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MODELING OF CONTROLLED THERMO-MECHANICAL PROCESSING OF TUBES FOR ENHANCED MANUFACTURING AND PERFORMANCE 被引量:5
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作者 D. Jin E. D. Dominik +1 位作者 R. V. Kolarik II J. E. Ives and E. B. Damm (The Timken Company, 1835 Dueber Avenue, S.W., Canton, Ohio 44706-0932, U.S.A.) 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 2000年第2期832-842,共11页
An integrated mathematical model to simulate seamless tube rolling processes has been developed at The Timken Company. The model is capable of simulating the thermal, deformation and microstructure evolution in the pi... An integrated mathematical model to simulate seamless tube rolling processes has been developed at The Timken Company. The model is capable of simulating the thermal, deformation and microstructure evolution in the piercing, elongating and reducing/sizing and the austenite decomposition in the mill annealing and cooling operations. Finite difference schemes are employed to model cooling, reducing/sizing and stretch reducing, and finite-element schemes are employed to simulate piercing and elongating. The model predicts the thermal history, deformation, rolling load, torque, recrystallization and grain growth in hot tube rolling, austenite decomposition in cooling or annealing, and the final structure-properties. In this paper mathematical models which are employed to describe the thermal, deformation and microstructure evolution along with the modeling results are presented. The developed 'tube rolling mill in the computer' provides a powerful tool for engineers for product and process development, process control, process optimization and quality control. 展开更多
关键词 modeling seamless mechanical tube ROLLING FINITE-DIFFERENCE FINITE-ELEMENT
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Scheduling problem for hot-rolling seamless steel tube production 被引量:1
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作者 HUO Jiazhen~(1)),LILin~(1,2)) and LI Hu~(1)) 1) School of Economics and Management TongJi University,Shanghai 20009,China 2) School of Business,East China University of Science and Technology,Shanghai 200237,China 《Baosteel Technical Research》 CAS 2010年第S1期95-,共1页
Taking the seamless tube plant of Baoshan Iron & Steel Complex in China as the background,we analyze the characters of hot rolling seamless steel tube:multi varieties,low volume,complicated production process,flex... Taking the seamless tube plant of Baoshan Iron & Steel Complex in China as the background,we analyze the characters of hot rolling seamless steel tube:multi varieties,low volume,complicated production process,flexible production routes.Then integrated scheduling problem for hot rolling seamless steel tube production is studied,which covers two key points;order-grouping problem and solution method for flowshop/jobshop scheduling problem.On the basis of these two problems,integrated scheduling decision system is developed.The design idea,function flow sheet,data processing method,and functional module of visualized human-computer interactive scheduling system implemented in seamless steel tube plant of Shanghai Baoshan Iron & Steel Complex are described into detail.Compared with manual system,the performance of system shows the applicability and superiority in several criteria. 展开更多
关键词 hot-rolling seamless steel tube production scheduling problem order-grouping problem decision system
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The PQF pass parametric design system of heavy calibre seamless tube
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作者 DU Fengshan,WANG Feixue and YU Hui Mechanical Engineering College,Yanshan University,Qinhuangdao 066004,China 《Baosteel Technical Research》 CAS 2010年第S1期66-,共1页
According to the characteristics of PQF continuous rolling pass,the relationship between spread coefficient,wall thickness coefficient and elongation are analyzed.The section shape of tube in each stand outlet,the eff... According to the characteristics of PQF continuous rolling pass,the relationship between spread coefficient,wall thickness coefficient and elongation are analyzed.The section shape of tube in each stand outlet,the efficient working radius and the rotational speed of each roll are obtained,therefore,the pass parametric design is completed.A thermal-mechanical coupled model of continuous rolling tube' s forming process is established by the three-dimensional elasto-plastic finite element method,the section shape and area of tube in each stand outlet are forecasted,which is used to modify the pass.The rolling force of each roller is predict too,which provides a guidance for pass design.In addition,a visual software of PQF pass parametric design system on heavy calibre seamless tube is generated with Visual Basic.The forming dimension of tube and the rolling force of each roller are successfully obtained,by simulating the forming process of a certain series heavy calibre seamless tube.This system posses practical utilization value.By using this system,the development cycle of new product can be shortened,the reliability of pass design can be improved,and the energy consumption of rolling mill and production cost can be decreased. 展开更多
关键词 PQF pass design heavy calibre seamless tube
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FE SIMULATION OF CENTER CRACK OCCURRENCE IN TUBE ROUNDS DURING TWO-ROLL ROTARY ROLLING PROCESS 被引量:7
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作者 S.Z. Li J. Xu +4 位作者 Y.D. Yin J.G. Xue F. Pan J.M. Zheng J.H. Yoon 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 2007年第3期225-234,共10页
With the aid of FE (finite element) code MSC.Superform 2005, 2-D coupled thermo-mechanical simulation of center-crack occurrence in round billet during 2-roll rotary rolling process was presented using Oyane ductile... With the aid of FE (finite element) code MSC.Superform 2005, 2-D coupled thermo-mechanical simulation of center-crack occurrence in round billet during 2-roll rotary rolling process was presented using Oyane ductile fracture criteria. A simple modeling is put forward based on the spiral motion of the workpiece as an essential characteristic in movement. The influence of the feed angle and the entry cone angle of the main roll on the process was taken into account in the modeling. The soundness for simplifying the 3-D rotary rolling into a 2-D problem was discussed. By adopting the parameters of Diescher piercer in 140mm mandrel mill of Bao Steel, the distribution and development of strain/stress were analyzed, and the eigen value of ductile fracture as well. The critical percentage of diameter reduction was obtained from the simulation. The result showed a good agreement with the experimental value, and therefore was of widely guiding significance to the practical process for rationally formulating the deformation parameters of steel tube piercing. 展开更多
关键词 numerical simulation inside crack tube piercing rotary rolling seamless tube deformation
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Review of research developments of 12Cr1MoVG heat resistant steel in China 被引量:1
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作者 WANG Qijiang ZHAI Guoli ZHOU Yedong 《Baosteel Technical Research》 CAS 2017年第2期18-29,共12页
In this paper, we review the evolution of 12CrlMoV steel standards at home and abroad, analyze the effects of various elements and determine their optimal contents in steel. The influence of heat treatment and microst... In this paper, we review the evolution of 12CrlMoV steel standards at home and abroad, analyze the effects of various elements and determine their optimal contents in steel. The influence of heat treatment and microstructure on the creep strength of 12CrlMoV steel is investigated. Statistical results from conventional mechanical properties, ductile-brittle transition temperature, high temperature oxidation resistance, aging, instant high temperature properties, and creep are introduced. The results show that the chemical composition and heat treatment process of 12CrlMoVG steel identified in the GB 5310 - 2008 standard is appropriate, resulting in a steel with higher creep strength and good comprehensive properties. 展开更多
关键词 12CrlMoV steel STANDARD BOILER seamless steel tube and pipe
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Comprehensive Control on Microstructures and Properties of Medium Carbon V-N Microalloyed Steel Seamless Oil-Well Tubes of Hot-Rolling Non-Quenched/Tempered 被引量:1
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作者 LIU Sheng-xin 1,2,LIU Guo-quan 2,CHEN Yong 1,ZHANG Yong-gang 3,HUANG Jian-kai 3 (1.School of Materials Science and Engineering,Zhengzhou University,Zhengzhou 450002,Hennan China 2.School of Materials Science and Engineering,University of Science and Technology Beijing,100083,China 3.Wuxi Seamless Steel Tube Company Ltd,Wuxi 214026,Jiangsu China) 《Journal of Iron and Steel Research(International)》 SCIE EI CAS CSCD 2011年第S1期696-700,共5页
The relationship between microstructures and mechanical properties of a medium carbon V-N microalloyed steel used for N80 seamless oil-well tubes of hot rolling non-quenched/tempered (non-Q and T) was investigated.The... The relationship between microstructures and mechanical properties of a medium carbon V-N microalloyed steel used for N80 seamless oil-well tubes of hot rolling non-quenched/tempered (non-Q and T) was investigated.The results have shown that volume percentages of upper bainite,modified bainite and ferrite have a decisive influence on impact energies of steel tubes.When the total volume percentage of bainite is larger than 5%,the impact energy of tubes can not satisfy with the industrial criteria.Moreover,if the total volume percentage of bainite is smaller than 5%,then the impact energy of steel tubes enhances with volume percentage of ferrite increasing.The final microstructures have closely relation with tube billet quality,controlled cooling temperature after tube rolling and cooling method after stretch-reduction-diameter.High quality of medium carbon V-N microalloyed steel for non-Q and T oil-well tubes can be produced through comprehensive control of microstructures and mechanical properties in sub-procedures,especially for tube billet quality and controlled cooling parameters. 展开更多
关键词 medium carbon V-N microalloyed steel N80 grade seamless oil-well tube microstructure mechanical property
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Chemistry and Process Optimization of V-Microalloyed N80-Class Seamless Casing Tube 被引量:8
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作者 PAN Tao YANG Cai-fu MA Yue XUE Dong-mei ZHANG Yong-quan 《Journal of Iron and Steel Research(International)》 SCIE EI CAS CSCD 2010年第3期72-78,共7页
The complex effects of different nitrogen (N) contents and thermal routines on the microstructure and mechanical properties of 33Mn2V steels for N80-Class seamless casing tube application were investigated using Gle... The complex effects of different nitrogen (N) contents and thermal routines on the microstructure and mechanical properties of 33Mn2V steels for N80-Class seamless casing tube application were investigated using Gleeble simulation technique. The results showed that the N additions of 0. 014 %- 0. 021 % in the steels for the in-line normalization process (ILNP) increased the strength while the toughngss remained at a high level as compared with the steel with N content of 0. 005 %. It was also revealed that the N addition of 0. 021%could enhance the performance combination of strength and toughness in the steels by using 700 ℃ as the cooling interrupted temperature (CIT) for the non in-line normalizing process (NILNP). It was further evidenced that the toughness was improved at expense of strength to some degree in all the steels by decreasing reheating temperature for the ILNP, while an increase of CIT for NILNP severely impaired the toughness and slightly improve the strength in the high-N steel with N content of 0. 021%. This can be attributed to the dissolution and precipitation behavior of V(C,N). The optimization of V (C,N) precipitation could be achieved by enhancing N. The precipitation of V(C, N) in austenite was promoted by cooling to a certain temperature lower than the A,1 for the ILNP. The V(C,N) particles formed in austenite contrib- uted to grain refinement by the VN-induced nucleation of intragranular ferrite, but as a result the effect of precipitation on strengthening would become weaker due to a decrease of the precipitation of V in ferrite. 展开更多
关键词 seamless tube in-line normalizing V-N microalloying REHEATING mechanical properties Gleeble simulation
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Effect of Martensite Morphology on Impact Toughness of Ultra-High Strength 25CrMo48V Steel Seamless Tube Quenched at Different Temperatures 被引量:4
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作者 ZHANG Chuan-you WANG Qing-feng +3 位作者 KONG Jin-li XIE Guo-zhu WANG Ming-zhi ZHANG Fu-cheng 《Journal of Iron and Steel Research(International)》 SCIE EI CAS CSCD 2013年第2期62-67,共6页
A 25CrMo48V steel for ultra-deep oil/gas well casings was quenched at 900-1 200 ℃ and tempered at 650 ℃. The lath martensitic structures were characterized by optical microscope (OM), field emission scanning elect... A 25CrMo48V steel for ultra-deep oil/gas well casings was quenched at 900-1 200 ℃ and tempered at 650 ℃. The lath martensitic structures were characterized by optical microscope (OM), field emission scanning electron microscopy (FESEM), electron backscattering diffraction (EBSD) and transmission electron microscopy (TEM), and the transverse impact energy at 0 ℃ was measured from the as-quenched and tempered specimens. The results show that with the quenching temperature decreased, the prior austenite grain, martensitic packet and block are refined, while the lath width seems to remain unchanged. The enhancement of impact toughness with the decreasing quenching temperature can be attributed to refinement of the martensitic structure with high-angle boundaries, and the block is the minimum structure unit controlling impact toughness. The transverse impact energy [ECVN (0 ℃) ≥100 J] required for seamless casings with ultra-high strength (Rp0.2≥932 MPa) has been finally achieved with the experimental steel quenched at 900-1 000 ℃ and tempered at 650 ℃. 展开更多
关键词 seamless steel tube lath martensitic morphology TOUGHNESS
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Method for Improving Transverse Wall Thickness Precision of Seamless Steel Tube Based on Tube Rotation 被引量:1
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作者 Yong-zheng JIANG Hua-ping TANG 《Journal of Iron and Steel Research(International)》 SCIE EI CAS CSCD 2015年第10期924-930,共7页
The tube rotation method (TRM) refers to the rotational movement of steel tube about its axis as well as translation in rolling direction in stretch reducing rolling process. The influence of the TRM on transverse w... The tube rotation method (TRM) refers to the rotational movement of steel tube about its axis as well as translation in rolling direction in stretch reducing rolling process. The influence of the TRM on transverse wall thickness precision of seamless steel tube was studied. Thickness distribution of the TRM was obtained by superimposing the thickened amount of single pass rolling. Results show that the TRM can effectively improve the evenness of thickness distribution. In order to analyze the influence mechanism of the TRM, the finite element method was adopted to simulate the thickness distribution in stretch reduction process. Results show that the TRM changes the roundtrip flow between two fix places of conventional stretch reducing and inhibits the directional accumulation of metal. In addition, the TRM has a correction effect on thickness cusp. All these advantages of the TRM help to improve the transverse wall thickness precision of seamless steel tube. 展开更多
关键词 seamless tube stretch reducing transverse unevenness tube rotation method
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Influence of Heat Treatment on Hydroformability of TRIP Seamless Steel Tube
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作者 Zi-cheng ZHANG Ken-ichi MANABE 《Journal of Iron and Steel Research(International)》 SCIE EI CAS CSCD 2014年第7期695-701,共7页
A low-carbon TRIP seamless steel tube, which is expected to be used in the hydroforming process, was successfully fabricated using piercing, cold-drawing and two-stage heat treatment process. The two-stage heat treatm... A low-carbon TRIP seamless steel tube, which is expected to be used in the hydroforming process, was successfully fabricated using piercing, cold-drawing and two-stage heat treatment process. The two-stage heat treatment is one crucial step because it significantly affects the microstructure and mechanical properties of TRIP seam less steel tube. In order to obtain the TRIP seamless steel tube with high hydroformability, several different heat treatment processes were conducted. The effects of heat treatment conditions (intercritical annealing (IA) and isothermal bainite treatment (IBT)) on the TRIP seamless steel tube hydroformability which was determined by free hydraulic bulge test were analyzed. Two different internal pressure boosting velocities of 0.2 and 0.5 MPa/s of free hydraulic bulge tests were adopted to determine the effective stress vs. effective strain curve of TRIP seamless steel tube. The results showed that for the predetermined IA condition, the maximum bulge height increased, but the maximum burst internal pressure decreased, with the increase of IBT holding time from 4 to 6 rain. For the predetermined IBT condition, the maximum bulge height decreased, but the maximum burst internal pressure increased, with the increase of IA holding time from 5 to 10 rain. By analyzing the free hydraulic bulge test results, it was found that the maximum bulge heights of TRIP seamless steel tubes with the internal pressure boosting velocity of 0.5 MPa/s were higher than those when the internal pressure boosting velocity was 0.2 MPa/s. This means that an appropriate deformation rate should be chosen to obtain the optimal hydroformability of TRIP seamless steel tube. In addition, the effective stress vs. effective strain curves of TRIP seamless steel tubes were ohtained with free hydraulic bulge test. 展开更多
关键词 TRIP steel heat treatment hydroformability seamless tube hydraulic bulge test
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Modeling and Optimization for Piercing Energy Consumption
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作者 XIAO Dong PAN Xiao-li +2 位作者 YUAN Yong MAO Zhi-zhong WANG Fu-li 《Journal of Iron and Steel Research(International)》 SCIE EI CAS CSCD 2009年第2期40-44,共5页
Energy consumption is an important quality index in the production of seamless tubes. The complex factors affecting energy consumption make it difficult to build its mechanism model, and optimization is also very diff... Energy consumption is an important quality index in the production of seamless tubes. The complex factors affecting energy consumption make it difficult to build its mechanism model, and optimization is also very difficult, if not impossible. The piercing process was divided into three parts based on the production process, and an energy consumption prediction model was proposed based on the step mean value staged multiway partial least square meth- od. On the basis of the batch process prediction model, a genetic algorithm was adopted to calculate the optimum mean value of each process parameter and the minimum piercing energy consumption. Simulation proves that the op- timization method based on the energy consumption prediction model can obtain the optimum process parameters effectively and also provide reliable evidences for practical production. 展开更多
关键词 seamless tube piercing energy consumption mean value staged multiway partial least square method genetic algorithm
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Numerical Simulation of Steel Tube Induction Heating During Quenching Process
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作者 HUANG Jun WU Wen-fei +1 位作者 WANG Bao-feng ZHANG Yong-jie 《Journal of Iron and Steel Research(International)》 SCIE EI CAS CSCD 2012年第S1期187-190,共4页
Induction heating process of steel tube using of intermediate frequency is characterized by short time,precise temperature control and environment friendly.It has been widely applied to the quenched steel,bent pipe,et... Induction heating process of steel tube using of intermediate frequency is characterized by short time,precise temperature control and environment friendly.It has been widely applied to the quenched steel,bent pipe,etc.In this paper,induction heating process for a typical variety of seamless steel tube,in particular the heating section different frequency combination is studied by numerical stimulation.The temperature field has been calculated during the entire heating process of tube.The optimum operating parameters of induction heating has been suggested which in turn provides an important reference data to the research of seamless steel tube induction quenching. 展开更多
关键词 seamless steel tube induction heating numerical simulation QUENCHING
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