楔横轧阶梯空心轴径向压下量对内孔孔径变化影响规律
PDF下载 (302)屈梦鑫,郑书华,王 英.楔横轧阶梯空心轴径向压下量对内孔孔径变化影响规律[J].宁波大学学报(理工版),2022,35(5):27-33.DOI:
QU Mengxin,ZHENG Shuhua,WANG Ying.The influence of diameter reduction on inner hole diameter of step hollow shaft in cross wedge rolling[J].Journal of Ningbo University(Natural Science & Engineering Edition),2022,35(5):27-33.DOI:
| Title: | The influence of diameter reduction on inner hole diameter of step hollow shaft in cross wedge rolling |
| 作者: | 屈梦鑫, 郑书华, 王 英 |
| Author(s): | QU Mengxin, ZHENG Shuhua, WANG Ying |
| 关键词: | 阶梯空心轴; 楔横轧; 径向压下量; 内孔孔径 |
| Keywords: | step hollow shaft; cross wedge rolling; radial pressure down; inner hole diameter |
| 分类号: | TG335.19 |
| 文献标识码: | A |
| 摘要: | 在阶梯空心轴的轧制中, 径向压下量对内孔孔径的变化有重要的影响. 基于Deform-3D软件建立了楔横轧阶梯空心轴成形的有限元模型, 分析了阶梯空心轴的成形过程和金属流动规律, 以轧后径向压下量和内孔孔径变化的关系为对象, 研究了原始相对壁厚和轧制温度对该关系的影响规律. 结果表明, 随着原始相对壁厚的增大, 相同径向压下量下内孔孔径变化减小; 随着温度从950℃增加到1180℃, 相同径向压下量下内孔孔径的变化先增加后减小, 其中轧制温度为1050℃时最大. 基于模拟计算结果, 应用MATLAB对阶梯空心轴轧制过程中不同断面收缩率下的径向压下量与内孔孔径变化规律进行了拟合, 给出了50%收缩率以上的统一拟合公式. 随后的楔横轧阶梯空心轴实验结果与仿真结果误差在4.6%以内, 验证了有限元仿真结果的准确性. |
| Abstract: | In the rolling process of stepped hollow shaft, the radial reduction has great effects on the change of inner hole size. With Deform-3D software, a finite element model of stepped hollow shaft forming in cross wedge rolling was developed, and the forming process and metal flow law of stepped hollow shaft were analyzed. The influence of original relative wall thickness and rolling temperature on the relationship between the radial reduction and the change of inner hole diameter was studied. The results show that with the increase of original relative wall thickness, the change of inner hole diameter decreases under the same radial pressure. With the increase of temperature from 950 to 1180℃, the change of inner hole diameter increases gradually and reaches to the maximum at the 1050℃ rolling temperature, and then decreases with the same radial pressure. Based on the simulation results, with the pressure reduction and the change of the inner hole size under different section shrinkage rates in the process of stepped hollow shaft rolling being fitted in MATLAB, a unified fitting formula for the reduction rate above 50% was given. The errors between the experimental results and simulation results were less than 4.6%, which verified the accuracy of the finite element simulation results. |
| 参考文献 /References: | [1] 范子杰, 桂良进, 苏瑞意. 汽车轻量化技术的研究与进展[J]. 汽车安全与节能学报, 2014, 5(1):1-16. [2] 杨程, 路星星, 孙跃, 等. 空心轴成形技术研究现状[J]. 锻压技术, 2018, 43(1):1-8. [3] 张军改, 崔松松, 秦思晓, 等. 国内楔横轧技术现状与发展趋势[J]. 锻压技术, 2020, 45(6):1-7. [4] Bartnicki J, Pater Z. The aspects of stability in cross- wedge rolling processes of hollowed shafts[J]. Journal of Materials Processing Technology, 2004, 155/156:1867- 1873. [5] Urankar S, Lovell M, Morrow C, et al. Establishment of failure conditions for the cross-wedge rolling of hollow shafts[J]. Journal of Materials Processing Technology, 2006, 177(1/2/3):545-549. [6] 郑书华, 束学道, 孙宝寿, 等. 楔横轧多楔轧制高铁空心车轴壁厚均匀性[J]. 工程科学学报, 2015, 37(5):648- 654. [7] Ji H, Liu J, Wang B, et al. The process parameters effect of ovality in cross wedge rolling for hollow valve without mandril[J]. MATEC Web of Conferences, 2016, 80: 13003. [8] 江洋, 王宝雨, 霍元明, 等. 楔横轧成形25CrMo4厚壁空心轴件的不圆度分析[J]. 工程科学学报, 2019, 41(3): 384-392. [9] Shen J, Wang B, Zhou J, et al. Numerical and experimental research on cross wedge rolling hollow shafts with a variable inner diameter[J]. Archives of Civil and Mechanical Engineering, 2019, 19(4):1497-1510. [10] Zhou J, Shen J, Wang B, et al. Numerical and experimental study on the inner diameter uniformity of hollow shafts in cross-wedge rolling with mandrel[J]. Archives of Civil and Mechanical Engineering, 2021, 21(3):1-16. [11] 韩素涛. 楔横轧多台阶轴无料头精确成形理论研究[D]. 宁波: 宁波大学, 2019. [12] 路红岩, 华军, 张双杰, 等. 楔横轧多台阶轴轧齐曲线优化研究[J]. 锻压技术, 2019, 44(12):40-48. [13] 闫华军, 张超, 路红岩, 等. 工艺参数对楔横轧大断面多台阶轴拉细缩颈的影响[J]. 塑性工程学报, 2020, 27(9):100-107. [14] Pater Z, Tomczak J, Bulzak T. Problems of forming stepped axles and shafts in a 3-roller skew rolling mill[J]. Journal of Materials Research and Technology, 2020, 9(5):10434-10446. [15] Han S, Shu X, Shchukin V, et al. Multi-objective optimization of process parameters of multi-step shaft formed with cross wedge rolling based on orthogonal test[J]. IOP Conference Series: Materials Science and Engineering, 2018, 372:012044. [16] 龚文炜. 楔横轧非对称轴类件微观组织演变规律及无料头技术研究[D]. 宁波: 宁波大学, 2012. [17] 胡正寰, 张康生, 王宝雨, 等. 楔横轧零件成形技术与模拟仿真[M]. 北京: 冶金工业出版社, 2004. [18] 虞春杰, 彭文飞, 沈法, 等. 楔横轧变断面收缩率等内径空心轴的椭圆度分析[J]. 热加工工艺, 2015, 44(3): 145-149. |
| 备注/Memo: | 收稿日期: 2022-01-08. 宁波大学学报(理工版)网址: http://journallg.nbu.edu.cn/ 基金项目: 浙江省自然科学基金(LQ19E040002); 宁波工程学院科研项目(0070011540001). 宁波大学学报(理工版)网址:http://journallg.nbu.edu.cn/第一作者: 屈梦鑫(1994-), 男, 浙江嘉兴人, 在读硕士研究生, 主要研究方向: 金属塑性成形. E-mail: qmx9408@163.com *通信作者: 郑书华(1970-), 女, 河北衡水人, 教授, 主要研究方向: 楔横轧工艺及轧件宏微观控制. E-mail: shuhuazheng@nbut.edu.cn |