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825合金斜轧穿孔过程的温升和应力分布
作者:
作者单位:

1.北京科技大学材料科学与工程学院;2.中兴能源装备有限公司

作者简介:

通讯作者:

中图分类号:

TG146.1

基金项目:

国家自然科学基金,基金号:51571012


The temperature rise and stress distribution of 825 alloy during cross-rolling piercing process
Author:
Affiliation:

1.School of Materials Science and Engineering,University of Science and Technology Beijing;2.ZhongXing Energy Equipment Co,Ltd

Fund Project:

National Natural Science Foundation of China,No.51571012,

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    摘要:

    本文针对镍基825合金斜轧穿孔生产无缝钢管过程中产生的裂纹现象进行研究分析,通过借助金相组织观察和有限元分析手段对开裂的原因进行了探讨,认为热加工过程中局部温升和增大的剪切应力是导致开裂的主要原因。此外,从管坯初始孔径、初始温度、顶头润滑条件等3个工艺参数的角度对管坯中心开裂现象进行了规律性研究,发现影响管坯局部温升的最主要因素是顶头润滑条件,通过降低顶头摩擦系数可明显降低局部温升现象,而工艺参数对最大切应力的影响并不明显。为此认为斜轧穿孔过程导致的温升是管坯质量控制的最关键影响因素。

    Abstract:

    This paper studies and analyzes the cracks in the process of cross-rolling piercing production of domestic 825 alloy pipes. Through the use of metallographic observation and finite element analysis methods, the causes of the cracks are discussed, and it is found that the local temperature rise and increased shear stress is the main cause of cracking. In addition, from the perspective of three process parameters such as the initial diameter of the tube, the initial temperature, and the lubrication conditions of the plug, the regularity of the cracking phenomenon of the tube is studied, and the most important factors affecting the local temperature rise of the tube It is the plug lubrication condition, and the local temperature rise phenomenon can be significantly reduced by reducing the friction coefficient of the plug. However, the influence of process parameters on the maximum shear stress is not obvious. Therefore, it is believed that the temperature rise caused by the cross-rolling piercing process is the most critical influencing factor for the quality control of the tube.

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引用本文

李昕,赵展,董建新,仇云龙.825合金斜轧穿孔过程的温升和应力分布[J].稀有金属材料与工程,2022,51(9):3366~3371.[Li Xin, Zhao Zhan, Dong Jian Xin, Qiu Yun Long. The temperature rise and stress distribution of 825 alloy during cross-rolling piercing process[J]. Rare Metal Materials and Engineering,2022,51(9):3366~3371.]
DOI:10.12442/j. issn.1002-185X.20210719

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历史
  • 收稿日期:2021-08-15
  • 最后修改日期:2021-12-28
  • 录用日期:2022-01-29
  • 在线发布日期: 2022-10-08
  • 出版日期: 2022-09-27