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一种热反挤压时坯料的定位方式
英文标题:A positioning method during hot backward extrusion
作者:沈振杰 冯再新 王献民 王剑 
单位:中北大学 
关键词:定位钳 热反挤压 数值模拟 
分类号:
出版年,卷(期):页码:2014,39(4):51-53
摘要:

 为解决热反挤压时坯料定位问题,采用外置定位钳的方式,将直径小于凹模内径的坯料放置在凹模中心,使反挤压过程中凸模的、坯料、凹模的中心在同一轴线上,保证金属均匀受力。运用Deform-3D软件,针对直径小于凹模内径时的坯料反挤压过程进行有限元数值模拟,分析了金属成形过程中的成形效果及应力分布,结果表明:模拟与工艺试验结果基本吻合,在热反挤压过程中,成形效果良好,金属等效应力分布均匀。经工艺试验验证,该定位方式操作简单,工件氧化皮较少,表面精度较高,适用于各类直径小于凹模内径的坯料定位,符合生产要求。

 In order to solve the location problem of hot backward extrusion billet,the external positioning clamp mode was adopted which took the billet whose diameter is less than the inside diameter of die into the center of die, so that the punch, blank, center of die stayed in the same axis during hot backward extrusion process to ensure the stress uniformity of metal. Using Deform-3D software, aiming at the simulation of blank whose diameter is smaller than the inside diameter of die during backward extrusion process,the forming effect and distribution of stress in the process of metal forming were analyzed and verified by process test. The result shows that the simulation and experimental results are basically consistent. In hot backward extrusion process, the forming effect is good, and the metal equivalent stress distribution is uniform. Through process test, the method has the advantages of simple operations, less  oxide coating, high precision, and its applicable to all kinds of billet locations whose diameter is less than the inside diameter of die, which meets production requirements. 

 
基金项目:
山西省科技攻关项目(20120321035-04)
作者简介:
沈振杰(1988-),男,硕士研究生
参考文献:

[1]王新云.金属精密塑性加工工艺与设备[M].北京:冶金工业出版社,2012.


 

Wang Xinyun. The Metal Precision Plastic Processing Technology and Equipment[M].Beijing: Metallurgical Industry Press,2012.

 

[2]Feng Wei,Hua Lin,Han Xinhui. Finite element analysis and simulation for cold precision forging of a helical gear[J]. Journal of Central South University,2012,19(12):3369-3377.

 

[3]魏洁,董俊华,柯伟. 热轧螺纹钢化学剂冷却过程温度场的数值模拟及实验研究[J]. 金属学报,2012,48(1):115-121.

 

Wei Jie, Dong Junhua, Ke Wei. Numerical simulation and experimental study on temperature fifld during chemical reagent cooling process of hot rolled rebar[J]. Actra Metallurgica Sinica,2012,48(1):115-121.

 

[4]裴悦凯,马党参,刘宝石,等. 锻造比对H13钢组织和力学性能的影响[J].钢铁,2012,(2):81-86.

 

Pei Yuekai, Ma Dangshen, Liu Baoshi, et al. Effect of forging ratio on microstructure and mechanical property of H13 steel[J]. Iron & Steel, 2012,(2):81-86.

 

 

Yun Xinbing. Principles of Metal Plastic Forming[M]. Beijing: Metallurgical Industry Press,2012.

 

[6]李杰仁,王锋,李伟.钢质药筒热处理技术研究[J].新技术新工艺,2012,(12):60-62.

 

Li Jieren, Wang Feng, Li Wei. Research on heat treatment technique of steel cartridge[J]. New Technology & New Process,2012,(12):60-62.

 

[7]王梦寒,黄龙,咸国材. Cu-Ag合金热压缩流变应力行为[J].稀有金属,2013,37(5):695-701

Wang Menghan, Huang Long, Xian Guocai.Flow stress behavior of Cu-Ag alloy under hot compression deformation[J].Chinese Journal of Rare Metals, 2013,37(5): 695-701.

 

[8]彭海健,李德富,郭青苗,等. GH690合金热加工图及管材热挤压实验研究[J]. 稀有金属,2012,36(2): 184-190.

 

Peng Haijian,Li defu,Guo Qingmiao, et al. Processing map and tube hot extrusion of GH690 alloy[J].Chinese Journal of Rare Metals, 2012,36(2): 184-190.

 
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