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基于相对密度的大棒材轧制对孔隙性缺陷压合影响研究
引用本文:许志强,黄永健,刘才,杜凤山,邵涛. 基于相对密度的大棒材轧制对孔隙性缺陷压合影响研究[J]. 北京理工大学学报, 2009, 29(12): 1058-1062
作者姓名:许志强  黄永健  刘才  杜凤山  邵涛
作者单位:燕山大学,机械工程学院,河北,秦皇岛,066004;燕山大学,机械工程学院,河北,秦皇岛,066004;石家庄钢铁有限责任公司,河北,石家庄,050031
基金项目:国家自然科学基金资助重点项目,河北省自然科学基金资助钢铁联合基金项目 
摘    要:针对大棒材轧制生产过程中产品芯部孔洞及裂纹等孔隙性缺陷影响产品质量问题. 通过引入相对密度来间接表征轧件内部呈弥散分布的孔隙性缺陷,利用体积可压缩刚塑性有限元法模拟轧制过程中棒材芯部相对密度变化情况,根据模拟结果分析轧制工艺对轧件芯部孔隙性缺陷压合的影响情况,得到相应的变化规律. 将该研究结果应用于某钢厂棒材轧制工艺参数制定,产品质量明显提高,验证了所用方法的实用性和可靠性.

关 键 词:相对密度  大棒材轧制  孔隙性缺陷  压下量分配  体积可压缩刚塑性有限元
收稿时间:2009-06-11

A Study of Pore Closure in Large Bar Rolling Process Based on Relative Density
XU Zhi-qiang,HUANG Yong-jian,LIU Cai,DU Feng-shan and SHAO Tao. A Study of Pore Closure in Large Bar Rolling Process Based on Relative Density[J]. Journal of Beijing Institute of Technology(Natural Science Edition), 2009, 29(12): 1058-1062
Authors:XU Zhi-qiang  HUANG Yong-jian  LIU Cai  DU Feng-shan  SHAO Tao
Affiliation:College of Mechanical Engineering,Yanshan University, Qinhuangdao, Hebei 066004, China;College of Mechanical Engineering,Yanshan University, Qinhuangdao, Hebei 066004, China;Shijiazhuang Iron & Steel Co. Ltd., Shijiazhuang, Hebei 050031, China;College of Mechanical Engineering,Yanshan University, Qinhuangdao, Hebei 066004, China;College of Mechanical Engineering,Yanshan University, Qinhuangdao, Hebei 066004, China;College of Mechanical Engineering,Yanshan University, Qinhuangdao, Hebei 066004, China
Abstract:Porosity in the core region of the bar is a fatal defect in the bar rolling process. It significantly affects the product quality. In this paper, the concept of relative density is introduced to represent the porosity defects. The change of the relative density has been simulated using compressible rigid-plastic finite element method. By the simulation results, the influence of processing parameters on the pore closure in the core of bar is analyzed. The simulation results have been successfully used to guide the bar rolling process and improved the product quality noticeably.
Keywords:relative density  large bar rolling  pore closure  reduction distribution  rigid-plastic FEM
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