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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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Modeling and finite element analysis of rod and wire steel rolling process 被引量:2
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作者 Shulun Liao Liwen Zhang +2 位作者 Siyu Yuan Yu Zhen Shuqi Guo 《Journal of University of Science and Technology Beijing》 CSCD 2008年第4期412-419,共8页
Two thermomechanical coupled elastic-plastic finite element (FE) models were developed for predicting the 12-pass continuous rolling process of GCrl 5 rod and wire steel. The distances between stands in the proposed... Two thermomechanical coupled elastic-plastic finite element (FE) models were developed for predicting the 12-pass continuous rolling process of GCrl 5 rod and wire steel. The distances between stands in the proposed models were set according to the actual values, and the billets were shortened in the models to reduce the calculation time. To keep the continuity of simulation, a technique was developed to transfer temperature data between the meshes of different models in terms of nodal parameters by interpolation functions. The different process variables related to the rolling process, such as temperature, total equivalent plastic strain, equivalent plastic strain rate, and contact friction force, were analyzed. Also, the proposed models were applied to analyze the reason for the occurrence of an excessive spread in width. Meanwhile, it was also utilized to assess the influence of the roll diameter change on the simulated results such as temperature and rolling force. The simulated results of temperature are found to agree well with the measured results. 展开更多
关键词 width spread rod rolling wire rolling TEMPERATURE rolling force numerical simulation
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Finite Element Simulation of Rod and Wire Continuous Rolling 被引量:1
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作者 张立文 岳重祥 +3 位作者 原思宇 阮金华 顾森东 高慧菊 《Journal of Shanghai Jiaotong university(Science)》 EI 2011年第2期195-198,共4页
This paper discusses the application of several techniques involved in the development of the 3D finite element (FE) models of rod and wire continuous rolling process.The FE models are implemented into the FE-program ... This paper discusses the application of several techniques involved in the development of the 3D finite element (FE) models of rod and wire continuous rolling process.The FE models are implemented into the FE-program MSC.Marc and used to investigate the thermal and mechanical behavior of billet during the rolling process.All nonlinear equations included in the models are solved by the static and dynamic procedures,respectively.Data transfer technique is proposed to keep the continuity of simulation results.And the computational time of static procedure is significantly reduced by using a rigid pushing body.In all models,the constant time step method and the auto time step method are respectively used to define time step for the solution of equations.Simulation results of the models with different time step methods are compared.And comparison between calculated values and measured ones of the temperature at the surface of billet shows the validity of the FE models. 展开更多
关键词 rod and wire rolling finite element (FE) simulation data transfer auto time step
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Strain hardening rate dependency of deformation shape,strain distribution,and contact pressure during wire flat rolling
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作者 Joong-Ki Hwang 《Journal of Iron and Steel Research International》 SCIE EI CAS CSCD 2023年第3期475-486,共12页
The effect of the strain hardening exponent(n)of a material on the changes in shape,strain inhomogeneity,and contact pressure was investigated during wire flat rolling to understand its effect on the deformation behav... The effect of the strain hardening exponent(n)of a material on the changes in shape,strain inhomogeneity,and contact pressure was investigated during wire flat rolling to understand its effect on the deformation behavior of a flat-rolled wire and to determine the optimal working conditions with materials.The deformation behaviors of wires with various n values were systematically compared using finite element method.The shape of the deformed wire was found to depend on the n value of the material.Both the contact width and lateral spreading of the wire decrease with increasing n,resulting in a large reduction in area with the n value.The strain homogeneity of the wire increases with the n value of the wire.The improvement in the strain homogeneity with the n value is attributable to two factors:a lower strain concentration in the central region and a higher overall elongation as n increases.In addition,the average effective strain of the wire cross section decreases with the n value of a material during wire flat rolling.The contact pressure distribution on the surface of the wire differs significantly depending on the n value.In materials with a low n value,the contact pressure exhibits a higher value at the entry and edge zones of the contact surface.By contrast,materials with high n values exhibit a higher contact pressure at the exit zone.This behavior can be explained by the strain hardening behavior of the material during wire flat rolling. 展开更多
关键词 Strain hardening exponent wire flat rolling Shape change Strain inhomogeneity Contact pressure
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