浏览全部资源
扫码关注微信
青岛金链检测技术服务有限公司, 山东 青岛 266705
代玉杰(1989— ),男,山东青岛人,硕士,工程师;主要研究方向为材料热处理工艺;yujiedaiqd@163.com。
纸质出版日期:2024-06-15,
收稿日期:2023-03-12,
修回日期:2023-05-08,
扫 描 看 全 文
代玉杰,王魁.利用JMatPro软件进行C55E钢链板等温淬火工艺的研究[J].机械传动,2024,48(06):147-152.
Dai Yujie,Wang Kui.Study on the Isothermal Quenching Process of C55E Steel Chain Plates with JMatPro Software[J].Journal of Mechanical Transmission,2024,48(06):147-152.
代玉杰,王魁.利用JMatPro软件进行C55E钢链板等温淬火工艺的研究[J].机械传动,2024,48(06):147-152. DOI: 10.16578/j.issn.1004.2539.2024.06.022.
Dai Yujie,Wang Kui.Study on the Isothermal Quenching Process of C55E Steel Chain Plates with JMatPro Software[J].Journal of Mechanical Transmission,2024,48(06):147-152. DOI: 10.16578/j.issn.1004.2539.2024.06.022.
应用材料模拟软件JMatPro模拟TTA曲线、CCT曲线和TTT曲线,可以获得C55E材料的相变温度。通过获得的相变温度,制定了C55E钢链板等温淬火工艺。结果表明,根据材料模拟软件JMatPro制定的等温淬火工艺参数为淬火温度850 ℃,等温温度310 ℃,等温时间25 min;等温淬火后链板硬度满足技术要求,其链条的强度、疲劳等性能接近采用同等工艺处理的50CrV材料。
The phase transformation temperature of C55E material can be obtained by simulating TTA curve
CCT curve and TTT curve with material simulation software JMatPro. The isothermal quenching process of C55E steel chain plates is formulated by the obtained transformation temperature. The results show that the isothermal quenching process parameters formulated by the material simulation software JMatPro are the quenching temperature of 850 ℃
the isothermal temperature of 310 ℃
and the isothermal time of 25 min. The hardness of the chain plate after isothermal quenching meets the technical requirements
and the strength
fatigue and other properties of the chain are close to the 50CrV material treated by the same process.
C55E钢JMatPro软件等温淬火疲劳
C55E steelJMatPro softwareIsothermal quenchingFatigue
宋凤祥.热处理工艺对55钢尺带力学性能的影响[J].热加工工艺,2021,50(6):127-129.
SONG Fengxiang.Effect of heat treatment on mechanical properties of 55 steel tape [J].Hot Working Technology,2021,50(6):127-129.
黄嘉豪,史文.55钢的离子渗氮[J].上海金属,2019,41(6):34-38.
HUANG Jiahao,SHI Wen.Ion-nitriding of 55 steel[J].Shanghai Metals,2019,41(6):34-38.
王保华.热处理冷却过程对55钢尺带组织和性能的影响[J].热加工工艺,2019,48(22):124-126,131.
WANG Baohua.Effects of heat treatment cooling process on microstructure and properties of 55 steel tape[J].Hot Working Technology,2019,48(22):124-126,131.
付振明,金玉谟,孟繁忠.50CrVA钢齿形链链板的热处理工艺试验[J].金属热处理,2011,36(6):120-122.
FU Zhenming,JIN Yumo,MENG Fanzhong.Heat treatment process test of 50CrVA steel tooth chain plate[J].Heat Treatment of Metals,2011,36(6):120-122.
卢旭东,叶斌,王洪军,等.超高强度钢50CrNiMoVA等温淬火工艺对强韧性的影响[J].机械传动,2012,36(1):26-27.
LU Xudong,YE Bin,WANG Hongjun,et al.Influence of ultra-high strength steel 50CrNiMoVA austempering process on the strength and toughness[J].Journal of Mechanical Transmission,2012,36(1):26-27.
陈璐.精冲材料的现状与发展趋势[J].锻造与冲压,2020(16):21-23.
CHEN Lu.The current situation and development trend of fineblanking materials[J].Forging & Metalforming,2020(16):21-23.
代玉杰,赵卫萍,刘德鹏,等.51CrV4钢链板断裂分析[J].热处理,2018,33(5):55-57.
DAI Yujie,ZHAO Weiping,LIU Depeng,et al.Analysis on fractured chain panel of 51CrV4 steel[J].Heat Treatment,2018,33(5):55-57.
姜琛,张孟九,尚召华,等.回火温度对滚子链等温链板性能的影响[J].机械传动,2022,46(6):108-111,133.
JIANG Chen,ZHANG Mengjiu,SHANG Zhaohua,et al.Influence of tempering temperature on performance of roller chain isothermal chain plate[J].Journal of Mechanical Transmission,2022,46(6):108-111,133.
伦建伟.利用JMatPro软件对38CrMoAl钢热处理参数的模拟计算[J].四川冶金,2021,43(6):39-41,60.
LUN Jianwei.Heat treatment parameters simulation of 38CrMoAl steel based on JMatPro software[J].Sichuan Metallurgy,2021,43(6):39-41,60.
钟流发,刘祚时,高秀琴,等.基于JMatPro与ANSYS联合仿真的变速器齿轮轴选材和热处理工艺改进设计[J].机械设计与研究,2020,36(5):84-88.
ZHONG Liufa,LIU Zuoshi,GAO Xiuqin,et al.Material selection and heat treatment process improvement design of transmission gear shaft based on joint simulation of JMatPro and ANSYS[J].Machine Design & Research,2020,36(5):84-88.
庄巧玲.基于JMatPro软件的ZG70CrMo钢的热处理工艺研究[J].中国铸造装备与技术,2020,55(5):70-74.
ZHUANG Qiaoling.Research on heat treatment process of ZG70CrMo steel on the basis of JMatPro software[J].China Foundry Equipment & Technology,2020,55(5):70-74.
夏云峰,张光川,赵卫国,等.JMatPro在4Cr5Mo2V钢热处理工艺设计中的应用[J].新技术新工艺,2019(4):14-18.
XIA Yunfeng,ZHANG Guangchuan,ZHAO Weiguo,et al.Application of heat treatment process design of JMatPro for 4Cr5Mo2V steel[J].New Technology & New Process,2019(4):14-18.
蔺虹宾,吴代建,彭显平.利用JMatPro软件对低合金耐磨钢热处理参数的计算[J].热加工工艺,2015,44(4):76-78,82.
LIN Hongbin,WU Daijian,PENG Xianping.Heat treatment parameters simulation of low alloy wear resistant steel based on JMatPro software[J].Hot Working Technology,2015,44(4):76-78,82.
王学前.TTA图对淬火加热工艺的指导作用[J].机械工艺师,1983(9):37-40.
WANG Xueqian.The guiding role of TTA diagrams for quenching and heating processes[J].Mechanical Technologist,1983(9):37-40.
姚杰,吴红庆,王春涛,等.4Cr5Mo2V热作模具钢TTT曲线测定及球化退火工艺探索[J].模具工业,2019,45(7):51-55.
YAO Jie,WU Hongqing,WANG Chuntao,et al.Explore of TTT curve tested and spheroidizing annealing process of 4Cr5Mo2V hot-working die steel[J].Die & Mold Industry,2019,45(7):51-55.
卢新春,罗贻正,王艳林.含硼弹簧钢60Si2Mn的淬透性及其CCT曲线[J].金属热处理,2022,47(12):132-137.
LU Xinchun,LUO Yizheng,WANG Yanlin.Hardenability of B containing spring steel 60Si2Mn and its CCT curves[J].Heat Treatment of Metals ,2022,47(12):132-137.
支道光.实用热处理工艺守则[M].北京:机械工业出版社,2013:46-49.
ZHI Daoguang.Practical heat treatment process code[M].Beijing:China Machine Press,2013:46-49.
姬俊祥,陈立奇,王强.UMS型贝氏体等温淬火网带炉生产线的调试和应用[J].热处理,2015,30(5):45-48.
JI Junxiang,CHEN Liqi,WANG Qiang.Commissioning and application of UMS mesh-belt conveyor furnace production line used for austempering[J].Heat Treatment,2015,30(5):45-48.
郝晓歌,赵雷杰,王艳辉,等.不同碳含量贝氏体合金钢等温淬火后的组织与性能[J].金属热处理,2023,48(1):46-51.
HAO Xiaoge,ZHAO Leijie,WANG Yanhui,et al.Microstructure and properties of bainitic alloy steels with different carbon contents after austempering[J].Heat Treatment of Metals,2023,48(1):46-51.
全国链传动标准化技术委员会.摩托车用齿形链条:JB/T 10348—2013[S].北京:机械工业出版社,2013:1-5.
National Technical Committee for Standardization of Chain Transmission.Inverted tooth chains for motorcycles:JB/T 10348—2013[S].Beijing:China Machine Press,2013:1-5.
全国链传动标准化技术委员会.传动用精密滚子链条疲劳试验方法:GB/T 20736—2006[S].北京:中国标准出版社,2006:1-37.
National Technical Committee for Standardization of Chain Transmission.Fatigue test method for transmission precision roller chain:GB/T 20736—2006[S].Beijing:Standards Press of China,2006:1-37.
0
浏览量
0
下载量
0
CSCD
关联资源
相关文章
相关作者
相关机构