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Towards a blank design method for manufacturing big-tapered profiled ring disk by spinning-rolling process
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作者 Xuechao LI Lianggang GUO +1 位作者 Xiaoqing CHEN Heng LI 《Chinese Journal of Aeronautics》 2025年第1期70-86,共17页
The big-tapered profiled ring disk is a key component of engines for rockets and missiles.A new forming technology,as called spinning-rolling process,has been proposed previously for the high performance,high efficien... The big-tapered profiled ring disk is a key component of engines for rockets and missiles.A new forming technology,as called spinning-rolling process,has been proposed previously for the high performance,high efficiency and low-cost manufacturing of the component.Blank design is the key part of plastic forming process design.For spinning-rolling process,the shape and size of the blank play a crucial role in process stability,deformation behavior and dimensional accuracy.So this work proposes a blank design method to determine the geometry structure and sizes of the blank.The mathematical model for calculating the blank size has been deduced based on volume conservation and neutral layer length invariance principle.The FE simulation and corresponding trial production of an actual big-tapered profiled ring disk show that the proposed blank design method is applicative.In order to obtain a preferred blank,the influence rules of blank size determined by different deformation degrees(rolling ratio k)on the spinning-rolling process are revealed by comprehensive FE simulations.Overall considering the process stability,circularity of the deformed ring disk and forming forces,a reasonable range of deformation degree(rolling ratio k)is recommended for the blank design of the new spinning-rolling process. 展开更多
关键词 Blank design method Spinning-rolling process Big-tapered profiled ring disk rolling ratio Intelligent FE simulation
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Modeling and Simulation of Radial-Axial Large Ring Rolling 被引量:1
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作者 PAN Li-bo HUA Lin LAN Jian 《Computer Aided Drafting,Design and Manufacturing》 2007年第1期19-24,共6页
Finite element model is constructed according to the principle and characteristics of radial-axial large ring rolling technology. Dynamic explicit finite element method is used to simulate the rolling process. An effe... Finite element model is constructed according to the principle and characteristics of radial-axial large ring rolling technology. Dynamic explicit finite element method is used to simulate the rolling process. An effective modeling method of guide roller is proposed. Simulation indicates that high quality ring product could be obtained when rational rotational speed of rollers and feed rate in the radial and axial rolling are assigned. 展开更多
关键词 large ring radial-axial ring rolling finite element SIMULATION
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Deformation mechanism of cold ring rolling in view of texture evolution predicted by a newly proposed polycrystal plasticity model 被引量:3
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作者 李宏伟 冯璐 杨合 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2013年第12期3729-3738,共10页
An explicit polycrystal plasticity model was proposed to investigate the deformation mechanism of cold ring rolling in view of texture evolution. The model was created by deducing a set of linear incremental controlli... An explicit polycrystal plasticity model was proposed to investigate the deformation mechanism of cold ring rolling in view of texture evolution. The model was created by deducing a set of linear incremental controlling equations within the framework of crystal plasticity theory. It was directly solved by a linear algorithm within a two-level procedure so that its efficiency and stability were guaranteed. A subroutine VUMAT for ABAQUS/Explicit was developed to combine this model with the 3D FE model of cold ring rolling. Results indicate that the model is reliable in predictions of stress-strain response and texture evolution in the dynamic complicated forming process; the shear strain in RD of the ring is the critical deformation mode according to the sharp Goss component ({110}?100?) of deformed ring; texture and crystallographic structure of the ring blank do not affect texture type of the deformed ring;texture evolves rapidly at the later stage of rolling, which results in a dramatically increasing deformation of the ring. 展开更多
关键词 cold ring rolling crystal plasticity texture evolution explicit algorithm
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Comparison of evolution laws of stress and strain fields in hot rolling of titanium alloy large rings with different sizes 被引量:3
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作者 王敏 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2011年第7期1611-1619,共9页
For hot rolling of titanium alloy large rings,evolution laws of stress and strain fields in rings with various sizes were explored and compared based on a reliable coupled thermo-mechanical three-dimensional (3D) fi... For hot rolling of titanium alloy large rings,evolution laws of stress and strain fields in rings with various sizes were explored and compared based on a reliable coupled thermo-mechanical three-dimensional (3D) finite element (FE) model.The results show that for forming processes of different rings,as γ^-(the equivalent distribution ratio of feed amount per revolution of a process) decreases,the final peak Mises stress may transfer from the biting point at the driver roll side to that at the idle roll side,and the final peak equivalent plastic strain may transfer from the outside surface to the inside surface;as L^- (the equivalent deformation zone length of a process) increases,the final peak Mises stress may appear in the middle layer.The final positions of peak Mises stress and equivalent plastic strain are the combined effects of the above two aspects.In the deformation zone of a deformed ring,the surface layers are in the 3D compressive stress state,while the middle layer is in the 1D compressive and 2D tensile stress state or 2D compressive and 1D tensile stress state;the whole ring is in the 1D compressive and 2D tensile strain state. 展开更多
关键词 titanium alloy hot rolling of large rings stress and strain modeling and simulation finite element
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STRESS ANALYSIS OF ROLL RING FOR HIGH SPEED WIRE ROLLING MILLS
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作者 王邦文 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 1995年第1期30+24-30,共8页
This paper introduces a new method for fixing type of the tungsten carbide roll ring for high speed wire rolling mills, and analyses the stresses of the roll ring. The lifetime of roll pass is twice longer that of the... This paper introduces a new method for fixing type of the tungsten carbide roll ring for high speed wire rolling mills, and analyses the stresses of the roll ring. The lifetime of roll pass is twice longer that of the old one. 展开更多
关键词 wire rolling mills tungsten carbide lifetimes/roll ring thermal stress
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Dynamic explicit FE modeling of hot ring rolling process 被引量:17
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作者 王敏 杨合 +2 位作者 孙志超 郭良刚 欧新哲 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2006年第6期1274-1280,共7页
A new FE modeling method of hot ring rolling was presented by solving key technologies such as contact and heat boundary conditions,motion control over guide rolls,and mass scaling.The method has the following feature... A new FE modeling method of hot ring rolling was presented by solving key technologies such as contact and heat boundary conditions,motion control over guide rolls,and mass scaling.The method has the following features:1)the elastic-plastic dynamic explicit approach instead of the static implicit approach is adopted to solve the process so as to greatly improve computational efficiency without sacrificing computational accuracy;2)the coupled thermal-mechanical effect is considered as opposed to the conventional isothermal assumption,which is more practical;3)in contrast to the simplified 2D or local 3D ring model,the full 3D ring is modeled to simulate the process.Based on the FE modeling method,two cases of hot plain ring rolling are simulated in the FEA software ABAQUS/Explicit.The simulation results are compared with the experimental measurements and the good agreement between them is observed regarding the material flow and the temperature distribution of the ring. 展开更多
关键词 HOT ring rolling dynamic EXPLICIT approach COUPLED thermal-mechanical FEM
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Role of Friction in Cold Ring Rolling 被引量:4
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作者 He YANG+, Lianggang GUO and Mei ZHAN College of Materials Science and Engineering, Northwestern Polytechnical University, Xi’an 710072, China 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2005年第6期914-920,共7页
Cold ring rolling is an advanced but complex metal forming process under coupled effects with multi-factors, such as geometry sizes of rolls and ring blank, material, forming process parameters and friction, etc. Amon... Cold ring rolling is an advanced but complex metal forming process under coupled effects with multi-factors, such as geometry sizes of rolls and ring blank, material, forming process parameters and friction, etc. Among these factors, friction between rolls and ring blank plays an important role in keeping the stable forming of cold ring rolling. An analytical method was firstly presented for proximately determining the critical friction coefficient of stable forming and then a method was proposed to determine the critical friction coefficient by combining analytical method with numerical simulation. And the influence of friction coefficient on the quality of end-plane and side spread of ring,rolling force, rolling moment and metal flow characteristic in the cold ring rolling process have been explored using the three dimensional (3D) numerical simulation based on the elastic-plastic dynamic finite element method (FEM) under the ABAQUS software environment, and the results show that increasing the friction on the contact surfaces between rolls and ring blank is useful not only for improving the stability of cold ring rolling but also for improving the geometry and dimension precision of deformed ring. 展开更多
关键词 Cold ring rolling FRICTION Elastic-plastic dynamic explicit FEM ABAQUS
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Effect of annealing cooling rate on microstructure and mechanical property of 100Cr6 steel ring manufactured by cold ring rolling process 被引量:4
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作者 魏文婷 吴敏 《Journal of Central South University》 SCIE EI CAS 2014年第1期14-19,共6页
Pre-heat treatment is a vital step before cold ring rolling and it has significant effect on the microstructure and mechanical properties of rolled rings.The 100Cr6 steel rings were subjected to pre-heat treatment and... Pre-heat treatment is a vital step before cold ring rolling and it has significant effect on the microstructure and mechanical properties of rolled rings.The 100Cr6 steel rings were subjected to pre-heat treatment and subsequent cold rolling process.Scanning electron microscopy and tensile tests were applied to investigate microstructure characteristic and mechanical property variations of 100Cr6 steel rings undergoing different pre-heat treatings.The results indicate that the average diameter of carbide particles,the tensile strength and hardness increase,while the elongation decreases with the decrease of cooling rate.The cooling rate has minor effect on the yield strength of sample.After cold ring rolling,the ferrite matrix shows a clear direction along the rolling direction.The distribution of cementite is more homogeneous and the cementite particles are finer.Meanwhile,the hardness of the rolled ring is higher than that before rolling. 展开更多
关键词 ring rolling ANNEALING cooling rate MICROSTRUCTURE mechanical property
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Microstructural evolution and enhanced mechanical properties of Mg?Gd?Y?Zn?Zr alloy via centrifugal casting, ring-rolling and aging 被引量:5
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作者 Zhenduo Ma Guo Li +6 位作者 Qiang Peng Xiaodong Peng Daolun Chen HanzhuZhang Yan Yang Guobing Wei Weidong Xie 《Journal of Magnesium and Alloys》 SCIE EI CAS CSCD 2022年第1期131-141,共11页
A ring-shaped Mg?8.5 Gd?4 Y?1 Zn?0.4 Zr(wt%) alloy was manufactured via centrifugal casting and ring-rolling process. The effects of accumulative ring-rolling reduction amount on the microstructure, texture, and tensi... A ring-shaped Mg?8.5 Gd?4 Y?1 Zn?0.4 Zr(wt%) alloy was manufactured via centrifugal casting and ring-rolling process. The effects of accumulative ring-rolling reduction amount on the microstructure, texture, and tensile properties of the alloy were investigated. The results indicate that the microstructure of centrifugal cast alloy consists of equiaxed grains and network-like eutectic structure present at grain boundaries. The ring-rolled alloy exhibits a characteristic bimodal microstructure composed of fine dynamic recrystallized(DRXed) grains with weak basal texture and coarse un-DRXed grains with strong basal texture, along with the presence of LPSO phase. With increasing amount of accumulative ring-rolling reduction, the coarse un-DRXed grains are refined via the formation of increasing amount of fine DRXed grains. Meanwhile, the dynamic precipitation of Mg5 RE phase occurs, generating a dispersion strengthening effect. A superior combination of strength and ductility is achieved in the ring-rolled alloy after an accumulative rolling reduction of 80%. The tensile strength of this ring-rolled alloy after peak aging is further enhanced, reaching 511 MPa, while keeping a reasonable ductility. The salient strengthening mechanisms identified include the grain boundary strengthening of fine DRXed grains, dispersion strengthening of dynamic precipitated Mg;RE phase, short fiber strengthening of LPSO lamellae/rods, and precipitation strengthening of nano-sized prismatic β precipitates and basal γ precipitates. 展开更多
关键词 High strength magnesium alloy Centrifugal casting ring rolling AGING Mechanical property
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Soft measurement model of ring's dimensions for vertical hot ring rolling process using neural networks optimized by genetic algorithm 被引量:2
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作者 汪小凯 华林 +3 位作者 汪晓旋 梅雪松 朱乾浩 戴玉同 《Journal of Central South University》 SCIE EI CAS CSCD 2017年第1期17-29,共13页
Vertical hot ring rolling(VHRR) process has the characteristics of nonlinearity,time-variation and being susceptible to disturbance.Furthermore,the ring's growth is quite fast within a short time,and the rolled ri... Vertical hot ring rolling(VHRR) process has the characteristics of nonlinearity,time-variation and being susceptible to disturbance.Furthermore,the ring's growth is quite fast within a short time,and the rolled ring's position is asymmetrical.All of these cause that the ring's dimensions cannot be measured directly.Through analyzing the relationships among the dimensions of ring blanks,the positions of rolls and the ring's inner and outer diameter,the soft measurement model of ring's dimensions is established based on the radial basis function neural network(RBFNN).A mass of data samples are obtained from VHRR finite element(FE) simulations to train and test the soft measurement NN model,and the model's structure parameters are deduced and optimized by genetic algorithm(GA).Finally,the soft measurement system of ring's dimensions is established and validated by the VHRR experiments.The ring's dimensions were measured artificially and calculated by the soft measurement NN model.The results show that the calculation values of GA-RBFNN model are close to the artificial measurement data.In addition,the calculation accuracy of GA-RBFNN model is higher than that of RBFNN model.The research results suggest that the soft measurement NN model has high precision and flexibility.The research can provide practical methods and theoretical guidance for the accurate measurement of VHRR process. 展开更多
关键词 vertical hot ring rolling dimension precision soft measurement model artificial neural network genetic algorithm
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Effect of driver roll rotational speed on hot ring rolling of AZ31 magnesium alloy 被引量:1
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作者 Xiaodong Luo Lianjie Li +1 位作者 Wenlin Xu Yongxiang Zhu 《Journal of Magnesium and Alloys》 SCIE EI CAS 2014年第2期154-158,共5页
Based on the ABAQUS/Explicit code,A 3D elastic-plastic and coupled thermo-mechanical FE model of radial ring rolling of AZ31 Magnesium alloy has been proposed to analyze the influence of rotational speed of driver rol... Based on the ABAQUS/Explicit code,A 3D elastic-plastic and coupled thermo-mechanical FE model of radial ring rolling of AZ31 Magnesium alloy has been proposed to analyze the influence of rotational speed of driver roll to study the inhomogeneity distribution of strain and temperature,fishtail coefficient,rolling force parameters.The results show that:(1)when the rotational speed of driver roll n increases,the strain distribution of the rolled ring becomes less homogeneous,and the temperature distribution more homogeneous yet,and leading to an optimal n value;(2)the fishtail coefficient firstly decreases,then increases with the increase of n;(3)the rolling force,contact area and rolling moment gradually descend with the increase of n. 展开更多
关键词 Rotational speed of driver roll AZ31 magnesium alloy FEM ring rolling
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Thermo-mechanical coupled analysis of hot ring rolling process 被引量:5
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作者 孙志超 杨合 欧新哲 《中国有色金属学会会刊:英文版》 EI CSCD 2008年第5期1216-1222,共7页
A 3D rigid-plastic and coupled thermo-mechanical FE model for hot ring rolling(HRR) was developed based on DEFORM 3D software,then coupled heat transferring,material flow and temperature distribution of the ring in HR... A 3D rigid-plastic and coupled thermo-mechanical FE model for hot ring rolling(HRR) was developed based on DEFORM 3D software,then coupled heat transferring,material flow and temperature distribution of the ring in HRR were simulated and the effects of process parameters on them were analyzed.The results show that the deformation nonuniformity of ring blank increases with the increase of the rotational speed of driver roll and friction factor or the decrease of the feed rate of idle roll and initial temperature of ring blank.The temperature nonuniformity of ring blank decreases with the increase of the feed rate of idle roll or the decrease of initial temperature of ring blank and friction factor.There is an optimum rotational speed of driver roll under which the temperature distribution of ring blank is the most uniform.The results obtained can provide a guide for forming parameters optimization and quality control. 展开更多
关键词 热轧 温度分布 变形不均匀性 FEM
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Effect of sizes of forming rolls on cold ring rolling by 3D-FE numerical simulation 被引量:2
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作者 郭良刚 杨合 《中国有色金属学会会刊:英文版》 CSCD 2006年第B02期645-651,共7页
During cold ring rolling process, changing the sizes of forming rolls including driver roll and idle roll will lead to a change of amount of feed Ah and contact areas between ring blank and forming rolls, thus a chang... During cold ring rolling process, changing the sizes of forming rolls including driver roll and idle roll will lead to a change of amount of feed Ah and contact areas between ring blank and forming rolls, thus a change of the shape and dimension of deformation zone located in the gap of forming rolls is found. It has a significant effect on metal flow and the forming quality of deformed ring. So the size effect of forming rolls on cold ring rolling was investigated by three-dimensional dynamic explicit FEM under ABAQUS environment. The obtained results thoroughly reveal the influence laws of the sizes of forming rolls on the average spread, fishtail coefficient, degree of inhomogeneous deformation and force and power parameters etc not only provide an important basis for design of the forming rolls and optimization of cold ring rolling process, but also reveal the plastic deformation mechanism of cold ring rolling. 展开更多
关键词 冷环轧 成型辊 尺寸效应 三维FE数值模拟 ABAQUS
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Hourglass Control in Dynamic Explicit Simulation of Cold Ring Rolling Process
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作者 ZHANG Xue-bin LI Zhi-gang LIU Yu-qi 《Computer Aided Drafting,Design and Manufacturing》 2007年第2期37-42,共6页
Hourglass is remarkably aroused in ring rolling simulation with reduced integration element because of violent ring vibration and small contact area of ring with forming rollers. Hourglass energy can be reduced by imp... Hourglass is remarkably aroused in ring rolling simulation with reduced integration element because of violent ring vibration and small contact area of ring with forming rollers. Hourglass energy can be reduced by improving mesh density. Combined approach of artificial damping and artificial stiffness can control the hourglass. A ring with rectangular section is simulated with the weight factor of artificial stiffness resistance set to 0.2. The artificial damping hourglass control coefficient is set to 0.1, and the artificial stiffness hourglass control coefficient is set to 0.001. The ratio of hourglass energy to internal energy is reduced to 2.5 percent. Compared with axial spread width test, the effectiveness of hourglass control in ring rolling simulation is verified. 展开更多
关键词 hourglass control finite element cold ring rolling combined method
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Microstructure and anisotropy of mechanical properties in ring rolled AZ80-Ag alloy 被引量:4
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作者 ZHANG Dong-dong LIU Chu-ming +2 位作者 WAN Ying-chun JIANG Shu-nong ZENG Gang 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第5期1316-1323,共8页
The microstructure,anisotropy in tensile strength and tensile creep resistance of the ring rolled AZ80-Ag alloy were studied.The ring exhibited higher strength along rolling direction(RD)than transverse direction(TD).... The microstructure,anisotropy in tensile strength and tensile creep resistance of the ring rolled AZ80-Ag alloy were studied.The ring exhibited higher strength along rolling direction(RD)than transverse direction(TD).The microstructure characterization and texture analysis demonstrated that the tilted basal texture was responsible for the higher tensile performance along RD.Investigations on the creep anisotropy revealed that the samples along RD had lower creep resistance,higher creep strain and higher steady creep rate at 70−80 MPa,compared with that along TD.The nominal creep stress exponent(n)values,1.13 for RD and 3.86 for TD,indicated that diffusional creep and dislocation climb were the two corresponding creep mechanisms.During creep of the alloy,Mg_(17)Al_(12) phase discontinuous precipitations were witnessed and their volume fraction enhanced with increasing stress. 展开更多
关键词 CREEP ANISOTROPY PRECIPITATION ring rolling magnesium alloy
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On a plastic instability criterion for ultra-large radial-axial ring rolling process with four guide rolls 被引量:3
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作者 Xuechao LI Lianggang GUO Fengqi WANG 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2022年第6期391-406,共16页
A dynamic mechanical model is proposed to describe the complexing actions of all the rolls on the ring during the ultra-large radial-axial ring rolling(RARR)process with four guide rolls.Based on the model,the calcula... A dynamic mechanical model is proposed to describe the complexing actions of all the rolls on the ring during the ultra-large radial-axial ring rolling(RARR)process with four guide rolls.Based on the model,the calculation models for bending moment and normal stress at any section of the ring are deduced by force method.If the maximum section bending normal stress exceeds the yield stress of the ring materials,the ring will be distorted thus leading to the instability of the RARR process.According to this,a plastic instability criterion for the ultra-large RARR process with four guide rolls is developed,based on which a mathematical model to calculate the critical guide force for avoiding plastic instability of ring is obtained.The influence rule of the position of guide roll on the dangerous ring section of plastic instability is revealed,from which it is found the dangerous ring section mainly appears at the radial and axial deformation regions and the contact positions of the guide rolls and ring.The optimized layout of guide roll around the ring in favor of stability is determined to be about a1=61°and a2=119°.The plastic instability criterion is proven to be reliable from the aspects of the critical guide force,the section bending moment and normal stress and the dangerous ring section of plastic instability.Intelligent simulation case studies for the RARR process of ultra-large aluminum alloy ring indicate that the stable forming of the process can be effectively realized by regulating the guide force based on the plastic instability criterion.This work could provide a valuable guidance for the control of guide rolls and the optimization of the ultra-large RARR process with four guide rolls. 展开更多
关键词 Four guide rolls Guide force Plastic instability criterion radial-axial ring rolling Ultra-large ring
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基于表面平整度控制的超大型环件轧制曲线自优化方法研究
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作者 羊冠立 钱东升 +2 位作者 田汉 邓加东 王丰 《塑性工程学报》 北大核心 2025年第1期92-99,共8页
针对超大型环件轧制过程中出现的环件外表面不平整缺陷,基于ABAQUS有限元软件建立超大型环件径轴向轧制热-力耦合有限元模型,研究了轧制过程中环件外表面平整性演变规律,进一步揭示了轴向与径向变形速率比对环件外表面不平整度变化的影... 针对超大型环件轧制过程中出现的环件外表面不平整缺陷,基于ABAQUS有限元软件建立超大型环件径轴向轧制热-力耦合有限元模型,研究了轧制过程中环件外表面平整性演变规律,进一步揭示了轴向与径向变形速率比对环件外表面不平整度变化的影响规律。提出了一种两段式轧制曲线设计方法,进而建立了一种基于环件外表面平整状态反馈的轧制曲线自优化控制模型,将自优化过程中环件外表面不平整度与预设S型轧制曲线所得不平整度进行了比较,结果表明,自优化控制方法得到的轧制曲线提升了环件外表面的平整度,轧制结束时环件中间高度与下端面处不平整度分别降低了36.6%和25.5%。 展开更多
关键词 超大型环件 径-轴向轧制 平整度 数值模拟
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WRRB轮轨滚动行为模拟试验台轮轨高频动态模拟特性初探
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作者 罗易飞 赵鑫 +2 位作者 温泽峰 黄双超 周志军 《铁道学报》 北大核心 2025年第1期54-62,共9页
为研究WRRB轮轨滚动行为模拟试验台的高频动态模拟特性,利用Ansys/LS-DYNA建立试验轮轨和我国服役轮轨的瞬态滚动接触有限元模型。模型充分考虑轨下离散支承和系统结构高频振动,集成基于罚函数的“面-面接触算法”、轨面不平顺模型、T... 为研究WRRB轮轨滚动行为模拟试验台的高频动态模拟特性,利用Ansys/LS-DYNA建立试验轮轨和我国服役轮轨的瞬态滚动接触有限元模型。模型充分考虑轨下离散支承和系统结构高频振动,集成基于罚函数的“面-面接触算法”、轨面不平顺模型、Tγ磨耗模型。对比二者在平顺条件和典型高频激励(轨面单个凹坑和波磨)下的轮轨力、接触应力、钢轨磨耗深度,结果表明,试验轮轨在比例载荷作用下能定量模拟服役轮轨的滚动接触行为,但由于轮轨截面几何、悬挂结构、驱动方式等因素的影响,二者存在以下差异:试验轮轨在零横移时也具有约0.12倍静轮重的横向力,法向接触应力偏低,切向接触应力和钢轨磨耗量偏高;轨面短波不平顺激励下的动态轮轨力偏低,车轮滚出凹坑后轮轨力衰减得更快,波磨引起的轮轨“拍”振不明显,但钢轨磨耗深度平均值和峰-谷值均偏高,有利于实物试验时加速轨面不平顺演变。利用该试验台模拟直线或大半径曲线运行工况时应注意以上差异,并考虑加装车轮悬挂与侧滚装置。 展开更多
关键词 缩尺车轮-环轨 有限元法 短波不平顺 瞬态滚动接触 相似性
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A‑485‑2合金环形轧制仿真研究
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作者 魏宽居 杨雨童 +3 位作者 易阳 吴兴 倪皎云 黄诗尧 《现代交通与冶金材料》 2025年第1期115-122,共8页
本文选取A‑485‑2合金为研究对象,开展了热压缩实验,热压缩有限元模拟,剖面硬度测试和相比例测试。通过实验,模拟和微观表征测试,分析了热加工历史对材料不同位置相比例和硬度的影响规律,并用于预测A‑485‑2合金材料的力学性能。通过分析... 本文选取A‑485‑2合金为研究对象,开展了热压缩实验,热压缩有限元模拟,剖面硬度测试和相比例测试。通过实验,模拟和微观表征测试,分析了热加工历史对材料不同位置相比例和硬度的影响规律,并用于预测A‑485‑2合金材料的力学性能。通过分析可以发现:受到温度的影响,试样芯部残余奥氏体含量大于试样边缘,造成试样芯部的硬度小于试样边缘。基于热压缩所获取的实验数据和环轧机的数据,建立了A‑485‑2合金环轧的有限元模型,开展了环件轧制过程的仿真模拟,并探讨了轧制的成形机制。有限元仿真表明,环件内侧的位移,塑性应变和振荡略小于外侧。 展开更多
关键词 A‑485‑2合金 环件轧制 硬度 相比例 有限元模拟
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Technology and Experiments of 42CrMo Bearing Ring Forming Based on Casting Ring Blank 被引量:17
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作者 LI Yongtang JU Li +3 位作者 QI Huiping ZHANG Feng CHEN Guozhen WANG Mingli 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2014年第2期418-427,共10页
Bearing ring is the crucial component of bearing. With regard to such problems as material waste, low efficiency and high energy consumption in current process of producing large bearing ring, a new process named "ca... Bearing ring is the crucial component of bearing. With regard to such problems as material waste, low efficiency and high energy consumption in current process of producing large bearing ring, a new process named "casting-rolling compound forming technology" is researched by taking the typical 42CrMo slew bearing as object. Through theoretical analysis, the design criteria of the main casting-rolling forming parameters are put forward at first. Then the constitutive relationship model of as-cast 42CrMo steel and its mathematical model of dynamic recrystallization are obtained according to the results of the hot compression experiment. By a coupled thermal-mechanical finite element model for radial-axial rolling of bearing ring, the fraction of dynamic recrystallization is calculated and recrystallized grains size are predicated. Meanwhile, the effects of the initial rolling temperature and feed rate of idle roll on material microstructure evolution are analyzed. Finally, the industrial rolling experiment is designed and performed, based on the simulation results. In addition, mechanical and metallographic tests are conducted on rolled bearing ring to get the mechanical parameters and metallographic structure. The experimental data and results show that the mechanical properties of bearing ring produced by casting-rolling compound forming technology are up to industrial standard, and a qualified bearing ring can be successfully formed by employing this new technology. Through the study, a process of forming large bearing ring directly by using casting ring blank is obtained, which could provide an effective theoretical guidance for manufacturing large ring parts. It also has an edge in saving material, lowering energy and improving efficiency. 展开更多
关键词 bearing ring 42CrMo casting ring blank casting-rolling compound forming microstructure evolution
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