基于计算机模拟的智能化热处理的研究进展
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  • 英文篇名:Research progress of intelligent heat treatment based on computer simulation
  • 作者:韩永珍 ; 李俏 ; 胡小丽 ; 李枝梅 ; 朱嘉 ; 徐跃明
  • 英文作者:Han Yongzhen;Li Qiao;Hu Xiaoli;Li Zhimei;Zhu Jia;Xue Yueming;Beijing Research Institute of Mechanical & Electrical Technology;
  • 关键词:热处理 ; 智能化 ; 计算机模拟 ; 淬火
  • 英文关键词:heat treatment;;intellection;;computer simulation;;quenching
  • 中文刊名:JSRC
  • 英文刊名:Heat Treatment of Metals
  • 机构:北京机电研究所;
  • 出版日期:2017-07-25
  • 出版单位:金属热处理
  • 年:2017
  • 期:v.42;No.479
  • 语种:中文;
  • 页:JSRC201707054
  • 页数:6
  • CN:07
  • ISSN:11-1860/TG
  • 分类号:202-207
摘要
从加热、退火、淬火、正火、回火、化学热处理和特殊热处理等几个方面,主要对在《金属热处理》上发表的基于计算机模拟的智能化热处理的相关文献进行归纳总结。并对未来的研究方向进行了展望。
        Related literatures of intelligent heat treatment based on computer simulation mainly published in the journal of Heat Treatment of Metals were summarized from heating,annealing,quenching,normalizing,tempering,chemical heat treatment and special heat treatment and so on. And the future research direction was prospected.
引文
[1]徐跃明,李俏,罗新民,等.热处理技术进展[J].金属热处理,2015,40(9):1-15.Xu Yueming,Li Qiao,Luo Xinmin,et al.Technology progress in heat treatment[J].Heat Treatment of Metals,2015,40(9):1-15.
    [2]徐跃明,李俏,罗新民.我国热处理技术发展的几个重点[J].金属热处理,2017,42(4):1-5.Xu Yueming,Li Qiao,Luo Xinmin.Development priorities of heat treatment technology in our country[J].Heat Treatment of Metals,2017,42(4):1-5.
    [3]潘健生,胡明娟.计算机模拟与热处理智能化[J].金属热处理,1998,23(7):21-23.Pan Jiansheng,Hu Mingjuan.Intellective heat treatment and computer simulation[J].Heat Treatment of Metals,1998,23(7):21-23.
    [4]潘健生,顾剑锋,王婧.我国热处理发展战略的探讨[J].金属热处理,2013,38(1):4-14.Pan Jiansheng,Gu Jianfeng,Wang Jing.Discussion of heat treatment development strategy in China[J].Heat Treatment of Metals,2013,38(1):4-14.
    [5]顾剑锋,潘健生.智能热处理及其发展前景[J].金属热处理,2013,38(2):1-9.Gu Jianfeng,Pan Jiansheng.Intelligent heat treatment and its development prospects[J].Heat Treatment of Metals,2013,38(2):1-9.
    [6]潘健生,王婧,顾剑锋.我国高性能化智能制造发展战略研究[J].金属热处理,2015,40(1):1-6.Pan Jiansheng,Wang Jing,Gu Jianfeng.Study on the development strategy of high performance intelligent manufacturing in China[J].Heat Treatment of Metals,2015,40(1):1-6.
    [7]林柏宇,王桂棠,陈志盛,等.基于物联网的热处理智能制造执行系统[J].金属热处理,2017,42(3):195-197.Lin Baiyu,Wang Guitang,Chen Zhisheng,et al.Intelligent manufacturing executing system of heat treatment based on internet of things[J].Heat Treatment of Metals,2017,42(3):195-197.
    [8]顾剑锋,潘建生,胡明娟.淬火过程的计算机模拟及其应用[J].金属热处理,2000,25(1):35-37.Gu Jianfeng,Pan Jiansheng,Hu Mingjuan.Computer simulation of quenching process and its application[J].Heat Treatment of Metals,2000,25(1):35-37.
    [9]雷雪,徐薇平,韩利战,等.低压转子加热过程温度场与相变的计算机模拟[J].金属热处理,2009,34(9):48-51.Lei Xue,Xu Weiping,Han Lizhan,et al.Computer simulation on temperature field and phase transformation in low-pressure rotor during heating process[J].Heat Treatment of Metals,2009,34(9):48-51.
    [10]李勇军,潘健生,顾剑锋,等.70Cr3Mo钢大型支承辊淬火加热计算机模拟[J].金属热处理,2000,25(9):34-35.Li Yongjun,Pan Jiansheng,Gu Jianfeng,et al.Computer simulation of 70Cr3Mo steel large-scale bearing roller's heating process for hardening[J].Heat Treatment of Metals,2000,25(9):34-35.
    [11]赵楠楠,单际国,吴爱萍,等.光束诱导45钢表面相变硬化过程温度场的三维数值模拟[J].金属热处理,2003,28(7):37-41.Zhao Nannan,Shan Jiguo,Wu Aiping,et al.3D numerical simulation for the temperature field via light beam remelt-free hardening of steel45[J].Heat Treatment of Metals,2003,28(7):37-41.
    [12]李建平,刘涛,王伯长,等.铝卷径向接触热阻的仿真研究[J].金属热处理,2009,34(4):91-95.Li Jianping,Liu Tao,Wan Bochang,et al.Simulation of the radial contact thermal resistance for the aluminum coil[J].Heat Treatment of Metals,2009,34(4):91-95.
    [13]张根元,奚小青,严轶康.基于ANSYS模拟预测S45C钢轴感应加热工艺参数[J].金属热处理,2011,36(11):103-106.Zhang Genyuan,Xi Xiaoqing,Yan Yikang.Forecast actual process parameters of S45C steel shaft induction heating process based on ANSYS simulation[J].Heat Treatment of Metals,2011,36(11):103-106.
    [14]王金元,姬朝阳,惠宇.N1908-1斜齿圆柱齿轮淬火过程的畸变仿真[J].金属热处理,2012,37(5):122-125.Wang Jinyuan,Ji Zhaoyang,Hui Yu.Distortion simulation of N1908-1 helical-spur gear during quenching[J].Heat Treatment of Metals,2012,37(5):122-125.
    [15]刘子聃,李贤君,王占军,等.高强薄钢板喷淬过程传热系数的测定和分析[J].金属热处理,2016,41(5):168-172.Liu Zidan,Li Xianjun,Wang Zhanjun,et al.Determination and analysis of heat transfer coefficient of high-strength steel sheet during jet quenching[J].Heat Treatment of Metals,2016,41(5):168-172.
    [16]易小开,李亮玉,岳建峰,等.输送管道中频感应加热的磁-热耦合仿真[J].金属热处理,2016,41(7):154-158.Yi Xiaokai,Li Liangyu,Yue Jianfeng,et al.Simulation of coupling of electromagnetic and thermal of intermediate frequency induction heating of pipeline[J].Heat Treatment of Metals,2016,41(7):154-158.
    [17]李亭亭,周月明,疏达.温轧中的轧辊感应加热及辊面温度分布模拟[J].金属热处理,2016,41(8):165-169.Li Tingting,Zhou Yueming,Shu Da.Simulation of induction heating and temperature distribution on roller surface during warm rolling[J].Heat Treatment of Metals,2016,41(8):165-169.
    [18]安小凡,王海燕,陈树明,等.空气射流冷却条件下BNbRE钢轨温度场分布[J].金属热处理,2016,41(12):173-177.An Xiaofan,Wang Haiyan,Chen Shuming,et al.Temperature field distribution of BNbRE steel rail during air-jet cooling[J].Heat Treatment of Metals,2016,41(12):173-177.
    [19]郝晓伟,张伟民,陈乃录,等.真空热处理炉传热的三维数值模拟[J].金属热处理,2007,32(7):51-54.Hao Xiaowei,Zhang Weimin,Chen Nailu,et al.3-D numerical simulation of heat transfer process in vacuum heat treatment furnace[J].Heat Treatment of Metals,2007,32(7):51-54.
    [20]崔青玲,李建平,花福安,等.连续退火炉冷却气体流场和传热特性的数值模拟[J].金属热处理,2009,34(11):104-107.Cui Qingling,Li Jianping,Hua Fuan,et al.CFD numerical simulation of flow and heat transfer of the planar impinging jet[J].Heat Treatment of Metals,2009,34(11):104-107.
    [21]张哲,侯华兴,丛津功,等.热处理炉加热过程仿真及等效回火工艺[J].金属热处理,2010,35(11):81-84.Zhang Zhe,Hou Huaxing,Cong Jingong,et al.Heat treatment furnace heating process simulation and equivalence tempering process[J].Heat Treatment of Metals,2010,35(11):81-84.
    [22]张继祥.基于Monte Carlo方法的材料退火过程模拟模型及计算机仿真关键技术研究[D].济南:山东大学,2006.
    [23]申孝民.有限元与蒙特卡罗方法耦合的退火过程模拟模型及关键技术研究[D].济南:山东大学,2008.
    [24]张晓宁.蒙特卡洛法模拟Ti-IF钢退火状态下的晶粒长大[J].金属热处理,2015,40(7):172-175.Zhang Xiaoning.Grain growth of Ti-IF steel simulated by Monte Carlo during annealing[J].Heat Treatment of Metals,2015,40(7):172-175.
    [25]王伟,李华冠,杨吟飞,等.Ti6Al4V钛合金薄板退火畸变数值模拟及试验验证[J].金属热处理,2016,41(1):204-210.Wang Wei,Li Huaguan,Yang Yinfei,et al.Numerical simulation and experimental verification for distortion of Ti6Al4V titanium alloy sheet during annealing[J].Heat Treatment of Metals,2016,41(1):204-210.
    [26]李世键,权纯逸,焦清洋,等.TC4钛合金框退火过程畸变与控制模拟仿真[J].金属热处理,2016,42(4):190-192.Li Shijian,Quan Chunyi,Jiao Qingyang,et al.Simulation of distortion and controlling of TC4 alloy frame during annealing process[J].Heat Treatment of Metals,2016,42(4):190-192.
    [27]马学东,蒋全强,孟翠娥,等.铁水罐耳轴焊缝退火温度场的模拟及应用[J].金属热处理,2013,38(10):111-114.Ma Xuedong,Jiang Quanqiang,Meng Cuie,et al.Simulation and application of annealing temperature field to hot metal ladle trunnion weld[J].Heat Treatment of Metals,2013,38(10):111-114.
    [28]胡春海,王常建,秦占领,等.大型固体发动机壳体热处理工艺优化数值模拟[J].金属热处理,2016,41(5):172-176.Hu Chunhai,Wang Changjian,Qin Zhanling,et al.Numerical simulation of heat treatment process optimization for large solid engine shell[J].Heat Treatment of Metals,2016,41(5):172-176.
    [29]王金亮,刘嘉辰,陈慧琴.Al-Zn-Mg-Cu系高强铝合金厚板淬火过程数值模拟[J].金属热处理,2014,39(3):130-133.Wang Jinliang,Liu Jiachen,Chen Huiqin.Numerical simulation of quenching process of Al-Zn-Mg-Cu high strength aluminum alloy thick plate[J].Heat Treatment of Metals,2014,39(3):130-133.
    [30]李超,周贤良,华小珍,等.AP1000核电主管道淬火过程温度和应力场数值模拟[J].金属热处理,2016,41(8):170-174.Li Chao,Zhou Xianliang,Hua Xiaozhen,et al.Numerical simulation of temperature and stress fields for main pipeline of AP1000 nuclear power during quenching process[J].Heat Treatment of Metals,2016,41(8):170-174.
    [31]张天德,徐骏,唐丽娜,等.30Cr Mn Si Ni2A高强钢的淬火畸变预测与工艺优化[J].金属热处理,2017,42(2):200-206.Zhang Tiande,Xu Jun,Tang Lina,et al.Prediction and optimization on quenching distortion in high strength steel 30Cr Mn Si Ni2A[J].Heat Treatment of Metals,2017,42(2):200-206.
    [32]胡小丽,李俏,左训伟,等.淬火冷却技术现状及标准研究[J].金属热处理,2017,42(2):101-107.Hu Xiaoli,Li Qiao,Zuo Xunwei,et al.Status of quenching technology and standard research[J].Heat Treatment of Metals,2017,42(2):101-107.
    [33]牛山廷,赵国群,李辉平.淬火过程温度场的三维有限元模拟[J].金属热处理,2008,33(6):73-76.Niu Shanting,Zhao Guoqun,Li Huiping.3-D FEM simulation of the temperature field during quenching process[J].Heat Treatment of Metals,2008,33(6):73-76.
    [34]吕长飞,吴小玉,郑继明.磨削硬化表层内冶金热效应预测三维分析模型[J].金属热处理,2017,42(3):189-194.LüChangfei,Wu Xiaoyu,Zheng Jiming.Three-dimensional analysis model to predict thermo-metallurgical effects within the surface layer during grind-hardening[J].Heat Treatment of Metals,2017,42(3):189-194.
    [35]李辉平,赵国群,牛山廷,等.淬火过程冷却曲线的采集及换热系数求解方法的研究[J].金属热处理,2006,31(7):29-32.Li Huiping,Zhao Guoqun,Niu Shanting,et al.Acquisition of cooling curve during quenching process and research on evaluating method of heat transfer coefficient[J].Heat Treatment of Metals,2006,31(7):29-32.
    [36]李辉平,赵国群,栾贻国,等.高压气体淬火工艺有限元模拟及其工艺参数评估[J].金属热处理,2006,31(S1):105-108.Li Huiping,Zhao Guoqun,Luan Yiguo,et al.Finite element simulation and technical parameters evaluation of high pressure gas quenching[J].Heat Treatment of Metals,2006,31(S1):105-108.
    [37]狄桓宇,黄姝珂,石伟,等.超高强度G50钢构件的淬火过程建模与验证[J].金属热处理,2016,41(1):198-203.Di Huanyu,Huang Shuke,Shi Wei,et al.Modeling of quenching process of ultra-high strength steel components and its validation[J].Heat Treatment of Metals,2016,41(1):198-203.
    [38]葛运旺,胡荣强,张宗杰,等.感应淬火机床数控系统智能化与网络化问题综述[J].金属热处理,2007,32(9):96-100.Ge Yunwang,Hu Rongqiang,Zhang Zongjie,et al.Summarization of intelligentized and networked induction hardening control system[J].Heat Treatment of Metals,2007,32(9):96-100.
    [39]周跃庆,张媛媛,程亦晗.感应淬火电磁-热耦合场的有限元分析[J].金属热处理,2007,32(2):65-69.Zhou Yueqing,Zhang Yuanyuan,Cheng Yihan.Finite element analysis of coupled electromagnetic-thermal field for induction heating quenching process[J].Heat Treatment of Metals,2007,32(2):65-69.
    [40]胡延平,徐强,唐华峰,等.基于ANSYS的多点式中频感应淬火温度场有限元模拟[J].金属热处理,2015,40(4):169-173.Hu Yanping,Xu Qiang,Tang Huafeng,et al.Temperature field FEMsimulation of multi-point medium-frequency induction hardening based on ANSYS[J].Heat Treatment of Metals,2015,40(4):169-173.
    [41]赵正阳,姜含,郭博静,等.感应淬火硬化层深度的预测方法及其精度探讨[J].金属热处理,2017,42(3):159-164.Zhao Zhengyang,Jiang Han,Guo Bojing,et al.Prediction method and its precision discussion for hardened layer depth of induction quenching[J].Heat Treatment of Metals,2017,42(3):159-164.
    [42]安伟骋,王占军,张文良,等.高精度齿条料连续感应炉及感应过程模拟[J].金属热处理,2017,42(3):198-201.An Weicheng,Wang Zhanjun,Zhang Wenliang,et al.Continuous induction furnace for high precision rack material and simulation of induction process[J].Heat Treatment of Metals,2017,42(3):198-201.
    [43]陈珺,张根元,赵正阳.45钢光轴连续感应淬火过程的数值模拟[J].金属热处理,2016,41(4):193-196.Chen Jun,Zhang Genyuan,Zhao Zhengyang.Numerical simulation of continuous induction quenching process of 45 steel plain shafts[J].Heat Treatment of Metals,2016,41(4):193-196.
    [44]朱振华,秦训鹏,高恺,等.重型载重车前轴分层淬火工艺仿真分析[J].金属热处理,2016,41(5):162-167.Zhu Zhenhua,Qing Xunpeng,Gao Kai,et al.Simulation analysis of layer by layer quenching process of a heavy truck front axle[J].Heat Treatment of Metals,2016,41(5):162-167.
    [45]许加柱,史铜钢,吴利仁,等.用ANSYS软件求证可调式轧辊感应器的工程可行性[J].金属热处理,2015,40(5):168-172.Xu Jiazhu,Shi Tonggang,Wu Liren,et al.Engineering feasibility research of adjustable roller inductor based on ANSYS[J].Heat Treatment of Metals,2015,40(5):168-172.
    [46]马再敏,曹志国,倪嘉楠.钢轨中频感应正火三维温度场数值模拟[J].金属热处理,2015,40(4):165-168.Ma Zaimin,Cao Zhiguo,Ni Jianan.Numerical simulation of threedimensional temperature field of medium-frequency induction normalizing for rail[J].Heat Treatment of Metals,2015,40(4):165-168.
    [47]孙建亮,邱丑武,彭艳,等.大型筒节感应加热过程电磁-热耦合有限元仿真[J].金属热处理,2016,41(11):93-100.Sun Jianliang,Qiu Chouwu,Peng Yan,et al.Combined electromagnetic and thermal FEM modeling of heavy cylinder during induction heating process[J].Heat Treatment of Metals,2016,41(11):93-100.
    [48]许学军,陈国学,刘春成,等.钢的回火过程中应力演化的数值模拟[J].金属热处理,1997,22(3):12-15.Xu Xuejun,Chen Guoxue,Liu Chuncheng,et al.Numerical simulation of the stresses evolution during tempering of steel[J].Heat Treatment of Metals,1997,22(3):12-15.
    [49]梁志芳,李午申,王迎娜,等.20Mn Si钢筋在线冷却中自回火温度的数值模拟[J].金属热处理,2003,28(9):42-44.Liang Zhifang,Li Wushen,Wang Yingna,et al.Numerical simulation of self-tempering temperature for 20Mn Si steel bar during controlcooling process on line[J].Heat Treatment of Metals,2003,28(9):42-44.
    [50]宛农,熊惟皓,肖建中,等.2311和2738模具钢热处理质量效应的数值模拟[J].金属热处理,2004,29(9):63-66.Wan Nong,Xiong Weihao,Xiao Jianzhong,et al.Numerical simulation of mass effects in heat treatment of mould steel 2311 and2738[J].Heat Treatment of Metals,2004,29(9):63-66.
    [51]徐戊矫,丁永峰,王鹏程.基于数值模拟的堆焊模具耐磨性分析[J].金属热处理,2012,37(12):111-113.Xu Wujiao,Ding Yongfeng,Wang Pengcheng.Analysis on wear resistance of bead welded die based on numerical simulation[J].Heat Treatment of Metals,2012,37(12):111-113.
    [52]郑吉,张海亮,骆欢,等.循环炉气网带式回火炉的流场均匀性[J].金属热处理,2014,39(3):134-137.Zheng Ji,Zhang Hailiang,Luo Huan,et al.Flow field uniformity of gas circulating mesh belt type tempering furnace[J].Heat Treatment of Metals,2014,39(3):134-137.
    [53]阎牧夫,刘志儒,朱法义.稀土化学热处理进展[J].金属热处理,2003,28(3):1-6.Yan Mufu,Liu Zhiru,Zhu Fayi.Progress in rare earth thermochemical treatment[J].Heat Treatment of Metals,2003,28(3):1-6.
    [54]程晓敏,陶应龙,吴兴文.20钢渗碳淬火应力与畸变的有限元计算[J].金属热处理,2003,28(10):35-37.Cheng Xiaomin,Tao Yinglong,Wu Xingwen.Finite element calculation on quenching stress and distortion of carburized 20 steel[J].Heat Treatment of Metals,2003,28(10):35-37.
    [55]吴钢,宋光明.激光相变硬化纵向层深分布模拟与均匀性控制[J].金属热处理,2006,31(10):24-28.Wu Gang,Song Guangming.Simulation and uniformity control of longitudinal hardened case distribution in laser transformation hardening[J].Heat Treatment of Metals,2006,31(10):24-28.
    [56]王明伟,张立文,裴继斌,等.GH4169合金件真空时效过程数值模拟[J].金属热处理,2006,31(1):46-48.Wang Mingwei,Zhang Liwen,Pei Jibin,et al.Numerical simulation of vacuum aging process of GH4169 alloy parts[J].Heat Treatment of Metals,2006,31(1):46-48.
    [57]王明伟,张立文,张凡云,等.钛合金筒形件真空热胀形过程热力耦合数值模拟[J].金属热处理,2007,32(8):76-79.Wang Mingwei,Zhang Liwen,Zhang Fanyun,et al.Numerical simulation of coupled thermo-mechanical behavior of vacuum hot bulge forming process of titanium alloy cylindrical workpiece[J].Heat Treatment of Metals,2007,32(8):76-79.
    [58]鲁世红,李小燕.Al-Mg-Sc合金板激光冲击成形的试验研究与有限元分析[J].金属热处理,2007,32(11):37-41.Lu Shihong,Li Xiaoyan.Experimental research and finite element analysis of laser shock forming for Al Mg Sc alloy sheet[J].Heat Treatment of Metals,2007,32(11):37-41.
    [59]张俊,宋建丽,李永堂.送粉多道搭接激光熔覆温度场的数值模拟[J].金属热处理,2012,37(10):87-91.Zhang Jun,Song Jianli,Li Yongtang.Numerical simulation of temperature field in multi-track overlapping powder-feeding laser cladding[J].Heat Treatment of Metals,2012,37(10):87-91.
    [60]李刚,韩文月,禹志超,等.40Cr钢平板表面激光堆焊三维温度场数值模拟[J].金属热处理,2012,37(11):112-115.Li Gang,Han Wenyue,Yu Zhichao,et al.Numerical simulation of three-dimensional temperature field on plate surface of 40Cr steel in laser surfacing process[J].Heat Treatment of Metals,2012,37(11):112-115.
    [61]李刚,许新颖,葛少成,等.65Mn钢板激光扫描温度场及应变场的数值模拟[J].金属热处理,2015,40(4):153-157.Li Gang,Xu Xinying,Ge Shaocheng,et al.Numerical simulation of temperature field and strain field of 65Mn steel plate by laser scanning[J].Heat Treatment of Metals,2015,40(4):153-157.
    [62]何畏,郝广辉,魏秦文,等.42Cr Mo钢牙轮钻头球面固定套轴承激光淬火数值模拟[J].金属热处理,2015,40(8):149-153.He Wei,Hao Guanghu,Wei Qinwen,et al.Numerical simulation of laser hardening of 42Cr Mo steel spherical fixed set bearing in roller bit[J].Heat Treatment of Metals,2015,40(8):149-153.

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