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Deformation-phase transformation coupling mechanism of white layer formation in high speed machining of FGH95 Ni-based superalloy

机译:FGH95Ni基高温合金高速加工中白层形成的形变相变耦合机理

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摘要

Ni-based superalloy represents a significant metal portion of the aircraft critical structural and engine components. When these critical structural components in aerospace industry are manufactured with the objective to reach high reliability levels and excellent service performance, surface integrity is one of the most relevant parameter used for evaluating the quality of finish machined surfaces. In the study of surface integrity, the formation white layer is a very important research topic. The formation of white layer on the Ni-based superalloy machined surface will reduce the machined parts service performance and fatigue life. This paper was conducted to determine the effects of cutting speed on white layer formation in high speed machining of FGH95 Ni-based superalloy. Optical microscope, scanning electron microscope and X-ray diffraction were employed to analyze the elements and microstructures of white layer and bulk materials. The statistical analysis for grain numbers was executed to study the influence of cutting speed on the grain refinement in the machined surface. The investigation results showed that white layer exhibits significantly different microstructures with the bulk materials. It shows densification, no obvious structural features characteristic. The microstructure and phase of Ni-based solid solution changed during cutting process. The increase of cutting speed causes the increase of white layer thickness when the cutting speed is less than 2000 m/min. However, white layer thickness reduces with the cutting speed further increase. The higher the cutting speed, the more serious grains refinement in machined surface. 2-D FEM for machining FGH95 were carried out to simulate the cutting process and obtained the cutting temperature field, cutting strain field and strain rate field. The impact mechanisms of cutting temperature, cutting strain and strain rates on white layer formation were analyzed. At last, deformation-phase transformation coupling mechanism was proposed to illustrate the white layer formation mechanism in high speed machining of PM superalloy.
机译:镍基高温合金占飞机关键结构和发动机组件的重要金属部分。当制造航空工业中的这些关键结构部件以达到高可靠性水平和出色的服务性能为目标时,表面完整性是用于评估精加工表面质量的最重要参数之一。在表面完整性的研究中,形成白色层是一个非常重要的研究课题。在镍基高温合金加工表面上形成白色层会降低加工零件的使用寿命和疲劳寿命。本文旨在确定切削速度对FGH95 Ni基高温合金高速加工中白层形成的影响。用光学显微镜,扫描电子显微镜和X射线衍射分析白层和块状材料的元素和微观结构。对晶粒数量进行统计分析,以研究切削速度对加工表面晶粒细化的影响。研究结果表明,白色层与块状材料的微观结构差异显着。它显示致密化,无明显的结构特征特征。镍基固溶体的微观结构和相在切削过程中发生变化。当切割速度小于2000m / min时,切割速度的增加导致白色层厚度的增加。但是,白色层的厚度随着切割速度的进一步增加而减小。切削速度越高,加工表面的晶粒细化就越严重。对FGH95进行二维有限元分析,模拟了切削过程,得到了切削温度场,切削应变场和应变率场。分析了切削温度,切削应变和应变速率对白层形成的影响机理。最后,提出了变形-相变耦合机制来说明PM超合金高速加工中白层形成机理。

著录项

  • 来源
    《Applied Surface Science》 |2014年第15期|197-203|共7页
  • 作者

    Jin Du; zhanqiang Liu; Shaoyu Lv;

  • 作者单位

    School of Mechanical & Automotive Engineering, Qilu University of Technology, Jinan, Shandong 250353, China;

    School of Mechanical Engineering, Shandong University, Jinan, Shandong 250061, China,Key Laboratory of High Efficiency and Clean Mechanical Manufacture, Shandong University, Ministry of Education, Shandong, China;

    School of Mechanical Engineering, Shandong University, Jinan, Shandong 250061, China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    White layer; FGH95; High speed machining; FEM;

    机译:白色层;FGH95;高速加工;有限元法;

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