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三辊斜轧空心轴变径段成形质量研究

Forming Quality Research on the Variable-Diameter Section of the Hollow Axle in Three-Roll Skew Rolling.

作者信息

Xia Yingxiang, Shu Xuedao, Shi Jianan, Wang Ying, Pater Zbigniew, Wang Jitai

机构信息

Faculty of Mechanical Engineering and Mechanics, Ningbo University, Ningbo 315211, China.

Zhejiang Key Laboratory of Part Rolling Forming Technology, Ningbo University, Ningbo 315211, China.

出版信息

Materials (Basel). 2022 Aug 16;15(16):5614. doi: 10.3390/ma15165614.

Abstract

The hollow axle is the key component of the high-speed train, and the realization of high-quality forming is the key to ensure the safety of train operation. In this paper, the specimen of the variable-diameter section of the hollow axle is taken as the research object, and the generation mechanism of surface spiral mark defects and the formula of spiral mark depth of variable-diameter section in the TRSR (three-roll skew rolling) process with variable roll spacing are explored. The external roundness error and the function C to measure the wall thickness uniformity of the cross-section were taken as the evaluation indexes and the single-factor simulation experiment was established and simulated in the software Simufact.forming16.0 to obtain the influence law of each process parameter on the external roundness error and wall thickness uniformity of the rolled piece. Orthogonal tests were designed and the order and optimal combination of process parameters on the forming quality were obtained by range analysis and ANOVA analysis. The research results provide theoretical guidance for improving the forming quality of the variable-diameter section of the hollow axle in three-roll skew rolling, and promote the transformation of the TRSR process to high performance and accurate forming.

摘要

空心轴是高速列车的关键部件,实现高质量成形是确保列车运行安全的关键。本文以空心轴变径段试件为研究对象,探讨了变辊距三辊斜轧过程中表面螺旋纹缺陷的产生机理及变径段螺旋纹深度公式。以外部圆度误差和衡量截面壁厚均匀性的函数C为评价指标,在Simufact.forming16.0软件中建立单因素模拟实验并进行模拟,得到各工艺参数对轧制件外部圆度误差和壁厚均匀性的影响规律。设计正交试验,通过极差分析和方差分析得到工艺参数对成形质量的影响顺序及最优组合。研究结果为提高三辊斜轧空心轴变径段的成形质量提供了理论指导,推动了三辊斜轧工艺向高性能、精确成形方向转变。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7d2c/9414841/d01618e06e3b/materials-15-05614-g001.jpg

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