepless Capacity Regulation for Reciprocating Compressor 被引量:9
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作者 JIN Jiangming HONG Weirong 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2012年第6期1151-1160,共10页
The existing researches of stepless capacity regulation system by depressing the suction valve for reciprocation compressor always adopt hypothesis that the compressor valves are open or close instantaneously,the valv... The existing researches of stepless capacity regulation system by depressing the suction valve for reciprocation compressor always adopt hypothesis that the compressor valves are open or close instantaneously,the valve dynamic has not been taken account into thermal cycle computation,the influence of capacity regulation system on suction valves dynamic performance and cylinder thermal cycle operation has not been considered.This paper focuses on theoretical and experimental analysis of the valve dynamic and thermal cycle for reciprocating compressor in the situation of stepless capacity regulation.The valve dynamics equation,gas forces for normal and back flow,and the cylinder pressure varying with suction valve unloader moment during compression thermal cycle are discussed.A new valve dynamic model based on L-K real gas state equation for reciprocating compressor is first deduced to reduce the calculation errors induced by the ideal gas state equation.The variations of valve dynamic and cylinder pressure during part of compression stroke are calculated numerically.The calculation results reveal the non-normal thermal cycle and operation condition of compressor in stepless capacity regulation situation.The numerical simulation results of the valve dynamic and thermal cycle parameters are also verified by the stepless capacity regulation experiments in the type of 3L-10/8 reciprocating compressor.The experimental results agree with the numerical simulation results,which show that the theoretical models proposed are effective and high-precision.The proposed theoretical models build the theoretical foundation to design the real stepless capacity regulation system. 展开更多
关键词 reciprocating compressor valve dynamic thermal cycle model stepless capacity regulation
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RECIPROCATING EXTRUSION OF IN SITU Mg_(2)Si REINFORCED Mg-Al BASED COMPOSITE 被引量:9
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作者 Z.M.Zhang C.J.Xu +1 位作者 X.F.Guo S.Z.Jia 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 2008年第3期169-177,共9页
Mg_(2)Si reinforced Mg-Al based composite with high amount o/silicon was prepared by permanent mould casting,and then extruded by reciprocating extrusion(RE)after the composite was processed by homogenization heat tre... Mg_(2)Si reinforced Mg-Al based composite with high amount o/silicon was prepared by permanent mould casting,and then extruded by reciprocating extrusion(RE)after the composite was processed by homogenization heat treatment.The effect of RE processing on the morphology and size of M92Si and the mechanical properties of the com-posite were investigated,to develop new ways to refine the M928i phase and improve its shape.The result showed that RE was very useful in refining the M92Si phase.The more the RE processing passes,the better the refining effect would be.Moreover,the uniform distribution of M928i phases would be more in the composite.After the composite was processed by RE for 12 passes,most M92Si phases were equiaxed,with granular diameter below 20μm,and distributed uniformly in the matrix of the composite.The mechanical properties of the composite could be increased prominently by RE processing,and were much higher than that in the as-cast state.As the temperature rises,the tensile strength is reduced.For the composite RE processed for 12 passes,the tensile strength,yield strength,and elongation are 325.9 MPa,211.4 MPa,and 3.3%at room temperature,whereas,288.2 MPa,,207.7 MPa,and 7.8%,respectively,at 150℃.In comparison with the properties at room temperature,the tensile strength and yield strength are high and only decrease by 11.6%and 1.8%at 150℃.The M928i reinforced Mg-Al based composite possesses good heat resistance at 150℃.The excellent resistance to effect of heat is attributed to the high melting tempera-ture and good thermal stability of fine Mg2Si phases,which are distributed uniformly in the composite,and effectively hinder the grain boundary gliding and dislocation movement. 展开更多
关键词 reciprocating extrusion Magnesium alloy In situ composite Elevated temperature property
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Study on effect analysis and parameter optimizing of stepless capacity control system on reciprocating compressors 被引量:2
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作者 王瑶 Zhang Jinjie +1 位作者 Zhou Chao Liu Wenhua 《High Technology Letters》 EI CAS 2018年第1期1-9,共9页
An improved model of reciprocating compressor operation cycle with a stepless capacity control system is presented and influence of the key parameters of the system is evaluated. In the stepless capacity control syste... An improved model of reciprocating compressor operation cycle with a stepless capacity control system is presented and influence of the key parameters of the system is evaluated. In the stepless capacity control system of a reciprocating compressor,mechanical unloaders are used to partially hold suction valves open for a certain time during the compression stroke. The typical working process of the reciprocating compressor is changed by capacity regulation apparatus. However,some critical parameters like the hydraulic force acting at the unloader have not been rigorously studied in previous researches. Here an improved numerical model of a double acting reciprocating compressor under the control stepless capacity is proposed and verified by experimental trials. Numerical simulations are carried out to select and evaluate the acting force which definitely has an influence on indicator diagrams of compressors. It is observed that the optimized range of 350 N to 380 N is preferable for the unloader force such that the intensity of opening and closing impacts are minimized. 展开更多
关键词 reciprocating COMPRESSOR STEPLESS capacity CONTROL NUMERICAL MODEL parametersoptimization
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Motion State Analysis and Seal Ability Study on the Magnetic Fluid Seal of Reciprocating Shaft 被引量:5
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作者 LI De-cai HONG Jian-ping +1 位作者 YANG Qing-xin WANG Xiu-ring 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2002年第2期115-120,共6页
The authors have studied the motion mechanism of the magnetic fluid in a reciprocating seal gap,on the basis of which the authors obtain an anti pressure formula of the reciprocating shaft magnetic fluid seal from gen... The authors have studied the motion mechanism of the magnetic fluid in a reciprocating seal gap,on the basis of which the authors obtain an anti pressure formula of the reciprocating shaft magnetic fluid seal from general Navier Stokes equation.In order to verify the correctness of the anti pressure formula,the authors have calculated the magnetic field distribution of seal structure and have gotten the maximum still anti pressure.Finally,the authors have verified the influence of speed and stroke on the seal anti pressure. 展开更多
关键词 magnetic fluid reciprocating seal anti pressure
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Magnetic Force Transmission of a Reciprocating Motion 被引量:2
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作者 Qing-chang Tan Fu-sheng Zheng Jian-gang Li 《Journal of Bionic Engineering》 SCIE EI CSCD 2008年第2期143-147,共5页
Magnetic force transmission of a reciprocating motion is studied by theoretical analysis and experiment. A mathematical model for calculating the magnetic force is derived using the theory of equivalent magnetic charg... Magnetic force transmission of a reciprocating motion is studied by theoretical analysis and experiment. A mathematical model for calculating the magnetic force is derived using the theory of equivalent magnetic charges. An experimental rig is constructed to test the transmission and the model is verified by experiment. Effect of the transmission parameters on the magnetic force is analyzed theoretically from the model, and characteristic of the transmission is studied experimentally. Since the transmission is without direct contact between two elements, it is suitable for application in an organism. 展开更多
关键词 reciprocating motion magnetic force TRANSMISSION
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An Integrated Dynamic Model of Ocean Mining System and Fast Simulation of Its Longitudinal Reciprocating Motion 被引量:3
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作者 戴瑜 刘少军 《China Ocean Engineering》 SCIE EI CSCD 2013年第2期231-244,共14页
An integrated dynamic model of China's deep ocean mining system is developed and the fast simulation analysis of its longitudinal reciprocating motion operation processes is achieved. The seafloor tracked miner is bu... An integrated dynamic model of China's deep ocean mining system is developed and the fast simulation analysis of its longitudinal reciprocating motion operation processes is achieved. The seafloor tracked miner is built as a three-dimensional single-body model with six-degree-of-freedom. The track-terrain interaction is modeled by partitioning the track-terrain interface into a certain number of mesh elements with three mutually perpendicular forces, including the normal force, the longitudinal shear force and the lateral shear force, acting on the center point of each mesh element. The hydrodynamic force of the miner is considered and applied. By considering the operational safety and collection efficiency, two new mining paths for the miner on the seafloor are proposed, which can be simulated with the established single-body dynamic model of the miner. The pipeline subsystem is built as a three-dimensional multi-body discrete element model, which is divided into rigid elements linked by flexible connectors. The flexible connector without mass is represented by six spring-damper elements. The external hydrodynamic forces of the ocean current from the longitudinal and lateral directions are both considered and modeled based on the Morison formula and applied to the mass center of each corresponding discrete rigid element. The mining ship is simplified and represented by a general kinematic point, whose heave motion induced by the ocean waves and the longitudinal and lateral towing motions are considered and applied. By integrating the single-body dynamic model of the miner and the multi-body discrete element dynamic model of the pipeline, and defining the kinematic equations of the mining ship, the integrated dynamic model of the total deep ocean mining system is formed. The longitudinal reciprocating motion operation modes of the total mining system, which combine the active straight-line and turning motions of the miner and the ship, and the passive towed motions of the pipeline, are proposed and simulated with the developed 3D dynamic model. Some critical simulation results are obtained and analyzed, such as the motion trajectories of key subsystems, the velocities of the buoyancy modules and the interaction forces between subsystems, which in a way can provide important theoretical basis and useful technical reference for the practical deep ocean mining system analysis, operation and control. 展开更多
关键词 deep ocean mining system single-body model track-terrain interaction model discrete element model longitudinal reciprocating motion operation mode dynamic simulation analysis
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Two Dimensional Nanoscale Reciprocating Sliding Contacts of Textured Surfaces 被引量:4
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作者 TONG Ruiting LIU Geng LIU Tianxiang 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2016年第3期531-538,共8页
Detailed behaviors of nanoscale textured surfaces during the reciprocating sliding contacts are still unknown although they are widely used in mechanical components to improve tribological characteristics.The current ... Detailed behaviors of nanoscale textured surfaces during the reciprocating sliding contacts are still unknown although they are widely used in mechanical components to improve tribological characteristics.The current research of sliding contacts of textured surfaces mainly focuses on the experimental studies,while the cost is too high.Molecular dynamics(MD)simulation is widely used in the studies of nanoscale single-pass sliding contacts,but the CPU cost of MD simulation is also too high to simulate the reciprocating sliding contacts.In this paper,employing multiscale method which couples molecular dynamics simulation and finite element method,two dimensional nanoscale reciprocating sliding contacts of textured surfaces are investigated.Four textured surfaces with different texture shapes are designed,and a rigid cylindrical tip is used to slide on these textured surfaces.For different textured surfaces,average potential energies and average friction forces of the corresponding sliding processes are analyzed.The analyzing results show that"running-in"stages are different for each texture,and steady friction processes are discovered for textured surfaces II,III and IV.Texture shape and sliding direction play important roles in reciprocating sliding contacts,which influence average friction forces greatly.This research can help to design textured surfaces to improve tribological behaviors in nanoscale reciprocating sliding contacts. 展开更多
关键词 NANOSCALE reciprocating sliding contacts textured surface multiscale method
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MICROSTRUCTURES AND PROPERTIES OF RECIPROCATINGLY EXTRUDED Mg-6.4Zn-1.1Y ALLOYS 被引量:4
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作者 Z.M.Zhang C.J.Xu X.F.Guo 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 2008年第1期37-42,共6页
An icosahedral Mg3 YZn6 quasicrystalline phase can be produced in Mg-Zn-Y system alloys when a proper amount of Zn and Y is contained,and it is feasible to prepare the quasicrystal phase-reinforced low-density magnesi... An icosahedral Mg3 YZn6 quasicrystalline phase can be produced in Mg-Zn-Y system alloys when a proper amount of Zn and Y is contained,and it is feasible to prepare the quasicrystal phase-reinforced low-density magnesium alloy.In this article,phase constituents and the effect of reciprocating extrusion on microstructures and properties of the as-cast Mg-6.4Zn-1.1 Y alloy are analyzed.The microstructure of the as-cast Mg-6.4Zn-1.1 Y alloy consists of theα-Mg solid solution,icosahedral Mg3YZn6 quasicrystal,and Mg3 Y2Zn3 and MgZn2 compounds.After the alloy was reciprocatingly extruded for four passes,grains were refined,Mg3 Y2 Zn3 and MgZn2 phases dissolved into the matrix,whereas,Mg3 YZn6 precipitated and distributed uniformly.The alloy possesses the best performance at this state;the tensile strength,yield strength,and elongation are 323.4 MPa,258.2 MPa,and 19.7%,respectively.In comparison with that of the as-cast alloy,the tensile strength,yield strength,and elongation of the reciprocatingly extruded alloy increase by 258.3%,397.5%,and 18 times,respectively.It is concluded that reciprocating extrusion can substantially improve the properties of the as-cast Mg-6.4Zn-1.1 Y alloy,particularly for elongation.The high performance of the Mg-6.4Zn-1.1 Y alloy after reciprocating extrusion can be attributed to dispersion strengthening and grain-refined microstructures. 展开更多
关键词 reciprocating extrusion Mg-Zn-Y alloy Icosahedral quasicrystal
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Reciprocating Probe Measurements of L-H Transition in LHCD H-Mode on EAST 被引量:1
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作者 刘鹏 徐国盛 +6 位作者 汪惠乾 蒋敏 王亮 张炜 刘少承 颜宁 丁斯晔 《Plasma Science and Technology》 SCIE EI CAS CSCD 2013年第7期619-622,共4页
As the power available in the initial phase of the ITER operation will be limited, accessing the high confinement mode (H-mode) with low heating power will be a critical issue. In the recent experiment on EAST, the ... As the power available in the initial phase of the ITER operation will be limited, accessing the high confinement mode (H-mode) with low heating power will be a critical issue. In the recent experiment on EAST, the H-mode was obtained for the first time with lower hybrid current drive (LHCD) wave only. Reciprocating Langmuir probe measurements at the outer midplane showed that the electron density ne and electron tempel:ature Te in the scrape-off layer (SOL) were significantly reduced in the ELM-free phase, resulting in the increase of lower-hybrid wave (LHW) reflection. It was found that the power loss Ploss was comparable during the L-H transition, by comparing the adjacent L-mode and H-mode discharge. The Da emission, Te and ne decreased rapidly in the time scale of about 1 ms, and the radial electric field Er turned positive in this process near the last closed flux surface. Multiple L-H-L transitions were observed during a single shot when the applied LHW power was marginal to the threshold. The floating potential (Vf) had negative spikes corresponding with the Da signal, and Er oscillation evolved into several intermittent negative spikes just before the L-H transition. In some shots, dithering was observed just before the L-H transition. 展开更多
关键词 L-H transition reciprocating probe dithering
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