Suppr超能文献

TC18钛合金长轴加工过程中残余应力与变形控制的实验研究

Experimental Study on Residual Stress and Deformation Control During Machining of TC18 Titanium Alloy Long Axis.

作者信息

Xue Xiangyou, Shi Dongyan, Zhao Liang

机构信息

College of Mechanical and Electrical Engineering, Harbin Engineering University, Harbin 150001, China.

Shenyang Aircraft Industry (Group) Co., Ltd., Shenyang 110850, China.

出版信息

Materials (Basel). 2025 Jun 13;18(12):2788. doi: 10.3390/ma18122788.

Abstract

The residual stress induced during the processing of titanium alloy materials can significantly influence the deformation control of precision-machined workpieces, especially for workpieces characterized by low stiffness and high-precision requirements. In this study, TC18 titanium alloy forgings with a dense structure were manufactured via forging. By conducting turning and heat treatment experiments on the workpiece, the distribution and evolution of residual stress and the deformation characteristics of TC18 titanium alloy on slender shafts were systematically investigated under different turning and heat treatment conditions. Based on the experimental results, the effects of the turning parameters, including feed rate, cutting speed, cutting depth, and axial thrust force of machine tool center, on workpiece deformation were quantitatively analyzed, and an optimal heat treatment strategy was proposed. The findings indicate that between-centers turning is recommended to control workpiece deformation. Optimal turning parameters include a cutting speed of 640-800 r/min, a feed rate of 0.05-0.1 mm/r, a cutting depth of 0.1 mm, and a thrust force of the center set to 10% of the rated value, resulting in minimal deformation and superior surface quality. In addition, during the heat treatment annealing of slender shaft titanium alloys, residual stress is effectively eliminated at temperatures ranging from 640 to 680 °C with a holding time of 1-3 h. Furthermore, the vertically fixed placement method during heat treatment reduced deformation by approximately 50% compared to free placement. These results provide valuable insights for optimizing machining and heat treatment processes to enhance the dimensional stability of titanium alloy components.

摘要

钛合金材料加工过程中产生的残余应力会显著影响精密加工工件的变形控制,特别是对于刚度低且精度要求高的工件。在本研究中,通过锻造制造了组织致密的TC18钛合金锻件。通过对工件进行车削和热处理实验,系统研究了不同车削和热处理条件下TC18钛合金在细长轴上的残余应力分布及演变规律以及变形特性。基于实验结果,定量分析了进给量、切削速度、切削深度以及机床中心轴向推力等车削参数对工件变形的影响,并提出了优化的热处理策略。研究结果表明,建议采用两顶尖车削来控制工件变形。最佳车削参数为:切削速度640 - 800 r/min,进给量0.05 - 0.1 mm/r,切削深度0.1 mm,中心推力设定为额定值的10%,此时变形最小且表面质量优良。此外,在细长轴钛合金的热处理退火过程中,在640至680 °C温度范围内保温1 - 3 h可有效消除残余应力。而且,热处理过程中的垂直固定放置方式相比自由放置可使变形减少约50%。这些结果为优化加工和热处理工艺以提高钛合金零件的尺寸稳定性提供了有价值的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/99ef/12194806/42cfef0c7cef/materials-18-02788-g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验