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带钢弯曲辊矫直过程中残余应力的计算方法与分析

Calculation method and analysis of residual stress in the strip bending roller straightening process.

作者信息

Zhu Xiaoyu, Wang XiaoGang, Wu Huihai

机构信息

Engineering Research Center Heavy Machinery Ministry of Education, Taiyuan University of Science and Technology, Taiyuan, 030024, Shanxi, China.

出版信息

Sci Rep. 2024 Apr 21;14(1):9149. doi: 10.1038/s41598-024-59305-y.

Abstract

Taking thin gauge strip as an example, the deformation process of metal strip in bending roll straightening was studied. Based on the theory of discrete, curvature integral and elastic-plastic mechanics, the strip travel trajectory of the bending roll straightening process is analyzed, and the numerical analytical calculation method of the continuous straightening process of the strip bending roll is established. The results are verified by establishing MARC finite element simulation and designing straightening experiment. The effects of yield strength, plastic rate and bending amount on residual stress after straightening were studied. In the straightening process, with the increase of the amount of bending roll, the residual strain converges to the region Γ, and with the increase of the yield strength, the region Γ decreases. With the increase of the yield strength, the amount of bending roll and the plastic rate, the wave height increases. The results of the calculation of residual stress, finite element simulation and experiment are close and the trend is consistent. The results show that the logic of the calculation method is reasonable, and the prediction error is within the scope of engineering application, which is helpful to the realization of process intelligence in the process of bending roller straightening.

摘要

以薄规格带钢为例,研究了金属带钢在弯曲辊矫直过程中的变形过程。基于离散理论、曲率积分和弹塑性力学,分析了弯曲辊矫直过程中带钢的行进轨迹,建立了带钢弯曲辊连续矫直过程的数值解析计算方法。通过建立MARC有限元模拟和设计矫直实验对结果进行了验证。研究了屈服强度、塑性率和弯曲量对矫直后残余应力的影响。在矫直过程中,随着弯曲辊量的增加,残余应变收敛到区域Γ,随着屈服强度的增加,区域Γ减小。随着屈服强度、弯曲辊量和塑性率的增加,浪高增大。残余应力计算、有限元模拟和实验结果相近,趋势一致。结果表明,该计算方法逻辑合理,预测误差在工程应用范围内,有助于弯曲辊矫直过程的工艺智能化实现。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7590/11033262/17137233eb76/41598_2024_59305_Fig1_HTML.jpg

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