网站首页期刊简介编委会过刊目录投稿指南广告合作征订与发行联系我们English
薄煤层液压支架用大型柱窝模锻成形工艺及模具设计
英文标题:Die forging process of large-scale pillar nest used in hydraulic support for thin coal seam and its die design
作者:许慧杰 付明伟 侯潇峰 苏昂 
单位:郑州煤矿机械集团股份有限公司 
关键词:柱窝 大型锻件 模锻成形 曲面分模 渐变拔模 
分类号:TG316.3
出版年,卷(期):页码:2021,46(7):21-26
摘要:
针对薄煤层液压支架上大型、薄壁、高落差、高减重孔类柱窝锻件在锻造成形中易产生错移、球窝面及窝口变形、拔模后截距大、截面积突变明显、成形载荷大、模具寿命低的问题,提出一种新的锻造成形方式。通过采用曲面分模、模具型腔倾斜放置、渐变拔模、减少模具闭合高度等方法,实现了此类型柱窝的锻造成形及顺利出模。结果表明,通过对模具结构、模具材料、热处理硬度的合理设计,可以达到提高锻件质量、减小机械加工余量、减少打击次数、缩短打击时间、提高生产效率、降低生产成本的目的。通过长时间对大型模锻件成形工艺的研究,总结出锻造行业国家标准中没有的大型锻件的工艺参数。
For the problems that the pillar nest forgings with large scale, thin wall, high drop and high weight-reducing hole used in the hydraulic support for thin coal seam produced misalignment, ball-socket surface and socket mouth deformation, large intercept after draft, obvious sudden change in cross-sectional area, large forming loading and low mold life easily during forging process, a new forging method was proposed. By adopting curved surface parting, oblique placement of mold cavity, gradient drafting, reduction of mold closing height and so on, the forging of this type for pillar nest and the smooth ejection of mold were realized. The results show that the purpose of improving forgings quality, reducing machining allowance and number of strokes, shortening strike time, enhancing productivity and reducing production cost was achieved by reasonable design of mold structure, mold material and heat treatment hardness. Through a long time research on the forming process of large-scale die forgings, the process parameters of large-scale forgings that are not in the national standards of forging industry were summarized.
基金项目:
作者简介:
作者简介:许慧杰(1987-),女,学士,中级工程师,E-mail:15838151260@163.com
参考文献:
[1]侯丽嫚. 矿用液压支架底座在工程使用中的结构性能的研究[J].机械管理开发,2019,34(12):64-65.
Hou L M. Study on structural performance of mine hydraulic support base in engineering application [J]. Mechanical Management and Development, 2019, 34(12):64-65.
[2]赵勇. 关于矿用液压支架顶梁结构结构性能分析[J].矿业装备,2020, (2):116-117.
Zhao Y. Analysis on structural performance of top beam of hydraulic support used in mine [J]. Mining Equipment, 2020, (2):116-117.
[3]郑典亮, 孙婉婷,周莉,等.QY200型液压支架立柱优化设计分析[J].吉林化工学院学报,2020,37(3):85-90.
Zheng D L, Sun W T, Zhou L, et al. Optimized design and analysis of QY200 hydraulic support column [J]. Journal of Jilin University of Chemical Technology, 2020, 37(3):85-90.
[4]高有进. 8.8 m液压支架设计与制造关键技术研究[J].煤炭科学技术,2017,45(11):15-20.
Gao Y J. Research on key technologies on the design and manufacture of 8.8 m hydraulic support [J]. Coal Science and Technology, 2017, 45(11):15-20.
[5]苟晓明. 煤矿用液压支架的轻量化设计与研究[D].重庆:重庆理工大学,2014.
Gou X M. Lightweight Design and Research of Hydraulic Support for Coal Mine[D]. Chongqing: Chongqing University of Technology, 2014.
[6]GB/T 12362—2016, 钢质模锻件公差及机械加工余量[S].
GB/T 12362—2016, Steel die forgings—Tolerance and machining allowance [S].
[7]陈闯, 陆长青,吴傲宗.锤上模锻锁扣导向结构及应用[J].金属加工: 热加工,2014,(11):74-76.
Chen C, Lu C Q, Wu A Z. Die forging lock guide structure of the hammer and its application [J]. MW Metal Forming, 2014, (11):74-76.
[8]蒋鹏. 模具标准应用手册:锻模卷 [M]. 北京:中国质检出版社(中国标准出版社),2018.
Jiang P. Die Standard Application Manual: Forging Die[M]. Beijing: China Quality Publishing House(China Standard Publishing House), 2018.
[9]Wang Z H, Wang Y. Hot-deformation behavior of high-nitrogen austenitic stainless steel under continuous cooling: Physical simulation of surface microstructure evolution of superheavy forgings during hot forging[J]. Materials, 2019, 12(7) :1175.https://doi.org/10.3390/ma12071175.
[10]翟庆波. 8.2米大采高液压支架有限元分析及轻量化研究[D].青岛:山东科技大学,2017.
Zhai Q B. Finite Element Analysis and Lightweight Research of 8.2 m Large Mining Hydraulic Support [D]. Qingdao:Shandong University of Science and Technology, 2017.
[11]洪岸柳. 液压支架的结构强度与疲劳寿命分析[D].沈阳:东北大学,2012.
Hong A L. Analysis of Structural Strength and Fatigue Life of Hydraulic Support [D]. Shengyang: Northeastern University, 2012.
[12]韩会军, 曾明胜,宋智鹰,等.8.2 m大采高液压支架设计配套关键技术研究[J].煤炭科学技术,2017,45(11):63-68.
Han H J, Zeng M S, Song Z Y, et al. Research on key technologies for design supporting of 8.2 m large mining hydraulic support [J]. Coal Science and Technology, 2017, 45(11):63-68.
服务与反馈:
本网站尚未开通全文下载服务】【加入收藏
《锻压技术》编辑部版权所有

中国机械工业联合会主管  中国机械总院集团北京机电研究所有限公司 中国机械工程学会主办
联系地址:北京市海淀区学清路18号 邮编:100083
电话:+86-010-82415085 传真:+86-010-62920652
E-mail: fst@263.net(稿件) dyjsjournal@163.com(广告)
京ICP备07007000号-9